WO2014094387A1 - 一种组合建筑结构、房子、卫生间 - Google Patents

一种组合建筑结构、房子、卫生间 Download PDF

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Publication number
WO2014094387A1
WO2014094387A1 PCT/CN2013/071231 CN2013071231W WO2014094387A1 WO 2014094387 A1 WO2014094387 A1 WO 2014094387A1 CN 2013071231 W CN2013071231 W CN 2013071231W WO 2014094387 A1 WO2014094387 A1 WO 2014094387A1
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WO
WIPO (PCT)
Prior art keywords
keel
strip
partition
keels
louver
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2013/071231
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English (en)
French (fr)
Inventor
杨东佐
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Individual
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Individual
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Filing date
Publication date
Application filed by Individual filed Critical Individual
Publication of WO2014094387A1 publication Critical patent/WO2014094387A1/zh
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/04Frames for doors, windows, or the like to be fixed in openings
    • E06B1/36Frames uniquely adapted for windows
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/02Special arrangements or measures in connection with doors or windows for providing ventilation, e.g. through double windows; Arrangement of ventilation roses
    • E06B7/08Louvre doors, windows or grilles
    • E06B7/084Louvre doors, windows or grilles with rotatable lamellae
    • E06B7/086Louvre doors, windows or grilles with rotatable lamellae interconnected for concurrent movement
    • E06B7/096Louvre doors, windows or grilles with rotatable lamellae interconnected for concurrent movement operated or interconnected by gearing
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/04Wing frames not characterised by the manner of movement
    • E06B3/06Single frames
    • E06B3/08Constructions depending on the use of specified materials

Definitions

  • the present invention relates to a building structure, a house, a toilet, and more particularly to a composite wall, or a combination window, or a house, or a bathroom, and the like.
  • double-glazed windows are often used.
  • the existing double glazing has wooden windows, plastic windows and aluminum windows.
  • aluminum alloy windows are most popular among users in terms of performance (such as service life) and appearance.
  • the existing double-glazed aluminum alloy windows adopt independent inner and outer two-layer window frames and two-layer sashes, that is, double-frame and double-layer sashes, which are not only inconvenient to install, but also have many aluminum alloy consumables, and the aluminum alloy window frame is The thermal conductivity is good and the heat in the room is easily lost to the outside, and the indoor window frame surface is prone to frost.
  • the existing H-beam, C-steel, T-steel, and square-tube steel profiles are easy to rust due to their unattractive appearance and cannot be used as exposed keels of existing buildings, such as keels of curtain walls.
  • the existing curtain wall generally adopts an aluminum alloy keel structure, and the rigidity of the aluminum alloy is not good.
  • the double glass component Inserted from the end into the steel window material, the double glass component is provided with a card slot, and the base is provided with a buckle matched with the card slot of the double glass component, and the buckle on the base is buckled on the double glass component
  • the double glass component is installed in the box in the card slot, and the outermost cover plate is inserted from the end into the steel window material and the buckle on one side is locked in the card slot of the double glass component, and the double head cover in the middle position
  • the two snaps of the board are in the slots of the adjacent two double glass assemblies.
  • the base since the base is inserted into the steel window material from the end portion, the moving distance is large when inserted, and the steel window material is long and deformed, and the base is a plastic profile, and the deformation is larger, and the insertion is time-consuming and labor-intensive, and the mounting pole is installed.
  • the base is thin and plastic, it is easy to get the gravity and locking force from the double glass component and the steel window material. Fracturing and damage under the action.
  • the double glass component is only fixed by the elastic component. Due to the gap between the buckle and the card slot, the buckle is elastically deformed, the fixing effect is not good, the sealing effect is not good, and the structure is complicated.
  • the cover plate and the double glass assembly are required to be installed together before the installation of the double glass assembly, and the cover plate needs to resist the double glass assembly, so The double glass components cannot be installed in the four frames, which is not possible with this technical solution. It is not possible to install the double glass components from one side.
  • a double-glass energy-saving aluminum alloy window which comprises a window frame and a window sash made of an aluminum alloy profile, a sash opening and closing device and a window frame and a window sash.
  • the two-layer glass, the window frame is a frame that is connected into a whole, and the window sash is also a frame that is integrally connected.
  • the aluminum alloy profiles on the left and right sides of the frame and the upper and lower sides of the frame are cut into the insulation partition and then joined into a whole.
  • Two sealing rubber strips are installed between the two layers of Boli, and two sealing strips are also installed between the window sash and the window frame.
  • the insulation baffle reduces the thermal conductivity of the window frame, which not only can maintain the energy saving effect, but also prevent the frost on the indoor window frame surface.
  • the utility model adopts the technical scheme that the aluminum alloy profiles on the left and right sides of the frame and the upper and lower sides of the frame are cut into the insulation partition and then joined into one whole, and the structure is complicated and the cost is high. The insulation effect is not good.
  • a high-insulation inner opening/outer opening composite profile form is disclosed, and the insulating form is adhered to both sides of the fixed form and the movable window, and the aluminum alloy profile and the heat preservation Aluminum alloy ribs are provided on the contact surface of the composite material.
  • the thermal insulation composite material is fixed on the metal profile by the aluminum alloy ribs and the adhesive.
  • the aluminum alloy ribs are invisible when installed, it is difficult to align during installation, and the installation is difficult; the glue is used, it is not environmentally friendly, and the workload is large; And the aluminum alloy ribs are easy to fall off, and when the insulation composite material is damaged, the replacement is inconvenient.
  • an aluminum alloy injection-molded composite heat insulation profile comprising a first aluminum alloy profile, a composite second aluminum alloy profile, a first aluminum alloy profile and a second aluminum alloy profile They are all structures with a cavity, and the corresponding side edges of the two cavities are provided with glue injection slots, which are connected by a glue injection joint to form a broken bridge heat insulation structure.
  • the aluminum alloy profile of the heat-insulated bridge structure is complicated in process and high in cost, and the main keel is supported by the support.
  • the first aluminum alloy profile and the second aluminum alloy profile are glued to form a complete usable profile, and the amount of the aluminum profile must be greatly increased to achieve strength and stiffness requirements.
  • the first technical problem to be solved by the present invention is to provide a combined structure with broken bridge type heat insulation, good heat insulation and sound insulation effect, convenient and quick installation, simple process, good strength and rigidity of the main keel, and particularly suitable for the curtain wall and low cost. structure.
  • the second technical problem to be solved by the present invention is to provide a house with broken bridge type heat insulation, good heat insulation and sound insulation effect, convenient and quick installation, simple process, good strength and rigidity of the main keel, and particularly suitable for the curtain wall and low cost.
  • the third technical problem to be solved by the present invention is to provide a broken bridge type heat insulation, good heat insulation and sound insulation effect, convenient and quick installation, simple process, good strength and rigidity of the main keel, and particularly suitable for a curtain wall and a low cost toilet.
  • a composite building structure comprising a main keel and a compartment module;
  • the main keel comprises two or more parallel metal first keels, two or more of which are perpendicular to the first keel, two ends are resisted by two first keels, and two a keel-fixed metal second keel, a compartment module; adjacent two first keels and two adjacent second keels form a box for installing a compartment module;
  • the compartment module includes two parallel side by side third The keel, the two fourth keels fixed perpendicular to the third keel and fixed at the two ends and the two third keels, are installed in two compartments separated by two distances between the two third keels and the two fourth keels.
  • a confined space is formed between the adjacent two compartments; and is characterized in that: on the two outer sides opposite to the two third keels of the compartment module and the two outer sides opposite to the two fourth keels are provided Corresponding third keel and corresponding fourth keel integrally formed with the abutting edge; further comprising a first outer thermal insulation strip fixed to the first keel and completely covering the first keel facing the outdoor surface, and the second keel Fixed, finished a second outer thermal insulation strip covering the surface of the corresponding second keel facing the outdoor surface; a compartment module is installed only from one side in one box; the third keel and the fourth keel of the compartment module are plastic profiles, or The third keel and the fourth keel of the compartment module are metal parts, and the compartment module further comprises a profiled third outer heat insulation strip and a fourth section which are fixed to the third keel and completely cover the third keel facing the outdoor surface.
  • the keel is fixed and completely covers the fourth outer heat insulation strip of the profile of the corresponding fourth keel facing the outdoor surface; the fastener is passed through the resisting edge of the partition module and the corresponding first keel and/or the second keel is fixed.
  • the layer module is fixed with the corresponding first keel and the second keel; the compartment module is installed indoors, and the side of the compartment module facing the outdoor is flush with or protrudes from the first outer heat insulation strip and the second outer heat insulation strip.
  • the outer insulating strip and the second outer insulating strip, or the compartment module is installed from the outside, and the side of the compartment module facing the interior is flush with the first keel and the second keel or protrudes from the first keel and the second keel; Facing the outdoor side, also includes a first decorative strip corresponding to the first keel and a second decorative strip corresponding to the second keel; the first decorative strip covering the first outer insulating strip and the adjacent two third keels or the fourth of the adjacent two compartment modules The keel, the second decorative strip covers the second outer insulating strip and the adjacent two fourth keels or the third keel of the adjacent two compartment modules.
  • the first keel and the second keel are metal profiles; the first outer heat insulation strip and the second outer heat insulation strip are u-shaped elastic snap-type heat insulation strips; the first keel is close to the outdoor side
  • a first card slot is disposed on the opposite sides of the first outer insulating strip, and the two buckles of the first outer heat insulating strip are buckled from the outdoor direction side in the corresponding two first card slots, and the first keel protrudes and mounted thereon
  • the two opposite sides of the first outer heat insulating strip are flush with the opposite sides of the two outer buckles of the first outer heat insulating strip mounted thereon;
  • a second card slot is disposed on two sides of the back, and two buckles of the second outer heat insulating strip are buckled from the outdoor direction side in the corresponding two second card slots, and the second keel protrudes and mounted thereon
  • the two opposite sides of the second outer heat insulating strip are flush with
  • the installation is convenient, fast and reliable, and the first outer heat insulation strip and the second outer heat insulation strip are easily replaced after aging.
  • a card slot is provided on the first keel and the second keel, and the two buckles of the first outer heat insulation strip and the second outer heat insulation strip are symmetrical about the center thereof, the first outer heat insulation strip and the second outer partition
  • the hot strip is laterally fastened on the corresponding keel. It is easy to balance when inserted. It is easy to operate and reliable. It reduces the excessive heat or improper operation of the outer insulating strip when it is mounted on the keel.
  • the first keel and/or the second keel is a square tube steel or a C-shaped steel or an H-shaped steel;
  • the first outer heat insulating strip and the second outer heat insulating strip are U-shaped heat insulating strips or elastic snap-type U-shaped heat insulation strip;
  • the first outer heat insulation strip side is tightly fitted and mounted on the first keel, the first outer heat insulation strip completely covers the three sides of the first keel;
  • the second outer heat insulation strip side is tightly fitted Installed on the second keel, the second outer insulation strip completely covers the three sides of the second keel.
  • the outer heat insulation strip of this structure is installed reliably; when the outer heat insulation strip is buckled on the keel in a direction parallel to the surface of the keel facing the outdoor, a keel only needs a heat insulation strip to completely cover the keel toward the indoor
  • the surface and the outdoor facing surface save material cost and installation cost, and the heat insulation effect is good.
  • the keel does not require surface treatment due to the installation of spacers.
  • the keel is made of standard profile steel and has good strength and rigidity, which is especially suitable for curtain walls.
  • the first decorative strip is fixed on the first keel or the partition module by a fastener, or the first decorative strip is an elastic snap-type decorative strip, which is fastened on the first keel or on the compartment module.
  • the second decorative strip is fixed on the second keel or the partition module by fasteners, or the second decorative strip is an elastic snap-type decorative strip, which is fastened on the second keel or the compartment module;
  • the hot strip is glued to the flat heat insulation strip on the first keel, and the second outer heat insulation strip is glued to the flat heat insulation strip on the second keel.
  • the utility model adopts the flat external heat insulation strip, has the advantages of simple structure and low cost; since the decorative strip is fixed on the outer side of the first outer heat insulation strip and the second outer heat insulation strip, the decorative strip has a fixing effect on the heat insulation strip, and the outer partition The hot strip can be glued onto the corresponding keel without falling down, greatly reducing the amount of glue and the time of sticking.
  • the first inner spacer corresponding to the first keel completely covering the first keel facing the indoor, and the second keel corresponding to the second keel facing the indoor surface
  • the second inner spacer serves as a decorative or insulating effect.
  • the structure of the inner spacer and the matching relationship with the corresponding keel can be completely referred to the outer heat strip.
  • the first keel and / or the second keel is a square tube steel or a C-shaped steel or an H-shaped steel; the first outer insulating strip and the second outer insulating strip, the first inner spacer and the first
  • the second inner spacer is a U-shaped heat insulation strip; the first outer heat insulation strip is inserted and fitted on the first keel from the outdoor side, and the first inner heat insulation strip is inserted and fitted on the first keel from the indoor side;
  • the second outer heat insulation strip is inserted and installed on the second keel from the outdoor side, and the second inner heat insulation strip is inserted and fitted from the indoor side to the second keel.
  • the outer heat insulation strip and the inner spacer of the structure are not A snap-on structure is required, and the clamping force of the first keel and the second keel mounted together can be completely fixed by the outer heat insulating strip and the inner spacer, and the structure is simple and the installation is reliable.
  • the first outer heat insulation strip comprises an outer layer of the first outer heat insulation strip whose outer layer is metal and an inner layer of the first outer heat insulation strip whose inner layer is plastic; the outer layer of the first outer heat insulation strip is completely Covering the inner surface of the first outer heat-insulating strip; the second outer heat-insulating strip comprises a second outer heat-insulating strip outer layer of metal and a second outer heat-insulating strip inner layer of plastic; The outer layer of the outer outer insulating strip completely covers the inner surface of the second outer insulating strip to expose the inner surface.
  • the inner layer of the plastic layer is heat-insulating, sound-resistant and corrosion-resistant.
  • the outer layer of the metal layer has good appearance quality, resists ultraviolet rays and natural weathering, and has a long service life.
  • the outer layer of the first outer heat insulation strip is a U-shaped elastic snap-type metal piece, and the two outer buckles of the outer layer of the first outer heat insulation strip are respectively buckled on the inner layer of the first outer heat insulation strip.
  • the outer layer of the second outer heat insulating strip is a U-shaped elastic snap-type metal piece, and the two outer buckles of the outer layer of the second outer heat insulating strip are respectively buckled on the two buckles of the inner layer of the second outer heat insulating strip.
  • the outer layer of the outer heat insulation strip is matched by a snap-type structure, and has a simple structure and convenient installation.
  • the first decorative strip cooperates with the side of the first keel facing the indoor and the second decorative strip cooperates with the side of the second keel facing the indoor; the first decorative strip completely covers the corresponding first The two adjacent keels of the keel and the adjacent two compartment modules face the indoor surface, and the second decorative strip completely covers the faces of the corresponding second keel and two adjacent keels of the adjacent two compartment modules facing the indoor.
  • the first trim strip and the second trim strip make the appearance of the composite building structure more aesthetic, and there is no requirement for the material and appearance of the first keel, the second keel, the third keel, and the fourth keel.
  • the third spacer is an elastic snap-type spacer, and on the opposite sides of the third keel and close to the indoor side, a third card slot is formed through the two ends of the third keel body, and the third The two buckles of the spacer respectively resist the third card slot opposite to the third keel, and the opposite sides of the third keel protrude from the corresponding sides of the third spacer mounted thereon or are mounted thereon
  • the third spacer on the upper side is flush;
  • the fourth spacer is an elastic snap-type spacer, on both sides of the fourth keel opposite to the indoor side, and is provided through the two ends of the fourth keel body
  • the fourth card slot, the two buckles of the fourth spacer respectively resist the fourth card slot opposite to the fourth keel, and the opposite sides of the fourth keel protrude corresponding to the fourth spacer mounted thereon Both sides are flush with the sides corresponding to the fourth spacers mounted thereon.
  • the two buckles of the third spacer and the fourth spacer can be symmetric about the center thereof, and the distance between the two buckles inserted into the keel is small, and the force is easily balanced when inserted. It is convenient when the spacer is fastened on the keel, and the action is reliable. It reduces the excessive force or improper operation of the spacer when the spacer is mounted on the keel; this way can also completely avoid the force of the inner spacer. It is especially suitable for the case where the third spacer and the fourth spacer are directly exposed to the room.
  • the composite building structure is a composite wall or a combined window installed between two floors
  • the first keel and the second keel are heat-insulating plastic profiles
  • the first outer heat insulation strip and the second outer partition Hot strip is a beautiful looking metal
  • the third keel and the fourth keel are heat-insulating and sound-insulating plastic profiles; the third keel is provided with a metal piece on the surface of the third keel facing only indoors, and the fourth piece is provided with a metal piece on the surface of the fourth keel only facing the interior.
  • a spacer further comprising a first inner spacer corresponding to the first keel, completely covering the corresponding first keel facing the room, and a metal corresponding to the second keel and completely covering the corresponding second keel facing the indoor surface a second inner spacer;
  • the first inner spacer is a u-shaped elastic snap-type spacer, and on the opposite sides of the first keel, and close to the indoor side, a third card is inserted through the two ends of the first keel body
  • the two buckles of the first inner spacer respectively resist the third card slots opposite to the first keel, and the opposite sides of the first keel protrude from the two corresponding inner first spacers mounted thereon
  • the side is flush with the two sides corresponding to the first inner spacer installed thereon;
  • the second inner spacer is a u-shaped elastic snap type spacer, on the opposite sides of the second keel, and close to the indoor side a fourth card slot extending through
  • the keel plastic profile can fully meet the requirements of strength and rigidity, and the keel plastic profile has good heat insulation and sound insulation effect, and the cost is low; the metal spacer completely covers the keel, so that the plastic keel is not exposed. Resist UV rays and natural weathering to make the keel long-lived.
  • the partition layer comprises two layers of partitions, and the opposite sides of the two third keels and the faces of the two fourth keels are respectively provided with a one-to-one correspondence with the number of the separator layers.
  • the partition plate is installed in the positioning groove corresponding to the two third keels and the two fourth keels, and further comprises a sealing strip for sealing the partition plate and the corresponding positioning groove; the closed space of the adjacent two partition plates
  • the splint is generally made of reinforced modified gypsum board, gypsum board, foam board, concrete board, and the like. The splint is used to further improve insulation, sound insulation and impact resistance.
  • the partition is two or more partitions, and each of the partitions is provided with a square-shaped sealing ring integrally formed, wrapped around the partition and having a u-shaped cross section;
  • the opposite surface of the third keel and the opposite surface of the two fourth keels are respectively provided with one-to-one positioning grooves having the same number of layers as the partition plate, and the partition plate and the square-shaped sealing ring mounted on the partition plate are installed. In the positioning groove corresponding to the two third keels and the two fourth keels.
  • the square seal seal has a good sealing effect.
  • the partition is a three-layer or more partition, and the opposite sides of the two third keels and the opposite surfaces of the two fourth keels are respectively provided with one-to-one correspondence and partitions.
  • the positioning groove has the same number of layers, and the partition plate is installed in the positioning groove corresponding to the two third keels and the two fourth keels, and further comprises a sealing strip for sealing the partition plate with the corresponding positioning groove;
  • Transparent glass plate, the separator above one side of the inner layer is a transparent plastic plate. The plastic plate has better heat insulation and sound insulation effect than the glass.
  • the plastic plate greatly blocks the heat conduction, that is, the transparency of the partition module is ensured, and the heat insulation and sound insulation performance of the partition module are greatly improved, and the heat insulation and sound insulation performance are equivalent. Double-layer glass vacuum structure, but the cost is greatly reduced. Therefore, a transparent plastic plate is added between the two glass plates. The softer the plastic plate is, the thicker the better.
  • the separator (glass plate) and the plastic plate are not directly in contact with each other and maintain a certain distance. (The farther the distance is, the better), the gas convection is blocked in different spaces, and the gas convection in the first closed space between the partitions near the heat and sound vibration side is blocked by the plastic plate, so that heat and sound are vibrated.
  • the second closed space that is transmitted between the partitions is greatly attenuated, and the heat and sound vibration in the space of the second closed gas between the partitions is small, and is transmitted through the partition (glass plate) on the indoor side.
  • the partition glass plate
  • heat and sound vibrations appear in the room, so the heat insulation and sound insulation effect is better.
  • the third partition space and the fourth partition space are provided, the heat and sound vibration are transmitted by each plastic board.
  • the attenuation is in turn, and the thermal and acoustic insulation effect is better.
  • the use of colored plastic sheets can greatly reduce heat radiation and significantly reduce costs compared to existing techniques for reducing radiation through plating. . It is easy to make the required pattern or metal effect on the plastic plate to meet the aesthetic needs of the building.
  • the compartment module comprises a sliding window module; the sliding window module further comprises a sliding window; the sliding window comprises two or more partitions, two parallel parallel fifth keels, perpendicular to the fifth keel, Two side-by-side sixth keels fixed at both ends with two fifth keels, laterally buckled from the outdoor direction on the fifth keel and completely covering the fifth spacer of the corresponding fifth keel exposed outside, from the outside
  • the direction is laterally buckled on the sixth keel and completely covers the sixth spacer of the corresponding sixth keel exposed surface, and is disposed on the opposite faces of the two fifth keels and the opposite faces of the two sixth keels
  • One-to-one corresponding positioning groove with the same number of layers of the partition plate the partition plate is installed in the corresponding positioning groove, the partition plate is sealed with the corresponding positioning groove, and a closed space is formed between the adjacent partition plates; the third keel on the upper side
  • the bottom surface is provided with
  • the compartment module comprises a louver module; the louver module further comprises a louver and a louver angle adjusting mechanism; the louver angle adjusting mechanism comprises a gear, which can be mounted on only one side only by sliding up and down and short distances.
  • a vertically mounted carriage on the fourth keel fixed to the carriage and a straight rack that cooperates with the gear; the blade shaft is rotatably mounted on the two fourth keels, and only one end of the blade shaft passes through The side wall of the side fourth keel is fixed to the gear.
  • the louver is adjusted by gears and racks, and the movement is reliable, and the life of the louver angle adjusting mechanism is long.
  • the compartment module comprises a louver module; the louver module further comprises a louver and a louver angle adjusting mechanism; and the ribs matched with the louver are arranged on opposite sides of the two third keels
  • the louver module further comprises a louver and a louver angle adjusting mechanism; and the ribs matched with the louver are arranged on opposite sides of the two third keels
  • the two hundred blades that are mounted together are staggered and spliced together, and the louvers and the ridges are staggered together; at the opposite faces of the two hundred blades that meet each other and the adjacent
  • a sealing strip is arranged between the opposite faces of the symmetry of the louver and the rib.
  • the louver of this structure has a better sealing effect between the louver and the third keel.
  • the compartment module comprises a louver module;
  • the louver module further comprises a louver and a louver angle adjusting mechanism;
  • the louver angle adjusting mechanism comprises a worm wheel fixed on the blade shaft of only one end of each louver, a worm that can be slid up and down a short distance, a worm fitted to the worm wheel on the fourth keel on only one side, and a knob fixed on the worm;
  • the two ends of the blade shaft are rotatably mounted on the two fourth keels, only one end of the blade The shaft passes through the side wall of the fourth keel on one side and is fixed to the worm wheel.
  • the worm wheel and the worm are used to adjust the louver, the movement is reliable, and the louver angle adjustment mechanism has a long service life.
  • the compartment module comprises a louver module; the louver module further comprises a louver and a louver angle adjusting mechanism; and the louver with each louver is arranged on the two vertically mounted fourth keels A shaft-fitted louver shaft hole;
  • the louver angle adjustment mechanism includes a gear fixed on a blade shaft of only one end of each blade, a timing belt fitted on the gear and the gear, an adjustment handle, and a fourth keel Straight guide hole; both ends of the blade shaft are rotatably mounted on the two fourth keels, and only one end of the blade shaft passes through the side wall of the fourth keel and the gear is fixed; the adjustment handle is fixed through the straight guide hole and the timing belt
  • the gear is housed in the fourth keel.
  • the compartment module comprises a louver module; the louver module further comprises a louver and a louver angle adjusting mechanism; the louver comprises a rectangular louver body, and the louver is provided on the top surface of the louver body a first joint portion that is flush with the front side of the main body, and a second joint portion that is flush with the rear side surface of the louver body on the bottom surface of the louver body; and an upper card slot on the top surface of the first joint portion, in the second a lower card slot is disposed on a bottom surface of the joint portion, and a groove matching the sealing strip is disposed on an opposite surface of the first joint portion or the second joint portion, and a shaft hole extending through the two ends of the louver body and the louver wall are further included a relatively uniform thick hollow hole; further comprising an elastic snap-type first one-blade spacer that cooperates with a side of the louver having a groove and an elastic snap-type second one that cooperates with a side of the louver
  • the louver of this structure has a better sealing effect between the louver and the third keel.
  • the one hundred blade spacers and the second hundred blade spacers may be made of aluminum profiles or stainless steel materials with good waterproof and rustproof effects, so that the louvers are durable and have an appearance effect. it is good.
  • the third keel and the fourth keel are metal profiles
  • the one-hundred blade strip and the second-hundred blade strip can be insulated and sound-insulating plastic profiles, and the spacers effectively block heat insulation and sound transmission.
  • the one hundred blade spacer and the second one blade spacer are elastic snap-type spacers, which are conveniently fastened and reliable by laterally fastening on the corresponding keel.
  • the third keel and the fourth keel of the compartment module are metal profiles;
  • the compartment module comprises a louver module;
  • the compartment of the push window module is a push window, and the push window comprises two or more partitions, two The seventh keel of the parallel metal profiles, the two side-by-side metal profiles perpendicular to the seventh keel and the ends fixed to the seventh keel respectively;
  • the seventh keel is provided with a surface completely covering the seventh keel facing the outside and the interior
  • the seventh spacer of the face is provided with an eighth spacer on the eighth keel that completely covers the face of the eighth keel facing the outside and the face of the room.
  • the third keel and the fourth keel, the seventh keel and the eighth keel are metal profiles, and the keel is not easily worn when the window is pushed. There are spacers on the third keel and the fourth keel, the seventh keel and the eighth keel, and the heat insulation effect is good.
  • a first accommodating groove penetrating the two end faces of the first keel body is disposed on the first keel
  • a second accommodating groove penetrating the two end faces of the second keel body is disposed on the second keel
  • the first accommodating groove on the first keel and the second accommodating groove on the second keel are connected to each other; the inner decorative strip is fixed between the adjacent partition modules; and one inner decorative strip corresponds to only one a keel or a second keel; the inner trim strip covers the corresponding first keel or second The keel, and the adjacent two keels of the adjacent two compartment modules.
  • the opposite abutting edge of the adjacent compartment module forms a third accommodating groove in the room, and an inner decorative strip is fixed between the adjacent compartment modules; one inner decorative strip corresponds to only one first keel Or a second keel; the inner trim strip covers the corresponding first keel or second keel, and the adjacent two keels of the adjacent two compartment modules.
  • the accommodating groove accommodates wires, water pipes, etc., and the decorative strip covers the electric wire water pipe, and the appearance is beautiful.
  • the composite building structure is a curtain wall installed outside the frame structure of the building body; the partition module resisted by the main body frame is installed in the corresponding box from the outside, and the remaining partition modules are installed indoors.
  • the corresponding box only the box is blocked by the main frame of the building such as the floor, the column, etc., and the partition module is installed from the outside; if the box is not resisted by the floor, the column, etc., the partition module is installed indoors; The installation cost and labor intensity are greatly reduced, and the maintenance is convenient in the future.
  • Decorative strips are installed both outdoors and indoors for a beautiful appearance.
  • the composite building structure is a curtain wall installed on the outer side of the main frame structure of the building; the first keel is vertically installed, fixed by the first fixing member and the main frame structure floor, and the compartment modules are installed from the outside. Corresponding to the box.
  • the roof decorative strip fixed with the first keel or the second keel includes a first keel or a second keel, and the roof decorative strip is wavy.
  • the positions of the adjacent two roof decorative strips are interlaced and staggered together, and the roof decorative strip covers the combined building structure.
  • This roof trim strip has a good decorative effect and can be waterproofed to give the roof a double waterproof effect.
  • the partition module roof can provide good insulation and sound insulation.
  • the first keel and/or the second keel are square tube steel or C-shaped steel or H-shaped steel or T-shaped steel.
  • the keel does not require surface treatment due to the installation of spacers.
  • the keel is made of standard profile steel and has good strength and rigidity, which is especially suitable for curtain walls.
  • the first keel is a square tube steel or a C-shaped steel
  • the second keel is a square tube steel or a C-shaped steel
  • the accommodating cavity for accommodating the angle iron fixing member is formed on the two spacers, and the angle iron fixing members of the first keel and the second keel that are in contact with each other are installed in the accommodating cavity, and the first keel and the second skein are connected
  • the keels are held together by angle iron fixtures.
  • the accommodating cavity for accommodating the angle iron fixing member is processed on the spacer, and the processing is easy, and the rigidity of the keel is not affected.
  • the partition is a transparent glass plate of two or more layers, and a flexible cover film or a rigid cover plate completely covering the corresponding glass plate is attached to the opposite faces of the adjacent two glass plates.
  • the flexible cover film may be a plastic film or the like, and the rigid cover plate may be a plastic plate or a cardboard, etc.
  • the first has the effect of reducing heat conduction; the second is not easy to fall when the glass is not broken, and is safer to use; the third is in the cover film and The cover plate is easy to make the required pattern or metal effect, etc., to meet the needs of the aesthetic appearance of the building; the fourth pair of parts that do not need to transmit light, using an opaque, flexible cover film or rigid cover plate, can reduce heat radiation and further improve Insulation effect.
  • the first keel and/or the second keel is a square tube steel or a C-shaped steel or an H-shaped steel; and the first elastic snap-type inner compartment is fastened from the indoor to the first outer thermal insulation strip.
  • a second elastic snap-type inner spacer that is fastened from the interior to the second outer heat insulation strip; the first outer heat insulation strip and the first elastic snap type inner spacer completely wrap the four sides of the first keel
  • the two outer heat insulation strips and the second elastic snap type inner spacer completely wrap the four sides of the second keel.
  • the outer heat insulation strip and the inner spacer will completely wrap the four sides of the keel to form a square shape, which has good heat insulation effect and is easy to cooperate with the partition module.
  • a bathroom, the four walls of the bathroom, the roof, and the floor are assembled from a composite building structure, one side and/or two sides and/or three sides and/or four sides of the four walls, and/or roof, and/or floor slab, and / or the compartment module of the floor comprises a functional module, and / or a functional component is fixed on the compartment module.
  • the composite building structure can be a composite wall, a composite window, a composite roof, or the like.
  • the partition module forms an effective heat insulation, sound insulation layer, heat insulation capacity, noise, etc., to achieve efficient heat insulation and sound insulation.
  • the integrated assembly of the compartment module is realized to meet the overall functional requirements of aesthetics, waterproof, fireproof, heat insulation and sound insulation. Used as an external wall, it will not crack and leak water, and it is not necessary to carry out secondary insulation treatment and waterproof treatment on the external wall. It is not necessary to paint the exterior wall or paste the surface treatment of the wall brick to reduce the decoration of the external wall. Link, save construction funds.
  • the abutting edge of the compartment module is fixed to the first keel and/or the second keel, no need for beading, simple structure, convenient installation and low cost.
  • the installation and maintenance do not require the outdoor lifting compartment module, the first keel, the second keel, etc., and only need to be sealed from the outside.
  • the installation and maintenance process is convenient, efficient, and safe. It is safer to install from the inside and from the outside.
  • the first keel and the second keel are aluminum profiles and standard steel profiles.
  • the first outer heat insulation strip and the second outer heat insulation strip are made of heat-insulating, sound-insulating, waterproof plastic materials, etc., which greatly reduce heat and sound conduction. It is equivalent to plastic steel in heat insulation and sound insulation, more durable and easier to manufacture than co-extruded steel, and low in cost.
  • the partition layer can be a board having a certain rigidity, waterproof, heat insulation, sound insulation and the like, such as a metal plate, a decorative hard plate, a glass, a tile, a solar panel, and the like.
  • the position where the first keel, the second keel and the screw are fixed can increase the wall thickness or be designed as two layers of wall thickness.
  • the face of the partition module facing the outdoor is flush with the surface of the first outer heat insulation strip and the second outer heat insulation strip facing the outdoor or protrudes from the first outer heat insulation strip and the second outer heat insulation strip toward the outdoor surface, that is, There is only a resisting edge on the partition module, and there is no resisting edge on the first keel and the second keel.
  • the first keel and the second keel can be made of standard steel, and the strength and rigidity are good, and the screw can be firmly and reliably Fixing the resisting edge on the first keel and the second keel, especially suitable for the curtain wall, especially the entire curtain wall outside the building and fixed to the building slab; on the other hand, for the same curtain wall, in different boxes
  • the compartment module can be installed from the outside or indoors as needed. Since the length of the standard steel is generally less than 12 meters, when only one standard profile can not meet the height requirement of the building, the first keel is formed by connecting a plurality of standard profiles.
  • FIG. 1 is a perspective exploded view showing the outdoor projection (the direction away from the partition module mounting) of the embodiment 1 of the present invention.
  • Fig. 2 is a top plan view showing a first keel in which a first outer heat insulating strip and a first inner spacer are mounted in the embodiment 1 of the present invention.
  • Figure 3 is a right side elevational view of the first keel of the first embodiment of the present invention with the second outer and second inner strips installed.
  • Fig. 4 is a perspective exploded perspective view showing the partition module of the first embodiment of the present invention projected from the indoor (separator module mounting direction).
  • Fig. 5 is a perspective exploded perspective view showing the projection from the room in the second embodiment of the present invention.
  • Fig. 6 is a perspective view showing the partition module of the third embodiment of the present invention projected from the room.
  • Fig. 7 is a top plan view showing a third keel to which a third spacer is attached on the left side of Embodiment 3 of the present invention.
  • Figure 8 is a top plan view showing a fourth keel having a fourth spacer attached to the upper side of Embodiment 3 of the present invention.
  • FIG. 9 is a perspective exploded view of the first type of compartment module of the embodiment of the present invention projected from the outside.
  • FIG. 10 is a perspective exploded view showing the second partition module of the fourth embodiment of the present invention projected from the room.
  • Figure 11 is a left side view of the fifth keel of the upper side of the fifth heat insulating strip mounted on the sash window module.
  • Figure 12 is a left side view of the fifth keel of the lower side of the fifth heat insulating strip mounted on the sash window module.
  • Figure 13 is a top plan view of a fifth keel on the right side of a sixth heat insulating strip in which the sash window module is mounted.
  • Fig. 14 is a perspective exploded perspective view showing the partition module of the embodiment 5 of the present invention projected from the outside.
  • Figure 15 is a top plan view showing a seventh keel having a seventh spacer attached to the left side of Embodiment 5 of the present invention.
  • Figure 16 is a top plan view showing a seventh keel having a seventh spacer attached to the right side of Embodiment 5 of the present invention.
  • Figure 17 is a right side elevational view of the eighth keel with the eighth spacer attached to the upper side of the fifth embodiment of the present invention.
  • Figure 18 is a right side elevational view of the eighth keel with the eighth spacer attached to the lower side of the fifth embodiment of the present invention.
  • Fig. 19 is a perspective exploded perspective view showing the louver spacer module of the embodiment 6 of the present invention projected from the outside.
  • Figure 20 is a left side view of the louver according to Embodiment 6 of the present invention.
  • Figure 21 is an enlarged schematic view of a portion I of Figure 19.
  • Figure 22 is a perspective exploded view of the louver compartment module projected from the outside of the seventh embodiment of the present invention.
  • Figure 23 is a left side view of the louver according to Embodiment 7 of the present invention.
  • Fig. 24 is a perspective exploded perspective view showing the louver spacer module of the eighth embodiment of the present invention projected from the room.
  • Fig. 25 is a left side view showing the louver of the invention example 9 in which the first louver heat insulating strip and the second louver heat insulating strip are attached.
  • ⁇ 26 is a left side view of the louver of the invention example 10 in which the first louver heat insulating strip and the second louver heat insulating strip are attached.
  • ⁇ 27 is a perspective exploded view of the louver compartment module projected from the outside of the embodiment 11 of the present invention.
  • Figure 28 is a perspective view of Embodiment 12 of the present invention.
  • Figure 29 is an end elevational view of an H-shaped steel first keel to which a first outer heat insulating strip is attached, in accordance with a twelfth embodiment of the present invention.
  • Figure 30 is an end elevational view of a square tubular steel second keel with a second outer insulating strip mounted in accordance with a twelfth embodiment of the present invention.
  • Figure 31 is a perspective exploded view of Embodiment 12 of the present invention.
  • Figure 32 is a perspective view showing the outdoor door projection of the single door compartment module of the embodiment 12 of the present invention.
  • Figure 33 is a perspective exploded perspective view showing the single door door compartment module of the embodiment 12 of the present invention projected from the room.
  • Figure 34 is a perspective exploded perspective view showing the sliding window compartment module of the embodiment 12 of the present invention projected from the room.
  • Figure 35 is a perspective view showing the projection of the double door barrier module of the embodiment 13 of the present invention from the outside.
  • Figure 36 is a schematic view showing the structure of a composite building structure according to Embodiment 14 of the present invention mounted on a main body frame.
  • Figure 37 is a perspective view showing the partition module of the embodiment 14 of the present invention projected from the room.
  • Figure 38 is a plan view showing a first keel to which a first outer heat insulating strip is attached according to Embodiment 14 of the present invention.
  • Figure 39 is a right side elevational view of a second keel to which a second outer insulating strip is attached, in accordance with an embodiment 14 of the present invention.
  • Fig. 40 is a perspective exploded view showing the indoor projection (away from the partition module mounting direction) of the composite building structure in which the first fixing member is fixed in the embodiment 14 of the present invention.
  • Fig. 41 is a perspective exploded perspective view showing the indoor projection of the composite building structure in which the first fixing member is fixed in the embodiment 15 of the present invention.
  • Figure 42 is a perspective exploded perspective view showing the combined building structure of the embodiment 16 of the present invention from the outside.
  • Figure 43 is a plan view showing an H-shaped steel first keel to which a first outer heat insulating strip is attached, in accordance with Embodiment 16 of the present invention.
  • Figure 44 is a left side elevational view of the H-shaped steel second keel to which the second outer heat insulating strip is attached, according to Embodiment 16 of the present invention.
  • Figure 45 is a plan view showing a square tubular steel first keel to which a first outer heat insulating strip is attached, in accordance with a seventeenth embodiment of the present invention.
  • Figure 46 is a left side elevational view of a square tubular steel second keel to which a second outer heat insulating strip is attached, in accordance with a seventeenth embodiment of the present invention.
  • Figure 47 is a perspective exploded view of Embodiment 18 of the present invention.
  • Figure 48 is a plan view showing the first keel on the right side of the first outer heat insulating strip and the first inner spacer attached to the embodiment 18 of the present invention.
  • Figure 49 is a plan view showing the first keel of the left side of the first embodiment in which the first outer heat insulating strip and the first inner spacer are mounted.
  • Figure 50 is a perspective exploded perspective view showing the partition module of the embodiment 19 of the present invention projected from the room.
  • Figure 51 is a perspective exploded perspective view showing the partition module of the embodiment 20 of the present invention projected from the room.
  • Figure 52 is a perspective exploded view showing the partition module of the embodiment 21 of the present invention projected from the outside.
  • Figure 53 is a plan view showing the first keel on the right side of the first outer heat insulating strip and the first inner spacer attached to the embodiment 22 of the present invention.
  • Figure 54 is a plan view showing the first keel of the left side of the first embodiment of the present invention in which the first outer heat insulating strip and the first inner spacer are mounted.
  • Figure 55 is a right side elevational view of the second keel of the upper side of the second outer heat insulating strip and the second inner partition strip of the embodiment 22 of the present invention.
  • Figure 56 is a right side elevational view of the second keel of the lower side of the second outer heat insulating strip and the second inner spacer of the embodiment 22 of the present invention.
  • Figure 57 is a top plan view showing a first keel to which a first outer heat insulating strip and a first inner spacer are attached, in accordance with an embodiment 23 of the present invention.
  • Figure 58 is a right side elevational view showing the second keel of the second embodiment of the present invention with the second outer heat insulating strip and the second inner spacer.
  • Figure 59 is a schematic side view showing the outer decorative strip of the embodiment 23 of the present invention.
  • Figure 60 is a perspective view showing the end face of the intermediate position decorative strip of Embodiment 23 of the present invention.
  • Figure 61 is a perspective exploded view of Embodiment 24 of the present invention.
  • Figure 62 is a plan view showing a C-shaped steel first keel to which a first outer heat insulating strip and a first inner spacer are attached, in accordance with an embodiment 25 of the present invention.
  • Figure 63 is a left side elevational view of a C-shaped steel second keel to which a second outer heat insulating strip and a second inner spacer are attached, in accordance with an embodiment 25 of the present invention.
  • Figure 64 is a perspective exploded view of the spacer module of Embodiment 26 of the present invention.
  • Figure 65 is a plan view showing a third keel to which a third heat insulating strip is attached according to Embodiment 26 of the present invention.
  • Figure 66 is a right side view of a fourth keel to which a fourth heat insulating strip is attached, in accordance with Embodiment 26 of the present invention.
  • Figure 67 is a perspective exploded view showing a partition module of the embodiment 27 of the present invention projected from the room.
  • Fig. 68 is an enlarged schematic view showing a portion II of Fig. 67;
  • Figure 69 is a plan view of a first keel to which a first spacer is attached according to Embodiment 28 of the present invention.
  • Figure 70 is a right side elevational view of the second keel with the second spacer attached to the embodiment 28 of the present invention.
  • Figure 71 is a perspective exploded view showing the embodiment of the present invention, with the partition module removed, the first decorative strip and the second decorative strip facing the outside, and the inner decorative strip facing the interior.
  • a composite building structure which is a composite wall structure, includes a first outer heat insulating strip 1 of the same structure and a facing outer side on the side facing the outdoor direction from the left to the right horizontal array.
  • One side of the first keel 3, the first keel 4, the first keel 5, and the first keel 6 having the same inner first spacer 2 and the same aluminum profile are mounted on one side, and are mounted on the first keel 3 and the first keel 4, two vertical outer insulating strips 7 of the same structure are installed on the side facing the outdoor, perpendicular to the first keel 3 and the first keel 4, vertically from the top to the bottom, and facing the room a second inner spacer 8 having a second inner spacer 8 and a structurally identical aluminum profile, a second keel 10, a second keel 11, and a second keel 12 are installed between the first keel 4 and the first keel 5, respectively.
  • the line is located on the right side of the second keel 9, the second keel 10, the second keel 11, and the second keel 12, and the second outer heat insulating strip 7 and the second inner spacer 8 having the same structure are installed, and the vertical array is arranged.
  • the second keel 16 is installed between the first keel 5 and the first keel 6, and is respectively located on the right side of the second keel 13, the second keel 14, the second keel 15, and the second keel 16, and has the same structure.
  • Second outer heat insulation strip 7 and second inner partition strip 8 vertical profile aluminum profile second keel 17, second keel 18, second keel 19, second keel 20, fixed shaft 21, fixed shaft 22
  • the fixed shaft 23 and the fixed shaft 24 are respectively mounted on the fixed shaft 21, the fixed shaft 22, the fixed shaft 23, and the locking members 25 at both ends of the fixed shaft 24.
  • Each adjacent two first keels and two second keels form a square in which only one structurally identical compartment module 26 is installed from one side.
  • the rightmost first keel 6 is an integrally extruded profile, including a square first keel body 27, which penetrates the two ends of the first keel body 27 up and down, and is insulated from the first outer portion.
  • the buckle 41 of the strip 1 cooperates with the first abutting groove 28 communicating with the right side surface of the first keel body 27 and the left side of the first keel body 27 to engage with the buckle 42 of the first outer heat insulating strip 1
  • the first abutting groove 29 penetrates the two ends of the first keel body 27, the engaging groove 47 of the first inner spacer 2, the abutting groove 30 communicating with the right side surface of the first keel body 27, and the first keel body 27 a blocking groove 31 that communicates with the buckle 43 of the first inner spacer 2, and a hollow through hole 32 that penetrates the two ends of the first keel body 27 so that the first keel body 27 has a relatively uniform wall thickness.
  • a first through hole 33, a first through hole 34, a first through hole 35, and a first through hole 36 are formed through the first keel body 27, and the first through hole 28 is adjacent to the groove wall 37 on the outdoor side.
  • the right side is lower than the right side 39 of the first keel body 27, and the first resisting groove 29
  • the left side face of the groove wall 38 near the outdoor side is lower than the left side face 40 of the first keel body 27.
  • the first outer heat insulating strip 1 is fastened to the first keel 3 from the direction perpendicular to the first keel 3 toward the outdoor surface.
  • the buckle 41 of the first outer heat insulating strip 1 is fastened in the first resisting groove 28 and is firstly resisted.
  • the groove 28 is resisted by the groove wall 37 of the outdoor, and the buckle 42 is fastened in the first abutment groove 29 and is resisted by the groove wall 38 of the abutment groove near the outdoor.
  • the first outer heat insulation strip 1 completely covers the surface of the first keel 6 facing the outdoor. .
  • the right side surface 39 of the first keel body 27 slightly protrudes from the buckle 30 and the right side surface of the buckle 41.
  • the left side surface 40 of the first keel body 27 slightly protrudes from the left side of the buckle 31 and the buckle 42.
  • a gap is formed between the surface of the buckle 41 facing the room and the first resisting groove 28 facing the outer surface 45 of the buckle 41.
  • a gap is formed between the surface of the buckle 42 facing the inside and the surface of the resisting groove facing the outdoor facing surface 46 of the buckle 41.
  • the first inner spacer 2 is symmetrically mounted in the abutting groove 30 and the abutting groove 31 on the side of the first keel 3 facing the room.
  • the second keel 17 is an integrally extruded aluminum profile, including a square second keel body 78, which cooperates with the buckle 79 of the second outer heat insulation strip 7, and the second keel body.
  • the upper side of the 78 is connected to the outdoor facing surface, and the second resisting groove 80 extending through the two ends of the second keel body 78 is engaged with the buckle 81 of the second outer heat insulating strip 7 and the bottom surface of the second keel body 78 and facing the outside.
  • the second abutting groove 82 communicating with the two sides of the second keel body 78 is connected to the surface of the second keel body 78, and is connected to the upper surface of the second keel body 78 and the surface facing the room.
  • the resisting groove 84 at the two ends of the keel body 78 cooperates with the buckle 85 of the second inner spacer 8 , communicates with the bottom surface of the second keel body 78 and the surface facing the room, and penetrates the abutting groove 86 at both ends of the second keel body 78 from left to right.
  • the keel 17 has a relatively uniform wall thickness and forms a second keel body
  • the installation method and the matching structure of the second outer heat insulating strip 7 and the second keel 17 and the first outer heat insulating strip 1 and the The installation method and the structure of the keel 3 are exactly the same.
  • the partition module 26 includes a partition 49 of glass, a partition 50, two vertical keels 51 and a third keel 52 which are vertically aligned with respect to a vertical plane of the center thereof, and are mounted. Between the third keel 51 and the third keel 52, the third keel 53 and the fourth keel 54 which are perpendicular to the third keel 51 and the third keel 52 and are horizontally symmetrical with respect to the horizontal plane of the center position.
  • the fourth keel 53 is an integrally extruded profile, including a square fourth keel body 55, which communicates with the lower side of the fourth keel body 55 and extends through the positioning grooves at both ends of the fourth keel body 55.
  • the top surface of the four keel body 55 is provided with abutting edge 60 which is flush with the surface of the fourth keel body 55 facing the room and flush with both end faces of the fourth keel body 55, and penetrates both ends of the fourth keel 53 to make the fourth keel wall A hollow through hole 63 having a relatively thick thickness.
  • the third keel 51 includes a square third keel body 65, which communicates with the left side surface of the third keel body 65, and penetrates the two ends of the third keel body 65 up and down, respectively, and the positioning groove 56 and the positioning.
  • the positioning groove 66 and the positioning groove 76 that communicate with the groove 57 are flush with the surface of the third keel body 65 facing the room and flush with the both end faces of the third keel body 65 on the right side surface of the vertical square third keel body 65.
  • the abutting edge 67, the hollow through hole 70 which penetrates the two ends of the third keel 51 so that the third keel 51 has a relatively uniform thickness, is coaxially engaged with the through hole 58 and the through hole 59, respectively, and penetrates the third keel body 65.
  • a snap-shaped sealing strip 77 is attached to the outdoor facing surface of the resisting ring formed on the abutting edge of the compartment module.
  • a partition wall 49 having a U-shaped weather strip 74 and a partition plate 50 each having a separate U-shaped weather strip 75 are mounted on each of the upper, lower, left and right sides, each side.
  • the third keel 51, the third keel 52, the fourth keel 53, and the fourth keel 54 are fixed together by screws (not shown), and a closed space is formed between the partition 49 and the partition 50. .
  • a first outer decorative strip 92 is fixed to a side of the first keel 6 facing the outside by a screw (not shown), and a first outer decoration is fixed to a side facing the room by a screw (not shown).
  • the strip 92 is a first inner trim strip 93 that is symmetrical about a vertical plane of its center position.
  • a first outer decorative strip 94 symmetrical with respect to a vertical plane of the first outer decorative strip 92 with respect to its central position is fixed to a side of the first keel 3 facing outward, and a side facing the room is fixed by a screw (not shown).
  • the first keel 4 at the intermediate position and the side of the first keel 5 facing the outside are respectively fixed with the first outer decorative strip 96 of the same structure by screws (not shown), and the side facing the indoor is respectively passed by screws (not shown).
  • the first inner trim strip 97, to which the first outer trim strip 96 is symmetrical about the vertical plane of its center position, is fixed.
  • a second outer decorative strip 98 of the same structure is fixed by screws (not shown); the side facing the room is respectively screwed (not Shown is a second inner trim strip 99 that is symmetrical with respect to the vertical plane of the second outer trim strip 98 with respect to its central position.
  • the second outer trim strip 98 has the same cross-sectional shape as the first outer trim strip 92, and the mounting relationship is rotated by 90°.
  • a second structurally identical second surface symmetrical with respect to the horizontal plane of the second outer decorative strip 98 with respect to its central position is fixed by screws (not shown)
  • the outer trim strip 100; a side facing the interior is respectively fixed by a screw (not shown) with a second inner trim strip (not shown) that is symmetrical with respect to the vertical plane of the second outer trim strip 100 with respect to its center position.
  • the second outer garnish 101, the second inner lining of the first outer garnish 96 and the first inner decorative strip 97 are fixed in the same manner in the middle direction of the middle row in the vertical direction, and the second outer decorative strip 101 and the second inner portion are rotated by 90°.
  • the first inner trim strip 93 includes a flat first inner trim strip body 103, which is flush with the right side surface of the first inner trim strip body 103, and the vertical decorative strip body is convex toward the outdoor surface and is bent inward again, and The L-shaped abutting edge 104 of the first keel 6 is flush with the left side surface of the first inner decorative strip body 103, and the vertical edge 105 of the first inner decorative strip main body 103 is convex toward the outdoor surface.
  • the first inner trim strip 97 includes a flat first inner trim strip body 106, which is flush with the right side surface of the first inner trim strip body 106 and perpendicular to the outer first decorative strip body 106 facing the outdoor surface. 107.
  • a cover 108 that is flush with the left side surface of the first inner trim body 106 and that is perpendicular to the surface of the first inner trim strip body 106 facing outward.
  • Grooves (not shown) for accommodating wires or the like are formed between the opposite abutting edges of the adjacent barrier modules 26.
  • Example 2 As shown in FIG. 5, different from the first embodiment, the two third keels 121 of the compartment module 120 are provided with a card slot 122 on the surface facing the indoor, and the two fourth keels 123 face the indoor surface.
  • a card slot 130 is provided.
  • the two first outer decorative strips 125 which are mounted on the outer side of the first keel 124, are provided with an elastic snap group (not shown) which is matched with the card slot 122 and is composed of two symmetrical elastic pieces, two of which are in the middle position.
  • An outer trim strip 126 is provided with an elastic snap group (not shown) that cooperates with the card slot 122 and is composed of two sets of two symmetrical spring pieces.
  • the first outer decorative strip 125 and the elastic snap fastener of the first outer decorative strip 126 are mounted in the card slot 122 of the compartment module 120 and the spacer module 120.
  • All of the second outer trim strips 128 mounted on the second keel 127 in the uppermost row and the lowermost row in the vertical direction are provided with elastic snaps composed of two symmetrical elastic pieces that cooperate with the card slots 130 of the fourth keel 123.
  • Group 131; all of the second outer trim strips 129 mounted in the middle two rows in the vertical direction are provided with an elastic snap group 133 which is matched with the card slot 130 of the fourth keel 123 and composed of two sets of two symmetrical elastic pieces each. .
  • the elastic buckle assembly of the second outer trim strip 128 and the second outer trim strip 129 is mounted in the card slot 122 of the fourth keel 123 with the compartment module 120.
  • Each of the two third keels 121 of the compartment module 120 facing the outdoor surface is provided with a card slot 132, and the two fourth keels 123 of the compartment module 120 face the outdoor surface are provided with a card slot (not shown). ).
  • the two first outer trim strips 135 mounted on the outer side of the first keel 124 are provided with an elastic snap group 136 which is matched with the card slot 132 and is composed of two symmetrical elastic pieces; two first outer decorative strips at the intermediate position
  • the 134 is provided with an elastic buckle set 140 which is matched with the card slot 132 and is composed of two sets of two symmetrical elastic pieces.
  • the elastic snap sets 140 of the first outer trim strips 134 and the elastic snap sets 136 of the first outer trim strips 135 are respectively fastened to the corresponding card slots 132 of the compartment module 120 and are mounted together with the compartment module 120.
  • All the second outer decorative strips 138 mounted on the second keel 127, the uppermost row and the lowermost row in the vertical direction are provided with elastic snaps composed of two symmetrical elastic pieces, which are engaged with the card slots of the fourth keel 123.
  • Group 139; All of the second outer trim strips 141 in the middle two rows of the vertical direction are provided with an elastic snap group 142 which is matched with the card slot of the fourth keel 123 and is composed of two symmetrical elastic pieces.
  • the elastic buckle set 139 of the second outer trim strip 138 and the elastic snap set 142 of the second outer trim strip 141 are fastened to the partition module 120 in the corresponding slots of the fourth keel 133.
  • the third keel 150 on the left side includes a square third keel body 151 , which communicates with the right side surface of the third keel body 151 and penetrates the third keel body up and down.
  • the positioning groove 152 and the positioning groove 153 at the two ends of the 151 are perpendicular to the left side surface of the third keel body 151 and are flush with the surface of the third keel body 151 facing the room, and the two ends are flush with the third keel body 151.
  • a third slot 155 that communicates with the left side surface of the abutting edge 154 and the surface facing the room, and penetrates the abutting edge 154 up and down, and is symmetrical with the vertical surface of the third slot 155 with respect to the center position thereof, and the third keel
  • the third card slot 156 communicating with the right side surface of the body 151 and the surface facing the room is symmetric with the vertical surface of the third card slot 156 with respect to the center of the third keel body 151, and the right side surface and orientation of the third keel body 151
  • the third card slot 157 that communicates with the outdoor surface is symmetrical with the third card slot 157 about the center of the third keel body 151, and the third card slot 158 that communicates with the left side of the third keel body 151 toward the outdoor surface.
  • the main body 151 is connected to the surface of the third keel body 151 facing the room, and the accommodating groove 159 perpendicular to the three sides penetrates the third keel body 151 and the third keel body 151 facing the outdoor surface, and the three-sided vertical receiving groove 160 A hollow through hole 161 that penetrates both ends of the third keel 150 to make the third keel 150 relatively uniform in thickness.
  • the utility model further comprises an elastic snap-type plastic third heat insulation which is matched with the third keel body 151 toward the indoor side, one buckle 162 is fastened in the third card slot 155, and the other buckle 163 is fastened in the third card slot 156.
  • an arcuate groove 166 and an arcuate groove 167 are formed in the groove 165 of the third heat insulating strip 164.
  • the utility model further comprises an elastic snap-type plastic third heat insulation which is matched with the third keel body 151 toward the outdoor side, one buckle 168 is fastened in the third card slot 157, and the other buckle 169 is fastened in the third card slot 158.
  • the strip 170 is provided with an arcuate groove 172 and an arcuate groove 173 which are elastically engaged with the decorative strip in the groove 171 of the third heat insulating strip 170.
  • the third keel 174 on the right side is symmetric with respect to the vertical plane of the third keel 150 about its center position, and is mounted on the third heat insulating strip 175 and the third heat insulating strip 164 on the side of the third keel 174 facing the interior.
  • the vertical plane of the position is symmetrical, and the third heat insulating strip 176 mounted on the outdoor side of the third keel 174 is symmetrical with the vertical plane of the third heat insulating strip 170 with respect to its center position.
  • the upper fourth keel 177 is an integrally extruded aluminum profile, including a square fourth keel body 178, which communicates with the lower side of the fourth keel body 178 and penetrates the fourth keel body from left to right.
  • the positioning groove 179 and the positioning groove 180 at the two ends of the 178 are respectively connected to the positioning groove 152 and the positioning groove 153, and the top surface of the fourth keel body 178 is convex and flush with the surface of the fourth keel body 178 facing the indoor, the left end and the first
  • the abutting edge 154 of the three keel 150 is flush
  • the abutting edge 181 of the right end is flush with the abutting edge of the third keel 174, and the right and left through the abutting edge 181 and the abutting edge 181 a fourth card slot 182 communicating with the top surface and the face facing the room, and a fourth card slot 183 symmetrical with the fourth card slot 182 with respect to a horizontal plane of the center position thereof, and a bottom surface of the fourth keel body 178 and a face facing the room,
  • the fourth card slot 184 is symmetric with the fourth card slot 183 with respect to the vertical plane of the center of
  • the fourth card slot 185 which is horizontally symmetrical at the center of the keel body 178, communicates with the top surface of the fourth keel body 178 and the surface facing the outdoor, and extends through the ends of the fourth keel body 178 and the mounting screws (not shown).
  • a hollow through hole 190 a hollow through hole 191, a hollow through hole 192, a hollow through hole 193, a hollow through hole 194, a hollow through hole 195, and a hollow through hole 196 of the connecting rib of the side wall parallel to the 178
  • the utility model further comprises an elastic snap-type plastic fourth heat insulation which is matched with the fourth keel body 178 toward the indoor side, one buckle 200 is fastened in the fourth slot 182, and the other buckle 201 is fastened in the fourth slot 183.
  • the strip 202 is provided with an arcuate groove 204 and an arcuate groove 205 which are elastically engaged with the decorative strip in the groove 203 of the fourth heat insulating strip 202.
  • the utility model further comprises an elastic snap-type plastic fourth heat insulation which is matched with the fourth keel body 178 toward the outdoor side, one buckle 206 is fastened in the fourth slot 185, and the other buckle 207 is fastened in the fourth slot 184.
  • the strip 208 is provided with an arcuate groove 210 and an arcuate groove 211 which are elastically engaged with the decorative strip in the groove 209 of the fourth heat insulating strip 208.
  • the fourth keel 212 on the lower side is symmetric with respect to the horizontal plane of the fourth keel 122 with respect to its center position, and is mounted on a fourth heat insulating strip (not shown) and a fourth heat insulating strip 208 on the outdoor side of the fourth keel 212.
  • the horizontal plane of the center position is symmetrical, and the fourth heat insulating strip 213 mounted on the side of the fourth keel 212 facing the interior is symmetrical with the horizontal plane of the fourth heat insulating strip 202 with respect to its center position.
  • the three compartment modules 271 of the first row from the bottom to the top and the three compartment modules of the third row have the same structure, and the three compartment modules 273 of the second row are the same structure of the push-pull. Window module.
  • the partition module 271 includes three layers of partitions, the inner layer is a glass plate 320 and the outer layer is a glass plate 321, and the intermediate layer is a plastic plate 322.
  • the third keel 282 on the right side of the compartment module 271 includes a square third keel body 274, which is perpendicular to the right side of the third keel body 274, flush with the face of the third keel body 274 toward the room, and the upper and lower ends and the third keel
  • the body 274 is flush with the flank 275, communicates with the left side surface of the third keel body 274, penetrates the positioning groove 276 at both ends of the third keel body 274, the positioning groove 277, and the positioning groove 278, and penetrates the third keel up and down to make the third keel
  • the hollow through hole 279 having a relatively uniform wall thickness penetrates two small through holes (not shown) of the left side wall of the third keel body 274, penetrates the right
  • the fourth keel 284 on the upper side of the compartment module 271 includes a square fourth keel body 285, and two through holes 286 extending through the two ends of the fourth keel body 285, perpendicular to the top surface of the fourth keel body 285, And the fourth keel body 285 is flush with the fourth keel body 285 facing the indoor surface, and the fourth keel body 285 is protruded at both ends and is flush with the abutting edge 280 of the third keel 283 on the left side and the abutting edge 275 of the third keel 282 on the right side.
  • the venting hole 287 and the blast hole 289 are formed by the flank 287, which penetrates the two ends of the fourth keel 284 and makes the fourth keel 284 relatively uniform in thickness.
  • the fourth keel 290 on the lower side is symmetrical with the fourth keel 284 about the vertical plane of its center position.
  • the sliding window module includes a third keel 323, a third keel 291, a fourth keel 292, a fourth keel 293, and a sliding window 294 of a plastic profile.
  • the sliding window 294 includes two layers of glass 295, and a fifth keel 296 and a fifth keel 297 of two horizontal side-by-side plastic profiles are perpendicular to the fifth keel 296 and are installed between the two fifth keels 296 and the fifth keel 297.
  • the fifth keel 296 includes a fifth keel body 302 composed of a semi-arc axis and a square body tangential to the semi-circular axis, and a through hole that cooperates with the rotating shaft 300 and penetrates the two ends of the fifth keel body 302.
  • the positioning hole 305 and the positioning groove 328 are disposed on the bottom surface of the fifth keel 296, and the positioning groove 328 is disposed on the bottom surface of the fifth keel body 302.
  • the keel body 302 faces the recessed portion 329 which is recessed from the partial arc portion of the fifth keel body 302, the straight portion, and the positioning groove toward the bottom surface of the outdoor side wall toward the outdoor side, and the card slot is provided on the upper side of the recess portion 329.
  • a blocking portion 331 is disposed on the slot wall of the positioning slot 305 facing the outdoor, so that the fifth keel 296 has a relatively uniform wall thickness, and the hollow through hole 306, the hollow through hole 332, and the hollowing through the two ends of the fifth keel body 302 The through hole 333 and the hollow through hole 334.
  • the fifth heat insulating strip 324 includes a straight portion and a curved portion
  • the fifth heat insulating strip body 335 is an elastic buckle 336 which is bent from the upper side of the fifth heat insulating strip main body 335 toward the inner circular arc and then folded downward, and is moved from the lower side of the fifth heat insulating strip body 335 to the indoor
  • the elastic buckle 337 is formed by bending the inner arc and then folding it upward.
  • the elastic buckle 336 of the fifth heat insulation strip 324 is fastened in the card slot 330, and the elastic buckle 337 is fastened on the resisting portion 331.
  • the circular arc surface facing the outdoor of the fifth heat insulating strip 324 is lower than the circular arc surface of the fifth keel body 302 facing the outdoor, and the positioning groove 305 protrudes toward the bottom surface of the fifth insulating strip 324 toward the bottom surface of the indoor side wall.
  • the fifth keel 297 includes a fifth keel body having a curved bottom surface, a top surface, and a plane perpendicular to the front surface of the indoor and outdoor surfaces.
  • the fifth keel body is disposed on the top surface of the fifth keel 297 and runs through the left and right sides.
  • the positioning groove 307 and the positioning groove 338 at the two ends of the fifth keel body and the positioning groove 305 and the positioning groove 328 respectively are disposed on the outer surface of the fifth keel body from the bottom surface of the fifth keel body and toward the outdoor surface.
  • the positioning groove 307 faces the concave portion 339 which is recessed at a distance from the top surface of the outdoor side wall, and has a locking groove 259 on the lower side of the concave portion 339, and a resisting portion 258 is disposed on the groove wall of the positioning groove 307 facing the outdoor, so that
  • the five keel 297 has a relatively uniform wall thickness and penetrates through the hollow through holes 308 at both ends of the fifth keel 297.
  • the fifth heat insulating strip 325 includes a fifth heat insulating strip body of a straight portion, and an elastic buckle 257 which is bent from the upper side of the fifth heat insulating strip body toward the inner inner circular arc and then folded downward, is from the fifth
  • the elastic buckle 256 is formed by bending the upper inner side of the heat insulating strip body toward the inner circular arc and then folding back upward.
  • the elastic strip 256 of the fifth heat insulating strip 325 is buckled in the slot 259, and the elastic snap 257 is fastened to the resisting portion 258.
  • the bottom surface 255 of the fifth keel body protrudes from the bottom surface of the fifth heat insulating strip 325, and the top surface 254 protrudes from the top surface of the fifth heat insulating strip 325.
  • the sixth keel 299 includes a square sixth keel body 246 for mounting screws, threaded holes at both ends, and two through holes 319 extending through the two ends of the sixth keel body 246, and disposed on the sixth keel 299.
  • Two positioning grooves 309 and positioning grooves 252 extending through the two sides of the sixth keel 299 on the left side surface are disposed on the right side of the sixth keel body 246 toward the outdoor side, and are facing outward.
  • a concave portion 251 which is recessed at a distance from a left side wall of the surface facing the outdoor surface of the positioning groove, a card groove 250 is formed on the right side of the concave portion 251, and a resisting portion 249 is disposed on the groove wall of the positioning groove 309 facing the outdoor.
  • the sixth keel 299 has a relatively uniform wall thickness, and two hollow through holes 310 extending through the two ends of the sixth keel 299 are fixed to the handle 311 on the front side of the sixth keel 299.
  • the sixth heat insulating strip 327 includes a sixth heat insulating strip body of a straight portion, and an elastic buckle 247 which is bent from the left side of the sixth heat insulating strip body to the inner circular arc and then folded back to the right, from the sixth
  • the elastic buckle 248 is formed by bending the right side of the heat insulating strip body into a circular arc inside the indoor square and then folding back to the left.
  • the elastic buckle 248 of the sixth heat insulation strip 327 is fastened in the card slot 250, and the elastic buckle 247 is fastened to the resisting portion 249.
  • the right side surface 246 of the sixth keel body protrudes from the right side surface of the buckle 248, and the left side surface 245 of the sixth keel body protrudes from the left side surface of the buckle 247.
  • the sixth keel 298 is symmetric with the sixth keel 299 about the vertical plane of its center position.
  • the sixth thermal insulation strip 326 mounted on the sixth keel 298 is symmetrical with the sixth thermal insulation strip 327 about the vertical plane of its central position.
  • a sealing strip 316 having a U-shaped cross section and being mounted around the glass 295 is mounted in each of the positioning grooves.
  • the glass 295 is installed in the positioning groove corresponding to the fifth keel 296, the fifth keel 297, the sixth keel 298, and the sixth keel 299, and a sealed space is formed between the two glass 295.
  • the through hole of the fifth keel 296 is passed through the screw, and the through hole of the fifth keel 297 is fixed to the sixth keel 298. It is fixed to the sixth keel 299 by a screw passing through the through hole of the fifth keel 296 from the bottom through the through hole of the fifth keel 297.
  • a groove 312 is provided on the bottom surface of the upper third keel 323 for rotating the fifth keel 296 at a certain angle, and a circular through hole 313 is formed on the right side wall of the fourth keel 292 to cooperate with the rotating shaft 300.
  • the bit shaft 301 is fitted with a through hole 314 including two straight segments connecting the two arc segments.
  • the rotating shaft 300 is mounted in the through hole 313, and the limiting shaft 301 is installed in the through hole 314.
  • a sealing strip (not shown) is fixed to the outdoor facing surface of the barrier module 315 of the compartment module.
  • the three compartment modules of the second row are the same structure of the push window module, and the compartment module includes the push window 350 and the push window 351.
  • the upper third keel 352 is an integrally extruded aluminum profile, including a square third keel body 353, and a vertical third keel body 353 is convexly disposed on the top surface, and the third keel body 353 faces the indoor surface and both ends.
  • the bottom surface of the third third keel body 353 is convexly disposed, and is respectively flush with the surface of the third keel body 353 facing the outdoor and the indoor, and the rib 355 and the rib 356 which are flush with the both ends, and the bottom surface of the third keel body 353 Protruding, located at the rib
  • a guiding strip 357 and a guiding strip 358 are formed between the ribs 356 and both ends of the third keel body 353.
  • the third keel 359 on the lower side is symmetrical with respect to the horizontal plane of the third keel 352 about its center position.
  • a flat plastic third spacer 349 is attached to the side of the third keel 352 facing the outdoor, and a flat plastic third partition is attached to the side facing the indoor.
  • Strip 348; a flat plastic third spacer 347 is attached to the side of the third keel third keel 315 facing outward, and a flat plastic third spacer 346 is attached to the side facing the room.
  • the fourth keel 360 on the right side is an aluminum profile, and includes a square fourth keel body 361, which penetrates the two ends of the fourth keel body 361 up and down, and two through holes 362 of the mounting screws (not shown) are threaded holes.
  • the through hole 363 is perpendicular to the right side surface of the fourth keel body 361, and is flush with the surface of the fourth keel body 361 facing the room, and protrudes from the opposite sides of the outer tube body 364, and penetrates the two ends of the fourth keel 360
  • the hollow hole 365 of the four keel 360 has a uniform wall thickness, the hollow hole 366, the avoidance groove 367 and the avoidance groove 368 respectively matched with the guide bar 357 and the guide bar 358, and the avoidance groove matched with the guide bar 357 guiding strip 358 369, avoidance slot 370.
  • the top surface of the abutting edge 364 is flush with the top surface of the abutting edge 354 of the third keel 352, and the bottom surface is flush with the bottom surface of the abutting edge of the third keel 359.
  • the fourth keel 345 on the left side is an aluminum profile that is symmetrical with the vertical plane of the fourth keel 360 about its center position.
  • a flat plastic fourth spacer 344 is attached to the side of the fourth keel 360 facing outward, and a flat plastic fourth spacer 343 is attached to the side facing the indoor; the fourth keel 345 faces the outdoor side.
  • a flat plastic fourth spacer 342 is attached, and a flat plastic fourth spacer 341 is attached to the side facing the room.
  • the push window 350 includes two or more partitions 371, two parallel parallel seventh keels 372, seventh keel 373 and seventh keel 372, seventh keel 373 perpendicular, two ends respectively with the seventh keel 372, the seventh keel 373 fixed two? ⁇ 3 ⁇ 4) A3 ⁇ 4 374 A3 ⁇ 4 375
  • the seventh keel of the upper side; ⁇ 2 is an extruded aluminum profile, comprising a square seventh keel body 376, communicating with the lower side of the seventh keel body 376, and extending through the positioning groove 377 at both ends of the seventh keel body 376,
  • the positioning slot 378 extends through the two ends of the seventh keel body 376, and is disposed on the top surface of the seventh keel body 376 with a semi-circular bottom surface 379, and extends through the two ends of the seventh keel body 376, and the mounting screws (not shown)
  • Two through holes 380 and through holes 381 which are threaded holes at both ends thereof penetrate the two ends of the seventh keel 372 to make the wall thickness of the seventh keel 372 relatively uniform and form a parallel connection with the side wall of the seventh keel body 376.
  • the hollow through hole 382, the hollow through hole 383, and the hollow through hole 384 of the rib further include a side surface of the seventh keel body 376 facing the outdoor side, a top surface, a side facing the side of the room, and a buckle 385
  • the seventh thermal insulation strip 389, the seventh thermal insulation strip 389 and the recess 379 are fastened on the side wall 386 of the positioning groove 377 facing the outside, and the other buckle 387 is fastened on the side wall 388 of the positioning groove 378 facing the room.
  • Cooperating part 379 from the side of the recess 390 and the guide bar 357 is formed with a guide groove.
  • the seventh seventh keel 373 on the lower side is symmetric with respect to the horizontal plane of the seventh keel 372 about the center position, and the seventh heat insulating strip 392 mounted on the seventh keel 391 is symmetric with respect to the horizontal plane of the seventh heat insulating strip 389 about its center position.
  • the eighth keel 374 on the right side is an integrally extruded aluminum profile, including a square eighth keel body 393, which communicates with the left side surface of the eighth keel body 393, and penetrates the two ends of the eighth keel body 393 up and down, respectively, and the positioning groove 377.
  • the positioning groove 394 and the positioning groove 395 of the positioning groove 378 are connected to the two ends of the eighth keel body 393, and the groove 396 is disposed at the center of the right side of the eighth keel body 393, and penetrates the two ends of the eighth keel 374.
  • the eighth keel 374 has a relatively uniform wall thickness and forms a hollow through hole 397 of the connecting rib parallel to the side wall of the eighth keel body 393.
  • the utility model further includes a side surface facing the outdoor side of the eighth keel body 393, a right side surface, a side facing the indoor side, a buckle 398 fastened on the outdoor side wall 399 of the positioning groove 394, and another buckle.
  • the first heat-insulating strip 401 is fastened on the side wall of the positioning groove 395 facing the room, and the side of the eighth heat-insulating strip 401 and the groove 396 facing away from the groove 379 forms a sealing groove 402.
  • the eighth keel 375 on the left side is an integrally extruded aluminum profile, including a square eighth keel body 403, which communicates with the right side surface of the eighth keel body 403, and penetrates the two ends of the eighth keel body 403 up and down, respectively, and the positioning groove
  • the positioning groove 404 and the positioning groove 405 of the positioning groove 378 are connected to the two ends of the eighth keel 375 so that the wall thickness of the eighth keel 375 is relatively uniform, and the connecting rib parallel to the side wall of the eighth keel body 403 is formed.
  • the through hole 406 is hollowed out.
  • the utility model further includes a side surface facing the outdoor side of the eighth keel body 403, a left side surface, a side facing the indoor side, a buckle 407 fastened on the outdoor side wall 408 of the positioning groove 404, and another buckle. 409 is attached to the eighth heat insulating strip 411 on the side wall 410 of the positioning groove 405 facing the room, and the sealing strip mounting portion 412 protruding from the intermediate position of the eighth heat insulating strip 411 toward the indoor surface
  • the three compartment modules of the second row are the same louver compartment module, and the compartment module comprises two horizontally mounted third keels 422 arranged side by side.
  • the louver 426 is an integrally extruded profile, including a rectangular louver body 427, which protrudes downward from the bottom surface of the louver body 427 and is flush with the louver body 427 facing the outdoor surface.
  • the L-shaped projection 428 protrudes upward from the top surface of the louver body 427, and has an inverted concave-convex portion 429 that is flush with the concave-shaped convex portion 428 and flush with the louver body 427 facing the indoor surface.
  • the accommodating recess 430 of the mounting sealing strip 454 and the accommodating recess 431 of the mounting sealing strip 455 are disposed on the two stepped surfaces of the inverted L-shaped projection 428, and are disposed on the louver body 427.
  • the central position penetrates the louver body 427 and the regular hexagonal shaft hole 419 of the blade shaft 432, and the louver 426 forms the blast hole 433 and the blast hole 435 which are relatively uniform in thickness and parallel with the shaft hole 419.
  • the louver angle adjusting mechanism includes a gear 436 fixed to the left end of each of the louvers 426, a carriage 437, a straight rack 438 mated with each of the gears 436, and an adjustment handle 446.
  • a groove 440 that vertically penetrates the slider 437 is provided on a surface of the slider 437 facing the outside of the chamber, and a guide bar 441 and a guide bar 442 that are flush with the surface facing the room are protruded from the left and right sides.
  • Straight rack 438 is intermittently mounted within recess 440.
  • the third keel 422 is an integrally extruded profile, including a square third keel body 443, and four through holes extending through the third keel body 443 at both ends and having screw holes at both ends. 444, the vertical third keel body 443 is convex on the upper side, flush with the surface of the third keel body 443 facing the indoor, and protrudes from the two sides of the third keel body 443, the left side surface and the left side of the fourth keel 424.
  • the flushing edge 421 of the right side and the right side of the fourth keel 425, the third blast hole 445 which penetrates the third keel 422 left and right, and the third keel 422 has a relatively uniform wall thickness, is disposed at the a rib 456 on the outer bottom surface of the three keel body 443, an inverted L-shaped projection 457 disposed on the bottom surface of the rib 456, and a mounting seal disposed on the two facing faces of the inverted L-shaped projection 457
  • the third keel 423 is different from the third keel 422 in that a rib 460 is protruded from the top surface of the third keel 423, and an inverted L-shaped projection 461 is provided on the top surface of the rib 460.
  • the fourth keel 424 includes a fourth keel body 447, and the left side of the fourth keel body 447 is protruded from the left side of the fourth keel body 447, and the flank of the fourth keel body 447 facing the indoor surface and both end faces.
  • a hollow hole 434 that penetrates the fourth keel 424 up and down, and makes the wall thickness of the fourth keel 424 relatively uniform, respectively protruding on the right inner side surface and the rear inner side surface of the blast hole 434, and forming with the fourth keel body 447 a protruding portion of the T-shaped guide groove 448 that cooperates with the guide bar 441 and the guide bar 442 on the slider 437, and is disposed on the rear side wall of the fourth keel body 447 and has a straight guiding through hole matched with the adjusting handle 446 (not shown).
  • a plurality of hollow holes 449 disposed on the left side wall of the fourth keel body 447 and concentric with the blade shaft 432 on the left side of the corresponding louver 426, and larger than the outer diameter of the gear 436, are disposed in the fourth
  • the blade shaft 432 on the left side of each of the louvers 426 is mounted on the right side wall of the keel body 447, and the mounting holes (not shown) respectively concentric with the escaping holes 449, and the right side wall of the fourth keel body 447 are respectively a small through hole 450 concentric with the through hole 444, Left side wall of the body 447 facing the keel big via small through holes 450 451.
  • the fourth keel 425 includes a fourth keel body 452 disposed on a left side wall of the body 452 to mount a blade shaft 432 mounting hole (not shown) on the right side of each of the louvers 426, and is disposed on the right side wall and the mounting hole.
  • a corresponding mounting hole (not shown) is disposed on the left side wall of the square tube body, and has a small through hole (not shown) corresponding to the through hole 444, and is disposed on the right side wall of the square tube body. Large through hole 453 for small through holes.
  • the blade shaft 432 on the left side of the louver 426 is fixed to the gear 436 through the mounting hole on the right side wall of the fourth keel body 447, and the right blade shaft 432 is rotatably mounted on the fourth.
  • the mounting hole in the left side wall of the keel body 452 is inside.
  • the guide bar 441 and the guide bar 442 of the carriage 437 are mounted in the T-shaped guide groove 448, and the adjustment handle 446 is fixed to the side of the slide seat 437 facing away from the groove 440 through the straight guide through hole.
  • the screw head of the screw (not shown), the large through hole 451 from the upper end of the fourth keel 424 and the small end pass through the small through hole 450, the screw head of the screw passes through the upper end of the fourth keel 425 from the right side.
  • the hole 453 and the small end pass through the small through hole of the fourth keel 425 to fix the third keel 422 with the fourth keel 424 and the fourth keel 425; in the same manner, the third keel 423 and the fourth keel 424, the first The four keels 425 are fixed together.
  • the gears 436 are respectively engaged with the corresponding straight racks 438 to rotatably mount the louvers 426 with the third keel 422, the third keel 423, the fourth keel 424, and the fourth keel 425.
  • the handle 446 By adjusting the handle 446 to pull the sliding seat 437, the sliding block 437 moves up and down, and the straight rack 438 on the sliding seat 437 drives all the gears 436 to rotate synchronously, and drives the louver 426 to open and close.
  • the inverted L-shaped projection 428 of the adjacent one hundred blades 426 and the inverted L-shaped projection 429 of the other louver 426 are inserted together and passed through the sealing strip 454.
  • the sealing strip 455 is sealed; the inverted L-shaped projection 429 of the attached uppermost louver 426 is inserted into the third keel 422 and passed through the sealing strip 458.
  • the sealing strip 459 is sealed; the inverted L-shaped projection 428 of the adjacent lowermost louver 426 mounted together is inserted into the inverted L-shaped projection 461 on the third keel 423 and passes through the sealing strip. 454, the sealing strip 455 is sealed.
  • the louver 480 is an integrally extruded aluminum-plastic profile, including an outer plastic layer and an inner metal layer, and the plastic layer includes a rectangular plastic layer louver body 481, from plastic.
  • the bottom surface of the layer louver body 481 is convex downwardly, and the L-shaped protrusion 482 is flush with the surface of the louver 480 body facing the room, and protrudes from the top surface of the plastic layer louver body 481 and protrudes from the L shape.
  • the portion 482 has a concave-convex fit and an inverted L-shaped projection 483 that is flush with the outer surface of the plastic layer louver body 481, and the plastic layer is formed into an axial hollow hole 484 having a relatively uniform wall thickness;
  • the metal layer includes an outer side surface and
  • the metal layer louver body 485 completely conforms to the inner side of the plastic layer penetrates through holes 477 at both ends of the metal layer and cooperates with the blade shaft 486 to form a metal layer to form a hollow hole 478 having a relatively uniform wall thickness.
  • a linear convex portion 489 and a non-closed curved convex portion 490 connected to the linear convex portion 489 are provided on the front inner side surface of the square tubular body 488 of the fourth keel 487.
  • the arcuate projection 490 is provided with an axial non-closed end and a large intermediate small stepped through hole 491.
  • the louver angle adjusting mechanism includes a worm wheel 492, a worm 493 meshing with all the worm wheels 492, a two-part splicing knob 494 fixed to the polished rod portion at the lower end of the worm 493, and a bearing 495 mounted at both ends of the worm 493.
  • the worm 493 and the bearing 495 mounted on the worm 493 are mounted in the stepped bore, the bearing 495 is tightly fitted with the large hole of the stepped through hole 491, and the worm 493 is rotatably fitted with the small hole of the stepped through hole 491.
  • the knob 494 drives the worm 493 to rotate synchronously, and the worm 493 drives the worm wheel 492 to rotate, which drives the louver 480 to open and close.
  • An inverted L-shaped mounting portion 497 is provided at a corner of the outdoor third surface and the lower side of the square third keel body 496, and an L is provided at a corner of the square-facing third keel body 498 facing the outdoor and the upper side.
  • the shape mounting portion 499 is fixed with a glass plate 479 on the inverted L-shaped mounting portion 497 and the L-shaped mounting portion 499 by screws and glass glue (not shown).
  • a projection 501 which is flush with the surface of the louver body 500 facing outward is protruded downward from the bottom surface of the louver body 500, from the top of the louver body 500.
  • a projection that is fitted to the projection 501 and that is flush with the surface of the louver body 500 facing the room is provided to be convex upward.
  • the louver angle adjusting mechanism includes a gear 503 fixed to the right end of each of the louvers 502, and disposed in the tubular body of the fourth keel 504, mounted on the left side of the fourth keel 504 and with the tubular body of the fourth keel 504
  • the gear 505, the gear 506, which is engaged by the internal gear 503, and the timing belt 507 which is engaged with the gear 503, the gear 505 and the gear 506 on the gear 503, the gear 505 and the gear 506, adjust the handle 508.
  • the gear shaft 509 of the gear 503 is fixed to the louver 502 through the tubular body of the fourth keel 504.
  • a straight guide hole 511 is provided on the face of the fourth keel 504 facing the room, and the adjustment handle 508 is fixed to the timing belt 507 through the straight guide hole 511.
  • the up-and-down adjustment handle 508 drives the timing belt 507 to move up and down, and the timing belt 507 drives the gear 503, the gear 505, and the gear 506 to rotate forward and reverse to control the opening and closing of the louver 502.
  • An inverted L-shaped mounting portion 513 is provided at a corner of the outwardly facing surface and the lower side of the third keel body 512, and is disposed at a corner of the square facing surface of the third keel body 512 facing the room and the lower side.
  • the L-shaped mounting portion 514 is provided with an L-shaped mounting portion 516 at a corner facing the outdoor facing surface and the upper side surface of the square third keel body 515, on the facing side and the upper side of the square third keel body 515
  • An anti-L-shaped mounting portion 517 is provided at the corner, and a glass plate 518 is fixed on the inverted L-shaped mounting portion 513 and the L-shaped mounting portion 516 by screws and glass glue (not shown), and the inverted L-shaped mounting portion 514 and the reverse A glass plate 519 is fixed to the L-shaped mounting portion 517 by screws and glass glue (not shown).
  • Example 9
  • the louver is an integrally extruded profile, and includes a rectangular louver body 520 protruding from the top surface of the louver body 520 and facing the louver body 520.
  • the inverted L-shaped first joint portion 521 having a flush inner surface of the chamber protrudes downward from the bottom surface of the louver body 520, and has a concave-convex fit with the first joint portion 521 and is flush with the louver body 520 facing the outdoor surface.
  • the L-shaped second joint portion 522 is disposed on a semi-circular arc-shaped groove 523 of the second joint portion 522 facing the indoor surface, and is disposed at a center position of the louver body 520 and penetrates the louver body 520 and the positive six of the blade shaft.
  • the upper shaft hole 524 is provided with an upper card slot 525 on the top surface of the first joint portion 521, and a lower card slot 526 is formed on the bottom surface of the second joint portion 522 to form the wall thickness of the louver relatively uniform and the shaft Three holes 527 are parallel to the holes 524.
  • the utility model further comprises an elastic snap type first louver heat insulation strip 529 which cooperates with a side of the louver provided with the groove 523 and an elastic snap type sipe elastic insulation strip which is matched with the side of the louver facing away from the groove 523 530, the buckle 531 of the one hundred blade heat insulation strip 529 is fastened in the upper card slot 525, and the buckle 532 is fastened in the lower card slot 526; the card of the second blade heat insulation strip 530
  • the buckle 533 is fastened in the upper slot 525, and the buckle 534 is fastened in the lower slot 526;
  • the sealing strip 536 is mounted in the groove portion 535 of the first louver insulating strip 529 and the recess 523; In the state, the first joint portion 521 and the second joint portion 522 of the two hundred blades that are mounted together are staggered and joined together, and sealed by the seal strip 536 between the opposite faces of the two hundred blade overlaps.
  • Fig. 27 is a perspective exploded perspective view showing the partition module of the embodiment 1 of the present invention projected from the outside.
  • the compartment module includes four layers of partitions, the first layer facing the room is a glass plate 540, the layer facing the outside is a glass plate 541, and the middle two layers are a plastic plate 542. , plastic plate 543.
  • the third keel 544 on the right side is provided with four positioning grooves 545 extending through the ends of the third keel 544.
  • the third keel 546 on the left side is symmetric with the third keel 544 on the right side with respect to the vertical plane of its center position.
  • the fourth keel 547 on the upper side is provided with four positioning grooves 548 extending through the ends of the fourth keel 547.
  • the fourth keel 549 on the lower side is symmetrical with the fourth keel 547 on the upper side with respect to the vertical plane of its center position.
  • a composite building structure which is a house structure, includes a first floor front wall 551, a second floor front wall 552, a left wall 553, a rear wall 554, a right wall 555, and a first floor front wall 551.
  • the wall 555 and the rear wall 554 are fixed to the roof 558.
  • a railing 550 fixed to the second floor front wall 552 and the floor 556, and a prefabricated panel 559 mounted on the floor 556.
  • the right wall 555 has the same structure as the left wall 553.
  • the left wall 553 is different from the second embodiment in that the left wall 553 includes five vertical H-shaped steels, the H-shaped steel webs are perpendicular to the horizontal direction, and the two flanges of the H-shaped steel are oriented toward the outdoor and the indoor first.
  • the keel 560 and five horizontal keels 561 mounted between each adjacent two first keels 560, and five fixed shafts 563 of the fifth row of second keels 561 are mounted on each fixed A locking member 675 at both ends of the shaft 563.
  • the first keel 560 is an H-shaped steel, and five first through holes 564 that cooperate with the fixed shaft 563 are provided on the web of the first keel 560.
  • the second keel 561 includes a second keel body 565 of a square tube steel, a second sheet-shaped second fixing member 677 fixed to both ends of the second keel body 565, and a second fixing member 677 provided with a fixing shaft 563. Two through holes 676.
  • one side flange 644 of the five first keels 560 is buckled with an elastic snap-type first outer heat insulating strip 645 from the outdoor direction, and two buckles of the first outer heat insulating strip 645. 646 is resisted by the flange 644 facing the face 648 of the flange 647, and the other side flange 647 is buckled from the indoor direction with a first snap-type first outer heat insulation strip 674, and the first outer heat insulation strip 674 has two buckles 649 is resisted by the flange 647 facing the face 650 of the flange 644.
  • a second outer heat insulating strip 651 is inserted from the upper side of the square tubular second keel body 565 of the five second keels 561, and the second outer heat insulating strip 651 is completely covered.
  • the second keel body 565 faces the outdoor face 652, the top face 653, and the face 654 facing the interior.
  • the side wall of the second outer heat insulating strip 651, which is mounted on the uppermost second keel 561, is provided with the top surface 653 and is clamped by the second keel 561 and the roof 557, and the rest is mounted on the second keel 561.
  • the second outer heat insulating strip 651 is provided with a side wall of the top surface 653 which is clamped by the adjacent two second keels 561.
  • Only one compartment module is installed in the box formed by the adjacent two first keels 560 and the two second keels 561, and is installed in the middle of the second row and the fourth row from the bottom to the bottom.
  • the module 562 is a sliding window module, and the remaining compartment module 666 differs from the compartment module module of the embodiment 2 in that it comprises only two layers of glass spacers. From the outdoor, each of the first keel and the second keel is also provided with a decorative strip 667, and the decorative strip 667 is fixed by screws from the inside.
  • the rear wall 554 is different from the left wall 553 in that it includes five vertical H-shaped steel first keels 566, a first keel 567, a first keel 568, a first keel 569, and a first keel 570;
  • the five horizontal H-shaped steel second keels 571 fixed by the right angle iron 579 and the first keel 566 and the right end fixed by the right angle iron and the first keel 567 and one left end are fixed to the first keel 566 by the obtuse angle iron 655
  • the right end is an H-shaped steel keel 572 which is fixed with the first keel 567 and the horizontal direction by the acute angle angle iron 656; the two ends are respectively fixed with the first keel 567 and the first keel 568 by the angle iron fixed five horizontal H-shaped steel second
  • the keel 576 and the keel 578 are respectively symmetrical with the vertical plane of the keel 572 and the keel 574 about the center position of the keel 568.
  • the keel 571, the keel 572, and the keel 567 form a triangular mounting frame, and a triangular module 657 is installed in the mounting frame.
  • the keel 567, the keel 574, the keel 568, and the keel 573 form a trapezoidal mounting frame, and a trapezoidal module 658 is installed in the mounting frame, and a triangular module 659 and a trapezoidal module 660 are symmetrically mounted on the right side of the keel 568.
  • a compartment module is installed in two adjacent vertical keels of the rear wall and two adjacent horizontal keels, and two compartment modules 562 installed in the middle of the second row and the fourth row from the bottom to the bottom are the sliding window modules. .
  • the first floor front wall 551 is different from the left wall 553 in that the front wall 551 includes a first keel 580 of a H-shaped steel in a vertical direction, a first keel 581, a first keel 582, and a first keel 583.
  • the second keel between the first keel 582, the compartment module 588 installed between the first keel 581 and the first keel 582 is a single door module, and the compartment module 588 is pivotally connected by the hinge 589.
  • the second floor front wall 552 is different from the rear wall 554 in that a first keel 590 including a vertical H-shaped steel, a first keel 591, a first keel 592, a first keel 593, and a first keel 594 are disposed.
  • the two ends are respectively fixed with the first keel 590 and the first keel 591 by three angled H-shaped steel keels 595 and one horizontally inclined H-shaped steel keel 596, and the two ends are respectively connected with the first keel 591 and the first keel 592.
  • a partition module is installed in the adjacent two vertical keels of the front wall of the second floor and the adjacent two horizontal keels, and a sliding door is installed between the first keel 591 and the first keel
  • the floor 556 differs from the left wall 553 in that it includes six first keels 661, and five second keels 662 are installed between each adjacent two first keels 661.
  • the first keel 661 is a square tube. Shaped steel. No insulation strips are installed on each of the first keel 661 and the second keel 662.
  • the roof 557 is different from the left wall 553 in that it includes seven first keels 663, and four second keels 664 are installed between each adjacent two first keels 663.
  • the first keel 663 is a square tube.
  • a first outer heat insulation strip 665 which is identical to the second outer heat insulation strip 651 on the first keel 663; a wavy roof is fixed from the room by screws on each of the first keels 663
  • the decorative strip 668, the adjacent two roof decorative strips 668 are combined with the unevenness of the position, the roof decorative strip 668 covers all the first keel 663 and the second keel 664, and is mounted on the first keel 663 and the second keel.
  • the compartment module 588 which is a single door module includes a door 601, two side-by-side fourth keel 602 and a fourth keel 603 symmetrically about the center of the center position, and the fourth keel 602 is resisted.
  • the fourth keel 602 includes a square fourth keel body 610, and abutting edge from the top surface of the fourth keel body 610 is flush with the surface of the fourth keel body 610 facing the outdoor.
  • a through hole 612 that penetrates the left and right ends of the fourth keel body 610 and cooperates with the connecting shaft 606, and penetrates the left and right ends of the fourth keel 602, so that the fourth keel 602 has a relatively uniform wall thickness 613
  • the hollow through hole 614, the hollow through hole 615, and the hollow through hole 616 are protruded from the lower side of the common hole wall 627 of the hollow through hole 614 and the hollow through hole 615, and two symmetric concentric arc convex The outer portion 617 and the curved convex portion 618.
  • the arcuate projection 617, the arcuate projection 618 and the hole wall 627 form a non-closed through hole 619 which is a threaded hole at both ends.
  • the third keel 604 includes a square third keel body 620 protruding from the left side surface of the third keel body 620 to be flush with the third keel body 620 facing the outdoor surface.
  • the side edge 621 protrudes from the right side surface of the third keel body 620 with a positioning rib 622 that is flush with the surface of the third keel body 620 facing the room, and penetrates the upper and lower ends of the third keel 604 to make the third keel 604
  • the hollow through hole 623 having a relatively uniform wall thickness is coaxial with the connecting shaft 606, penetrates the left side wall of the third keel body 620 and is close to the upper end, and is larger than the maximum outer diameter of the hexagonal lock nut 607.
  • the large through hole 624 and the right side wall of the third keel body 620 and the small through hole 625 engaged with the connecting shaft 606 are coaxial with the connecting shaft 608, penetrate the left side wall of the third keel body 620 and are close to the lower end, and are larger than the hex lock.
  • the left end of the connecting shaft 606 is fixed to the hexagonal lock nut 607, and the right end passes through the large through hole 624 and the small through hole 625 of the third keel 604, the through hole 612 of the fourth keel 602, and the third end.
  • the small through hole of the keel 605 is fixed with the hexagonal lock nut 607, and the hexagonal lock nut 607 at the left end is placed in the hollow through hole 623 of the third keel 604 and is resisted by the right side wall of the third keel 604, and the hex lock at the right end
  • the tightening nut 607 is placed in the hollow through hole of the third keel 605 and is resisted by the left side wall of the third keel 605 to fix the fourth keel 602 with the third keel 604 and the third keel 605.
  • the fourth keel 603 is fixed to the third keel 604 and the third keel 605 by the connecting shaft 608 and the hexagonal lock nut 609 in the same manner.
  • the door 601 is pivotally connected to the outdoor facing surface of the third keel 605 by a leaflet 628.
  • a handle 629 is provided on the door.
  • the abutting edge 611 of the fourth keel 602 and the left side of the abutting edge 631 of the fourth keel 603 protrude from the left side of the fourth keel body 610 and the abutting edge 621 of the third keel 604.
  • the right side of the fourth keel body 610 is flush with the right side of the abutting edge 630 of the third keel 605.
  • the through hole 637 through the screw 632 through the abutting edge of the compartment module 588 is fixed to the first keel 581, the first keel 582, and the corresponding two second keels.
  • the sliding window module is different from the sliding window module of the second embodiment in that the abutting edge of the fourth keel 640, the abutting edge of the fourth keel 641, the abutting edge of the third keel 642, and the third keel 643 are different.
  • the resisting edge is flush with the corresponding keel facing the outdoor surface.
  • the compartment module for the door module is a double door module, including a door 681 and a door 682.
  • the door 681 is pivotally connected to the rear side of the fourth keel 684 by a leaflet 683.
  • the door 682 is pivotally attached to the rear side of the fourth keel 686 by a leaflet 685.
  • a handle 687 is provided on the door 681, and a handle 688 is provided on the door 682.
  • the compartment module for the door module is a double door module, including a door 681 and a door 682.
  • the door 681 is pivotally connected to the rear side of the fourth keel 684 by a leaflet 683.
  • the door 682 is pivotally attached to the rear side of the fourth keel 686 by a leaflet 685.
  • a handle 687 is provided on the door 681, and a handle 688 is provided on the door 682.
  • a composite building structure is a glass curtain wall structure including a vertical first fixing member 700 and a main frame structure 701 passing through a rectangular angle iron structure.
  • Ten square tubular steel first keels 703 fixed in a horizontal direction from the left to the right of the floor slab 702, installed in each adjacent two first keels 703, and fourteen square tube steels in the vertical array Keel 704.
  • a compartment module 706 is installed in the block 705 formed by each adjacent two first keels 703 and two adjacent second keels 704 from the outdoor direction.
  • the decorative frame is not installed in the portion of the building frame structure facing the interior that is in contact with the main frame structure 701.
  • the first outer girders 707 are elastically snap-fitted from the outdoor direction on the ten first keels 703, and the first outer heat insulating strips 707 and the first keel 703 are oriented.
  • the outer surface 708, the left side surface 709 and the right side surface 710 are fitted together.
  • the two buckles 711 of the first outer heat insulation strip 707 are resisted by the first keel 703 facing the indoor surface 712, and the first outer heat insulation strip 707 is completely covered.
  • the four second keels 704 are tightly fitted from the outdoor direction to the second outer heat insulation strip 713, which is buckled with an elastic snap type, and the second outer heat insulation strip 713 and the second keel 704.
  • the outer surface 714, the top surface 715 and the bottom surface 716 are fitted together.
  • the two buckles 717 of the second outer heat insulation strip 713 are resisted by the second keel 704 facing the indoor surface 718, and the second outer heat insulation strip 713 completely covers the second surface.
  • the top surface of the keel 704 faces the outdoor surface and the bottom surface.
  • the first outer heat insulating strip 707 and the second outer heat insulating strip 713 which are joined at the four corners of each of the blocks 705 form an accommodating cavity 720 for accommodating the right angle iron fixing member 719.
  • a right angle angle iron fixing member 719 fixed to the first keel 703 and the second keel 704 that are in contact with each other is disposed in the accommodating chamber 720, and the first keel 703 and the second keel 704 are connected by a right angle angle iron fixing member. 719 is fixed together.
  • the two third keels 721 of the partition module 706 are provided with a card slot 722 on the outdoor surface and a card slot 723 on the surface facing the indoor, in the compartment module 706.
  • the two fourth keels 724 are provided with a card slot (not shown) on the face facing the outside and a card slot 725 on the face facing the room. a decorative strip to the corresponding one The first keel 703 or the second keel 704.
  • the two elastic buckles 727 of the outer decorative strip 726 mounted on the outermost first keel 703 are fastened in the card slot 722 of the outer third keel 721 of the outer compartment module 706; the second outermost side is installed
  • the two elastic buckles 731 of the decorative strip 730 of the keel 704 are fastened in the card slot on the outer surface of the fourth keel 724 on the outer side of the outermost compartment module 706; the first keel installed in the middle position
  • the elastic buckles of the 703 outdoor decorative strips 734 are two groups, that is, an elastic buckle group 735 and an elastic buckle group 736. Each group includes two elastic buckles, and the elastic buckle group 735 and the elastic buckle group 736 are buckled.
  • the adjacent slot 702 is adjacent to the slot 722 of the third keel 721;
  • the elastic buckle of the trim strip 737 installed in the first keel 703 installed at the intermediate position is two sets, that is, the elastic snap group 738 and
  • Each of the elastic buckle groups 739 includes two elastic buckles, and the elastic buckle group 738 and the elastic buckle group 738 are fastened in the slot 723 of the adjacent third keel 721 of the adjacent compartment module 706;
  • the elastic buckles of the decorative strips 740 of the second keel 704 installed in the intermediate position are two sets.
  • the elastic buckle group 741 and the elastic buckle group 742 each include two elastic buckles, and the elastic buckle group 741 and the elastic buckle group 742 are fastened to the adjacent fourth keel 724 of the adjacent compartment module 706.
  • the elastic buckle of the decorative strip 743 in the second keel 704 installed in the intermediate position is two sets, that is, the elastic buckle group 744 and the elastic buckle group 745, each group includes two The elastic buckles, the elastic buckle sets 744 and the elastic buckle sets 745 are fastened in the card slots 725 of the adjacent fourth keels 724 of the adjacent compartment modules 706 facing the outdoor surface.
  • the ten square tubular steel first keels include a first keel 772, a first keel 773, a first keel 774, and a first keel 775 arrayed horizontally from left to right.
  • a compartment module 796 each of which is mounted between the first keel 772 and the first keel 773, is mounted within each of the boxes between the first keel 776 and the first keel 777 Compartment module 797, compartment module 798 installed in each box between first keel 780 and first keel 781, nine second keels 782 mounted on the same line, and nine second on the same line
  • compartment module 801 in each of the nine second keels 790 mounted on the same line and nine second keels 791 on the same line, nine second keels 794 and the same line mounted on the same line The compartment module 802 in each box between the nine second keels 795 is installed from the outside, protrudes the first keel and the second keel indoors, and faces the interior of the compartment module installed indoors.
  • the partition modules that are resisted by the main frame are installed indoors, protrude the first keel and the second keel outdoors, and the partition module 796 installed from the outdoor, the partition module 797, the partition module 798, the compartment module 799, The compartment module 800, the compartment module 801, and the compartment module 802 are flush toward the outdoor surface.
  • a composite building structure includes a first T-shaped 820 of nine T-shaped steels installed vertically, mounted on each adjacent two first keels 820, in a vertical direction.
  • a right angle iron fixing member 823 fixed to the first keel and the second keel is attached, and the first keel 820 and the second keel 821 are fixed by a right angle iron fixing member 823.
  • the flange 824 of the nine first keels 820 is buckled with an elastically snapped first outer heat insulating strip 825 toward the outdoor direction, and the two snaps 826 of the first outer heat insulating strip 825 are oriented by the flange.
  • the face 827 in the room resists.
  • the flange 828 of the nine second keels 821 is buckled with an elastic snap-type second outer thermal insulation strip 829 toward the outdoor direction, and the two outer buckles 829 of the second outer thermal insulation strip 829 are flanged 828.
  • the compartment module 833 is sealed toward the periphery of the exterior by a glass glue (not shown).
  • the decorative strip 838 installed outdoors is fixed with the first keel 820 fixed from the indoor lock screw, and is mounted on the outdoor decorative strip 839 with the second keel 821 through the lock screw from the inside.
  • a card slot 837 is disposed on opposite sides of the two third keels 836 of the partition module 833, and two slots 835 are disposed on opposite sides of the two fourth keels 834, and are installed in corresponding intermediate positions in the room.
  • the two buckles of the decorative strip 831 of the first keel 820 are installed in the slots 837 opposite to the third keel 836 of the two adjacent compartment modules 833, and are decorated with the second keel 821 installed at the corresponding intermediate position in the room.
  • Article (not shown) The two snaps are mounted in the slots 835 opposite the fourth keel 834 of the two adjacent compartment modules 833.
  • the first outer rib 840 is tightly engaged with the first outer heat insulating strip 841 buckled in the direction parallel to the outdoor direction, and the first outer heat insulating strip 841 completely covers the first keel 840.
  • the second keel 842 is tightly fitted with a second outer thermal insulation strip 843 that is elastically snapped from a direction parallel to the outdoor direction, and the second outer thermal insulation strip 843 completely covers the second keel 842.
  • the first outer heat insulating strip 851 having a flat shape is dispensed on the surface of the first keel 850 of the right square tubular steel toward the outdoor surface.
  • a first inner spacer 852 having a flat shape is pasted on the surface facing the indoor, and the right outer surface of the first outer heat insulation strip 851 and the first inner heat insulation strip 852 is aligned with the right side surface 853 of the first keel 850.
  • the left outer surface of the first outer heat insulating strip 851 and the first inner strip 852 protrudes from the left side surface 854 of the first keel 850 to a height slightly larger than the thickness of the angle iron 855, so that the angle is fixed by the angle iron 855. Iron 855 will not be exposed.
  • a first outer heat insulation symmetrical with the vertical faces of the first outer heat insulating strip 851 and the first inner insulating strip 852 with respect to the center position thereof is pasted and glued.
  • Strip 857 and first inner spacer 858 are pasted and glued.
  • the first keel 859 of all the square tubular steels at the intermediate position is pasted to the outdoor surface, and the flat first outer heat insulating strip 860 is pasted, facing the indoor surface.
  • the first inner spacer 861 is affixed with a flat shape, and the right outer surface of the first outer heat insulating strip 860 and the first inner insulating strip 861 protrudes from the right side surface 863 of the first keel 859 by a height slightly larger than the angle iron 855
  • the thickness of the first outer insulating strip 860 and the left side surface of the first inner insulating strip 861 protruding from the left side surface 864 of the first keel 859 is slightly larger than the thickness of the angle iron 855.
  • a second outer heat insulating strip 866 is affixed to the outer surface of the square rib 865 of the upper square tubular steel, and the second outer heat insulating strip 866 is affixed to the surface of the square.
  • the height is slightly larger than the thickness of the angle iron 855 so that the angle iron 855 is not exposed when the angle iron 855 is fixed.
  • Second inner spacer 867 On the lower square tubular steel second keel 875, a second outer thermal insulation strip 866 respectively symmetrical with the horizontal outer surface of the second outer thermal insulation strip 866 and the second inner septum 867 with respect to its central position is dispensed. Second inner spacer 867.
  • the second keel 870 of all the square tubular steels at the intermediate position is pasted on the outdoor surface, and the second outer heat insulating strip 871 having a flat shape is pasted, and the adhesive is pasted toward the indoor surface.
  • a second inner spacer 872 having a flat shape, the top surface of the second outer heat insulating strip 871 and the second inner spacer 872 protruding from the top surface 873 of the second keel 870 is slightly higher in height than the angle iron 855
  • second The bottom surface of the outer heat insulating strip 871 and the second inner partition 872 projecting from the bottom surface 874 of the second keel 870 is slightly larger than the thickness of the angle iron 855.
  • the structure of the spacer module 875 is the same as that of the third embodiment.
  • the spacer module is different from the spacer module of the first embodiment in that the vertical row of the interlayer module includes a partition 880, a partition 881, and a roller blind 882.
  • the third keel 883 and the third keel are installed horizontally, and the fourth keel 885 and the fourth keel 886 are vertically installed.
  • the third keel 883, the third keel 884, the fourth keel 885, and the fourth keel 886 are respectively provided with two positioning grooves respectively matched with the partition 880 and the partition 881.
  • a semi-arc-shaped accommodating groove 887 for accommodating the roller blind 882 is provided, and a card slot 888 for mounting an elastic snap-type decorative strip is provided on the surface facing the interior of the third keel 883.
  • a receiving groove 889 for receiving the roller blind 882 is disposed at the top of the third keel 884, and a card slot 890 for mounting the elastic snap-type decorative strip is disposed on the surface of the third keel 884 facing the room.
  • a card slot 891 is provided on the face of the fourth keel 885 facing the room.
  • the fourth keel 886 and the fourth keel 885 are symmetrical about the vertical plane of their center position.
  • the roller blind shaft mounting of the roller blind is rotatably pivotally coupled to the fourth keel 885 and the fourth keel 886, respectively.
  • the partition module is different from the partition module in Embodiment 1, in that the partition module includes two outer layers of opaque partitions, that is, a decorative panel 896, a decorative panel 897, and a decorative panel 896 and a decorative panel 897.
  • a gypsum splint 898 that is bonded to the surface opposite to the decorative panel 896 and the decorative panel 897 is also provided in the formed sealed space.
  • the partition module includes two layers of glass plates 900.
  • the two third keels 901 and the fourth keel 902 have the same structure, and the third keel 901 includes a horizontal structure.
  • the keel body 903 having a square cross section is provided with two positioning grooves 904 which cooperate with the glass plate 900 on the left side surface of the keel body 903, and further includes a hollowing out of the keel body 903 so that the wall thickness of the keel body 903 is relatively uniform.
  • the through hole 905 is provided with abutting edge 906 that is flush with the rear side surface of the keel body 903 on the right side surface of the keel body 903.
  • the two end faces of the adjacent two third keels 901 and the fourth keel 902 are spliced at 45°, and are fixed together by the angle iron 907 accommodated in the stencil hole 905.
  • the first outer heat insulating strip 911 is inserted from the outdoor side on the first keel 910 of the right square tubular steel, and the first outer plug is inserted from the indoor side.
  • the first inner spacer 912 of the heat insulating strip 911 is symmetrical about a vertical plane of its central position.
  • the first outer heat insulation strip 911 includes a U-shaped first outer heat insulation strip body that cooperates with a portion of the right side surface of the first keel 910, the outdoor facing surface, and a portion of the left side surface, and the first outer heat insulating strip body faces the outdoor
  • the surface of the first outer heat-insulating strip body is flush and perpendicular to the convex portion 913 having a height slightly larger than the thickness of the angle iron.
  • the first outer insulating strip and the first outer insulating strip 911 and the first inner spacer 912 are respectively symmetric with respect to the vertical plane of the central position of the first outer insulating strip 911 and the first inner spacer 912.
  • An internal barrier is provided on the left side of the square tubular steel.
  • a first outer heat insulating strip 915 is inserted from the outdoor side on the first keel 914 of all the square tubular steels at the intermediate position, and the first outer heat insulating strip 915 is inserted from the indoor side with respect to the center thereof.
  • a first inner spacer 916 that is symmetrical with respect to the vertical plane of the position.
  • the first outer heat insulation strip 915 includes a U-shaped first keel first outer heat insulation strip body that cooperates with a portion of the right side surface of the first keel 914, the outdoor facing surface, and a portion of the left side surface, and the first outer heat insulation strip a convex portion 917 protruding from the main body toward the outdoor surface and perpendicularly protruding from the left side surface of the first outer heat insulating strip body and having a height slightly larger than the thickness of the angle iron and a convex portion and a height of the right side surface of the vertical first outer heat insulating strip body A projection 918 that is slightly larger than the thickness of the angle iron.
  • a second outer heat insulating strip 920 is inserted from the outdoor side on the second keel 919 of all the upper square tubular steels, and the second outer heat insulating strip 920 is inserted from the indoor side with respect to the center thereof.
  • a second inner spacer 921 that is symmetrical with respect to the vertical plane of the position.
  • the second outer heat insulating strip 920 includes a U-shaped second outer heat insulating strip body that cooperates with a partial top surface of the second keel 919, an outdoor facing surface, and a partial bottom surface, and the second outer heat insulating strip body faces the outdoor surface.
  • a flat portion 922 is formed on the bottom surface of the second outer heat insulating strip body and has a height slightly larger than the thickness of the angle iron.
  • a second outer heat insulation strip and a second inner partition respectively symmetrical with the horizontal outer surface of the second outer heat insulation strip 920 and the second inner partition strip 921 with respect to the center position thereof are inserted. article.
  • the second keel 923 of all square tubular steels at the intermediate position is inserted with the second outer heat insulating strip 924 from the outdoor side, and the second outer heat insulating strip 924 is inserted from the indoor side with respect to its center position.
  • the second inner spacer 925 is symmetrical with respect to the vertical plane.
  • the second outer heat insulating strip 924 includes a U-shaped second outer heat insulating strip body that cooperates with a partial top surface of the second keel 923, a surface facing the outdoor surface, and a partial bottom surface, and the second outer heat insulating strip body faces the outdoor surface.
  • the top surface of the second outer heat insulating strip body is convex, the protrusion 926 having a height slightly larger than the thickness of the angle iron, and the bottom surface of the vertical second outer heat insulating strip body 933 are protruded, and the height is slightly larger than the thickness of the angle iron. Projection 927.
  • the first outer heat insulation strip mounted on the first keel 930 includes a first outer heat insulation strip outer layer 931 whose outer layer is metal and a plastic inner layer.
  • the first outer heat insulation strip inner layer 932 includes a flat outer first heat insulation strip inner layer body, and a card protruding from the first outer heat insulation strip inner layer body toward the indoor surface and buckled in the first resisting groove 933
  • the buckle 934 and the buckle 936 fastened in the first abutting groove 935 are provided with a recessed abutting portion 937 connected to the left side surface of the buckle 934 and the surface facing the indoor body, and the buckle 936 is provided on the buckle 936.
  • a recessed abutting portion 938 that communicates with the right side surface of the buckle and the surface facing the room.
  • the first outer heat insulation strip outer layer 931 comprises a flat outer first heat insulation strip outer body body, and the elastic buckle is formed by bending the outer layer of the first outer heat insulation strip toward the indoor arc and then folding back to the right.
  • the elastic buckle 940 is formed by bending the outer layer of the first outer heat-insulating strip toward the inner side of the indoor direction and then folding back to the left.
  • the elastic buckle 939 is fastened in the recessed resisting portion 937, and the elastic buckle 940 Fastened on the recessed resisting portion 938.
  • the left side surface 941 of the first keel 930 protrudes from the left side surface of the first outer heat insulating strip outer layer 931, and the right side surface 942 protrudes from the right side surface of the first outer heat insulating strip outer layer 931.
  • the structure and installation of the first inner spacer 943 mounted on the first keel 930, the second outer thermal insulation strip 945 mounted on the second keel 944, and the second inner spacer 946 The first outer insulating strip on the first keel 930 has the same structure.
  • the strip includes a first outer trim strip outer layer 947 having a metal piece on the outside and a first outer trim inner layer 948 having an inner layer being a plastic piece.
  • the first outer trim inner layer 948 is different from the first outer trim of the first embodiment in that a recessed resist 950 is provided on the cover 949 and a recessed resist 952 is formed on the cover 951.
  • the first outer decorative strip outer layer 947 includes a flat outer first decorative strip outer layer body, which is bent from the outer layer of the first outer decorative strip toward the one side and then folded back toward the first outer decorative strip outer body.
  • the elastic buckle 953 is formed by bending and re-folding the elastic buckle 954 from the outer layer of the first outer decorative strip toward the same side as the elastic buckle 953, and the elastic buckle 953 is buckled to resist In the portion 950, the elastic buckle 954 is fastened on the recess resisting portion 952.
  • the first exterior trim strip includes a first outer trim strip outer layer 955 having a metal outer portion and a first outer trim inner layer 956 having an inner layer of plastic material.
  • the first outer trim inner layer 956 is different from the first outer trim member of the first embodiment in that a recessed resist 958 is provided on the cover 957 and a recessed resist 960 is provided on the cover 959.
  • the first outer decorative strip outer layer 955 includes a flat first outer decorative strip outer layer body, which is bent from the outer layer of the first outer decorative strip toward the one side and then folded back toward the outer layer of the first outer decorative strip.
  • the elastic buckle 961 is formed by bending and re-folding the elastic buckle 962 from the outer layer of the first outer decorative strip to the inner side of the elastic buckle 961 in the direction of the inner side of the outer decorative strip, and the elastic buckle 961 buckle In the recessed abutting portion 958, the elastic snap 962 is fastened to the recessed abutting portion 959.
  • the structure of the first keel and the second keel of the wall 980, the wall 981, the wall 982, the wall 983, the roof 984, the floor 985 and the left wall of the embodiment 10 are fixed, the fixing manner of the module, and the fixing manner of the module. the same.
  • a sash window module 996 and a draft module 997 are mounted on the wall 980, and a sliding door module 998 is mounted on the wall 981.
  • a towel rack 987 is mounted on the compartment module 986 of the wall 982, on the compartment module 988 of the wall 982.
  • a shower head 989 is installed, a lamp 991 is mounted on the compartment module 990 of the wall 983, a switch 993 is mounted on the compartment module 992 of the wall 983, and a lavatory compartment module is mounted on the floor 985 (not shown)
  • a locker 994 is installed between the wall 983 and the floor 985, and a sink 995 is installed between the wall 982, the wall 983, and the floor 985.
  • the toilet of this embodiment can also be designed with different functional modules or different functional components as needed.
  • the first outer thermal insulation strip 1000 is opposite to the inner side of the first outer thermal insulation strip 1000, and is further provided with a resisting recess 1001.
  • the heat insulating strips 1004 are opposite to each other and close to the indoor side, and are further provided with a resisting groove 1005.
  • the utility model further comprises an inner recess of the second outer heat insulating strip 1004 and a second keel.
  • the first outer thermal barrier strip 1004 and the second outer thermal barrier strip 1004 face the interior of the second elastic snap-type inner spacer 1007.
  • a U-shaped third spacer 1021 is attached to the side of the third keel 1020 facing the outdoor, and a U-shaped third spacer 1022 is attached to the side facing the indoor.
  • a U-shaped fourth spacer 1024 is attached to the side of the fourth keel 1023 facing the outdoor, and a U-shaped fourth spacer 1025 is attached to the outdoor facing side.
  • a groove 1027 that penetrates the third keel body 1026 up and down is provided on the left side surface of the third keel body 1026 of the third keel 1020 near the outdoor side, and the right side surface is provided with the upper and lower sides.
  • the third spacer 1021 is fastened to the third keel 1020 from the outdoor direction perpendicular to the third keel 1020 toward the outdoor surface, and the third buckle 1029 on the left side of the third spacer 1021 is received in the groove 1027 and is grooved.
  • the left side surface 1031 of the third buckle 1029 is flush with the left side surface 1032 of the third keel body 1026, and the third buckle 1033 of the right side of the third spacer 1021 is received in the concave side.
  • the groove 1028 is resisted by the groove 1028 near the outdoor groove wall 1034, and the right side surface 1035 of the third buckle 1033 is flush with the right side surface 1036 of the third keel body 1026.
  • a groove 1037 that penetrates the third keel body 1026 up and down is disposed on a left side surface of the third keel body 1026 near the indoor side, and a third side is provided on the right side of the abutting edge 1038 of the third keel 1020.
  • the third spacer 1022 is fastened to the third keel 1020 from the direction of the third keel 1020 toward the indoor, and the third buckle 1040 and the third buckle 1041 of the third spacer 1022 are respectively buckled in the groove 1037.
  • the left and right sides of the third spacer 1022 are flush with the left and right sides of the third keel 1020.
  • a groove 1042 extending through the fourth keel body 1046 is provided on the top surface of the fourth keel body 1046 of the fourth keel 1023 near the outdoor, and the fourth keel body is disposed on the bottom surface.
  • 1046 recess Slot 1043 The fourth spacer 1024 is fastened from the outdoor direction to the fourth keel 1023 of the fourth keel 1023 toward the outdoor surface.
  • the fourth buckle 1044 and the fourth buckle 1045 of the fourth spacer 1024 are respectively fastened in the groove 1042.
  • the top surface and the bottom surface of the fourth spacer 1024 are flush with the top surface and the bottom surface of the fourth keel 1023, respectively.
  • a recess 1048 extending through the fourth keel body 1046 is disposed on a top surface of the abutting edge 1047 of the fourth keel 1023, and a fourth keel body 1046 is disposed on the bottom surface of the fourth keel body 1046 near the indoor side.
  • the fourth spacer 1025 is fastened to the fourth keel 1023 from the direction of the outdoor vertical keel 1023 toward the outdoor, and the fourth buckle 1050 and the fourth buckle 1051 of the fourth spacer 1025 are respectively fastened in the groove 1048.
  • the top surface and the bottom surface of the fourth spacer 1024 are flush with the top surface and the bottom surface of the fourth keel 1023, respectively.
  • a third spacer symmetrical with respect to the vertical plane of the center position of the third spacer 1021 and the third spacer 1022 mounted on the third keel 1020 is mounted on the third keel 1052. 1053, the third spacer 1057.
  • a fourth spacer 1055 and a fourth spacer symmetrical with respect to a vertical surface of the fourth spacer 1024 and the fourth spacer 1025 respectively mounted on the fourth keel 1023, respectively, are mounted on the fourth keel 1054. 1056.
  • the spacer is a three-layer transparent glass plate 1080, a glass plate 1081, and a glass plate 1082.
  • the glass plate 1080 is completely covered with respect to the surface of the glass plate 1081.
  • the flexible plastic film 1083 of the glass plate 1080 has a flexible plastic film 1083 completely covering the glass plate 1080 on the surface of the glass plate 1080 opposite to the glass plate 1080, and a completely covered glass plate is attached to the surface of the glass plate 1081 opposite to the glass plate 1080.
  • a flexible plastic film 1084 of 1081 is attached with a flexible plastic film 1085 covering the glass plate 1081 on the surface of the glass plate 1081 opposite to the glass plate 1082, and a glass plate 1082 is completely covered on the surface of the glass plate 1082 opposite to the glass plate 1081.
  • the flexible plastic film in this embodiment may also be a plastic plate, cardboard or the like.
  • the first outer heat insulating strip 1101 is attached only to the surface of the first keel 1100 facing outward, and the upper keel 1100 is provided at the center of the surface facing the indoor.
  • the first accommodating groove 1102 that penetrates the two ends of the first keel 1100 and the like.
  • the second outer heat insulating strip 1104 is attached only to the surface of the second keel 1103 facing outward, and the upper end of the second keel 1103 facing the indoor surface is provided with the upper and lower sides of the second keel 1103.
  • a second accommodating groove 1105 of a wire or the like is mounted.
  • the first accommodating groove 1102 on the first keel 1100 and the second accommodating groove 110 on the second keel 1103 are connected to each other.
  • the main body frame 1120 of the present embodiment is two floors, and the first straight keel is composed of two first keels, that is, a first keel 1121 and a first keel 1122.
  • a fixing member 1123 is embedded in the main body frame 1120, and a connecting member 1124 is inserted into the joint of the first keel 1121 and the first keel 1122.
  • the connecting member 1124 is fixed to the first keel 1121 and the first keel 1122 by screws.
  • the first keel 1121 and the first keel 1122 are both fixed to the fixing member 1123 by screws and welding.
  • the composite building structure of the present invention can also use a composite wall or the like in the room.
  • the arrangement in which the first keel and the second keel of the present invention are arranged in different sizes is fully realized by the embodiment disclosed in the present invention and will not be described in detail.

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Abstract

一种组合建筑结构,包括第一龙骨(3、4、5、6),第二龙骨(9-20),隔层模块(26);相邻的两条第一龙骨(3、4、5、6)和相邻的两条第二龙骨(9-20)形成安装隔层模块(26)的方框;在隔层模块(26)上设有抵挡边(60、67);还包括与第一龙骨(3、4、5、6)固定、完全覆盖相应的第一龙骨(3、4、5、6)朝向室外的面的型材第一外隔热条(1),和与第二龙骨(9-20)固定、完全覆盖相应的第二龙骨(9-20)朝向室外的面的型材第二外隔热条(7);与第一龙骨(3、4、5、6)对应的第一装饰条和与第二龙骨对应的第二装饰条;第一装饰条覆盖第一外隔热条(1)和相邻的两隔层模块(26)的相邻两第三龙骨(51、52)或第四龙骨(53、54),第二装饰条覆盖第二外隔热条(7)和相邻的两隔层模块(26)的相邻两第四龙骨(53、54)或第三龙骨(51、52)。该结构优点是断桥式隔热、隔热隔音效果好、安装方便快捷、工艺简单、成本低,主龙骨的强度和刚性好,特别适合幕墙。

Description

一种组合建筑结构、 房子、 卫生间 技术领域
本发明涉及一种建筑结构、 房子、 卫生间, 特别是涉及一种组合墙、 或组合窗、 或 房子、 或卫生间等。
背景技术
在寒冷地区 (一 30°C以下), 为了增强建筑物室内保温性能, 往往采用双层玻璃窗。 现有的双层玻璃窗有木制窗、 塑料窗和铝合金窗。 其中, 从使用性能(例如使用寿命)和 外观效果来看, 铝合金窗最受用户欢迎。 但是, 现有的双层玻璃铝合金窗均采用彼此独立 的内外两层窗框和两层窗扇, 即双框和双层窗扇, 不仅安装不方便, 铝合金耗材多, 而且 铝合金窗框因导热性好而容易使室内热量散失到室外, 同时室内窗框面易产生霜露。现有 的 H型钢、 C型钢、 T型钢、 方管钢钢型材, 由于外观不美观, 外露容易生锈, 不能作为 现有建筑的外露龙骨使用, 如幕墙的龙骨使用。 现有的幕墙一般采用铝合金龙骨结构, 而 铝合金的刚性不好。
申请号为 03230880. 9的发明专利中, 公开了一种钢塑双玻隔音保温节能窗扇, 由钢 窗料形成四边框的窗扇框架, 在钢窗料的外侧套有塑料基座, 塑料基座从端部插入套在钢 窗料上, 双玻组件上设有卡槽, 基座上设有与双玻组件的卡槽配合的卡扣, 通过基座上的 卡扣扣在双玻组件的卡槽内将双玻组件安装在方框内,最外侧的盖板从端部插入套在钢窗 料上且一侧的卡扣扣在双玻组件的卡槽内, 中间位置的双头盖板的两个卡扣扣在相邻两双 玻组件的的卡槽内。 该实用新型, 由于基座从端部插入套在钢窗料, 插入时移动距离大, 由于钢窗材料长, 会变形, 基座为塑料型材, 变形更大, 一方面插入费时费力, 安装极不 方便, 插入时容易损坏塑料基座; 另一方面基座和钢窗料必须较大间隙配合才能插入, 这 样基座承受的来自双玻组件、钢窗料的重力和锁紧力等无法传递到钢窗料上, 全部由基座 承受, 对于基座的需受力的部位, 由于基座薄, 又是塑料件, 容易在来自双玻组件、 钢窗 料的重力和锁紧力等的作用下压裂、 损坏。 双玻组件仅依靠弹性组件来固定, 由于卡扣与 卡槽的配合有间隙, 卡扣易弹性变形, 固定效果不好, 密封效果不好, 结构复杂。 还有, 由于最外侧的盖板从端部插入套在钢窗料上, 因此在安装双玻组件前需将盖板和双玻组件 安装在一起, 盖板又需对双玻组件抵挡, 因此双玻组件无法安装在四边框内, 也就是该技 术方案无法实现, 无法从单侧安装双玻组件。
申请号为 97215717. 4的实用新型专利中, 公开了一种双玻璃节能保温铝合金窗, 它 包括由铝合金型材制成的窗框和窗扇、 窗扇启闭装置以及安装在窗框和窗扇上的两层玻 璃, 窗框为一个联接成整体的框架, 窗扇也为一个联接成整体的框架, 框左右边和框上下 边的铝合金型材剖开后夹入保温隔板然后联接成一个整体,在两层玻瑞之间安装有两道密 封橡胶条, 窗扇与窗框之间也装有两道密封橄胶条。 保温隔板降低了窗框的导热性能, 既 能起保温节能作用, 又可防止室内窗框面产生霜露。 该实用新型为了解决铝合金型材的框 架的隔热问题,采用框左右边和框上下边的铝合金型材剖开后夹入保温隔板然后联接成一 个整体的技术方案, 结构复杂, 成本高, 隔热效果还不好。
申请号为 200710143377. 2的发明专利中, 公开了一种高保温内开 /外开式复合型材 窗体, 固定窗体与活动窗体的两侧面粘贴有保温复合材料,且铝合金型材与保温复合材料 的接触的表面上设有铝合金肋骨。 保温复合材料通过铝合金肋骨和粘贴固定在金属型材 上, 由于安装时铝合金肋骨看不见, 安装时很难对准, 安装困难; 使用胶水, 不环保, 工 作量大; 这种安装方式保温材料和铝合金肋骨易脱落, 当保温复合材料损坏时, 更换不方 便。
申请号为 201120005448. 4的发明专利中, 公开了一种铝合金注胶复合隔热型材, 包 括第一铝合金型材, 复合有第二铝合金型材, 第一铝合金型材和第二铝合金型材均为带腔 体的结构, 且二腔体的对应侧边均设有注胶槽口, 通过注胶连接件连接为一体成断桥隔热 式结构。 这种隔热断桥结构的铝合金型材, 工艺复杂, 成本高, 由于起支撑作用的主龙骨 的第一铝合金型材和第二铝合金型材有胶连接才能形成一根完整的可以使用的型材,铝合 金型材的用量必须大大增加才能达到强度和刚度要求。
发明内容
本发明要解决的第一个技术问题是提供一种断桥式隔热、 隔热隔音效果好、 安装方便 快捷、 工艺简单、 主龙骨的强度和刚性好、 特别适合幕墙、 成本低的组合建筑结构。
本发明要解决的第二个技术问题是提供一种断桥式隔热、 隔热隔音效果好、 安装方便 快捷、 工艺简单、 主龙骨的强度和刚性好、 特别适合幕墙、 成本低的房子。
本发明要解决的第三个技术问题是提供一种断桥式隔热、 隔热隔音效果好、 安装方便 快捷、 工艺简单、 主龙骨的强度和刚性好、 特别适合幕墙、 成本低的卫生间。
一种组合建筑结构, 包括主龙骨、 隔层模块; 主龙骨包括两条以上平行的金属第一龙 骨, 两条以上与第一龙骨垂直、 两端被两条第一龙骨抵挡、 与两条第一龙骨固定的金属第 二龙骨,隔层模块;相邻的两条第一龙骨和相邻的两条第二龙骨形成安装隔层模块的方框; 隔层模块包括两条并排平行的第三龙骨, 与第三龙骨垂直、 两端与两条第三龙骨固定的两 条第四龙骨, 安装在两条第三龙骨、 两条第四龙骨间的两层以上相隔设定距离的隔层, 相 邻的两隔层间形成密闭空间; 其特征在于: 在隔层模块的两条第三龙骨相背的两个外侧面 上和两条第四龙骨相背的两个外侧面上设有与相应的第三龙骨和相应的第四龙骨一体成 型的抵挡边; 还包括与第一龙骨固定、 完全覆盖相应的第一龙骨朝向室外的面的型材第一 外隔热条, 和与第二龙骨固定、 完全覆盖相应的第二龙骨朝向室外的面的型材第二外隔热 条; 在一个方框内仅从一侧安装一个隔层模块; 隔层模块的第三龙骨和第四龙骨为塑胶型 材, 或隔层模块的第三龙骨和第四龙骨为金属件, 则隔层模块还包括与第三龙骨固定、 完 全覆盖相应的第三龙骨朝向室外的面的型材第三外隔热条和与第四龙骨固定、完全覆盖相 应的第四龙骨朝向室外的面的型材第四外隔热条;紧固件穿过隔层模块上的抵挡边与相应 的第一龙骨和 /或第二龙骨固定将隔层模块与相应的第一龙骨和第二龙骨固定; 隔层模块 从室内安装,隔层模块朝向室外的一侧与第一外隔热条和第二外隔热条齐平或凸出第一外 隔热条和第二外隔热条, 或隔层模块从室外安装, 隔层模块朝向室内的一侧与第一龙骨和 第二龙骨齐平或凸出第一龙骨和第二龙骨; 在朝向室外的一侧、还包括与第一龙骨对应的 第一装饰条和与第二龙骨对应的第二装饰条;第一装饰条覆盖第一外隔热条和相邻的两隔 层模块的相邻两第三龙骨或第四龙骨,第二装饰条覆盖第二外隔热条和相邻的两隔层模块 的相邻两第四龙骨或第三龙骨。
作为方案一的改进, 第一龙骨、 第二龙骨为金属型材; 第一外隔热条和第二外隔热条 为 u形弹性卡扣式隔热条; 在第一龙骨靠近室外一侧的相背两侧面上设有第一卡槽, 第一 外隔热条的两个卡扣从室外方向侧插扣在对应的两个第一卡槽内,第一龙骨凸出安装在其 上的第一外隔热条的两卡扣相背的两侧或与安装在其上的第一外隔热条的两卡扣相背的 两侧齐平; 在第二龙骨靠近室外一侧的相背的两侧面上设有第二卡槽, 第二外隔热条的两 个卡扣从室外方向侧插扣在对应的两个第二卡槽内,第二龙骨凸出安装在其上的第二外隔 热条的两卡扣相背的两侧或与安装在其上的第二外隔热条的两卡扣相背的两侧齐平。由于 外隔热条与龙骨弹性卡扣式配合, 通过侧向扣在相应的龙骨上, 安装方便快捷、 可靠, 第 一外隔热条和第二外隔热条老化后更换方便。在第一龙骨和第二龙骨上设有卡槽, 第一外 隔热条和第二外隔热条的两个卡扣就能关于其中心对称,第一外隔热条和第二外隔热条侧 向扣在相应的龙骨上, 插入时用力容易平衡, 操作方便, 动作可靠, 减少将外隔热条装在 龙骨上时因用力过大或操作不当外隔热条开裂, 由于插入距离极短, 受龙骨和外隔热条变 形影响小, 因此制造精度低, 降低成本, 比从端部将外层隔热条套在内层龙骨上省时省力, 操作简单;由于外隔热条可与龙骨在受力部位无间隙配合,或外隔热条可与受力部位避空, 对于来自龙骨、 外隔热条模块的重力、 锁紧力, 可由外隔热条传递到龙骨上, 可完全避免 外隔热条受力, 因此受力更好, 避免外隔热条因受力损坏, 提高使用寿命, 整体强度高、 刚性好。
作为方案一的改进, 第一龙骨和 /或第二龙骨为方管型钢或 C型钢或 H型钢; 第一外 隔热条和第二外隔热条为 U形隔热条或弹性卡扣式 U形隔热条;第一外隔热条侧插紧配合 安装在第一龙骨上, 第一外隔热条完全覆盖第一龙骨的三个面; 第二外隔热条侧插紧配合 安装在第二龙骨上, 第二外隔热条完全覆盖第二龙骨的三个面。 这种结构的外隔热条, 安 装可靠; 当外隔热条与龙骨朝向室外的面平行的方向侧插扣在龙骨上时, 一条龙骨仅需一 条隔热条就可完全覆盖龙骨朝向室内的面和朝向室外的面, 节省材料成本和安装成本, 且 隔热效果好。 由于安装有隔条, 龙骨不需表面处理。 龙骨采用标准型材钢, 强度刚性好, 特别适合幕墙。
作为方案一的改进, 第一装饰条通过紧固件固定在第一龙骨上或隔层模块上, 或第一 装饰条为弹性卡扣式装饰条, 扣在第一龙骨上或隔层模块上; 第二装饰条通过紧固件固定 在第二龙骨上或隔层模块上, 或第二装饰条为弹性卡扣式装饰条, 扣在第二龙骨上或隔层 模块上; 第一外隔热条点胶式粘贴在第一龙骨上的平板状的隔热条, 第二外隔热条点胶式 粘贴在第二龙骨上的平板状的隔热条。 采用平板状的外隔热条, 结构简单、 成本特别低; 由于在第一外隔热条和第二外隔热条的外侧固定有装饰条, 装饰条对隔热条有固定作用, 外隔热条就可点胶式粘贴在相应的龙骨上不会掉下来, 大大减少粘胶的用量和粘贴时间。
作为方案一的改进, 还包括与第一龙骨对应、完全覆盖相应的第一龙骨朝向室内的面 第一内隔条, 和与第二龙骨对应、 完全覆盖相应的第二龙骨朝向室内的面的第二内隔条。 内隔条起装饰作用或隔热作用。内隔条的结构及与相应的龙骨配合关系等可完全参照外隔 热条。
"、、 作为方案一的改进, 第一龙骨和 /或第二龙骨为方管型钢或 C型钢或 H型钢; 第一外 隔热条和第二外隔热条、第一内隔条和第二内隔条为 U形隔热条; 第一外隔热条从室外侧 插紧配合安装在第一龙骨上, 第一内隔热条从室内侧插紧配合安装在第一龙骨上; 第二外 隔热条从室外侧插紧配合安装在第二龙骨上,第二内隔热条从室内侧插紧配合安装在第二 龙骨上。 这种结构的外隔热条和内隔条不需要卡扣式结构, 利用安装在一起的第一龙骨和 第二龙骨的夹紧力就可完全外隔热条和内隔条固定, 结构简单, 安装可靠。
作为方案一的改进,第一外隔热条包括外层为金属的第一外隔热条外层和内层为塑胶 的第一外隔热条内层; 第一外隔热条外层完全覆盖第一外隔热条内层露出室内的面; 第二 外隔热条包括外层为金属的第二外隔热条外层和内层为塑胶的第二外隔热条内层;第二外 隔热条外层完全覆盖第二外隔热条内层露出室内的面。 内层的塑胶层隔热隔音耐腐蚀, 外 层的金属层外观质量好, 抵挡紫外线和自然风化, 寿命长。
作为方案八的改进, 第一外隔热条外层为 U形弹性卡扣式金属件, 第一外隔热条外层 的两卡扣扣在第一外隔热条内层的两卡扣上; 第二外隔热条外层为 U 形弹性卡扣式金属 件, 第二外隔热条外层的两卡扣扣在第二外隔热条内层的两卡扣上。外隔热条外层采用卡 扣式结构配合, 结构简单, 安装方便。
作为方案一的改进,还包括与第一龙骨朝向室内的一侧配合的第一装饰条和与第二龙 骨朝向室内的一侧配合的第二装饰条;第一装饰条完全覆盖对应的第一龙骨和相邻的两隔 层模块的两相邻龙骨朝向室内的面,第二装饰条完全覆盖对应的第二龙骨和相邻的两隔层 模块的两相邻龙骨朝向室内的面。 第一装饰条和第二装饰条使组合建筑结构的外观更美 观, 对第一龙骨、 第二龙骨、 第三龙骨、 第四龙骨的材料和外观没有要求。
作为方案一的改进, 第三隔条为弹性卡扣式隔条, 在第三龙骨相背的两侧、 并靠近室 内一侧、 设有贯穿第三龙骨本体两端的第三卡槽, 第三隔条的两个卡扣分别抵挡在第三龙 骨相背的第三卡槽内,第三龙骨相背的两侧凸出安装在其上的第三隔条对应的两侧或与安 装在其上的第三隔条对应的两侧齐平; 第四隔条为弹性卡扣式隔条, 在第四龙骨相背的两 侧、 并靠近室内一侧、 设有贯穿第四龙骨本体两端的第四卡槽, 第四隔条的两个卡扣分别 抵挡在第四龙骨相背的第四卡槽内,第四龙骨相背的两侧凸出安装在其上的第四隔条对应 的两侧或与安装在其上的第四隔条对应的两侧齐平。 在第三龙骨或第四龙骨上设有卡槽, 第三隔条和第四隔条的两个卡扣就能关于其中心对称, 两个卡扣插入龙骨的距离小, 插入 时用力容易平衡, 使隔条扣在龙骨上时方便, 动作可靠, 减少将隔条装在龙骨上时因用力 过大或操作不当隔条开裂; 这种方式还可完全避免内隔条受力, 这种结构特别适合第三隔 条和第四隔条直接露出室内的情况。
作为方案十的改进, 组合建筑结构为安装在两层楼板之间的组合墙或组合窗, 第一龙 骨和第二龙骨为隔热隔音的塑胶型材, 第一外隔热条和第二外隔热条为外观美观的金属 件; 第三龙骨和第四龙骨为隔热隔音的塑胶型材; 在第三龙骨仅朝向室内的面设有金属件 第三隔条, 在第四龙骨仅朝向室内的面设有金属件第四隔条; 还包括与第一龙骨对应、 完 全覆盖相应的第一龙骨朝向室内的面金属件第一内隔条, 和与第二龙骨对应、 完全覆盖相 应的第二龙骨朝向室内的面的金属件第二内隔条; 第一内隔条为 u形弹性卡扣式隔条, 在 第一龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第一龙骨本体两端的第三卡槽, 第一内 隔条的两个卡扣分别抵挡在第一龙骨相背的第三卡槽内,第一龙骨相背的两侧凸出安装在 其上的第一内隔条对应的两侧或与安装在其上的第一内隔条对应的两侧齐平;第二内隔条 为 u形弹性卡扣式隔条, 在第二龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第二龙骨本 体两端的第四卡槽, 第二内隔条的两个卡扣分别抵挡在第二龙骨相背的第四卡槽内, 第二 龙骨相背的两侧凸出安装在其上的第二内隔条对应的两侧或与安装在其上的第二内隔条 对应的两侧齐平。 这种结构的组合建筑结构, 龙骨塑胶型材就能完全满足强度和刚性的要 求, 且龙骨塑胶型材具有很好的隔热隔音效果, 成本低; 金属隔条将龙骨完全覆盖, 使塑 胶龙骨没有外露, 抵挡紫外线和自然风化, 使龙骨寿命长。
作为方案一至十一的共同改进, 隔层包括两层隔板, 在两条第三龙骨相对的面上和两 条第四龙骨相对的面上均设有一一对应的、 与隔板层数相同的定位槽, 隔板安装在两条第 三龙骨和两条第四龙骨对应的定位槽内, 还包括将隔板与相应的定位槽密封的密封条; 在 相邻两隔板的密闭空间内还设有与两相邻的隔层相对的面贴合的夹板。夹板一般采用增强 型改性石膏板、 石膏板、 泡沫板、 混凝土板等。 采用夹板, 进一步提高隔热、 隔音效果和 抗冲击性。
作为方案一至十一的共同改进, 隔层为两层以上的隔板, 在每块隔板上安装有一体成 型、 包裹隔板四周、 横截面为 u形的方框形密封圈; 在两条第三龙骨相对的面上和两条第 四龙骨相对的面上均设有一一对应的、 与隔板层数相同的定位槽, 隔板及安装在隔板上的 方框形密封圈安装在两条第三龙骨和两条第四龙骨对应的定位槽内。 方框形密封圈, 密封 效果好。
作为方案一至十一的共同改进, 隔层为三层以上的隔板, 在两条第三龙骨相对的面上 和两条第四龙骨相对的面上均设有一一对应的、 与隔板层数相同的定位槽, 隔板安装在两 条第三龙骨和两条第四龙骨对应的定位槽内, 还包括将隔板与相应的定位槽密封的密封 条; 外层两层隔板为透明玻璃板, 内层一侧以上的隔板为透明塑胶板。 塑胶板比玻璃具有 更好的隔热隔音效果, 塑胶板大大阻挡了热传导, 即保证隔层模块透光性, 又大大提高隔 层模块的隔热和隔音性能,其隔热和隔音性能相当于双层玻璃真空结构,但成本大大降低。 因此在两层玻璃板之间加透明塑胶板, 塑胶板越软性越好, 越厚越好, 隔板(玻璃板)和 塑胶板等所有隔板之间都不直接接触并保持一定的距离 (距离越远越好), 则气体对流被 分别阻隔在不同的空间中,靠近热量和声音震动一侧的隔板间的第一密闭空间内的气体对 流被塑胶板阻隔, 使热量和声音震动被传递到隔板间的第二密闭空间被大大衰减, 则隔板 间的第二密闭的气体对流时其空间内的热量和声音震动很少, 再通过室内侧的隔板(玻璃 板)传递到室内时, 热量和声音震动出现于室内已经很少, 因此隔热隔音效果较好, 如果 设置有第三隔板空间、第四隔板空间, 则热量和声音震动的传递被每层塑胶板依次不断衰 减, 则隔热隔音效果依次更好。 采用有色的塑胶板, 可以大大降低热的辐射, 比现有的通 过镀层降低辐射的技术, 大大降低成本。。在塑胶板上容易制作需要的图案或金属效果等, 满足建筑外观美观的需要。
作为方案一至十一的共同改进,隔层模块包括推拉窗模块;推拉窗模块还包括推拉窗; 推拉窗包括两层以上的隔板, 两条并排平行的第五龙骨, 与第五龙骨垂直、 两端分别与两 条第五龙骨固定的两条并排的第六龙骨,从室外方向侧向扣在第五龙骨上并完全覆盖相应 的第五龙骨露出室外的面的第五隔条,从室外方向侧向扣在第六龙骨上并完全覆盖相应的 第六龙骨露出室外的面的第六隔条,在两条第五龙骨相对的面上和两条第六龙骨相对的面 上均设有一一对应的、 与隔板层数相同的定位槽, 隔板安装在对应的定位槽内, 隔板与相 应的定位槽密封, 相邻隔板间形成一个密闭空间; 在上侧第三龙骨的底面设有可供第五龙 骨在设定角度内转动的凹槽,上侧的第五龙骨可在凹槽内在一定角度内转动地枢接在左右 两侧的第四龙骨上。 这种推拉窗模块, 由于有两层以上隔板, 因此隔热、 隔音效果好。 作为方案一至十一的共同改进,隔层模块包括百叶窗模块;百叶窗模块还包括百叶片、 百叶片角度调节机构; 百叶片角度调节机构包括齿轮, 仅可上下短距离滑动地安装在仅一 侧的竖向安装的第四龙骨上的滑座, 固定在滑座上、 与齿轮配合的直齿条; 叶片轴两端可 转动地安装在两条第四龙骨上, 仅一端的叶片轴穿过一侧第四龙骨的侧壁与齿轮固定。通 过齿轮、 齿条调节百叶片, 运动可靠, 百叶片角度调节机构的寿命长。
作为方案一至十一的共同改进,隔层模块包括百叶窗模块;百叶窗模块还包括百叶片、 百叶片角度调节机构; 在两条第三龙骨相对的两个侧面上设有与百叶片配合的凸条; 在百 叶片闭合的状态, 安装在一起的相接的两百叶片交错拼接在一起, 百叶片与凸条交错拼接 在一起;在相接的两百叶片重合处的相对面间和相接的百叶片与凸条的重合处的相对面间 均设有密封条。 这种结构的百叶窗, 百叶片与第三龙骨之间的密封效果更好。
作为方案一至十一的共同改进,隔层模块包括百叶窗模块;百叶窗模块还包括百叶片、 百叶片角度调节机构;百叶片角度调节机构包括固定在每片百叶片仅一端的叶片轴上的蜗 轮, 可上下短距离滑动地、 安装在仅一侧的第四龙骨上与蜗轮配合的蜗杆, 固定在蜗杆上 的旋钮; 叶片轴两端可转动地安装在两条第四龙骨上, 仅一端的叶片轴穿过一侧第四龙骨 的侧壁与蜗轮固定。 通过蜗轮、 蜗杆调节百叶片, 运动可靠, 百叶片角度调节机构的寿命 长。
作为方案一至十一的共同改进,隔层模块包括百叶窗模块;百叶窗模块还包括百叶片、 百叶片角度调节机构;在两条竖向安装的第四龙骨上设有与每片百叶片的百叶片轴配合的 百叶片轴孔; 百叶片角度调节机构包括固定在每片百叶片仅一端的叶片轴上的齿轮, 套在 齿轮上与齿轮配合的同步带, 调节手柄, 设置在第四龙骨上的直导向孔; 叶片轴两端可转 动地安装在两条第四龙骨上, 仅一端的叶片轴穿过一侧第四龙骨的侧壁与齿轮固定; 调节 手柄穿过直导向孔与同步带固定; 齿轮容置在第四龙骨内。
作为方案一至十一的共同改进,隔层模块包括百叶窗模块;百叶窗模块还包括百叶片、 百叶片角度调节机构; 百叶片包括长方形的百叶片本体, 在百叶片本体的顶面设有与百叶 片本体前侧面齐平的第一结合部,在百叶片本体的底面设有与百叶片本体后侧面齐平第二 结合部; 在第一结合部的顶面上设有上卡槽, 在第二结合部的底面上设有下卡槽, 在第一 结合部或第二结合部相对的面上设有与密封条配合的凹槽,还包括贯通百叶片本体两端的 轴孔和使百叶片壁厚相对均匀的掏空孔;还包括与百叶片设有凹槽的一侧配合的弹性卡扣 式第一百叶片隔条和与百叶片背离凹槽一侧配合的弹性卡扣式第二百叶片隔条,第一百叶 片隔条的两个卡扣一个扣在上卡槽内, 一个扣在下卡槽内; 第二百叶片隔条的两个卡扣一 个扣在上卡槽内, 一个扣在下卡槽内; 在第一百叶片隔条内安装有密封条; 在百叶片闭合 的状态, 安装在一起的相接的两百叶片的第一结合部和第二结合部交错拼接在一起, 在相 接的两百叶片重合处的相对面间通过密封条密封。 这种结构的百叶窗, 百叶片与第三龙骨 之间的密封效果更好。 当第三龙骨、 第四龙骨为塑胶型材时, 第一百叶片隔条、 第二百叶 片隔条可采用防水、 防锈效果好的铝型材或不锈钢材料等, 使百叶片经久耐用, 外观效果 好。 当第三龙骨、 第四龙骨为金属型材时, 第一百叶片隔条、 第二百叶片隔条可采用隔热 隔音性好的塑胶型材, 隔条有效阻隔热和声音传播。 第一百叶片隔条、 第二百叶片隔条为 弹性卡扣式隔条, 通过侧向扣在相应的龙骨上, 安装方便快捷、 可靠。
作为方案一的改进, 隔层模块的第三龙骨和第四龙骨为金属型材; 隔层模块包括百叶 窗模块; 推窗模块的隔层为推窗, 推窗包括两层以上的隔板, 两条并排平行的金属型材第 七龙骨, 与第七龙骨垂直、 两端分别与第七龙骨固定的两条并排的金属型材; 在第七龙骨 上设有完全覆盖第七龙骨朝向室外的面和室内的面的第七隔条,在第八龙骨上设有完全覆 盖第八龙骨朝向室外的面和室内的面的第八隔条。第三龙骨和第四龙骨、第七龙骨和第八 龙骨为金属型材, 推窗滑动时龙骨不易磨损。 在第三龙骨和第四龙骨、 第七龙骨和第八龙 骨上设有隔条, 隔热效果好。
作为方案一至十一的共同改进,在第一龙骨上设有贯穿第一龙骨本体两端面的第一容 置槽, 在第二龙骨上设有贯穿第二龙骨本体两端面的第二容置槽; 安装在一起的第一龙骨 上的第一容置槽和第二龙骨上的第二容置槽相连通; 相邻的隔层模块间固定有内装饰条; 一条内装饰条只对应一条第一龙骨或一条第二龙骨; 内装饰条覆盖相应的第一龙骨或第二 龙骨、 和相邻的两隔层模块的相邻两龙骨。 设有容置槽, 可以用来安装电线、 水管等。 作为方案一至十一的共同改进, 相邻隔层模块的相对抵挡边在室内形成第三容置槽, 相邻的隔层模块间固定有内装饰条; 一条内装饰条只对应一条第一龙骨或一条第二龙骨; 内装饰条覆盖相应的第一龙骨或第二龙骨、和相邻的两隔层模块的相邻两龙骨。 容置槽容 置电线、 水管等, 装饰条将电线水管盖住, 外观美观。
作为方案一至十一的共同改进, 组合建筑结构为安装在建筑主体框架结构外侧的幕 墙; 被主体框架抵挡的隔层模块从室外安装在对应的方框内, 其余的隔层模块从室内安装 在对应的方框内仅对方框被楼板、立柱等建筑主体框架抵挡的位置,隔层模块从室外安装; 对于方框没有被楼板、 立柱等抵挡的, 隔层模块从室内安装; 这样安装方便, 大大降低安 装成本和劳动强度, 日后的维护方便。 室外和室内均安装有装饰条, 外观美观。
作为方案一至十一的共同改进, 组合建筑结构为安装在建筑主体框架结构外侧的幕 墙; 第一龙骨竖向安装, 通过第一固定件与主体框架结构楼板固定, 隔层模块均从室外安 装在对应的方框内。
作为方案一至十一的共同改进, 还包括与第一龙骨或第二龙骨固定的屋顶装饰条, 一条屋 顶装饰条只对应一条第一龙骨或一条第二龙骨, 所述的屋顶装饰条为波浪状, 相邻的两条 屋顶装饰条相结合的位置凹凸交错在一起, 所述的屋顶装饰条覆盖所述的组合建筑结构。 采用这种屋顶装饰条, 有很好的装饰效果, 还可防水, 使屋顶有双重的防水效果, 同时, 隔层模块屋顶可以起到很好的隔热和隔音效果。
作为方案一至十一的共同改进, 第一龙骨和 /或第二龙骨为方管型钢或 C型钢或 H型 钢或 T型钢。 由于安装有隔条, 龙骨不需表面处理。 龙骨采用标准型材钢, 强度刚性好, 特别适合幕墙。
作为方案一至十一的共同改进, 第一龙骨为方管型钢或 C型钢, 第二龙骨为方管型钢 或 C型钢,在每个方框的四个转角处相接的第一隔条和第二隔条上形成容置角铁固定件的 容置腔, 在容置腔均内安装有与相接的第一龙骨和第二龙骨的角铁固定件, 相接的第一龙 骨和第二龙骨通过角铁固定件固定在一起。在隔条上加工容置角铁固定件的容置腔, 加工 容易, 不影响龙骨的刚性。
作为方案一至十一的共同改进, 隔层为二层以上的透明玻璃板, 在相邻的两层玻璃板 相对的面上贴有完全覆盖相应玻璃板的柔性覆盖膜或刚性覆盖板。柔性覆盖膜可为塑料膜 等, 刚性覆盖板可为塑胶板或纸板等, 第一具有减少热传导的效果; 第二没有钢化的玻璃 破碎时不易掉下来, 使用更安全; 第三在覆盖膜和覆盖板容易制作需要的图案或金属效果 等, 满足建筑外观美观的需要; 第四对不需要透光的部分, 使用不透光的, 柔性覆盖膜或 刚性覆盖板, 可以减少热辐射, 进一步提高隔热效果。
作为方案一至 11的共同改进, 第一龙骨和 /或第二龙骨为方管型钢或 C型钢或 H型 钢; 还包括从室内扣在第一外隔热条上的第一弹性卡扣式内隔条, 从室内扣在第二外隔热 条上的第二弹性卡扣式内隔条;第一外隔热条和第一弹性卡扣式内隔条完全包裹第一龙骨 的四个侧面第二外隔热条和第二弹性卡扣式内隔条完全包裹第二龙骨的四个侧面。不需要 加工龙骨, 外隔热条和内隔条就将龙骨的四个侧面完全包裹形成方形, 隔热效果好, 易与 隔层模块等配合。
一种房子, 房子的四面墙、 屋顶和楼板均由组合建筑结构组装而成。 在房子的楼板上 铺有水泥预制板或浇灌有水泥。
一种卫生间, 卫生间的四面墙、 屋顶、 地板均由组合建筑结构组装而成, 四面墙中的 一面和 /或两面和 /或三面和 /或四面、 和 /或屋顶、 和 /或楼板、 和 /或地板的隔层模块包括 功能模块, 和 /或在隔层模块上固定有功能件。
本发明的有益效果是, 组合建筑结构可为复合墙、 复合窗、 复合屋顶等。 隔层模块形 成有效隔热、 隔音层, 阻隔热量、 噪音等的传播途径, 达到高效隔热隔音的目的。 实现隔 层模块的集成组装, 满足美观、 防水、 防火、 隔热、 隔音等总体功能要求。 用作外墙体, 不会开裂和渗漏水, 不必另行对外墙进行二次保温处理和防水处理, 不需再对外墙进行涂 漆或粘贴墙面砖的表面工艺处理, 减少外墙的装修环节, 节约建设资金。 通过紧固件穿过 隔层模块的抵挡边与第一龙骨和 /或第二龙骨固定, 不再需要压条, 结构简单, 安装方便, 成本低。对于安装在主体建筑框架内的组合建筑结构,可实现从室内安装和更换隔层模块, 安装和维修不需要从室外吊装隔层模块、 第一龙骨、 第二龙骨等, 只需从室外做密封, 对 高层建筑来说, 大大减少安装和维修成本, 安装和维修过程中操作方便、 效率高、 安全性 高; 且从室内安装, 从外侧无法拆隔层模块, 更安全。 第一龙骨、 第二龙骨为铝型材、 标 准钢型材等, 第一外隔热条、 第二外隔热条采用隔热、 隔音、 防水效果好的塑胶材料等, 大大减少热和声音的传导; 在隔热和隔音上与塑钢的效果相当, 比共挤成型的塑钢更经久 耐用和容易制造, 成本低。 隔层可为具备一定硬度刚性、 防水、 隔热、 隔音等功能的板材, 如金属板、 装饰硬板、 玻璃、 瓷砖、 太阳能电池板等。 第一龙骨、 第二龙骨与螺丝固定的 位置, 可增加壁厚或设计成两层壁厚。 隔层模块朝向室外的面与第一外隔热条和第二外隔 热条朝向室外的面齐平或凸出第一外隔热条和第二外隔热条朝向室外的面,也就是仅在隔 层模块上设有抵挡边, 在第一龙骨和第二龙骨上不设有抵挡边, 一方面第一龙骨和第二龙 骨可采用标准型钢, 强度刚性好, 可以通过螺丝牢固可靠地将抵挡边固定在第一龙骨和第 二龙骨上, 特别适合幕墙, 尤其是在建筑物之外并与建筑物楼板固定的整幅的幕墙; 另一 方面对于同一扇幕墙, 不同的方框内的隔层模块可根据需要选择从室外安装或从室内安 装。 由于标准型钢的长度一般在 12米以下, 当仅用一根标准型材其长度满足不了建筑物 的高度需要时, 第一龙骨就由多条标准型材连接加长而成。
附图说明
图 1是本发明实施例 1从室外投影 (背离隔层模块安装方向) 的立体分解示意图。
图 2是本发明实施例 1 安装有第一外隔热条和第一内隔条的第一龙骨的俯视示意图。 图 3是本发明实施例 1 安装有第二外隔热条和第二内隔条的第一龙骨的右视示意图。 图 4是本发明实施例 1的隔层模块从室内 (隔层模块安装方向) 投影的立体分解示意图。 图 5是本发明实施例 2从室内投影的立体分解示意图。
图 6是本发明实施例 3的隔层模块从室内投影的立体示意图。
图 7是本发明实施例 3的左侧安装有第三隔条的第三龙骨的俯视示意图。
图 8是本发明实施例 3的上侧安装有第四隔条的第四龙骨的俯视示意图。
图 9是本发明实施例 4第一种隔层模块从室外投影的立体分解示意图。
图 10是本发明实施例 4第二种隔层模块从室内投影的立体分解示意图。
图 11本发明实施例 4 推拉窗模块安装有第五隔热条的上侧的第五龙骨的左视图。
图 12本发明实施例 4 推拉窗模块安装有第五隔热条的下侧的第五龙骨的左视图。
图 13本发明实施例 4 推拉窗模块安装有第六隔热条的右侧的第五龙骨的俯视图。
图 14是本发明实施例 5的隔层模块从室外投影的立体分解示意图。
图 15是本发明实施例 5 的左侧安装有第七隔条的第七龙骨的俯视示意图。
图 16是本发明实施例 5 的右侧安装有第七隔条的第七龙骨的俯视示意图。
图 17是本发明实施例 5 的上侧安装有第八隔条的第八龙骨的右视示意图。
图 18是本发明实施例 5 的下侧安装有第八隔条的第八龙骨的右视示意图。
图 19是本发明实施例 6的百叶窗隔层模块从室外投影的立体分解示意图。
图 20是本发明实施例 6的百叶片的左视示意图。
图 21是图 19的 I部放大示意图。
图 22是本发明实施例 7从室外投影的百叶窗隔层模块的立体分解示意图。
图 23是本发明实施例 7的百叶片的左视示意图。
图 24是本发明实施例 8的百叶窗隔层模块从室内投影的的立体分解示意图。
图 25是发明实施例 9的百叶片安装有第一百叶片隔热条和第二百叶片隔热条的的左视示 意图。
Ϊ 26是发明实施例 10的百叶片安装有第一百叶片隔热条和第二百叶片隔热条的的左视示 意图。
Ϊ 27是本发明实施例 11从室外投影的百叶窗隔层模块的立体分解示意图。
图 28是本发明实施例 12的立体示意图。
图 29是本发明实施例 12的安装有第一外隔热条的 H形钢第一龙骨的端面视图。 图 30是本发明实施例 12的安装有第二外隔热条的方管形钢第二龙骨的端面视图。
图 31是本发明实施例 12的立体分解示意图。
图 32是本发明实施例 12的单扇门隔层模块的从室外投影的立体示意图。
图 33是本发明实施例 12的单扇门隔层模块从室内投影的立体分解示意图。
图 34是本发明实施例 12的推拉窗隔层模块从室内投影的立体分解示意图。
图 35是本发明实施例 13的双扇门隔层模块从室外投影的立体示意图。
图 36是本发明实施例 14的组合建筑结构安装在主体框架上的结构示意图。
图 37是本发明实施例 14的隔层模块从室内投影的立体示意图。
图 38是本发明实施例 14的安装有第一外隔热条的第一龙骨的俯视图。
图 39是本发明实施例 14的安装有第二外隔热条的第二龙骨的右视图。
图 40是本发明实施例 14固定有第一固定件的组合建筑结构的从室内投影(背离隔层模块 安装方向) 的立体分解示意图。
图 41是本发明实施例 15固定有第一固定件的组合建筑结构的从室内投影的立体分解示意 图。
图 42是本发明实施例 16的组合建筑结构的从室外投影的立体分解示意图。
图 43是本发明实施例 16的安装有第一外隔热条的 H形钢第一龙骨的俯视图。
图 44是本发明实施例 16的安装有第二外隔热条的 H形钢第二龙骨的左视图。
图 45是本发明实施例 17的安装有第一外隔热条的方管形钢第一龙骨的俯视图。
图 46是本发明实施例 17的安装有第二外隔热条的方管形钢第二龙骨的左视图。
图 47是本发明实施例 18的立体分解示意图。
图 48是本发明实施例 18 的安装有第一外隔热条和第一内隔条的右侧的第一龙骨的俯视 图。
图 49是本发明实施例 18 的安装有第一外隔热条和第一内隔条的左侧的第一龙骨的俯视 图。
图 50是本发明实施例 19的隔层模块从室内投影的立体分解示意图。
图 51是本发明实施例 20的隔层模块从室内投影的立体分解示意图。
图 52是本发明实施例 21的隔层模块从室外投影的立体分解示意图。
图 53是本发明实施例 22 的安装有第一外隔热条和第一内隔条的右侧的第一龙骨的俯视 图。
图 54是本发明实施例 22 的安装有第一外隔热条和第一内隔条的左侧的第一龙骨的俯视 图。
图 55是本发明实施例 22 的安装有第二外隔热条和第二内隔条的上侧的第二龙骨的右视 图。
图 56是本发明实施例 22 的安装有第二外隔热条和第二内隔条的下侧的第二龙骨的右视 图。
图 57是本发明实施例 23的安装有第一外隔热条和第一内隔条的第一龙骨的俯视示意图。 图 58是本发明实施例 23的安装有第二外隔热条和第二内隔条的第二龙骨的右视示意图。 图 59是本发明实施例 23的外侧装饰条的端面示意图。
图 60是本发明实施例 23的中间位置装饰条的端面示意图。
图 61是本发明实施例 24 的立体分解示意图。
图 62是本发明实施例 25的安装有第一外隔热条和第一内隔条的 C形钢第一龙骨的俯视 图。
图 63是本发明实施例 25的安装有第二外隔热条和第二内隔条的 C形钢第二龙骨的左视 图。
图 64是本发明实施例 26 的隔层模块的立体分解示意图。
图 65是本发明实施例 26的安装有第三隔热条的第三龙骨的俯视图。
图 66是本发明实施例 26的安装有第四隔热条的第四龙骨的右视图。
图 67是本发明实施例 27的一种隔层模块从室内投影的立体分解示意图。
图 68是图 67的 I I部放大示意图。 图 69是本发明实施例 28的安装有第一隔条的第一龙骨的俯视图。
图 70是本发明实施例 28的安装有第二隔条的第二龙骨的右视图。
图 71是本发明实施例 29去掉隔层模块、朝向室外的第一装饰条和第二装饰条、朝向室内 的内装饰条的立体分解示意图。
实施例 1
如图 1所示, 一种组合建筑结构, 为组合墙结构, 包括从左到右水平方向阵列竖向的 在朝向室外的一侧安装有结构相同的第一外隔热条 1 和在朝向室内的一侧安装有结构相 同的第一内隔条 2且结构相同铝型材的第一龙骨 3、第一龙骨 4、第一龙骨 5、第一龙骨 6, 安装在第一龙骨 3和第一龙骨 4间、 与第一龙骨 3和第一龙骨 4垂直、 从上到下竖直方向 阵列竖向的、在朝向室外的一侧安装有结构相同的第二外隔热条 7和在朝向室内的一侧第 二内隔条 8、 且结构相同铝型材的第二龙骨 9、 第二龙骨 10、 第二龙骨 11、 第二龙骨 12, 安装在第一龙骨 4和第一龙骨 5间、 分别共线位于第二龙骨 9、 第二龙骨 10、 第二龙骨 11、 第二龙骨 12的右侧、 安装有结构相同的第二外隔热条 7和第二内隔条 8、 竖直方向 阵列的铝型材第二龙骨 13、 第二龙骨 14、 第二龙骨 15、 第二龙骨 16, 安装在第一龙骨 5 和第一龙骨 6间、 分别共线位于第二龙骨 13、 第二龙骨 14、 第二龙骨 15、 第二龙骨 16 右侧、 安装有结构相同的第二外隔热条 7和第二内隔条 8、 竖直方向阵列的铝型材第二龙 骨 17、 第二龙骨 18、 第二龙骨 19、 第二龙骨 20, 固定轴 21、 固定轴 22、 固定轴 23、 固 定轴 24, 分别安装在固定轴 21、 固定轴 22、 固定轴 23、 固定轴 24两端的锁紧件 25。 每 相邻的两条第一龙骨和两条第二龙骨形成一个方框,在每个方框内仅从一侧安装一个结构 相同的隔层模块 26。
如图 1、 图 2所示, 最右侧的第一龙骨 6为一体挤压成型的型材, 包括方形的第一龙 骨本体 27, 上下贯通第一龙骨本体 27两端、 与第一外隔热条 1的卡扣 41配合、 与第一 龙骨本体 27右侧面连通的第一抵挡槽 28和与第一龙骨本体 27左侧面连通、 与第一外隔 热条 1的卡扣 42配合的第一抵挡槽 29, 上下贯通第一龙骨本体 27两端、 与第一内隔条 2 的卡扣 47配合、与第一龙骨本体 27右侧面连通的抵挡槽 30和与第一龙骨本体 27左侧面 连通、 与第一内隔条 2的卡扣 43配合的抵挡槽 31, 上下贯通第一龙骨本体 27两端、 使 第一龙骨本体 27壁厚相对均匀的掏空通孔 32, 上下贯穿第一龙骨本体 27、均匀分布的四 个第一通孔 33、 第一通孔 34、 第一通孔 35、 第一通孔 36, 第一抵挡槽 28靠近室外一侧 的槽壁 37朝右的面低于第一龙骨本体 27的右侧面 39, 第一抵挡槽 29靠近室外一侧的槽 壁 38朝左的面低于第一龙骨本体 27的左侧面 40。 第一外隔热条 1从垂直第一龙骨 3朝 向室外的面方向扣在第一龙骨 3上,第一外隔热条 1的卡扣 41扣在第一抵挡槽 28内并被 第一抵挡槽 28靠近室外的槽壁 37抵挡,卡扣 42扣在第一抵挡槽 29内并被抵挡槽靠近室 外的槽壁 38抵挡, 第一外隔热条 1完全覆盖第一龙骨 6朝向室外的面。 第一龙骨本体 27 的右侧面 39稍凸出卡扣 30、 卡扣 41的右侧面, 第一龙骨本体 27的左侧面 40稍凸出卡 扣 31、 卡扣 42的左侧面。 卡扣 41朝向室内的面与第一抵挡槽 28正对卡扣 41的朝向室 外的面 45之间设有设定距离的间隙。 卡扣 42朝向室内的面与抵挡槽正对卡扣 41的朝向 室外的面 46之间设有设定距离的间隙。 第一内隔条 2对称安装在第一龙骨 3朝向室内的 一侧的抵挡槽 30、 抵挡槽 31内。
如图 1、 图 3所示, 第二龙骨 17为一体挤压成型的铝型材, 包括方形的第二龙骨本 体 78, 与第二外隔热条 7的卡扣 79配合、 与第二龙骨本体 78上侧面和朝向室外的面连 通、 左右贯通第二龙骨本体 78两端的第二抵挡槽 80, 与第二外隔热条 7的卡扣 81配合、 与第二龙骨本体 78底面和朝向室外的面连通、左右贯通第二龙骨本体 78两端的第二抵挡 槽 82, 与第二内隔条 8的卡扣 83配合、 与第二龙骨本体 78上侧面和朝向室内的面连通、 左右贯通第二龙骨本体 78两端的抵挡槽 84, 与第二内隔条 8的卡扣 85配合、 与第二龙 骨本体 78底面和朝向室内的面连通、 左右贯通第二龙骨本体 78两端的抵挡槽 86, 左右 贯通第二龙骨本体 78的两个端面、与第一龙骨 3从右到左的第一个第一通孔 33配合的第 二通孔 87, 左右贯通第二龙骨本体 78两端、 使第二龙骨 17壁厚相对均匀并形成与第二 龙骨本体 78的侧壁平行的连接筋的四个掏空通孔 88、 掏空通孔 89、 掏空通孔 90、 掏空 通孔 91。 第二外隔热条 7与第二龙骨 17的安装方式和配合的结构与第一外隔热条 1与第 一龙骨 3的安装方式和配合的结构完全相同。
如图 4所示, 隔层模块 26包括玻璃的隔板 49、 隔板 50, 两条并排的竖向的关于其中 心位置的竖直面对称的第三龙骨 51、 第三龙骨 52, 安装在第三龙骨 51、 第三龙骨 52之 间、 与第三龙骨 51、 第三龙骨 52垂直、 关于其中心位置的水平面对称的两条并排的第四 龙骨 53、 第四龙骨 54。
如 1、 图 4所示, 第四龙骨 53为一体挤压成型的型材, 包括方形的第四龙骨本体 55, 与第四龙骨本体 55下侧面连通、 左右贯通第四龙骨本体 55两端的定位槽 56、 定位 槽 57, 左右贯通第四龙骨本体 55两端、 安装螺丝 (未示出) 的下排两个两端为螺纹孔的 通孔 58、 上排的通孔 59, 在垂直方形的第四龙骨本体 55顶面设有与第四龙骨本体 55朝 向室内的面齐平和与第四龙骨本体 55 的两端面齐平的抵挡边 60, 左右贯通第四龙骨 53 两端、 使第四龙骨壁厚相对均与的掏空通孔 63。
如图 1、 图 4所示, 第三龙骨 51包括方形的第三龙骨本体 65, 与第三龙骨本体 65左 侧面连通、 上下贯通第三龙骨本体 65两端、 分别与定位槽 56和定位槽 57连通的定位槽 66、 定位槽 76, 在垂直方形的第三龙骨本体 65右侧面设有与第三龙骨本体 65朝向室内 的面齐平和与第三龙骨本体 65的两端面齐平的抵挡边 67, 上下贯通第三龙骨 51两端、 使第三龙骨 51壁厚相对均与的掏空通孔 70, 分别与通孔 58、 通孔 59—一共轴线配合、 贯穿第三龙骨本体 65 的左侧壁的小通孔 (未示出) 和小通孔 71、 贯穿第三龙骨本体 65 的右侧壁的大通孔 72和大通孔 73。 在隔层模块的抵挡边形成的抵挡圈朝向室外的面上贴 有方框形的密封条 77。
如图 1、 图 4所示, 上下左右四侧、 每侧均安装有单独的有 U形密封条 74的隔板 49 和每侧均安装有单独的有 U形密封条 75的隔板 50安装在相应的定位槽内, 通过螺丝(未 示出) 将第三龙骨 51、 第三龙骨 52、 第四龙骨 53、 第四龙骨 54固定在一起, 隔板 49和 隔板 50之间形成密闭空间。
如图 1所示, 在第一龙骨 6朝向室外的一侧通过螺丝 (未示出) 固定有第一外装饰条 92, 朝向室内的一侧通过螺丝 (未示出) 固定有第一外装饰条 92关于其中心位置的竖直 面对称的第一内装饰条 93。 在第一龙骨 3朝向室外的一侧固定有与第一外装饰条 92关于 其中心位置的竖直面对称的第一外装饰条 94, 朝向室内的一侧通过螺丝 (未示出) 固定 有第一外装饰条 94关于其中心位置的竖直面对称的第一内装饰条 95。 在中间位置的第一 龙骨 4、 第一龙骨 5朝向室外的一侧分别通过螺丝 (未示出) 固定有结构相同的第一外装 饰条 96, 朝向室内的一侧分别通过螺丝 (未示出) 固定有第一外装饰条 96关于其中心位 置的竖直面对称的第一内装饰条 97。 在第二龙骨 9、 第二龙骨 13、 第二龙骨 17朝向室外 的一侧分别通过螺丝 (未示出) 固定有结构相同的第二外装饰条 98; 朝向室内的一侧分 别通过螺丝 (未示出) 固定有与第二外装饰条 98关于其中心位置的竖直面对称的第二内 装饰条 99。 第二外装饰条 98与第一外装饰条 92截面形状相同, 安装关系旋转 90° 。 在 第二龙骨 12、 第二龙骨 16、 第二龙骨 20朝向室外的一侧分别通过螺丝 (未示出) 固定有 结构相同的与第二外装饰条 98关于其中心位置的水平面对称的第二外装饰条 100; 朝向 室内的一侧分别通过螺丝(未示出)固定有与第二外装饰条 100关于其中心位置的竖直面 对称的第二内装饰条 (未示出) 。 在竖直方向中间排的其余的第二龙骨上分别固定有与 第一外装饰条 96、 第一内装饰条 97截面形状相同, 安装关系旋转 90° 的第二外装饰条 101、 第二内装饰条 102。
第一内装饰条 93包括平板状的第一内装饰条本体 103, 与第一内装饰条本体 103的 右侧面齐平、 垂直装饰条本体朝向室外的面凸设再向内弯折、 与第一龙骨 6贴合的 L形抵 挡边 104, 与第一内装饰条本体 103的左侧面齐平、 垂直第一内装饰条本体 103朝向室外 的面凸设的遮边 105。
第一内装饰条 97包括平板状的第一内装饰条本体 106, 与第一内装饰条本体 106的 右侧面齐平、 垂直第一内装饰条本体 106朝向室外的面凸设的遮边 107, 与第一内装饰条 本体 106的左侧面齐平、 垂直第一内装饰条本体 106朝向室外的面凸设的遮边 108。
相邻隔层模块 26相对的抵挡边之间形成容置电线等的凹槽 (未示出)。
实施例 2 如图 5所示, 与实施例 1不同的是, 在隔层模块 120的两条第三龙骨 121朝向室内的 面上均设有卡槽 122, 两条第四龙骨 123朝向室内的面上均设有卡槽 130。 安装在第一龙 骨 124上的外侧的两条第一外装饰条 125设有与卡槽 122配合、由两个对称的弹片构成的 弹性卡扣组 (未示出), 中间位置的两条第一外装饰条 126设有与卡槽 122配合、 由两组 每组由两个对称的弹片构成的弹性卡扣组 (未示出)。 第一外装饰条 125、 第一外装饰条 126的弹性卡扣组扣在隔层模块 120的卡槽 122内与隔层模块 120安装在一起。 安装在第 二龙骨 127上的、 竖直方向最上排和最下排的所有第二外装饰条 128设有与第四龙骨 123 的卡槽 130配合、 由两个对称的弹片构成的弹性卡扣组 131 ; 安装在竖直方向中间两排的 所有第二外装饰条 129设有与第四龙骨 123的卡槽 130配合、由两组每组由两个对称的弹 片构成的弹性卡扣组 133。 第二外装饰条 128、 第二外装饰条 129的弹性卡扣组扣在第四 龙骨 123的卡槽 122内与隔层模块 120安装在一起。
在隔层模块 120的两条第三龙骨 121朝向室外的面上均设有卡槽 132,在隔层模块 120 的两条第四龙骨 123朝向室外的面上均设有卡槽 (未示出)。 安装在第一龙骨 124上外侧 的两条的第一外装饰条 135设有与卡槽 132配合、 由两个对称的弹片构成的弹性卡扣组 136; 中间位置的两条第一外装饰条 134设有与卡槽 132配合、 由两组每组由两个对称的 弹片构成的弹性卡扣组 140。 第一外装饰条 134的弹性卡扣组 140、 第一外装饰条 135的 弹性卡扣组 136分别扣在隔层模块 120的相应的卡槽 132内与隔层模块 120安装在一起。 安装在第二龙骨 127上、竖直方向最上排和最下排的所有的第二外装饰条 138上设有与第 四龙骨 123的卡槽配合、 由两个对称的弹片构成的弹性卡扣组 139; 竖直方向中间两排的 所有的第二外装饰条 141上设有与第四龙骨 123的卡槽配合、由两个对称的弹片构成的弹 性卡扣组 142。第二外装饰条 138的弹性卡扣组 139、第二外装饰条 141的弹性卡扣组 142 扣在第四龙骨 133的相应的卡槽内与隔层模块 120安装在一起。
实施例 3
与实施例 2不同的是, 如图 6、 图 7所示, 左侧的第三龙骨 150包括方形的第三龙骨 本体 151,与第三龙骨本体 151右侧面连通、上下贯通第三龙骨本体 151两端的定位槽 152、 定位槽 153,垂直第三龙骨本体 151左侧面凸设并与第三龙骨本体 151朝向室内的面齐平、 两端与第三龙骨本体 151齐平的抵挡边 154,与抵挡边 154的左侧面和朝向室内的面连通、 上下贯通抵挡边 154的第三卡槽 155, 与第三卡槽 155关于其中心位置的的竖直面左右对 称、 与第三龙骨本体 151右侧面和朝向室内的面连通的第三卡槽 156, 与第三卡槽 156关 于第三龙骨本体 151中心的竖直面对称、与第三龙骨本体 151的右侧面和朝向室外的面连 通的第三卡槽 157, 与第三卡槽 157关于第三龙骨本体 151中心左右对称、 与第三龙骨本 体 151的左侧面朝向室外的面连通的第三卡槽 158, 上下贯通第三龙骨本体 151、 与第三 龙骨本体 151朝向室内的面连通、 三面垂直的容置槽 159, 上下贯通第三龙骨本体 151、 与第三龙骨本体 151朝向室外的面连通、 三面垂直的容置槽 160, 上下贯通第三龙骨 150 两端、 使第三龙骨 150壁厚相对均匀的掏空通孔 161。 还包括与第三龙骨本体 151朝向室 内一侧配合、一个卡扣 162扣在第三卡槽 155内、 另一个卡扣 163扣在第三卡槽 156内的 弹性卡扣式塑胶第三隔热条 164, 在第三隔热条 164的凹槽 165内设有与装饰条的弹性卡 扣配合的弧形槽 166、 弧形槽 167。 还包括与第三龙骨本体 151朝向室外一侧配合、 一个 卡扣 168扣在第三卡槽 157内、另一个卡扣 169扣在第三卡槽 158内的弹性卡扣式塑胶第 三隔热条 170, 在第三隔热条 170 的凹槽 171 内设有与装饰条的弹性卡扣配合的弧形槽 172、 弧形槽 173。 右侧的第三龙骨 174与第三龙骨 150关于其中心位置的竖直面对称, 安装在第三龙骨 174朝向室内一侧的第三隔热条 175与第三隔热条 164关于其中心位置的 竖直面对称,安装在第三龙骨 174朝向室外一侧的第三隔热条 176与第三隔热条 170关于 其中心位置的竖直面对称。
如图 6、 图 8所示, 上侧的第四龙骨 177为一体挤压成型的铝型材, 包括方形的第四 龙骨本体 178, 与第四龙骨本体 178下侧面连通、 左右贯通第四龙骨本体 178两端的、 分 别与定位槽 152、 定位槽 153连通的定位槽 179、 定位槽 180, 垂直第四龙骨本体 178顶 面凸设并与第四龙骨本体 178朝向室内的面齐平、左端与第三龙骨 150的抵挡边 154齐平、 右端与第三龙骨 174的抵挡边齐平的抵挡边 181, 左右贯通抵挡边 181、 与抵挡边 181的 顶面和朝向室内的面连通的第四卡槽 182,与第四卡槽 182关于其中心位置的水平面对称、 与第四龙骨本体 178的底面和朝向室内的面连通的第四卡槽 183, 与第四卡槽 183关于第 四龙骨本体 178中心的竖直面对称、与第四龙骨本体 178的底面和朝向室外的面连通的第 四卡槽 184, 与第四卡槽 184关于第四龙骨本体 178中心的水平面上下对称、 与第四龙骨 本体 178的顶面和朝向室外的面连通的的第四卡槽 185,左右贯通第四龙骨本体 178两端、 安装螺丝 (未示出) 的四个两端为螺纹孔的通孔 186、 通孔 187、 通孔 188、 通孔 189, 左 右贯通第四龙骨 177两端、使第四龙骨 177壁厚相对均匀、 并形成与第四龙骨本体 178的 侧壁平行的连接筋的掏空通孔 190、 掏空通孔 191、 掏空通孔 192、 掏空通孔 193、 掏空通 孔 194、 掏空通孔 195、 掏空通孔 196、 掏空通孔 197、 掏空通孔 198、 掏空通孔 199。
还包括与第四龙骨本体 178朝向室内一侧配合、 一个卡扣 200扣在第四卡槽 182内、 另一个卡扣 201扣在第四卡槽 183内的弹性卡扣式塑胶第四隔热条 202,在第四隔热条 202 的凹槽 203内设有与装饰条的弹性卡扣配合的弧形槽 204、 弧形槽 205。 还包括与第四龙 骨本体 178朝向室外一侧配合、一个卡扣 206扣在第四卡槽 185内、 另一个卡扣 207扣在 第四卡槽 184内的弹性卡扣式塑胶第四隔热条 208, 在第四隔热条 208的凹槽 209内设有 与装饰条的弹性卡扣配合的弧形槽 210、弧形槽 211。下侧的第四龙骨 212与第四龙骨 122 关于其中心位置的水平面对称,安装在第四龙骨 212朝向室外一侧的第四隔热条 (未示出) 与第四隔热条 208关于其中心位置的水平面对称,安装在第四龙骨 212朝向室内一侧的第 四隔热条 213与第四隔热条 202关于其中心位置的水平面对称。
实施例 4
与实施例 1不同的是, 从下向上第一排的三个隔层模块 271和第三排的三个隔层模 块的结构相同, 第二排的三个隔层模块 273为结构相同的推拉窗模块。
如图 9所示, 隔层模块 271包括三层隔板, 内层为玻璃板 320和外层为玻璃板 321、 中间层为塑胶板 322。 隔层模块 271右侧的第三龙骨 282包括方形的第三龙骨本体 274, 垂直第三龙骨本体 274右侧面、 与第三龙骨本体 274朝向室内的面齐平、 上下两端与第三 龙骨本体 274齐平的抵挡边 275,与第三龙骨本体 274左侧面连通、贯通第三龙骨本体 274 两端的定位槽 276、 定位槽 277、 定位槽 278, 上下贯通第三龙骨、 使第三龙骨壁厚相对 均匀的掏空通孔 279, 贯通第三龙骨本体 274左侧壁的两个小通孔 (未示出), 贯通第三 龙骨本体 274右侧壁、 与小通孔一一对应的两个大通孔 281。 左侧的第三龙骨 283与第三 龙骨 282关于其中心位置的竖直面对称。
如图 9所示, 隔层模块 271上侧的第四龙骨 284包括方形的第四龙骨本体 285, 左右 贯通第四龙骨本体 285两端的两个通孔 286, 垂直第四龙骨本体 285顶面、 与第四龙骨本 体 285朝向室内的面齐平、两端凸出第四龙骨本体 285并与左侧的第三龙骨 283的抵挡边 280和右侧的第三龙骨 282的抵挡边 275齐平的抵挡边 287,左右贯通第四龙骨 284两端、 使第四龙骨 284壁厚相对均匀的掏空通孔 288、 淘空孔 289。 下侧的第四龙骨 290与第四 龙骨 284关于其中心位置的竖直面对称。
如图 10所示, 推拉窗模块包括塑胶型材的第三龙骨 323、 第三龙骨 291、 第四龙骨 292、 第四龙骨 293, 推拉窗 294。 推拉窗 294包括两层玻璃 295, 两条水平并排的塑胶型 材的第五龙骨 296、 第五龙骨 297, 与第五龙骨 296垂直、 安装在两条第五龙骨 296、 第 五龙骨 297之间的两条并排的塑胶型材的第六龙骨 298、 第六龙骨 299, 转轴 300, 限位 轴 301、 安装在第五龙骨 296上的第五隔热条 324, 安装在第五龙骨 297上的第五隔热条 325、安装在第六龙骨 298上的第六隔热条 326、安装在第六龙骨 299上的第六隔热条 327。
如图 11所示, 第五龙骨 296包括由半圆弧轴和与半圆弧形轴相切的方形体构成的第 五龙骨本体 302, 与转轴 300配合、贯穿第五龙骨本体 302两端的通孔 303, 与限位轴 301 配合、 贯穿第五龙骨本体 302两端的通孔 304, 设置在第五龙骨 296底面上、 贯穿第五龙 骨本体 302两端的定位槽 305、 定位槽 328, 设置在第五龙骨本体 302朝向室外一侧从第 五龙骨本体 302的部分圆弧部、 直线部、 定位槽朝向室外的侧壁的底面等距离凹陷的凹陷 部 329, 在凹陷部 329的上侧设有卡槽 330, 在定位槽 305朝向室外的槽壁上设有抵挡部 331 , 使第五龙骨 296壁厚相对均匀、 贯穿第五龙骨本体 302两端的掏空通孔 306、 掏空 通孔 332、 掏空通孔 333、 掏空通孔 334。 第五隔热条 324包括直线部与弧形弯曲部的第 五隔热条本体 335, 从第五隔热条本体 335上侧向室内方内圆弧弯折再向下反折而成的弹 性卡扣 336, 从第五隔热条本体 335下侧向室内方内圆弧弯折再向上反折而成的弹性卡扣 337。第五隔热条 324的弹性卡扣 336扣在卡槽 330内, 弹性卡扣 337扣在抵挡部 331上。 第五隔热条 324 的朝向室外的圆弧面低于第五龙骨本体 302朝向室外的圆弧面, 定位槽 305朝向室内的侧壁的底面凸出第五隔热条 324的底面。
如图 12所示, 第五龙骨 297包括仅底面为弧形、 顶面和朝向室内外的两侧面为垂直 顶面的平面的第五龙骨本体, 设置在第五龙骨 297顶面上、 左右贯穿第五龙骨本体两端、 分别与定位槽 305、 定位槽 328配合的定位槽 307、 定位槽 338, 设置在第五龙骨本体朝 向室外一侧从第五龙骨本体的部分底面、朝向室外的面、 定位槽 307朝向室外的侧壁的顶 面等距离凹陷的凹陷部 339, 在凹陷部 339的下侧设有卡槽 259, 在定位槽 307朝向室外 的槽壁上设有抵挡部 258, 使第五龙骨 297壁厚相对均匀、 贯穿第五龙骨 297两端的掏空 通孔 308。 第五隔热条 325包括直线部的第五隔热条本体, 从第五隔热条本体上侧向室内 方内圆弧弯折再向下反折而成的弹性卡扣 257, 从第五隔热条本体下侧向室内方内圆弧弯 折再向上反折而成的弹性卡扣 256。 第五隔热条 325的弹性卡扣 256扣在卡槽 259内, 弹 性卡扣 257扣在抵挡部 258上。第五龙骨本体的底面 255凸出第五隔热条 325的底面, 顶 面 254凸出第五隔热条 325的顶面。
如图 13所示, 第六龙骨 299包括方形的第六龙骨本体 246, 用来安装螺丝、 两端为 螺纹孔、 上下贯穿第六龙骨本体 246两端的两通孔 319, 设置在第六龙骨 299左侧面上、 上下贯穿第六龙骨 299本体两端的两条定位槽 309、定位槽 252,设置在第六龙骨本体 246 朝向室外一侧从第六龙骨本体 246的部分右侧面、朝向室外的面、 定位槽的朝向室外的面 的左侧壁等距离凹陷的凹陷部 251, 在凹陷部 251的右侧设有卡槽 250, 在定位槽 309朝 向室外的槽壁上设有抵挡部 249, 使第六龙骨 299壁厚相对均匀、 贯穿第六龙骨 299本体 两端的两掏空通孔 310,, 固定在第六龙骨 299前侧面上的拉手 311。 第六隔热条 327包括 直线部的第六隔热条本体,从第六隔热条本体左侧向室内方内圆弧弯折再向右反折而成的 弹性卡扣 247, 从第六隔热条本体右侧向室内方内圆弧弯折再向左反折而成的弹性卡扣 248。 第六隔热条 327的弹性卡扣 248扣在卡槽 250内, 弹性卡扣 247扣在抵挡部上 249。 第六龙骨本体的右侧面 246凸出卡扣 248的右侧面,第六龙骨本体的左侧面 245凸出卡扣 247的左侧面。
如图 10所示, 第六龙骨 298与第六龙骨 299关于其中心位置的竖直面对称。 安装在 第六龙骨 298上的第六隔热条 326与第六隔热条 327关于其中心位置的竖直面对称。在每 条定位槽内安装有横截面为 U形、 与安装在玻璃 295四周的密封条 316。 玻璃 295安装在 第五龙骨 296、第五龙骨 297和第六龙骨 298、第六龙骨 299对应的定位槽内, 两玻璃 295 间形成一个密闭空间。通过螺丝从上穿过第五龙骨 296的通孔、 从下穿过第五龙骨 297的 通孔与第六龙骨 298 固定。 通过螺丝从上穿过第五龙骨 296 的通孔、 从下穿过第五龙骨 297的通孔与第六龙骨 299固定。 在上侧第三龙骨 323的底面设有可供第五龙骨 296在一 定角度内转动的凹槽 312,在第四龙骨 292的右侧壁上设有与转轴 300配合的圆通孔 313, 与限位轴 301配合的包括两直线段连接两圆弧段的通孔 314。 转轴 300安装在通孔 313, 限位轴 301安装在通孔 314内。在隔层模块的抵挡边 315朝向室外的面上固定有密封条 (未 示出)。
实施例 5
如图 14至图 18所示, 与实施例 1不同的是, 第二排的三个隔层模块为结构相同的推 窗模块, 隔层模块包括推窗 350和推窗 351。
上侧的第三龙骨 352为一体挤压成型的铝型材, 包括方形的第三龙骨本体 353, 垂直 第三龙骨本体 353顶面凸设、 与第三龙骨本体 353朝向室内的面和两端面齐平的抵挡边
354, 垂直第三龙骨本体 353底面凸设、 分别与第三龙骨本体 353的朝向室外和室内的面 齐平、 和两端面齐平的挡边 355、 挡边 356, 垂直第三龙骨本体 353底面凸设、 位于挡边
355、 挡边 356之间、 均与第三龙骨本体 353两端面齐平的导向条 357、 导向条 358。 下侧 的第三龙骨 359与第三龙骨 352关于其中心位置的水平面对称。在第三龙骨 352朝向室外 的一侧粘贴有平板状的塑胶第三隔条 349, 朝向室内的一侧粘贴有平板状的的塑胶第三隔 条 348; 在第三龙骨第三龙骨 359朝向室外的一侧粘贴有平板状的塑胶第三隔条 347, 朝 向室内的一侧粘贴有平板状的的塑胶第三隔条 346
右侧的第四龙骨 360为铝型材, 包括方形的第四龙骨本体 361, 上下贯通第四龙骨本 体 361两端、 安装螺丝 (未示出) 的两个两端为螺纹孔的通孔 362、 通孔 363, 垂直第四 龙骨本体 361右侧面凸设、 与第四龙骨本体 361朝向室内的面齐平、 凸出外方管体两端面 的抵挡边 364, 上下贯通第四龙骨 360两端的第四龙骨 360壁厚均匀的掏空孔 365、 掏空 孔 366, 分别与导向条 357、 导向条 358配合的避空槽 367、 避空槽 368, 与导向条 357 导向条 358配合的避空槽 369、避空槽 370。抵挡边 364顶面与第三龙骨 352的抵挡边 354 的顶面齐平, 底面与第三龙骨 359的抵挡边的底面齐平。 左侧的第四龙骨 345为铝型材, 与第四龙骨 360关于其中心位置的竖直面对称。在第四龙骨 360朝向室外的一侧粘贴有平 板状的塑胶第四隔条 344, 朝向室内的一侧粘贴有平板状的的塑胶第四隔条 343; 在第四 龙骨 345朝向室外的一侧粘贴有平板状的塑胶第四隔条 342, 朝向室内的一侧粘贴有平板 状的的塑胶第四隔条 341
推窗 350包括两层以上的隔板 371, 两条并排平行的第七龙骨 372、 第七龙骨 373 与第七龙骨 372、 第七龙骨 373垂直、 两端分别与第七龙骨 372、 第七龙骨 373固定的两 ?^ ¾) A¾ 374 第 A¾ 375
上侧的第七龙骨;^ 2为一体挤压 型的铝型材, 包括方形的第七龙骨本体 376, 与第 七龙骨本体 376下侧面连通、左右贯通第七龙骨本体 376两端的定位槽 377、 定位槽 378 左右贯通第七龙骨本体 376两端、 设置在第七龙骨本体 376顶面带有半圆弧底面的凹槽 379, 左右贯通第七龙骨本体 376两端、 安装螺丝 (未示出) 的两个两端为螺纹孔的通孔 380、 通孔 381, 左右贯通第七龙骨 372两端、 使第七龙骨 372壁厚相对均匀、 并形成与 第七龙骨本体 376的侧壁平行的连接筋的掏空通孔 382、 掏空通孔 383、 掏空通孔 384 还包括与第七龙骨本体 376朝向室外一侧的侧面、 顶面、 朝向室内的一侧的侧面配合、 一 个卡扣 385扣在定位槽 377的朝向室外的侧壁 386上、另一个卡扣 387扣在定位槽 378的 朝向室内的侧壁 388上的第七隔热条 389, 第七隔热条 389与凹槽 379配合的部分背离凹 槽 379的一侧形成与导向条 357配合的导向槽 390。 下侧的第七龙骨 373与第七龙骨 372 关于其中心位置的水平面对称, 安装在第七龙骨 391 上的第七隔热条 392与第七隔热条 389关于其中心位置的水平面对称。
右侧的第八龙骨 374为一体挤压成型的铝型材, 包括方形的第八龙骨本体 393, 与第 八龙骨本体 393左侧面连通、 上下贯通第八龙骨本体 393两端、 分别与定位槽 377、 定位 槽 378连通的定位槽 394、 定位槽 395, 上下贯通第八龙骨本体 393两端、 设置在第八龙 骨本体 393右侧面中心位置的凹槽 396, 上下贯通第八龙骨 374两端、 使第八龙骨 374壁 厚相对均匀、 并形成与第八龙骨本体 393的侧壁平行的连接筋的掏空通孔 397。 还包括与 第八龙骨本体 393朝向室外一侧的侧面、 右侧面、 朝向室内的一侧的侧面配合、 一个卡扣 398扣在定位槽 394的朝向室外的侧壁 399上、 另一个卡扣 400扣在定位槽 395的朝向室 内的侧壁上的第八隔热条 401, 第八隔热条 401与凹槽 396配合的部分背离凹槽 379的一 侧形成密封槽 402
左侧的第八龙骨 375为一体挤压成型的铝型材, 包括方形的第八龙骨本体 403, 与第 八龙骨本体 403右侧面连通、 上下贯通第八龙骨本体 403两端、 分别与定位槽 377、 定位 槽 378连通的定位槽 404、 定位槽 405, 上下贯通第八龙骨 375两端、 使第八龙骨 375壁 厚相对均匀、 并形成与第八龙骨本体 403的侧壁平行的连接筋的掏空通孔 406。 还包括与 第八龙骨本体 403朝向室外一侧的侧面、 左侧面、 朝向室内的一侧的侧面配合、 一个卡扣 407扣在定位槽 404的朝向室外的侧壁 408上、 另一个卡扣 409扣在定位槽 405的朝向室 内的侧壁 410上的第八隔热条 411, 从第八隔热条 411朝向室内的面的中间位置凸设的密 封条安装部 412
实施例 6
如图 19、 图 21所示, 与实施例 1不同的是, 第二排的三个隔层模块为结构相同的百 叶窗隔层模块, 隔层模块包括两条并排的水平安装的第三龙骨 422、 第三龙骨 423, 两条 并排的第四龙骨 424第四龙骨 425、 多片百叶片 426、 百叶片角度调节机构。 如图 20所示, 百叶片 426为一体挤压成型的型材, 包括长方形的百叶片本体 427, 从百叶片本体 427的底面向下凸设、与百叶片本体 427朝向室外的面齐平的反 L形凸出部 428 , 从百叶片本体 427的顶面向上凸设、 与反 L形凸出部 428形状凹凸配合、 与百叶片 本体 427朝向室内的面齐平的倒 L形凸出部 429, 设置在反 L形凸出部 428的两个朝向室 内的阶梯面上的收口的安装密封条 454的容置凹槽 430、安装密封条 455的容置凹槽 431, 设置在百叶片本体 427中心位置并贯穿百叶片本体 427、 安装叶片轴 432的正六边形的轴 孔 419, 将百叶片 426形成壁厚相对均匀、 与轴孔 419平行的淘空孔 433、 淘空孔 435。
如图 19、 图 21所示, 百叶片角度调节机构包括固定在每片百叶片 426的左端的齿轮 436 , 滑座 437, 与每个齿轮 436配合的直齿条 438, 调节手柄 446。 在滑座 437的朝向室 外的面上设有上下贯穿滑座 437的凹槽 440, 在左、 右侧面上均凸设有与朝向室内的面齐 平的导条 441、 导条 442。 直齿条 438间断的安装在凹槽 440内。
如图 19、 图 21所示, 第三龙骨 422为一体挤压成型的型材, 包括方形的第三龙骨本 体 443, 左右贯通第三龙骨本体 443两端、 两端为螺纹孔的四个通孔 444, 垂直第三龙骨 本体 443上侧面凸设、 与第三龙骨本体 443朝向室内的面齐平、 凸出第三龙骨本体 443两 端面、左侧面与第四龙骨 424的抵挡边左侧面齐平、右侧面与第四龙骨 425的右侧面的齐 平的抵挡边 421,左右贯通第三龙骨 422、使第三龙骨 422壁厚相对均匀的九个淘空孔 445, 设置在第三龙骨本体 443外侧底面上的凸条 456, 设置在凸条 456底面上的反 L形凸出部 457 , 设置在反 L形凸出部 457的两个朝向室内的面上的收口的安装密封条 458的容置凹 槽、 安装密封条 459的容置凹槽。 第三龙骨 423与第三龙骨 422结构不同的是, 凸条 460 凸设在第三龙骨 423的顶面上, 在凸条 460的顶面上设有倒 L形凸出部 461。
如图 19、 图 21所示, 第四龙骨 424包括第四龙骨本体 447, 垂直第四龙骨本体 447 左侧面凸设、 与第四龙骨本体 447朝向室内的面和两端面齐平的抵挡边 420, 上下贯通第 四龙骨 424、 使第四龙骨 424壁厚相对均匀的淘空孔 434, 分别凸设在淘空孔 434的右内 侧面上和后内侧面上、 与第四龙骨本体 447形成与滑座 437上的导条 441、 导条 442配合 的 T形导槽 448的凸出部,设置在第四龙骨本体 447的后侧壁上与调节手柄 446配合的直 导向通孔 (未示出), 设置在第四龙骨本体 447的左侧壁上、 与相应的百叶片 426上左侧 的叶片轴 432共心、 大于齿轮 436的外径的多个避空孔 449, 设置在第四龙骨本体 447的 右侧壁上安装每片百叶片 426左侧的叶片轴 432、 分别与避空孔 449共心的安装孔 (未示 出), 第四龙骨本体 447的右侧壁上、 分别与通孔 444共心的小通孔 450, 第四龙骨本体 447的左侧壁上的正对小通孔 450的大通孔 451。 第四龙骨 425包括第四龙骨本体 452, 设置在本体 452的左侧壁上安装每片百叶片 426右侧的叶片轴 432安装孔 (未示出), 设 置在右侧壁上与安装孔一一对应的安装孔(未示出), 设置在方管体左侧壁上、与通孔 444 一一对应的小通孔 (未示出), 设置在方管体右侧壁上的正对小通孔的大通孔 453。
如图 19、 图 21所示, 百叶片 426左侧的叶片轴 432穿过第四龙骨本体 447右侧壁上 的安装孔与齿轮 436固定,右侧的叶片轴 432可转动地安装在第四龙骨本体 452上左侧壁 上的安装孔内。 滑座 437的导条 441、 导条 442安装在 T形导槽 448内, 调节手柄 446穿 过直导向通孔固定在滑座 437背离凹槽 440的一侧。 通过螺丝 (未示出) 的螺丝头从左侧 穿过第四龙骨 424上端的大通孔 451和小端穿过小通孔 450、 螺丝的螺丝头从右侧穿过第 四龙骨 425上端的大通孔 453和小端穿过第四龙骨 425的小通孔将第三龙骨 422与第四龙 骨 424、 第四龙骨 425固定在一起; 以同样的方式将第三龙骨 423与第四龙骨 424、 第四 龙骨 425固定在一起。 齿轮 436分别与对应的直齿条 438啮合, 从而将百叶片 426可转动 地与第三龙骨 422、 第三龙骨 423、 第四龙骨 424、 第四龙骨 425安装在一起。 通过调节 手柄 446拉滑座 437, 滑座 437上下运动, 滑座 437上的直齿条 438驱动所有的齿轮 436 同步转动, 带动百叶片 426开合。 在百叶片 426闭合的状态, 安装在一起的相接的一百叶 片 426的反 L形凸出部 428和另一百叶片 426的倒 L形凸出部 429插接在一起并通过密封 条 454、 密封条 455密封; 安装在一起的相接的最上侧的百叶片 426的倒 L形凸出部 429 与第三龙骨 422上的反 L形凸出部 457插接在一起并通过密封条 458、 密封条 459密封; 安装在一起的相接的最下侧的百叶片 426的反 L形凸出部 428与第三龙骨 423上的倒 L形 凸出部 461插接在一起并通过密封条 454、 密封条 455密封。 实施例 7
如图 23所示, 与实施例 6不同的是, 百叶片 480为一体挤压成型的铝塑型材, 包括 外塑胶层和内金属层, 塑胶层包括长方形的塑胶层百叶片本体 481, 从塑胶层百叶片本体 481的底面向下凸设、 与百叶片 480本体朝向室内的面齐平的 L形凸出部 482, 从塑胶层 百叶片本体 481的顶面向上凸设、 与 L形凸出部 482形状凹凸配合、 与塑胶层百叶片本体 481朝向室外的面齐平的反倒 L形凸出部 483, 将塑胶层形成壁厚相对均匀的轴向淘空孔 484; 金属层包括外侧面与塑胶层内侧面完全贴合的金属层百叶片本体 485, 贯通金属层 两端、 与叶片轴 486配合的通孔 477, 将金属层形成壁厚相对均匀的淘空孔 478。
如图 22所示,在第四龙骨 487的方管形本体 488的前内侧面上设有直线形凸出部 489 和连接直线形凸出部 489上的非闭合弧形凸出部 490, 在弧形凸出部 490内设有轴向的非 闭合两端大中间小的阶梯通孔 491。
百叶片角度调节机构包括蜗轮 492,与所有蜗轮 492啮合的蜗杆 493, 固定在蜗杆 493 下端的光杆部分上的由两部分拼接的旋钮 494,安装在蜗杆 493两端的轴承 495。蜗杆 493 和安装在蜗杆 493上的轴承 495安装在阶梯孔内,轴承 495与阶梯通孔 491的大孔紧配合 固定, 蜗杆 493与阶梯通孔 491的小孔可转动地配合。 通过旋转旋钮 494, 旋钮 494带动 蜗杆 493同步转动, 蜗杆 493带动蜗轮 492转动, 带动百叶片 480开合。
在方形的第三龙骨本体 496的朝向室外的面和下侧面的转角处设有倒 L形安装部 497, 在方形的第三龙骨本体 498的朝向室外的面和上侧面的转角处设有 L形安装部 499, 在倒 L形安装部 497和 L形安装部 499上通过螺丝和玻璃胶 (未示出) 固定有玻璃板 479。 实施例 8
如图 24所示, 与实施例 6不同的是, 从百叶片本体 500的底面向下凸设有与百叶片 本体 500朝向室外的面齐平的凸出部 501, 从百叶片本体 500的顶面向上凸设有与凸出部 501配合、 与百叶片本体 500朝向室内的面齐平的凸出部。
百叶片角度调节机构包括固定在每片百叶片 502的右端、置于第四龙骨 504的管状本 体内的齿轮 503, 安装在第四龙骨 504的左侧面上并与第四龙骨 504的管状本体内的齿轮 503啮合的齿轮 505、 齿轮 506, 套在齿轮 503、 齿轮 505、 齿轮 506上与齿轮 503、 齿轮 505、 齿轮 506啮合的同步带 507, 调节手柄 508。 齿轮 503的齿轮轴 509穿过第四龙骨 504的管状本体与百叶片 502固定。在第四龙骨 504的朝向室内的面上设有直导向孔 511, 调节手柄 508穿过直导向孔 511与同步带 507固定。 通过上下拉调节手柄 508, 带动同步 带 507上下运动, 同步带 507带动齿轮 503、 齿轮 505、 齿轮 506正转反转, 控制百叶片 502开合。
在 形的第三龙骨本体 512的朝向室外的面和下侧面的转角处设有倒 L形安装部 513, 在方形的第三龙骨本体 512的朝向室内的面和下侧面的转角处设有反倒 L形安装部 514, 在方形的第三龙骨本体 515的朝向室外的面和上侧面的转角处设有 L形安装部 516, 在方 形的第三龙骨本体 515的朝向室内的面和上侧面的转角处设有反 L形安装部 517, 在倒 L 形安装部 513和 L形安装部 516上通过螺丝和玻璃胶 (未示出) 固定有玻璃板 518, 在反 倒 L形安装部 514和反 L形安装部 517上通过螺丝和玻璃胶(未示出)固定有玻璃板 519。 实施例 9
如图 25所示, 与实施例 7不同的是, 百叶片为一体挤压成型的型材, 包括长方形的 百叶片本体 520, 从百叶片本体 520的顶面向上凸设、 与百叶片本体 520朝向室内的面齐 平的倒 L形第一结合部 521, 从百叶片本体 520的底面向下凸设、 与第一结合部 521形状 凹凸配合、 与百叶片本体 520朝向室外的面齐平的反 L形第二结合部 522, 设置在第二结 合部 522的朝向室内的面上的半圆弧形的凹槽 523, 设置在百叶片本体 520中心位置并贯 穿百叶片本体 520、 安装叶片轴的正六边形轴孔 524, 在第一结合部 521的顶面上设有上 卡槽 525, 在第二结合部 522的底面上设有下卡槽 526, 将百叶片形成壁厚相对均匀、 与 轴孔 524平行的三个淘空孔 527。
还包括与百叶片设有凹槽 523的一侧配合的弹性卡扣式第一百叶片隔热条 529和与百 叶片背离凹槽 523—侧配合的弹性卡扣式第二百叶片隔热条 530, 第一百叶片隔热条 529 的卡扣 531扣在上卡槽 525内, 卡扣 532扣在下卡槽 526内; 第二百叶片隔热条 530的卡 扣 533扣在上卡槽 525内, 卡扣 534扣在下卡槽 526内; 在第一百叶片隔热条 529与凹槽 523配合的凹槽部 535内安装有密封条 536 ; 在百叶片闭合的状态, 安装在一起的相接的 两百叶片的第一结合部 521和第二结合部 522交错拼接在一起,在相接的两百叶片重合处 的相对面间通过密封条 536密封。
实施例 10
如图 26所示, 与实施例 9不同的是, 从百叶片本体 537的顶面向上凸设的为一字形 的第一结合部 538, 从百叶片本体 537的底面向下凸设的为一字形的第二结合部 539。 图 27是本发明实施例 1 1的隔层模块从室外投影的立体分解示意图。
实施例 11
如图 27所示, 与实施例 1不同的是, 隔层模块包括四层隔板, 朝向室内的一层为玻 璃板 540和朝向室外的一层为玻璃板 541、 中间两层为塑胶板 542、 塑胶板 543。 右侧的 第三龙骨 544上设有四条贯通第三龙骨 544两端的四个定位槽 545。 左侧的第三龙骨 546 与右侧的第三龙骨 544关于其中心位置的竖直面对称。上侧的第四龙骨 547上设有四条贯 通第四龙骨 547两端的四个定位槽 548。 下侧的第四龙骨 549与上侧的第四龙骨 547关于 其中心位置的竖直面对称。
实施例 12
如图 28、 图 31所示, 一种组合建筑结构, 为房子结构, 包括一楼前墙 551、 二楼前 墙 552、 左墙 553、 后墙 554、 右墙 555, 与一楼前墙 551、 二楼前墙 552、 左墙 553、 后 墙 554、右墙 555固定的楼板 556, 与二楼前墙 552、左墙 553、后墙 554固定的屋顶 557, 与二楼前墙 552、 右墙 555、 后墙 554固定的屋顶 558。 还包括与二楼前墙 552和楼板 556 固定的栏杆 550, 安装在楼板 556上的预制板 559。 右墙 555与左墙 553结构相同。
如图 31所示, 左墙 553与实施例 2不同的是, 左墙 553包括五条竖向的 H型钢、 H 型钢的腹板与水平方向垂直、 H型钢的两翼缘朝向室外和室内的第一龙骨 560和安装在每 相邻的两条第一龙骨 560之间的五条水平方向的第二龙骨 561, 与五排的第二龙骨 561— 一配合的五个固定轴 563, 安装在每条固定轴 563两端的锁紧件 675。 第一龙骨 560为 H 型钢,在第一龙骨 560的腹板上设有与固定轴 563配合的五个第一通孔 564。第二龙骨 561 包括方管型钢的第二龙骨本体 565, 固定在第二龙骨本体 565两端的方片状的第二固定件 677, 在第二固定件 677上设有与固定轴 563配合的第二通孔 676。
如图 29、一图 31所示, 在五条第一龙骨 560的一侧翼缘 644从室外方向扣有弹性卡 扣式的第一外隔热条 645, 第一外隔热条 645的两卡扣 646被翼缘 644朝向翼缘 647的面 648抵挡, 在另一侧翼缘 647从室内方向扣有弹性卡扣式的第一外隔热条 674, 第一外隔 热条 674的两个卡扣 649被翼缘 647朝向翼缘 644的面 650抵挡。
如图 30、 图 31所示, 在五条第二龙骨 561的 方管形的第二龙骨本体 565上从上方 向下插接有第二外隔热条 651, 第二外隔热条 651完全覆盖第二龙骨本体 565朝向室外的 面 652、 顶面 653和朝向室内的面 654。 除安装在最上方的第二龙骨 561上的第二外隔热 条 651的设有顶面 653的侧壁被第二龙骨 561和屋顶 557夹紧, 其余的安装在第二龙骨 561上的第二外隔热条 651设有顶面 653的侧壁被相邻的两条第二龙骨 561夹紧。
仅从室外在相邻的两条第一龙骨 560和两条第二龙骨 561形成的方框内安装一个隔 层模块, 安装在从下向上数第二排和第四排中间的两个隔层模块 562为推拉窗模块, 其余 的隔层模块 666与实施例 2的隔层模块模块结构不同的是, 仅包括两层玻璃隔板。 从室外 对应每条第一龙骨和第二龙骨还安装有装饰条 667, 装饰条 667从室内通过螺丝固定。
如图 31所示, 后墙 554与左墙 553不同的是, 包括五条竖向的 H型钢第一龙骨 566、 第一龙骨 567、 第一龙骨 568、 第一龙骨 569、 第一龙骨 570; 左端通过直角形角铁 579与 第一龙骨 566固定、右端通过直角形角铁与第一龙骨 567固定的五条水平的 H型钢第二龙 骨 571和一条左端通过钝角形角铁 655与第一龙骨 566固定、右端通过锐角形角铁 656与 第一龙骨 567固定的与水平方向倾斜的 H型钢龙骨 572 ; 两端分别与第一龙骨 567、 第一 龙骨 568通过角铁固定的五条水平的 H型钢第二龙骨 573和一条与水平方向倾斜的 H型钢 龙骨 574; 两端分别与第一龙骨 568、 第一龙骨 569通过角铁固定的五条水平的 H型钢第 二龙骨 575和一条与水平方向倾斜的 H型钢龙骨 576 ; 两端分别与第一龙骨 569、 第一龙 骨 570通过角铁固定的五条水平的 H型钢第二龙骨 577和一条与水平方向倾斜的 H型钢龙 骨 578。 龙骨 576、 龙骨 578分别与龙骨 572、 龙骨 574关于龙骨 568的中心位置的竖直 面对称。 龙骨 571、 龙骨 572、 龙骨 567形成三角形的安装框, 在安装框内安装有三角形 模块 657。 龙骨 567、 龙骨 574、 龙骨 568、 龙骨 573形成梯形的安装框, 在安装框内安装 有梯形模块 658, 在龙骨 568的右侧对称安装有三角形模块 659和梯形模块 660。 在后墙 的相邻两竖直龙骨和相邻两水平龙骨内安装有隔层模块,安装在从下向上数第二排和第四 排每排中间的两个隔层模块 562为推拉窗模块。
如图 31所示, 一楼前墙 551与左墙 553不同的是, 前墙 551包括竖直方向的 H型钢 的第一龙骨 580、 第一龙骨 581、 第一龙骨 582、 第一龙骨 583, 安装在第一龙骨 580、 第 一龙骨 581之间三条水平的第二龙骨 584, 安装在第一龙骨 582、 第一龙骨 583之间的三 条水平的第二龙骨 585, 安装在第一龙骨 581、 第一龙骨 582之间的两条第二龙骨, 安装 在第一龙骨 581、 第一龙骨 582之间的隔层模块 588为单扇门模块, 隔层模块 588通过合 页 589枢接在第一龙骨 582的前侧面上。
如图 31所示,二楼前墙 552与后墙 554不同的是,包括竖向 H型钢的第一龙骨 590、 第一龙骨 591、 第一龙骨 592、 第一龙骨 593、 第一龙骨 594, 两端分别与第一龙骨 590、 第一龙骨 591通过角铁固定的三条水平的 H型钢龙骨 595和一条与水平方向倾斜的 H型钢 龙骨 596, 两端分别与第一龙骨 591、 第一龙骨 592通过角铁固定的一条水平的 H型钢龙 骨 597、 和一条与水平方向倾斜的 H型钢龙骨 598, 两端分别与第一龙骨 592、 第一龙骨 593通过直角角铁固定的一条水平的 H型钢龙骨 599和一条与水平方向倾斜的 H型钢龙骨 600,两端分别与第一龙骨 591、第一龙骨 593通过角铁固定的一条水平的 H型钢龙骨 671, 两端分别与第一龙骨 593、 龙骨 594通过直角角铁固定的三条水平的 H型钢龙骨第一龙骨 672和一条与水平方向倾斜的 H型钢龙骨 673。 在二楼前墙的相邻两竖直龙骨和相邻两水 平龙骨内安装有隔层模块, 在第一龙骨 591、 第一龙骨 593之间安装有推拉门。
如图 31所示, 楼板 556与左墙 553不同的是, 包括六条第一龙骨 661, 在每相邻的 两条第一龙骨 661间安装有五条第二龙骨 662, 第一龙骨 661为方管形钢。 在每条第一龙 骨 661和第二龙骨 662上没有安装隔热条。
如图 31所示, 屋顶 557与左墙 553不同的是, 包括七条第一龙骨 663, 在每相邻的 两条第一龙骨 663间安装有四条第二龙骨 664,第一龙骨 663为方管形钢,在第一龙骨 663 上黏贴有与第二外隔热条 651相同的第一外隔热条 665; 在每条第一龙骨 663上均从室内 通过螺丝固定有一条波浪状的屋顶装饰条 668, 相邻的两条屋顶装饰条 668相结合的位置 凹凸交错在一起, 屋顶装饰条 668覆盖所有的第一龙骨 663和第二龙骨 664、 及安装在第 一龙骨 663和第二龙骨 664之间的隔层模块 669。
如图 32、 图 33所示, 为单扇门模块的隔层模块 588包括门 601, 两条并排的关于其 中心位置的水平面对称的第四龙骨 602、第四龙骨 603,抵挡第四龙骨 602和第四龙骨 603 的两端、 与第四龙骨 602和第四龙骨 603垂直的、 两条并排的关于其中心位置的竖直面对 称的第三龙骨 604、 第三龙骨 605, 连接轴 606, 安装在连接轴 606两端的六角锁紧螺母 607、 连接轴 608、 安装在连接轴 608两端的六角锁紧螺母 609。
如图 32、 图 33所示, 第四龙骨 602包括方形的第四龙骨本体 610, 从第四龙骨本体 610的顶面向上凸设有与第四龙骨本体 610朝向室外的面齐平的抵挡边 611, 正中贯通第 四龙骨本体 610左右两端、与连接轴 606配合的通孔 612,贯通第四龙骨 602的左右两端、 使第四龙骨 602壁厚相对均与的掏空通孔 613、 掏空通孔 614、 掏空通孔 615、 掏空通孔 616, 从掏空通孔 614、 掏空通孔 615的共同孔壁 627的下侧面凸设、 两个对称共心的弧 形凸出部 617、 弧形凸出部 618。 弧形凸出部 617、 弧形凸出部 618与孔壁 627形成两端 为螺纹孔的非闭合通孔 619。
如图 32、 图 33所示, 第三龙骨 604包括方形的第三龙骨本体 620, 从第三龙骨本体 620的左侧面上凸设有与第三龙骨本体 620朝向室外的面齐平的抵挡边 621, 从第三龙骨 本体 620的右侧面上凸设有与第三龙骨本体 620朝向室内的面齐平的定位凸条 622, 贯通 第三龙骨 604的上下两端、 使第三龙骨 604壁厚相对均与的掏空通孔 623, 与连接轴 606 同轴、 贯通第三龙骨本体 620的左侧壁并靠近上端、 大于六角锁紧螺母 607的最大外径的 大通孔 624和贯通第三龙骨本体 620的右侧壁、 与连接轴 606配合的小通孔 625, 与连接 轴 608同轴、 贯通第三龙骨本体 620的左侧壁并靠近下端、 大于六角锁紧螺母 609的最大 外径的大通孔 626和贯通第三龙骨本体 620的右侧壁、 与连接轴 608配合的小通孔(未示 出)
如图 32、 图 33所示, 连接轴 606的左端与六角锁紧螺母 607固定, 右端穿过第三龙 骨 604的大通孔 624和小通孔 625、 第四龙骨 602的通孔 612、 第三龙骨 605的小通孔与 六角锁紧螺母 607固定,左端的六角锁紧螺母 607置于第三龙骨 604的掏空通孔 623内并 被第三龙骨 604的右侧壁抵挡,右端的六角锁紧螺母 607置于第三龙骨 605的掏空通孔内 并被第三龙骨 605的左侧壁抵挡将第四龙骨 602与第三龙骨 604、 第三龙骨 605固定在一 起。 第四龙骨 603以同样的方式通过连接轴 608、 六角锁紧螺母 609与第三龙骨 604、 第 三龙骨 605固定在一起。 门 601通过活页 628枢接在第三龙骨 605的朝向室外的面上。在 门上设有把手 629。
如图 32、 图 33所示, 第四龙骨 602的抵挡边 611、 第四龙骨 603的抵挡边 631的左 侧凸出第四龙骨本体 610与第三龙骨 604的抵挡边 621的左侧面齐平,右侧凸出第四龙骨 本体 610与第三龙骨 605的抵挡边 630的右侧面齐平。通过螺丝 632穿过隔层模块 588的 抵挡边上的通孔 637与第一龙骨 581、 第一龙骨 582、 相应的两条第二龙骨固定。
如图 34所示, 推拉窗模块与实施例 2的推拉窗模块不同的是, 第四龙骨 640的抵挡 边、 第四龙骨 641的抵挡边、 第三龙骨 642的抵挡边、 第三龙骨 643的抵挡边与相应的龙 骨朝向室外的面齐平。
实施例 13
如图 35所示, 与实施例 12不同的是, 为门模块的隔层模块为双扇门模块, 包括门 681、 门 682, 门 681通过活页 683枢接在第四龙骨 684的后侧面上, 门 682通过活页 685 枢接在第四龙骨 686的后侧面上。 在门 681上设有把手 687, 在门 682上设有把手 688。 实施例 13
如图 35所示, 与实施例 12不同的是, 为门模块的隔层模块为双扇门模块, 包括门 681、 门 682, 门 681通过活页 683枢接在第四龙骨 684的后侧面上, 门 682通过活页 685 枢接在第四龙骨 686的后侧面上。 在门 681上设有把手 687, 在门 682上设有把手 688。 实施例 14
如图 36、 图 40所示, 与实施例 2不同的是, 一种组合建筑结构, 为玻璃幕墙结构, 包括竖向的通过直角形角铁结构的第一固定件 700与主体框架结构 701每层楼板 702固定 的从左到右水平方向阵列的十条方管形钢第一龙骨 703, 安装在每相邻的两条第一龙骨 703、 竖直方向阵列的十四条的方管型钢第二龙骨 704。 仅从室外方向在每相邻的两条第 一龙骨 703和相邻的两条第二龙骨 704形成的方框 705内安装一个隔层模块 706。 建筑框 架结构朝向室内的、 与主体框架结构 701接触的部分均不安装装饰条。
如图 38、 图 40所示, 在十条第一龙骨 703上均从室外方向紧配合扣有弹性卡扣式 的第一外隔热条 707, 第一外隔热条 707与第一龙骨 703朝向室外的面 708、 左侧面 709 和右侧面 710贴合,第一外隔热条 707的两卡扣 711被第一龙骨 703朝向室内的面 712抵 挡, 第一外隔热条 707完全覆盖第一龙骨 703的左侧面、 朝向室外的面和右侧面。
如图 39、 图 40所示, 在十四条第二龙骨 704从室外方向均紧配合扣有弹性卡扣式 的第二外隔热条 713, 第二外隔热条 713与第二龙骨 704朝向室外的面 714、 顶面 715和 底面 716贴合, 第二外隔热条 713的两卡扣 717被第二龙骨 704朝向室内的面 718抵挡, 第二外隔热条 713完全覆盖第二龙骨 704的顶面、 朝向室外的面和底面。
如图 40所示,在每个方框 705的四个转角处相接的第一外隔热条 707和第二外隔热 条 713上形成容置直角角铁固定件 719的容置腔 720, 在容置腔 720均内安装有与相接的 第一龙骨 703和第二龙骨 704固定的直角角铁固定件 719, 相接的第一龙骨 703和第二龙 骨 704通过直角角铁固定件 719固定在一起。
如图 37、 图 40所示, 在隔层模块 706的两条第三龙骨 721上朝向室外的面上设有 卡槽 722和朝向室内的面上设有卡槽 723, 在隔层模块 706的两条第四龙骨 724上仅在朝 向室外的面上设有卡槽 (未示出) 和朝向室内的面上设有卡槽 725。 一条装饰条至对应一 条第一龙骨 703或第二龙骨 704。 安装在最外侧的第一龙骨 703室外的装饰条 726的两个 弹性卡扣 727扣在外侧的隔层模块 706的靠外侧的第三龙骨 721的卡槽 722内;安装在最 外侧的第二龙骨 704室外的装饰条 730的两个弹性卡扣 731扣在最外侧的隔层模块 706的 靠外侧的第四龙骨 724的朝向室外的面上的卡槽内;安装在中间位置的第一龙骨 703室外 的装饰条 734的弹性卡扣为两组, 即弹性卡扣组 735和弹性卡扣组 736, 每组均包括两个 弹性卡扣,弹性卡扣组 735和弹性卡扣组 736扣在相邻的隔层模块 706的相邻的第三龙骨 721的卡槽 722内;安装在中间位置的第一龙骨 703室内的装饰条 737的弹性卡扣为两组, 即弹性卡扣组 738和弹性卡扣组 739, 每组均包括两个弹性卡扣, 弹性卡扣组 738和弹性 卡扣组 738扣在相邻的隔层模块 706的相邻的第三龙骨 721的卡槽 723内;安装在中间位 置的第二龙骨 704室外的装饰条 740的弹性卡扣为两组, 即弹性卡扣组 741和弹性卡扣组 742, 每组均包括两个弹性卡扣, 弹性卡扣组 741和弹性卡扣组 742扣在相邻的隔层模块 706的相邻的第四龙骨 724朝向室外的面上的卡槽内; 安装在中间位置的第二龙骨 704室 内的装饰条 743的弹性卡扣为两组, 即弹性卡扣组 744和弹性卡扣组 745, 每组均包括两 个弹性卡扣,弹性卡扣组 744和弹性卡扣组 745扣在相邻的隔层模块 706的相邻的第四龙 骨 724朝向室外的面上的卡槽 725内。
实施例 15
如图 41所示, 与实施例 14不同的是, 十条方管形钢第一龙骨包括从左到右水平方 向阵列的第一龙骨 772、 第一龙骨 773、 第一龙骨 774、 第一龙骨 775、 第一龙骨 776、 第 一龙骨 777、 第一龙骨 778、 第一龙骨 779、 第一龙骨 780、 第一龙骨 781 ; 安装在每两相 邻的第一龙骨间十四条的方管型钢第二龙骨 782、 第二龙骨 783、 第二龙骨 784、 第二龙 骨 785、 第二龙骨 786、 第二龙骨 787、 第二龙骨 788、 第二龙骨 789、 第二龙骨 790、 第 二龙骨 791、 第二龙骨 792、 第二龙骨 793、 第二龙骨 794、 第二龙骨 795。
被主体框架抵挡的、安装在第一龙骨 772和第一龙骨 773之间的每个方框内的隔层模 块 796、 安装在第一龙骨 776和第一龙骨 777之间的每个方框内的隔层模块 797、 安装在 第一龙骨 780和第一龙骨 781之间的每个方框内的隔层模块 798、 安装在同一直线上的九 条第二龙骨 782和同一直线上的九条第二龙骨 783之间的每个方框内的隔层模块 799、 安 装在同一直线上的九条第二龙骨 786和同一直线上的九条第二龙骨 787之间的每个方框内 的隔层模块 800、安装在同一直线上的九条第二龙骨 790和同一直线上的九条第二龙骨 791 之间的每个方框内的隔层模块 801、 安装在同一直线上的九条第二龙骨 794和同一直线上 的九条第二龙骨 795之间的每个方框内的隔层模块 802均从室外安装、在室内凸出第一龙 骨和第二龙骨、 与从室内安装的隔层模块朝向室内的面齐平, 其余的没有被主体框架抵挡 的隔层模块均从室内安装、 在室外凸出第一龙骨和第二龙骨、 与从室外安装的隔层模块 796、 隔层模块 797、 隔层模块 798、 隔层模块 799、 隔层模块 800、 隔层模块 801、 隔层 模块 802朝向室外的面齐平。
实施例 16
如图 42所示, 与实施例 14不同的是, 一种组合建筑结构包括竖向安装的九条 T形钢 的第一龙骨 820, 安装在每相邻的两条第一龙骨 820、 竖直方向阵列的七条的 T形钢第二 龙骨 821。 在每个方框 822的四个转角处安装有与相接的第一龙骨和第二龙骨固定的直角 角铁固定件 823, 第一龙骨 820和第二龙骨 821通过直角角铁固定件 823固定在一起。
如图 43所示,在九条第一龙骨 820的翼缘 824朝向室外方向扣有弹性卡扣式的第一 外隔热条 825, 第一外隔热条 825的两卡扣 826被翼缘朝向室内的面 827抵挡。
如图 44所示,在九条第二龙骨 821的翼缘 828朝向室外方向扣有弹性卡扣式的第二 外隔热条 829, 第二外隔热条 829的两卡扣 830被翼缘 828朝向室内的面 832抵挡。
如图 42所示, 隔层模块 833朝向室外的周边通过玻璃胶(未示出)密封。 安装在室 外的装饰条 838与通过从室内锁螺丝与第一龙骨 820固定,安装在室外的装饰条 839与通 过从室内锁螺丝与第二龙骨 821固定。在隔层模块 833的两条第三龙骨 836相背的两面上 设有卡槽 837, 在两条第四龙骨 834相背的两个面上设有卡槽 835, 安装在室内的对应中 间位置的第一龙骨 820的装饰条 831 的两卡扣安装在两相邻的隔层模块 833的第三龙骨 836相对面的卡槽 837内,安装在室内的对应中间位置的第二龙骨 821的装饰条(未示出) 的两卡扣安装在两相邻的隔层模块 833的第四龙骨 834相对面的卡槽 835内。 实施例 17
如图 45所示, 在第一龙骨 840上均从与室外方向平行的方向紧配合扣有弹性卡扣式 的第一外隔热条 841, 第一外隔热条 841完全覆盖第一龙骨 840的朝向室外的面、 右侧面 和朝向室内的面。
如图 46所示, 在第二龙骨 842上均从与室外方向平行的方向紧配合扣有弹性卡扣式 的第二外隔热条 843, 第二外隔热条 843完全覆盖第二龙骨 842的朝向室外的面、 右侧面 和朝向室内的面。
实施例 18
与实施例 14不同的是, 如图 47、 图 48所示, 在右侧的方管形钢的第一龙骨 850朝 向室外的面上点胶式粘贴有平板状的第一外隔热条 851, 朝向室内的面上点胶式粘贴有平 板状的第一内隔条 852, 第一外隔热条 851和第一内隔条 852的右侧面与第一龙骨 850的 右侧面 853齐平, 第一外隔热条 851和第一内隔条 852的左侧面凸出第一龙骨 850的左 侧面 854的高度度稍大于角铁 855的厚度, 这样通过角铁 855固定时角铁 855就不会露 出。在左侧的方管形钢第一龙骨 856上点胶式粘贴有分别与第一外隔热条 851和第一内隔 条 852关于其中心位置的竖直面对称的第一外隔热条 857和第一内隔条 858。
如图 47、 图 49所示, 在中间位置的所有方管形钢的第一龙骨 859朝向室外的面上点 胶式粘贴有平板状的第一外隔热条 860, 朝向室内的面上点胶式粘贴有平板状的第一内隔 条 861,第一外隔热条 860和第一内隔条 861的右侧面凸出第一龙骨 859的右侧面 863的 高度稍大于角铁 855的厚度,第一外隔热条 860和第一内隔条 861的左侧面凸出第一龙骨 859的左侧面 864的高度稍大于角铁 855的厚度。
如图 47所示, 在所有上侧的方管形钢的第二龙骨 865朝向室外的面上点胶式粘贴有 平板状的第二外隔热条 866, 朝向室内的面上点胶式粘贴有平板状的第二内隔条 867, 第 二外隔热条 866和第二内隔条 867的顶面与第二龙骨 865的顶面 868齐平,底面凸出第二 龙骨 865的底面 869的高度稍大于角铁 855的厚度,这样通过角铁 855固定时角铁 855就 不会露出。在下侧的方管形钢第二龙骨 875上点胶式粘贴有分别与第二外隔热条 866和第 二内隔条 867关于其中心位置的水平直面对称的第二外隔热条 866和第二内隔条 867。
如图 47所示, 在中间位置的所有方管形钢的第二龙骨 870朝向室外的面上点胶式粘 贴有平板状的第二外隔热条 871,朝向室内的面上点胶式粘贴有平板状的第二内隔条 872, 第二外隔热条 871和第二内隔条 872的顶面凸出第二龙骨 870的顶面 873高度度稍大于角 铁 855的厚度, 第二外隔热条 871和第二内隔条 872的底面凸出第二龙骨 870的底面 874 的高度度稍大于角铁 855的厚度。
如图 47所示, 隔层模块 875的结构与实施例 3相同。
实施例 19
如图 50所示, 隔层模块与实施例 1中的隔层模块不同的是, 竖直方向中间一排的隔 层模块包括隔板 880、隔板 881, 还包括卷帘 882。第三龙骨 883、第三龙骨 884水平安装, 第四龙骨 885、 第四龙骨 886竖向安装。 在第三龙骨 883、 第三龙骨 884、 第四龙骨 885、 第四龙骨 886上均设有两条分别与隔板 880、 隔板 881配合的定位槽。 在第三龙骨 883的 底部设有容置卷帘 882的半圆弧形容置槽 887, 在第三龙骨 883的朝向室内的面上设有安 装弹性卡扣式装饰条的卡槽 888。在第三龙骨 884的顶部设有容置卷帘 882的容置槽 889, 在第三龙骨 884的朝向室内的面上设有安装弹性卡扣式装饰条的卡槽 890。在第四龙骨 885 的朝向室内的面上设有安装弹性卡扣式装饰条的卡槽 891。 第四龙骨 886与第四龙骨 885 关于其中心位置的竖直面对称。 卷帘的卷帘轴安装分别可转动地枢接在第四龙骨 885、 第 四龙骨 886上。
实施例 20
如图 51所示, 隔层模块与实施例 1中的隔层模块不同的是, 隔层模块包括外面两层 不透明的隔层即装饰板 896、 装饰板 897, 在装饰板 896、 装饰板 897形成的密闭空间内 还设有与装饰板 896、 装饰板 897相对的面贴合的石膏夹板 898。 如图 52所示, 与实施例 16中的隔层模块不同的是, 隔层模块包括两层玻璃板 900, 两条第三龙骨 901、 第四龙骨 902的结构相同, 第三龙骨 901包括横截面为方形的龙骨本 体 903, 在龙骨本体 903的左侧面设有两条与玻璃板 900配合的定位槽 904, 还包括上下 贯穿龙骨本体 903、 使龙骨本体 903壁厚相对均与的掏空通孔 905, 在龙骨本体 903的右 侧面上设有与龙骨本体 903的后侧面齐平的抵挡边 906。 相邻两条第三龙骨 901、 第四龙 骨 902的两端面 45° 拼接, 并通过容置在第掏空通孔 905内的角铁 907固定在一起。 实施例 22
与实施例 18不同的是, 如图 53所示, 在右侧的方管形钢的第一龙骨 910上从室外侧 插有第一外隔热条 911, 从室内侧插有与第一外隔热条 911关于其中心位置的竖直面对称 的第一内隔条 912。 第一外隔热条 911包括与第一龙骨 910的部分右侧面、 朝向室外的面 和部分左侧面配合的 U形第一外隔热条本体, 与第一外隔热条本体朝向室外的面齐平、 垂 直第一外隔热条本体左侧面凸设的、 高度稍大于角铁的厚度的凸出部 913。 在左侧的方管 形钢第一龙骨上侧插有分别与第一外隔热条 911和第一内隔条 912关于其中心位置的竖直 面对称的第一外隔热条和第一内隔条。
如图 54所示, 在中间位置的所有方管形钢的第一龙骨 914上从室外侧插有第一外隔 热条 915, 从室内侧插有与第一外隔热条 915关于其中心位置的竖直面对称的的第一内隔 条 916。 第一外隔热条 915包括与第一龙骨 914的部分右侧面、 朝向室外的面和部分左侧 面配合的 U形第一龙骨第一外隔热条本体, 与第一外隔热条本体朝向室外的面齐平、 垂直 第一外隔热条本体左侧面凸设且高度稍大于角铁的厚度的凸出部 917 和垂直第一外隔热 条本体右侧面凸设且高度稍大于角铁的厚度的凸出部 918。
如图 55所示, 在所有上侧的方管形钢的第二龙骨 919上从室外侧插有第二外隔热条 920, 从室内侧插有与第二外隔热条 920关于其中心位置的竖直面对称的第二内隔条 921。 第二外隔热条 920包括与第二龙骨 919的部分顶面、朝向室外的面和部分底面配合的 U形 第二外隔热条本体, 与第二外隔热条本体朝向室外的面齐平、 垂直第二外隔热条本体底面 凸设、 高度稍大于角铁的厚度的凸出部 922。 在下侧的方管形钢第二龙骨上侧插有分别与 第二外隔热条 920和第二内隔条 921关于其中心位置的水平直面对称的第二外隔热条和第 二内隔条。
如图 56所示, 在中间位置的所有方管形钢的第二龙骨 923从室外侧插有第二外隔热 条 924, 从室内侧插有与第二外隔热条 924 关于其中心位置的竖直面对称的第二内隔条 925。 第二外隔热条 924包括与第二龙骨 923的部分顶面、 朝向室外的面和部分底面配合 的 U形第二外隔热条本体, 与第二外隔热条本体朝向室外的面齐平、 垂直第二外隔热条本 体的顶面凸设、高度稍大于角铁的厚度的凸出部 926和垂直第二外隔热条本体 933底面凸 设、 高度稍大于角铁的厚度的凸出部 927。
实施例 23
与实施例 1不同的是, 如图 57所示, 安装在第一龙骨 930上的第一外隔热条包括外 层为金属的第一外隔热条外层 931和内层为塑胶的第一外隔热条内层 932。 第一外隔热条 内层 932包括平板状的第一外隔热条内层本体,从第一外隔热条内层本体朝向室内的面凸 设、 扣在第一抵挡槽 933内的卡扣 934和扣在第一抵挡槽 935内的卡扣 936, 在卡扣 934 上设有与卡扣 934的左侧面和朝向室内的面连通的凹陷抵挡部 937, 在卡扣 936上设有与 卡扣的右侧面和朝向室内的面连通的凹陷抵挡部 938。 第一外隔热条外层 931包括平板状 的第一外隔热条外层本体,从第一外隔热条外层本体朝向室内圆弧弯折再向右反折而成的 弹性卡扣 939, 从第一外隔热条外层本体朝向室内方内方向圆弧弯折再向左反折而成的弹 性卡扣 940,弹性卡扣 939扣在凹陷抵挡部 937内,弹性卡扣 940扣在凹陷抵挡部 938上。 第一龙骨 930的左侧面 941凸出第一外隔热条外层 931的左侧面,右侧面 942凸出第一外 隔热条外层 931的右侧面。
如图 57、 图 58所示, 安装在第一龙骨 930上的第一内隔条 943、安装在第二龙骨 944 上的第二外隔热条 945、 第二内隔条 946的结构与安装在第一龙骨 930上的第一外隔热条 的结构相同。
如图 59所示, 最外侧的第一外装饰条和第一内装饰条的截面结构相同。 第一外装饰 条包括外侧为金属件的第一外装饰条外层 947和内层为塑胶件的第一外装饰件内层 948。 第一外装饰件内层 948与实施例 1的第一外装饰件不同的是,在遮边 949上设有凹陷抵挡 部 950和在遮边 951凹陷抵挡部 952。 第一外装饰条外层 947包括平板状的第一外装饰条 外层本体,从第一外装饰条外层本体朝向一侧圆弧弯折再向第一外装饰条外层本体反折而 成的弹性卡扣 953, 从第一外装饰条外层本体向朝向与弹性卡扣 953同侧的方向圆弧弯折 再反折而成的弹性卡扣 954, 弹性卡扣 953扣在凹陷抵挡部 950内, 弹性卡扣 954扣在凹 陷抵挡部 952上。
如图 60所示, 中间位置的第一外装饰条和第一内装饰条的截面结构相同。 第一外装 饰条包括外侧为金属件的第一外装饰条外层 955 和内层为塑胶件的第一外装饰件内层 956。 第一外装饰件内层 956与实施例 1的第一外装饰件不同的是, 在遮边 957上设有凹 陷抵挡部 958和在遮边 959上设有凹陷抵挡部 960。 第一外装饰条外层 955包括平板状的 第一外装饰条外层本体,从第一外装饰条外层本体朝向一侧圆弧弯折再向第一外装饰条外 层本体反折而成的弹性卡扣 961, 从第一外装饰条外层本体向室内方内方向与弹性卡扣 961 同侧的方向圆弧弯折再反折而成的弹性卡扣 962, 弹性卡扣 961扣在凹陷抵挡部 958 内, 弹性卡扣 962扣在凹陷抵挡部 959上。
实施例 24
如图 61所示, 卫生间的墙 980、 墙 981、 墙 982、 墙 983、 屋顶 984、 地板 985与实 施例 10的左墙的第一龙骨和第二龙骨的结构、 固定方式、 模块的固定方式相同。
在墙 980上安装有推拉窗模块 996和抽风模块 997,在墙 981上安装有推拉门模块 998, 在墙 982的隔层模块 986上安装有毛巾架 987, 在墙 982的隔层模块 988上安装有淋浴头 989, 在墙 983的隔层模块 990上安装有灯 991, 在墙 983的隔层模块 992上安装有开关 993, 在地板 985上安装有的蹲厕隔层模块 (未示出), 在墙 983、 地板 985之间安装有储 物柜 994, 在墙 982、 墙 983、 地板 985之间安装有洗手台 995。 本实施例的卫生间还可根 据需要设计不同的功能模块或不同的功能件。
实施例 25
如图 62、 图 63所示, 与实施例 15不同的是, 在第一外隔热条 1000相背的两侧、 并 靠近室内一侧、 还设有抵挡凹槽 1001, 还包括从室内扣在第一外隔热条 1000的抵挡凹槽 1001 内、 并完全覆盖第一龙骨 1002和第一外隔热条 1000朝向室内的面的第一弹性卡扣 式内隔条 1003;在第二外隔热条 1004相背的两侧、并靠近室内一侧、还设有抵挡凹槽 1005, 还包括从室内扣在第二外隔热条 1004的抵挡凹槽 1005内、 并完全覆盖第二龙骨 1006和 第二外隔热条 1004朝向室内的面第二弹性卡扣式内隔条 1007。
实施例 26
与实施例 1不同的是, 如图 64所示, 在第三龙骨 1020朝向室外的一侧安装有 U形的 第三隔条 1021, 朝向室内的一侧安装有 U形的第三隔条 1022。在第四龙骨 1023朝向室外 的一侧安装有 U形的第四隔条 1024、 朝向室外的一侧安装有 U形的第四隔条 1025。
如图 65所示, 在第三龙骨 1020的第三龙骨本体 1026靠近室外的一侧的左侧面上设 有上下贯通第三龙骨本体 1026 的凹槽 1027, 右侧面上设有上下贯通第三龙骨本体 1026 的凹槽 1028。 第三隔条 1021从室外的方向垂直第三龙骨 1020朝向室外的面扣在第三龙 骨 1020上, 第三隔条 1021左侧的第三卡扣 1029容置在凹槽 1027内并被凹槽 1027靠近 室外的槽壁 1030抵挡,第三卡扣 1029的左侧面 1031与第三龙骨本体 1026的左侧面 1032 齐平,第三隔条 1021右侧的第三卡扣 1033容置在凹槽 1028内并被凹槽 1028靠近室外的 槽壁 1034抵挡,第三卡扣 1033的右侧面 1035与第三龙骨本体 1026的右侧面 1036齐平。 在第三龙骨本体 1026靠近室内的一侧的左侧面上设有上下贯通第三龙骨本体 1026的凹槽 1037, 在第三龙骨 1020的抵挡边 1038的右侧面上设有上下贯通第三龙骨本体 1026的凹 槽 1039。第三隔条 1022从室内的方向垂直第三龙骨 1020朝向室内的面扣在第三龙骨 1020 上, 第三隔条 1022的第三卡扣 1040、 第三卡扣 1041分别扣在凹槽 1037、 凹槽 1039内, 第三隔条 1022的左右两个侧面与第三龙骨 1020的左右两个侧面齐平。
如图 66所示, 在第四龙骨 1023的第四龙骨本体 1046靠近室外的一侧的顶面上设有 左右贯通第四龙骨本体 1046的凹槽 1042, 底面上设有左右贯通第四龙骨本体 1046的凹 槽 1043。第四隔条 1024从室外的方向垂直第四龙骨 1023朝向室外的面扣在第四龙骨 1023 上, 第四隔条 1024的第四卡扣 1044、 第四卡扣 1045分别扣在凹槽 1042、 凹槽 1043内, 第四隔条 1024的顶面和底面分别与第四龙骨 1023的顶面和底面齐平。 在第四龙骨 1023 的抵挡边 1047的顶面上设有左右贯通第四龙骨本体 1046的凹槽 1048, 在第四龙骨本体 1046靠近室内一侧的底面上设有左右贯通第四龙骨本体 1046的凹槽 1049。第四隔条 1025 从室外的方向垂直第四龙骨 1023朝向室外的面扣在第四龙骨 1023上, 第四隔条 1025的 第四卡扣 1050、 第四卡扣 1051分别扣在凹槽 1048、 凹槽 1049内, 第四隔条 1024的顶面 和底面分别与第四龙骨 1023的顶面和底面齐平。
如图 64所示,在第三龙骨 1052上安装有与安装在第三龙骨 1020上的第三隔条 1021、 第三隔条 1022分别关于其中心位置的竖直面对称的第三隔条 1053、第三隔条 1057。在第 四龙骨 1054上安装有与安装在第四龙骨 1023上的第四隔条 1024、 第四隔条 1025分别关 于其中心位置的竖直面对称的第四隔条 1055、 第四隔条 1056。
实施例 27
与实施例 4不同的是, 如图 67、 图 68所示, 隔层为三层透明玻璃板 1080、 玻璃板 1081、 玻璃板 1082, 在玻璃板 1080相对玻璃板 1081的面上贴有完全覆盖玻璃板 1080的 柔性塑料膜 1083, 在玻璃板 1080相对玻璃板 1080的面上贴有完全覆盖玻璃板 1080的柔 性塑料膜 1083, 在玻璃板 1081相对玻璃板 1080的面上贴有完全覆盖玻璃板 1081的柔性 塑料膜 1084, 在玻璃板 1081相对玻璃板 1082的面上贴有完全覆盖玻璃板 1081的柔性塑 料膜 1085, 在玻璃板 1082相对玻璃板 1081的面上贴有完全覆盖玻璃板 1082的柔性塑料 膜 1086。 本实施例中的柔性塑料膜也可为塑胶板、 纸板等。
实施例 28
与实施例 1不同的是, 如图 69所示, 仅在第一龙骨 1100朝向室外的面上安装有第一 外隔热条 1101, 在第一龙骨 1100朝向室内的面上中心位置设有上下贯通第一龙骨 1100 两端面的安装电线等的第一容置槽 1102。
如图 70所示,仅在第二龙骨 1103朝向室外的面上安装有第二外隔热条 1104,在第二 龙骨 1103朝向室内的面上中心位置设有上下贯通第二龙骨 1103两端面的安装电线等的第 二容置槽 1105。 安装在一起的第一龙骨 1100上的第一容置槽 1102和第二龙骨 1103上的 第二容置槽 110相连通。
实施例 29
如图 71所示, 与实施例 18不同的是, 每层楼的第一龙骨是独立的。 本实施例的主体 框架 1120为两层楼, 同一直线上由两条第一龙骨即第一龙骨 1121、 第一龙骨 1122组成。 在主体框架 1120内预埋有固定件 1123, 在第一龙骨 1121、 第一龙骨 1122的结合处插接 有连接件 1124, 连接件 1124与第一龙骨 1121、 第一龙骨 1122均通过螺丝固定。 第一龙 骨 1121、 第一龙骨 1122均两端通过螺丝和焊接方式与固定件 1123固定。
对一些为配合需要的配合间隙、 倒圆、 倒角、 为避免干涉需加共的避空位等为常规设 计, 本发明不详细说明。 本发明的组合建筑结构也可使用室内的组合墙等。 本发明的第一 龙骨和第二龙骨排列成大小不同的方框通过本发明公开的实施例完全能实现,故不详细说 明。

Claims

权 利 要 求 书
1、一种组合建筑结构,包括主龙骨、隔层模块; 主龙骨包括两条以上平行的金属第一龙骨, 两条以上与第一龙骨垂直、 两端被两条第一龙骨抵挡、 与两条第一龙骨固定的金属第二龙 骨, 隔层模块; 相邻的两条第一龙骨和相邻的两条第二龙骨形成安装隔层模块的方框; 隔 层模块包括两条并排平行的第三龙骨, 与第三龙骨垂直、 两端与两条第三龙骨固定的两条 第四龙骨, 安装在两条第三龙骨、 两条第四龙骨间的两层以上相隔设定距离的隔层, 相邻 的两隔层间形成密闭空间; 其特征在于: 在隔层模块的两条第三龙骨相背的两个外侧面上 和两条第四龙骨相背的两个外侧面上设有与相应的第三龙骨和相应的第四龙骨一体成型的 抵挡边; 还包括与第一龙骨固定、 完全覆盖相应的第一龙骨朝向室外的面的型材第一外隔 热条, 和与第二龙骨固定、 完全覆盖相应的第二龙骨朝向室外的面的型材第二外隔热条; 在一个方框内仅从一侧安装一个所述的隔层模块; 隔层模块的第三龙骨和第四龙骨为塑胶 型材, 或隔层模块的第三龙骨和第四龙骨为金属件, 则隔层模块还包括与第三龙骨固定、 完全覆盖相应的第三龙骨朝向室外的面的型材第三外隔热条和与第四龙骨固定、 完全覆盖 相应的第四龙骨朝向室外的面的型材第四外隔热条; 紧固件穿过隔层模块上的抵挡边与相 应的第一龙骨和 /或第二龙骨固定将隔层模块与相应的第一龙骨和第二龙骨固定;隔层模块 从室内安装, 隔层模块朝向室外的一侧与第一外隔热条和第二外隔热条齐平或凸出第一外 隔热条和第二外隔热条, 或隔层模块从室外安装, 隔层模块朝向室内的一侧与第一龙骨和 第二龙骨齐平或凸出第一龙骨和第二龙骨; 在朝向室外的一侧、 还包括与第一龙骨对应的 第一装饰条和与第二龙骨对应的第二装饰条; 第一装饰条覆盖第一外隔热条和相邻的两隔 层模块的相邻两第三龙骨或第四龙骨, 第二装饰条覆盖第二外隔热条和相邻的两隔层模块 的相邻两第四龙骨或第三龙骨。
2、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨、 第二龙骨为金 属型材; 所述的第一外隔热条和第二外隔热条为 U形弹性卡扣式隔热条; 在第一龙骨靠近 室外一侧的相背两侧面上设有第一卡槽, 第一外隔热条的两个卡扣从室外方向侧插扣在对 应的两个第一卡槽内, 第一龙骨凸出安装在其上的第一外隔热条的两卡扣相背的两侧或与 安装在其上的第一外隔热条的两卡扣相背的两侧齐平; 在第二龙骨靠近室外一侧的相背的 两侧面上设有第二卡槽, 第二外隔热条的两个卡扣从室外方向侧插扣在对应的两个第二卡 槽内, 第二龙骨凸出安装在其上的第二外隔热条的两卡扣相背的两侧或与安装在其上的第 二外隔热条的两卡扣相背的两侧齐平。
3、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨和 /或第二龙骨 为方管型钢或 C型钢或 H型钢; 所述的第一外隔热条和第二外隔热条为 U形隔热条或弹性 卡扣式 U形隔热条; 第一外隔热条侧插紧配合安装在第一龙骨上, 第一外隔热条完全覆盖 第一龙骨的三个面; 第二外隔热条侧插紧配合安装在第二龙骨上, 第二外隔热条完全覆盖 第二龙骨的三个面。
4、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第一装饰条通过紧固件固 定在第一龙骨上或隔层模块上, 或所述的第一装饰条为弹性卡扣式装饰条, 扣在第一龙骨 上或隔层模块上; 所述的第二装饰条通过紧固件固定在第二龙骨上或隔层模块上, 或所述 的第二装饰条为弹性卡扣式装饰条, 扣在第二龙骨上或隔层模块上; 所述的第一外隔热条 点胶式粘贴在所述第一龙骨上的平板状的隔热条, 所述的第二外隔热条点胶式粘贴在所述 第二龙骨上的平板状的隔热条。
5、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 还包括与第一龙骨对应、 完全覆 盖相应的第一龙骨朝向室内的面第一内隔条, 和与第二龙骨对应、 完全覆盖相应的第二龙 骨朝向室内的面的第二内隔条。
6、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨和 /或第二龙骨 为方管型钢或 C型钢或 H型钢; 所述的第一外隔热条和第二外隔热条、 第一内隔条和第二 内隔条为 U形隔热条; 第一外隔热条从室外侧插紧配合安装在第一龙骨上, 第一内隔热条 从室内侧插紧配合安装在第一龙骨上;第二外隔热条从室外侧插紧配合安装在第二龙骨上, 第二内隔热条从室内侧插紧配合安装在第二龙骨上。
7、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第一外隔热条包括外层为 金属的第一外隔热条外层和内层为塑胶的第一外隔热条内层; 第一外隔热条外层完全覆盖 第一外隔热条内层露出室内的面; 所述的第二外隔热条包括外层为金属的第二外隔热条外 层和内层为塑胶的第二外隔热条内层; 第二外隔热条外层完全覆盖第二外隔热条内层露出 室内的面。
8、 如权利要求 7所述的一种组合建筑结构, 其特征在于: 所述的第一外隔热条外层为 U形 弹性卡扣式金属件,第一外隔热条外层的两卡扣扣在所述的第一外隔热条内层的两卡扣上; 所述的第二外隔热条外层为 U形弹性卡扣式金属件, 第二外隔热条外层的两卡扣扣在所述 的第二外隔热条内层的两卡扣上。
9、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 还包括与第一龙骨朝向室内的一 侧配合的第一装饰条和与第二龙骨朝向室内的一侧配合的第二装饰条; 所述的第一装饰条 完全覆盖对应的所述第一龙骨和相邻的两隔层模块的两相邻龙骨朝向室内的面, 所述的第 二装饰条完全覆盖对应的所述第二龙骨和相邻的两隔层模块的两相邻龙骨朝向室内的面。
10、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的第三隔条为弹性卡扣式 隔条, 在第三龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第三龙骨本体两端的第三卡槽, 第三隔条的两个卡扣分别抵挡在第三龙骨相背的第三卡槽内, 第三龙骨相背的两侧凸出安 装在其上的第三隔条对应的两侧或与安装在其上的第三隔条对应的两侧齐平; 所述的第四 隔条为弹性卡扣式隔条, 在第四龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第四龙骨本 体两端的第四卡槽, 第四隔条的两个卡扣分别抵挡在第四龙骨相背的第四卡槽内, 第四龙 骨相背的两侧凸出安装在其上的第四隔条对应的两侧或与安装在其上的第四隔条对应的两 侧齐平。
11、 如权利要求 10所述的一种组合建筑结构, 其特征在于: 所述的组合建筑结构为安装在 两层楼板之间的组合墙或组合窗, 所述的第一龙骨和第二龙骨为隔热隔音的塑胶型材, 所 述的第一外隔热条和所述的第二外隔热条为外观美观的金属件; 所述的第三龙骨和第四龙 骨为隔热隔音的塑胶型材; 在第三龙骨仅朝向室内的面设有所述的金属件第三隔条, 在第 四龙骨仅朝向室内的面设有所述的金属件第四隔条; 还包括与第一龙骨对应、 完全覆盖相 应的第一龙骨朝向室内的面金属件第一内隔条, 和与第二龙骨对应、 完全覆盖相应的第二 龙骨朝向室内的面的金属件第二内隔条; 所述的第一内隔条为 U形弹性卡扣式隔条, 在第 一龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第一龙骨本体两端的第三卡槽, 第一内隔 条的两个卡扣分别抵挡在第一龙骨相背的第三卡槽内, 第一龙骨相背的两侧凸出安装在其 上的第一内隔条对应的两侧或与安装在其上的第一内隔条对应的两侧齐平; 所述的第二内 隔条为 U形弹性卡扣式隔条, 在第二龙骨相背的两侧、 并靠近室内一侧、 设有贯穿第二龙 骨本体两端的第四卡槽, 第二内隔条的两个卡扣分别抵挡在第二龙骨相背的第四卡槽内, 第二龙骨相背的两侧凸出安装在其上的第二内隔条对应的两侧或与安装在其上的第二内隔 条对应的两侧齐平。
12、如权利要求 1至 11所述的一种组合建筑结构,其特征在于:所述的隔层包括两层隔板, 在两条第三龙骨相对的面上和两条第四龙骨相对的面上均设有一一对应的、 与隔板层数相 同的定位槽, 隔板安装在两条第三龙骨和两条第四龙骨对应的定位槽内, 还包括将所述隔 板与相应的定位槽密封的密封条; 在相邻两隔板的密闭空间内还设有与两相邻的隔层相对 的面贴合的夹板。
13、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层为两层以上的 隔板, 在每块隔板上安装有一体成型、 包裹隔板四周、 横截面为 U形的方框形密封圈; 在 两条第三龙骨相对的面上和两条第四龙骨相对的面上均设有一一对应的、 与隔板层数相同 的定位槽, 隔板及安装在隔板上的方框形密封圈安装在两条第三龙骨和两条第四龙骨对应 的定位槽内。
14、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层为三层以上的 隔板, 在两条第三龙骨相对的面上和两条第四龙骨相对的面上均设有一一对应的、 与隔板 层数相同的定位槽, 隔板安装在两条第三龙骨和两条第四龙骨对应的定位槽内, 还包括将 所述隔板与相应的定位槽密封的密封条; 外层两层隔板为透明玻璃板, 内层一侧以上的隔 板为透明塑胶板。
15、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括推拉 窗模块; 推拉窗模块还包括推拉窗; 推拉窗包括两层以上的隔板, 两条并排平行的第五龙 骨, 与第五龙骨垂直、 两端分别与两条第五龙骨固定的两条并排的第六龙骨, 从室外方向 侧向扣在第五龙骨上并完全覆盖相应的第五龙骨露出室外的面的第五隔条, 从室外方向侧 向扣在第六龙骨上并完全覆盖相应的第六龙骨露出室外的面的第六隔条, 在两条第五龙骨 相对的面上和两条第六龙骨相对的面上均设有一一对应的、 与隔板层数相同的定位槽, 隔 板安装在对应的定位槽内, 所述隔板与相应的定位槽密封, 相邻隔板间形成一个密闭空间; 在所述的上侧第三龙骨的底面设有可供第五龙骨在设定角度内转动的凹槽, 上侧的第五龙 骨可在凹槽内在一定角度内转动地枢接在左右两侧的第四龙骨上。
16、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括百叶 窗模块; 所述的百叶窗模块还包括百叶片、 百叶片角度调节机构; 百叶片角度调节机构包 括齿轮, 仅可上下短距离滑动地安装在仅一侧的竖向安装的第四龙骨上的滑座, 固定在滑 座上、 与齿轮配合的直齿条; 叶片轴两端可转动地安装在两条第四龙骨上, 仅一端的叶片 轴穿过一侧第四龙骨的侧壁与所述的齿轮固定。
17、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括百叶 窗模块; 所述的百叶窗模块还包括百叶片、 百叶片角度调节机构; 在两条第三龙骨相对的 两个侧面上设有与百叶片配合的凸条; 在百叶片闭合的状态, 安装在一起的相接的两百叶 片交错拼接在一起, 百叶片与凸条交错拼接在一起; 在相接的两百叶片重合处的相对面间 和相接的百叶片与凸条的重合处的相对面间均设有密封条。
18、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括百叶 窗模块; 所述的百叶窗模块还包括百叶片、 百叶片角度调节机构; 百叶片角度调节机构包 括固定在每片百叶片仅一端的叶片轴上的蜗轮, 可上下短距离滑动地、 安装在仅一侧的第 四龙骨上与蜗轮配合的蜗杆, 固定在蜗杆上的旋钮; 叶片轴两端可转动地安装在两条第四 龙骨上, 仅一端的叶片轴穿过一侧第四龙骨的侧壁与所述的蜗轮固定。
19、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括百叶 窗模块; 所述的百叶窗模块还包括百叶片、 百叶片角度调节机构; 在两条竖向安装的第四 龙骨上设有与每片百叶片的百叶片轴配合的百叶片轴孔; 百叶片角度调节机构包括固定在 每片百叶片仅一端的叶片轴上的齿轮, 套在齿轮上与齿轮配合的同步带, 调节手柄, 设置 在第四龙骨上的直导向孔; 叶片轴两端可转动地安装在两条第四龙骨上, 仅一端的叶片轴 穿过一侧第四龙骨的侧壁与所述的齿轮固定; 调节手柄穿过直导向孔与同步带固定; 齿轮 容置在第四龙骨内。
20、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层模块包括百叶 窗模块; 所述的百叶窗模块还包括百叶片、 百叶片角度调节机构; 百叶片包括长方形的百 叶片本体, 在百叶片本体的顶面设有与百叶片本体前侧面齐平的第一结合部, 在百叶片本 体的底面设有与百叶片本体后侧面齐平第二结合部; 在第一结合部的顶面上设有上卡槽, 在第二结合部的底面上设有下卡槽, 在第一结合部或第二结合部相对的面上设有与密封条 配合的凹槽, 还包括贯通百叶片本体两端的轴孔和使百叶片壁厚相对均匀的掏空孔; 还包 括与百叶片设有凹槽的一侧配合的弹性卡扣式第一百叶片隔条和与百叶片背离凹槽一侧配 合的弹性卡扣式第二百叶片隔条, 第一百叶片隔条的两个卡扣一个扣在上卡槽内, 一个扣 在下卡槽内; 第二百叶片隔条的两个卡扣一个扣在上卡槽内, 一个扣在下卡槽内; 在第一 百叶片隔条内安装有密封条; 在百叶片闭合的状态, 安装在一起的相接的两百叶片的第一 结合部和第二结合部交错拼接在一起, 在相接的两百叶片重合处的相对面间通过所述密封 条密封。
21、 如权利要求 1所述的一种组合建筑结构, 其特征在于: 所述的隔层模块的第三龙骨和 第四龙骨为金属型材; 所述的隔层模块包括百叶窗模块; 所述的推窗模块的隔层为推窗, 所述的推窗包括两层以上的隔板, 两条并排平行的金属型材第七龙骨, 与第七龙骨垂直、 两端分别与第七龙骨固定的两条并排的金属型材; 在第七龙骨上设有完全覆盖第七龙骨朝 向室外的面和室内的面的第七隔条, 在第八龙骨上设有完全覆盖第八龙骨朝向室外的面和 室内的面的第八隔条。
22、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 在所述第一龙骨上设有贯 穿第一龙骨本体两端面的第一容置槽, 在所述第二龙骨上设有贯穿第二龙骨本体两端面的 第二容置槽; 安装在一起的所述的第一龙骨上的第一容置槽和第二龙骨上的第二容置槽相 连通; 相邻的隔层模块间固定有内装饰条; 一条内装饰条只对应一条第一龙骨或一条第二 龙骨; 内装饰条覆盖相应的第一龙骨或第二龙骨、 和相邻的两隔层模块的相邻两龙骨。
23、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 相邻隔层模块的相对抵挡 边在室内形成第三容置槽,相邻的隔层模块间扣装有弹性卡扣式装饰条或粘贴有内装饰条; 一条内装饰条只对应一条第一龙骨或一条第二龙骨; 内装饰条覆盖相应的第一龙骨或第二 龙骨、 和相邻的两隔层模块的相邻两龙骨。
24、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的组合建筑结构为安 装在建筑主体框架结构外侧的幕墙; 所述的被主体框架抵挡的隔层模块从室外安装在对应 的方框内, 其余的隔层模块从室内安装在对应的方框内。
25、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的组合建筑结构为安 装在建筑主体框架结构外侧的幕墙; 所述的第一龙骨竖向安装, 通过第一固定件与主体框 架结构楼板固定, 所述的隔层模块均从室外安装在对应的方框内。
26、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 还包括与第一龙骨或第二 龙骨固定的屋顶装饰条, 一条屋顶装饰条只对应一条第一龙骨或一条第二龙骨, 所述的屋 顶装饰条为波浪状, 相邻的两条屋顶装饰条相结合的位置凹凸交错在一起, 所述的屋顶装 饰条覆盖所述的组合建筑结构。
27、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨和 /或第 二龙骨为方管型钢或 C型钢或 H型钢或 T型钢。
28、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨为方管型 钢或 C型钢, 所述的第二龙骨为方管型钢或 C型钢, 在每个方框的四个转角处相接的第一 隔条和第二隔条上形成容置角铁固定件的容置腔, 在容置腔均内安装有与相接的第一龙骨 和第二龙骨的角铁固定件, 相接的第一龙骨和第二龙骨通过角铁固定件固定在一起。
29、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的隔层为二层以上的 透明玻璃板, 在相邻的两层玻璃板相对的面上贴有完全覆盖相应玻璃板的柔性覆盖膜或刚 性覆盖板。
30、 如权利要求 1至 11所述的一种组合建筑结构, 其特征在于: 所述的第一龙骨和 /或第 二龙骨为方管型钢或 C型钢或 H型钢; 还包括从室内扣在第一外隔热条上的第一弹性卡扣 式内隔条, 从室内扣在第二外隔热条上的第二弹性卡扣式内隔条; 第一外隔热条和第一弹 性卡扣式内隔条完全包裹第一龙骨的四个侧面第二外隔热条和第二弹性卡扣式内隔条完全 包裹第二龙骨的四个侧面。
31、一种包括如权利要求 1至 11所述的组合建筑结构的房子,其特征在于:房子的四面墙、 屋顶和楼板均由所述的组合建筑结构组装而成; 在房子的楼板上铺有水泥预制板或浇灌有 水泥。
32、 一种包括如权利要求 1至 11所述的组合建筑结构的卫生间, 卫生间的四面墙、 屋顶、 地板均由所述的组合建筑结构组装而成, 四面墙中的一面和 /或两面和 /或三面和 /或四面、 和 /或屋顶、 和 /或楼板、 和 /或地板的隔层模块包括功能模块, 和 /或在隔层模块上固定有 功能件。
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