WO2013166834A1 - Structure de bâtiment combinée, procédé de montage, unité d'habitation et toilette - Google Patents

Structure de bâtiment combinée, procédé de montage, unité d'habitation et toilette Download PDF

Info

Publication number
WO2013166834A1
WO2013166834A1 PCT/CN2012/086731 CN2012086731W WO2013166834A1 WO 2013166834 A1 WO2013166834 A1 WO 2013166834A1 CN 2012086731 W CN2012086731 W CN 2012086731W WO 2013166834 A1 WO2013166834 A1 WO 2013166834A1
Authority
WO
WIPO (PCT)
Prior art keywords
keel
keels
partition
fixed
resisting
Prior art date
Application number
PCT/CN2012/086731
Other languages
English (en)
Chinese (zh)
Inventor
杨东佐
Original Assignee
Yang Dongzuo
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Yang Dongzuo filed Critical Yang Dongzuo
Publication of WO2013166834A1 publication Critical patent/WO2013166834A1/fr

Links

Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/24Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons the supporting parts consisting of metal
    • 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
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • 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
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/7407Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts
    • E04B2/7416Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts with free upper edge, e.g. for use as office space dividers
    • E04B2/7433Removable non-load-bearing partitions; Partitions with a free upper edge assembled using frames with infill panels or coverings only; made-up of panels and a support structure incorporating posts with free upper edge, e.g. for use as office space dividers with panels and support posts
    • 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
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • E04B2/76Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal
    • E04B2/78Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal characterised by special cross-section of the frame members as far as important for securing wall panels to a framework with or without the help of cover-strips
    • E04B2/7809Removable non-load-bearing partitions; Partitions with a free upper edge with framework or posts of metal characterised by special cross-section of the frame members as far as important for securing wall panels to a framework with or without the help of cover-strips of single or multiple tubular form
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/24Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons the supporting parts consisting of metal
    • E04B2001/2466Details of the elongated load-supporting parts
    • 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
    • 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
    • E06B1/366Mullions or transoms therefor

Definitions

  • the present invention relates to a building structure, and more particularly to a composite wall, or a combination window, or a combination house, or a combination toilet.
  • a steel frame and a wall panel, a ceiling, and a roof are disclosed.
  • a plurality of lugs are punched on the side of the profile strip of the steel frame, and the card strips are divided into two types: A type and B type, the type A is a side stamping lug, and the B type is a stamping lug on both sides.
  • the side is a vertical card ear, and the other side is a horizontal card ear; the panel is also divided into an A-type panel and a B-type panel, the two sides of the horizontal side, one side is the "hex" side edge and "B "The side of the word, the other side is the tail of the "one", the hook cavity and the hook are set in the middle, the "one" word (or “B") side edge and the "one” suffix of the other panel
  • the side and the ear are sleeved together, and the multiple panels are integrated into one surface to complete the structure of the wall, the ceiling and the roof.
  • the profile and panel of the structural steel frame are unreliable, and the sound insulation, heat insulation and waterproof effect of the welded structure are poor.
  • an inorganic keel plug-in composite wall body is disclosed.
  • the wall is composed of a vertical keel and a horizontal keel; the vertical keel is composed of a grooved side strip and a middle inserting plate, and the middle inserting plate is inserted inward along the cross section of the vertical keel. To reduce the weight of the wall, the middle inserting plate is formed.
  • a block, inserted into the trough-shaped side strips, respectively, is connected to the trough-shaped side strips by a piece of joints, forming a combined keel; the vertical keel is a long strip, and the transverse keel is a section of the vertical keel, and then used
  • the connecting piece fixes the horizontal keel one by one on the vertical keel; the two outer side of the wall is laminated with a self-tapping screw fixed on the grooved edge strip on the combined keel.
  • the composite wall of this structure has many connection processes of the vertical keel and the horizontal keel, and the installation is time-consuming.
  • the horizontal keels and the vertical keels that are connected together are easy to fall apart when subjected to a large external force.
  • the panel also needs to be installed on the keel by self-tapping screws. On the one hand, the installation takes time, the installation cost is increased, and on the other hand, the appearance is affected.
  • a non-load-bearing light steel keel insulation wall and a construction method thereof are disclosed, the insulation wall comprising a light steel keel skeleton buried in a perfused lightweight mixed mortar, and being installed in a light
  • the panel on both sides of the steel keel, the self-tapping screw connection between the panel and the keel, and the grouting hole are pre-set on the panel.
  • the light steel keel skeleton is a side-by-side double keel skeleton formed by two identical light steel keel skeletons connected by connecting bones.
  • the keel of this structure, the connection between the panel and the keel also requires a self-tapping screw connector, which is time-consuming and labor-intensive to install, and the self-tapping screw affects the appearance.
  • the first technical problem to be solved by the present invention is to provide a connection between the longitudinal and transverse keels.
  • the keel does not need to be directly fixed by fasteners or welding, and the installation is convenient, reliable, and appearance.
  • the second technical problem to be solved by the present invention is to provide a connection between the longitudinal and transverse keels.
  • the keel does not need to be directly fixed by fasteners or welding, and the installation is convenient, reliable, and appearance.
  • a composite building structure comprising three or more side-by-side profiles, a first keel, four or more profiles perpendicular to the first keel, a second keel, and a compartment module, characterized in that: more than two fixed shafts are mounted, each of which is installed The locking member at both ends of the fixed shaft; the first keel is provided with two or more side walls vertically penetrating the first keel, and the first through hole is matched with the fixed shaft; and only one of the second keel is matched with the fixed shaft a second through hole penetrating the two ends of the second keel; two or more side by side second keels are installed between the adjacent two first keels, and the fixed shaft passes through the first through hole of the first keel Then, the second through hole of the second keel, the first through hole of the first keel are sequentially passed twice or more, and finally the first keel and the second keel are locked and locked together by
  • the locking member is received in the corresponding first keel; the adjacent two first keels and the two adjacent second keels form a box for installing the compartment module; on the opposite inner sides of the box Or on the inner side of the four Strips, and/or strips on opposite sides or four outer sides of the compartment modules; mounting compartment modules in the box from one side, or in opposite sides from opposite sides of the box
  • the partition module is installed inside, and the partition module is fixed with the first keel and the second keel.
  • the inner side of the box is provided with a resisting strip integrally formed with the corresponding first keel and the second keel, and the resisting strip forms a closed resisting ring; further comprising placing the partition module and the resisting ring a sealing strip that is fixed on the compartment module or on the resisting ring; in one box, only one compartment module is installed from one side, and the compartment module presses the sealing strip in the direction of the resisting ring; the sealing strip and the compartment module
  • the width of the third keel and/or the fourth keel of the exposed compartment is less than or equal to the width of the resisting ring.
  • compartment module First install the compartment module; then fix the sealing strip on the compartment module or the resisting strip; then place the compartment module in the box, press the sealing layer to press the sealing strip in the direction of the resisting strip, and the compartment module Fixed with the first keel and / or the second keel. There is no need to seal the glass between the first sealing ring and the partition module.
  • the diaphragm module can be installed only from one side, and the partition module can be completely installed and replaced from the inside. The installation and maintenance do not need to be carried out from the outside, and There is no need to waterproof from the outside. For high-rise buildings, there is no need to build scaffolding or use of spiders.
  • the width of the third keel and/or the fourth keel of the compartment module exposed is less than or equal to the width of the resisting ring, and the third keel of the module and the fourth keel are completely covered toward the outdoor surface, on the one hand when the third keel and When the fourth keel is a metal profile, the external heat can be greatly reduced to the third keel and the fourth keel.
  • the third keel and the fourth keel can be made of plastic parts, saving material cost, due to heat transfer of the plastic. The performance is much lower than that of metal, further improving the insulation effect.
  • the compartment on the side facing the outdoor of the compartment module is a partition;
  • the resisting strip includes a straight portion and an arcuate curved portion that is fitted to the partition, and the curved curved portion is fitted to the partition.
  • the sealing strip is installed between the resisting ring and the partition module, the sealing strip has compressibility, and the curved curved portion and the partition layer can completely fit, so that the resisting strip completely covers the third keel and the fourth of the compartment module.
  • the keel and the sealing strip make the architectural frame structure look beautiful and reduce dust accumulation.
  • the first keel and the second keel protrude from the compartment module and the convex part is flush; the opposite side of the adjacent compartment module forms a receiving groove in the room, and the adjacent compartment module is buckled Elastic snap-on trim strips or decorative strips; one trim strip corresponds to only one first keel or one second keel.
  • the accommodating groove accommodates wires, water pipes, etc., and the decorative strip covers the electric wire water pipe, and the appearance is beautiful.
  • the first keel and the second keel protrude from the compartment module and the protruding portion is flush; the elastic snap-on decorative strip is fastened between the adjacent side of the compartment module and the adjacent compartment module or
  • a decorative strip is fixed from the room through the screw through the corresponding first keel or the corresponding second keel; on the outdoor side, a decorative strip corresponds to only one first keel or one second keel. It is fixed by screws from the room through the corresponding first keel or the corresponding second keel and the corresponding decorative strips, on the one hand, it does not damage the appearance of the decorative strip, on the other hand, the decorative strip and the compartment module cannot be removed from the outside, which is safer.
  • Elastic snap-on trim strips are attached between adjacent compartment modules for easy installation.
  • a flush decorative ridge is arranged on the outermost first keel and the second keel; the decorative rib and the compartment module are buckled with an elastic snap-shaped decorative strip or a decorative strip or A decorative strip is fixed from the inside through the screw through the corresponding first keel or the corresponding second keel.
  • Decorative ribs are provided for easy installation of decorative strips.
  • the composite building structure is a roof; and the decorative strip fixed with the first keel or the second keel, the decorative strip only corresponds to one first keel or one second keel, and the decorative strip is wavy, adjacent
  • the two decorative strips are combined with the unevenness of the position, and the decorative strip covers the combined building structure.
  • this decorative strip it has a good decorative effect, and it can also be waterproof, so that the roof has double waterproof effect.
  • the partition module roof can provide good heat insulation and sound insulation.
  • the resisting strip integrally formed with the corresponding first keel and/or the second keel is provided only on the four inner sides or the opposite inner side faces of the box;
  • one strip corresponds to only one first keel or one second keel; two adjacent third keels adjacent to the two compartment modules or two adjacent fourth keels share the same bead, screwed through
  • the overpressure strip is fixed to the corresponding first keel and the second keel, and the bead is pressed against the barrier module in the direction of the resisting ring to fix the compartment module with the first keel and the second keel.
  • the bead acts as a fixed compartment module, on the other hand its decorative effect
  • the method further includes: a first spacer corresponding to the first keel, completely covering the corresponding first keel facing the outdoor surface, a laterally buckled elastic snap-on profile on the first keel, and the second keel Correspondingly, completely covering the surface of the corresponding second keel facing outward, the second spacer of the elastic snap-type profile laterally fastened on the second keel; two of the first spacer The first buckles respectively resist the first keel, and the two second buckles of the second spacer respectively resist the second keel.
  • the first spacers and the second spacers can be insulated, soundproofed, and waterproofed, thereby greatly reducing heat and sound transmission; Insulation and sound insulation are comparable to plastic steel. They are more durable and easier to manufacture than co-extruded steel. The cost is low.
  • the spacers are laterally fastened to the corresponding keel. Due to the extremely short insertion distance, the keel and the spacer are deformed.
  • the influence is small, so the manufacturing precision is low, the cost is reduced, and the outer layer spacer is saved on the inner layer keel from time to time, and the operation is simple; since the partition layer can be matched with the keel at the force receiving portion, or the partition layer It can be avoided with the force part.
  • the spacer is not subjected to the force alone, so the force is better, and the partition is prevented from being damaged by the force. , to improve the service life.
  • the first spacer and the second spacer may adopt aluminum profiles or stainless steel materials with good waterproof and rustproof effects, so that the steel profiles do not need surface anti-rust treatment, It can be beautiful in appearance, durable, and much more rigid than aluminum profiles and steel profiles.
  • the first spacer and the second spacer are elastic snap-type spacers, which are conveniently fastened and reliable by laterally fastening on the corresponding keel.
  • the first spacer and the second spacer are U-shaped elastic buckles; the two first buckles of the first spacer cooperate with the two outer sides of the first keel; the second spacer The two second buckles cooperate with the two outer sides of the second keel.
  • the first spacer and the second spacer of the structure completely cover the exposed surface of the corresponding keel toward the outdoor side, and the heat insulation or decorative effect is better.
  • the two sides of the first rib are symmetrical with respect to the center of the first keel, and the two sides of the first rib are respectively symmetrical with respect to the center of the first keel.
  • the opposite groove of the first keel the opposite sides of the first keel protrude from the corresponding sides of the first spacer mounted thereon or on both sides corresponding to the first spacer installed thereon
  • the opposite sides of the second keel protrude from the corresponding sides of the second spacer mounted thereon or are flush with the two sides corresponding to the second spacer mounted thereon.
  • the outermost first keel is provided with the resisting strip on only one side, and the resisting groove is provided on the side facing away from the resisting strip, and the two first buckles of the first spacer are resisted by the resisting strip.
  • the other one is resisted in the resisting groove, and the side of the first keel facing away from the resisting strip protrudes from the side corresponding to the first spacer mounted thereon or is flush with the side corresponding to the first spacer installed thereon;
  • the first keel in the middle position is provided with the resisting strips on opposite sides, the two first buckles of the first spacer respectively resist the resisting strip;
  • the second spacer and the second spacer are U-shaped
  • the outermost second keel is provided with the resisting strip on one side only, and the resisting groove is provided on the side facing away from the resisting strip, and the two second buckles of the second spacer are respectively resisted on the resisting strip.
  • the other is resisting in the resisting groove, and the side of the second keel facing away from the resisting strip protrudes from the corresponding side of the second spacer mounted thereon or is flush with the side corresponding to the second spacer installed thereon;
  • the second keel is provided with the resisting strips on opposite sides of the opposite side,
  • the two second buckles of the two spacers respectively resist the resisting strips.
  • the first keel or the second keel is provided with a resisting groove.
  • the two first buckles of the first spacer and the second 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 inserted.
  • the resisting groove is further disposed on the opposite sides of the first keel and close to the indoor side, and the first spacer further includes an abutting groove that is fastened from the indoor to the first keel near the indoor side, and a first spacer completely covering the surface of the first keel facing the indoor; the resisting groove is further disposed on the opposite sides of the second keel and adjacent to the indoor side, and the second spacer further includes a buckle from the indoor The second compartment in the inner side of the resisting groove and completely covering the second keel facing the interior.
  • Separators are installed on both sides of the keel, and the spacers are more aesthetically pleasing as the keel, and/or have better insulation.
  • the two inner sides of the two first buckles completely conform to the two outer sides of the first keel, and the two first buckles face the outdoor surface directly opposite the first keel.
  • the two inner sides of the two buckles can be completely fitted with the two outer sides of the corresponding keel, so that when the first keel and the second keel are installed together,
  • the direction of the force Completely fitted with the first keel or the second keel without a gap, the locking force between the first keel and the second keel, the first keel and the second keel and the compartment module and the first keel and the second keel
  • the gravity of the compartment module is transmitted to the first keel and the second keel, and the spacers are not pressed or deformed under the external force;
  • a gap is set between the two buckles facing the outdoor surface and the corresponding keel facing the two first buckles facing the outdoor surface, and the spacer is pressed toward the outdoor direction of the vertical corresponding keel during installation.
  • the surface of the spacer facing the outdoor is on the same plane, and the appearance is beautiful.
  • a card slot extending through the two ends of the first keel is disposed on the surface of the first keel facing outward, and the two first buckles of the first spacer are buckled from the outdoor in the card slot of the first keel, a buckle is attached to the surface of the first keel facing the outdoor; a card slot extending through the two ends of the second keel is provided on the surface of the second keel facing outward, and the two second buckles of the second spacer are buckled from the outside In the card slot of the second keel, the second buckle is attached to the surface of the second keel facing the outdoor.
  • a card slot is provided on the surface of the first keel and the second keel facing outward, and it is convenient to fasten the spacer on the keel and remove it from the keel.
  • the first slat that penetrates the two ends of the first keel is provided on the surface of the first keel facing the indoor, and the first spacer that is attached to the surface of the first keel facing the indoor is buckled from the indoor;
  • the surface of the second keel facing the room is further provided with the card slot extending through the two ends of the second keel, and a second spacer that is attached to the surface of the second keel facing the room is fastened from the interior.
  • the abutting edge around the compartment module forms a closed continuous abutting ring, and the first keel and the second keel that are installed together also form a resisting edge of the accommodating compartment module and a facing surface facing the room.
  • Flush a square housing frame connected to the box; a sealing strip is arranged at the splicing edge of the barrier module and the accommodating frame.
  • the accommodating frame is matched with the resisting strip of the partition module.
  • the sealing strip has both sealing function and decorative effect, and no additional decorative strip is needed, so that the appearance is satisfactory and the structure is simple.
  • the two outer sides of the third keel and the fourth keel are provided with abutting edges integrally formed with the corresponding third keel and the fourth keel; the screw passes through the resisting edge of the partition module and correspondingly
  • the fixation of the first keel and the second keel mounts the compartment module with the first keel and the second keel.
  • the ribs are arranged on the module, no need for the beading, the structure is simple, the installation is convenient, the time and labor are saved, and the cost is low.
  • the abutting edge around the compartment module forms a closed continuous abutting ring; and the outermost first keel and the second keel are respectively provided with a convex convex which is flush with the facing surface of the resisting strip toward the indoor Strips; each adjacent two compartment modules are spliced together with respect to opposite sides of the edge and sealed by a sealing strip at the splicing; the abutting edges of the compartment module are spliced together with the opposite sides of the decorative ribs and sealed at the splicing The strip is sealed, and the facing side of the partition module facing the room is flush with the surface of the decorative rib facing the room.
  • the decorative ridges are arranged on the same plane so that the combined building structure faces the indoor surface; the sealing strip has both sealing function and decorative effect, and no additional decorative strips are required, so that the appearance aesthetic requirements can be satisfied, and the structure is simple.
  • the first keel is provided with a first accommodating groove penetrating the two end faces of the first keel body
  • the second keel is provided with a second accommodating groove penetrating the two end faces of the second keel body
  • the first accommodating groove on the first keel and the second accommodating groove on the second keel are connected. It has a receiving slot for installing wires, water pipes, etc.
  • the first keel connector is further provided, and the first keel connecting member is provided with a third through hole that cooperates with the fixed shaft; and the first keel is provided with two or more spliced lines on the same straight line;
  • the right end of the keel connector is inserted into the first keel on the right side and fixed to the keel, and the left end is inserted into the first keel on the left side;
  • the third through hole on the first keel connector and the rightmost end of the first keel on the left side The first through hole cooperates, and the fixed shaft passing through the first through hole at the rightmost end of the first keel of the left side passes through the third through hole, and the first keel joint connects the two first keels that are in contact with each other.
  • the first keel is inserted into the first keel on the left side and can be fixed to the first keel on the left side.
  • a composite building structure such as a composite wall
  • the length of the first keel needs to be almost the same as the length of the composite wall.
  • it is not convenient to transport on the other hand, it is necessary to increase the first keel, otherwise it will affect the rigidity and strength of the first keel, reduce the seismic, impact and compressive properties of the composite building structure, and increase the first keel. , increase cost.
  • the fixed shaft includes a first fixed shaft and a second fixed shaft that are set at an angle, or parallel, or coaxial;
  • the locking member includes a first locking member mounted at both ends of the first fixed shaft and a second locking member installed at two ends of the second fixed shaft;
  • the first keel is three or more;
  • the first locking member and the second locking member are installed in the same first keel in more than one middle, and the first locking member is installed
  • the first keel of the locking member and the second locking member is a connecting keel;
  • the connecting keel comprises a connecting through the two ends of the keel, the wall thickness of the connecting keel is uniform, the first locking member is received, and/or the second locking is received.
  • Locking member shaft a first side wall perpendicular to the first fixed axis and a second side wall perpendicular to the second fixed axis to the accommodating portion, and the first side wall is the same as the side wall of the axial receiving portion of the same locking member a third side wall, the second side wall of the same axial direction of the same locking member as the second side wall;
  • the first through hole engaged with the first fixed shaft is disposed on the first side wall
  • the first side wall a first through hole that is fixed by the two fixed shafts is disposed on the second side wall;
  • a tool corresponding to the first through holes on the first side wall is provided on the third side wall for mounting the first locking member a first hollow portion passing through
  • the fourth side wall is provided with a first hollow portion respectively corresponding to the first through hole on the second side wall and the tool for mounting the second locking member passes through .
  • the length of the fixed shaft does not need to be about as long as the length of the composite wall. This eliminates the need for much space for handling, transporting and assembling the combined building structure.
  • the first fixed shaft and the second fixed shaft are set at an angle, the combined building structure can be used as a sloping roof, a corner wall or the like.
  • the first keel is a vertical keel and the second keel is a horizontal keel
  • the combined building structure is a corner wall.
  • the first keel is a horizontal keel and the fixed shaft includes only one first fixed shaft and one second fixed shaft which are set at an angle
  • the combined building structure is a sloping roof.
  • the second keel and/or the first keel are plastic gold coextrusion composite profiles, including an inner metal layer and an outer plastic layer.
  • the outer layer of plastic layer can better insulation and sound insulation, and the inner metal layer can ensure strength and rigidity.
  • the first keel square tube steel or the H-shaped steel or the C-shaped steel the second keel comprises a square tube steel or a second keel body of the C-shaped steel, respectively fixed to the second fixing member at the two ends of the second keel body,
  • the two through holes are disposed on the second fixing member; the fixing shaft passes through the second through hole of the second fixing member.
  • the compartment module comprises two third keels parallel to each other, two third keels fixed perpendicular to the third keel, two ends fixed with two third keels, and two third keels, two installed Two or more partitions between the fourth keels are separated by a set distance, and a closed space is formed between the adjacent two partitions; the opposite faces of the two third keels and the opposite faces of the two fourth keels are provided There is a corresponding positioning groove corresponding to the number of layers of the partition plate.
  • the partition plate is installed in the positioning groove corresponding to the two third keels and the two fourth keels, and further comprises a seal for sealing the partition plate and the corresponding positioning groove.
  • the splint is generally made of reinforced gypsum board, gypsum board, foam board, and the like. The splint is used to further improve the heat insulation and sound insulation.
  • the compartment module comprises two third keels parallel to each other, two third keels fixed perpendicular to the third keel, two ends fixed with two third keels, and two third keels, two installed Two or more partitions between the fourth keels are separated by a set distance, and a space is formed between the adjacent two partitions; each of the partitions is integrally formed, surrounded by a baffle, and has a U-shaped cross section.
  • a square-shaped sealing ring on the opposite sides of the two third keels and the opposite faces of the two fourth keels, there are one-to-one corresponding positioning grooves corresponding to the number of layers of the partition plate, the partition plate and the partition plate are installed
  • the square-shaped sealing ring on the plate is installed in the positioning grooves corresponding to the two third keels and the two fourth keels.
  • a confined space is formed between adjacent partitions, so that the airtightness of the airtight module is improved, so that the composite structure has better sound insulation effect.
  • the square sealing ring has a good sealing effect.
  • the compartment module comprises two third keels parallel to each other, two third keels fixed perpendicular to the third keel, two ends fixed with two third keels, and two third keels, two installed
  • the three or more layers between the fourth keels are separated by a set distance, and the adjacent two partitions form a closed space; the opposite faces of the two third keels and the opposite faces of the two fourth keels are provided.
  • the partition plate is installed in the positioning groove corresponding to the two third keels and the two fourth keels, and further comprises a seal for sealing the partition plate and the corresponding positioning groove.
  • the outer two-layer partition is a transparent glass plate, and the upper and lower sides of the inner layer are transparent plastic plates.
  • 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 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.
  • heat and sound vibrations appear in the room, so the heat insulation and sound insulation effect is better.
  • the space of the three partitions and the space of the fourth partition, the transmission of heat and sound vibration is successively attenuated by the plastic sheets of each layer, and the heat insulation and sound insulation effect are better.
  • the compartment module comprises a sliding window module;
  • the sliding window module comprises two horizontally mounted third keels arranged side by side, arranged vertically and horizontally, and perpendicular to the third keel, and two ends fixed to the two third keels respectively.
  • sliding window consists of two or more partitions, two side by side parallel fifth keel, perpendicular to the fifth keel, two ends and two fifth keel fixed two side by side
  • the six keel, on the opposite side of the two fifth keels and the opposite faces of the two sixth keels, have one-to-one corresponding positioning grooves with the same number of layers of the partition plate, and 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; a groove for the fifth keel to rotate within the set angle is provided on the bottom surface of the upper third keel, and the upper side is fifth.
  • the keel can be pivotally connected to the fourth keel on the left and right sides within a certain angle within the groove.
  • This sash window module has good heat insulation and sound insulation because it has more than two layers of partitions.
  • the compartment module comprises a louver module;
  • the louver module comprises two horizontally mounted third keels arranged side by side in parallel, perpendicular to the third keel, and two side by side fixed with two third keels respectively.
  • the louver adjusting mechanism includes a gear, a sliding seat that can only be mounted on the fourth keel on only one side by sliding up and down, and a straight rack fixed on the sliding seat and matched with the gear; Both ends of the blade shaft are rotatably mounted on the two fourth keels, and only one of the blade shafts is fixed to the gear through the side wall of the fourth keel.
  • louvers are adjusted by gears and racks, the movement is reliable, and the louver adjustment mechanism has a long service life.
  • the compartment module comprises a louver module;
  • the louver module comprises two third keels horizontally horizontally, two parallel ribs fixed perpendicularly to the third keel and two third keels fixed at each end, a louver and a louver adjusting mechanism;
  • a rib corresponding to the louver is disposed on two opposite sides of the two third keels; and the contiguous two louvers are spliced together in the closed state of the louver, the louver and the convex
  • the strips are staggered together; a sealing strip is provided between the opposing faces of the adjacent two louvers and the opposing faces of the contiguous louvers and the ridges.
  • 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 comprises two parallel keels parallel to each other, two parallel ribs fixed perpendicularly to the third keel, and two ends fixed to the two third keels respectively.
  • the louver adjusting mechanism comprises a worm wheel fixed on the blade shaft of only one end of each louver, a worm which can be slid up and down and a short distance, and is mounted on the fourth keel on only one side and cooperates with the worm wheel, and is fixed to the worm
  • the upper knob is rotatably mounted on the two fourth keels at both ends, and only one end of the blade shaft is fixed to the worm wheel through the side wall of the fourth keel.
  • the louver is adjusted by the worm wheel and the worm, the movement is reliable, and the louver adjustment mechanism has a long service life.
  • the compartment module comprises a louver module;
  • the louver module comprises two third keels horizontally mounted side by side, the second keel perpendicular to the third keel and the two sides fixed to the third keel respectively, a louver and louver adjusting mechanism; a louver shaft hole matched with a louver shaft of each louver is disposed on the two fourth keels;
  • the louver adjusting mechanism includes a gear fixed on the blade shaft of only one end of each louver, and is sleeved on the gear a timing belt matched with the gear, an adjustment handle, and a straight guide hole provided on the fourth keel;
  • the blade shaft is rotatably mounted on the two fourth keels at both ends, and only one end of the blade shaft passes through the side of the fourth keel
  • the side wall and the gear are fixed; the adjusting handle is fixed through the straight guiding hole and the timing belt; the gear is received in the fourth keel.
  • 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 partition modules are installed from the outside in the corresponding side.
  • the curtain wall of the high-rise building has a large area per wall, the first keel and the second keel are fixed together by a fixed shaft, and more than two fixed shafts can be used on the same straight line, so that the installation of the combined building structure is convenient and the connection is more reliable.
  • the structure is firmer, it is easy to carry and transport, and it does not need much space when assembling the combined building structure.
  • the composite building structure is a curtain wall installed on the outer side of the frame structure of the main body; only the opposing faces of the two third keels of the partition module and the opposite faces of the two fourth keels are provided with a resisting strip.
  • the screw passes through the resisting strip on the partition module and is fixed to the corresponding first keel and the second keel; the first keel is vertically installed, fixed to the main frame structure floor by the first fixing member; and the partition module resisted by the main frame Outdoor installation in the corresponding box, the remaining compartment modules are installed indoors in the corresponding boxes; the first keel and the second keel protrude from the outside of the compartment module and both sides of the compartment and the convex part is flush; Elastic snap-on trim strips are attached to the side facing the outside and adjacent compartment modules A decorative strip is fixed by screws in the room; a flat decorative strip or a snap-on decorative strip is attached to the side facing the room and the adjacent partition module.
  • the partition module is installed from the outside only when the box is resisted by the main frame of the building such as the floor, the column, etc.; if the box is not resisted by the floor, the column, etc., the partition module is installed indoors; thus the installation is convenient, and the installation cost is greatly reduced. Labor intensity, easy maintenance in the future. Decorative strips are installed both outdoors and indoors for a beautiful appearance.
  • a first spacer is disposed on the outer side of the first keel, the first spacer is similar to the outer side of the first keel, and the first keel is inserted into the first spacer from the end, and the first spacer With the clearance fit, the first spacer completely covers the outer side of the corresponding first keel; the second spacer is provided on the outer side of the second keel, the second spacer is similar to the outer side of the second keel, and the second keel is inserted from the end In the second spacer, the gap is matched with the second spacer, and the second spacer completely covers the outer side of the corresponding second keel.
  • the keel is inserted into the spacer from the end to wrap the outer side of the keel for better insulation or decoration.
  • the method further includes: a first keel corresponding to the first keel facing the outdoor surface, a lateral buckle on the first keel, and two outer sides opposite to the first keel.
  • the first spacer includes a connecting portion, two side walls that are flush from the same side of the connecting portion and are opposite to the two outer sides of the connecting portion, one side wall or two side walls of the first spacer are Corresponding first keel clamping; and U corresponding to the second keel, completely covering the corresponding second keel facing the outdoor surface, laterally buckled on the second keel, and the two outer sides opposite to the second keel a second spacer of the profile, the second spacer comprises a connecting portion, two side walls which are flush from the same side of the connecting portion and are flush with the two outer sides of the connecting portion, one side wall or two sides of the second spacer The wall is clamped by the corresponding second keel.
  • the spacer is laterally fastened to the keel, and the septum is elasticized.
  • the compartment can be fitted with the keel without gaps, and is clamped by the adjacent two keels, which is more convenient than inserting the outer spacer into the inner keel from the end. For parts that need to be stressed, the force is better; the structure is simple.
  • a method of installing a composite building structure comprising the steps of:
  • One end of all the fixed shafts is provided with a locking member, and the other ends of all the fixed shafts pass through the first through holes corresponding to the first keel, and then pass through the second through holes corresponding to the second keel twice and then through The first through hole corresponding to the first keel is finally fixed with the locking member, and the locking member locks the first keel and the second keel in the direction of the fixed shaft.
  • cement prefabricated panels are placed on the floor of the house or watered with cement.
  • 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 invention has the beneficial effects that the second keel and the first keel are installed together by the fixed shaft, and the partition module is assembled with the second keel and the first keel to form a composite wall, a composite window, a composite floor, and a composite roof.
  • the structure is simple, the installation is simple and convenient, the second keel and the first keel are fixed reliably, which greatly improves the seismic and impact resistance of the composite wall and the composite window, and is non-toxic and non-polluting, and the weight of the wall is greatly reduced and lowered.
  • each fixed shaft passes through two or more second keels, more than two compartment modules can be installed together, because the first keel placed at the intermediate position passes through the ends of the fixed shaft.
  • the locking member is fixed to the second keel, so the first keel placed at the intermediate position does not need to be directly fixed with the second keel, and the area of each glass is not too large when the compartment of the compartment module is glass or the like.
  • a composite wall or a composite window requires a large area, and it is difficult to assemble a plurality of compartment modules together, and it is not required to be on the front side of the first keel.
  • a mounting frame is formed between the adjacent two second keels and the first keel, and two or more partitions may be installed on the partition module in advance, and two layers are provided on the one hand.
  • the partitions form effective heat insulation, sound insulation layer, heat insulation, noise, etc., to achieve efficient heat insulation and sound insulation.
  • the module can form a double-layer partition, which is effective for sound insulation and heat insulation.
  • the integrated assembly of multi-layer modules with different functions can meet the overall functional requirements of aesthetics, waterproof, fireproof, heat insulation and sound insulation. Overcoming the requirements of different partitions with different functions can not be combined to achieve the overall function, achieving environmental protection and energy saving.
  • Got it. Can be used as an exterior wall and an interior wall. 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 compartment module and the keel are fixed and beautiful.
  • the separator may be a decorative board, glass, ceramic tile, solar panel, reinforced modified gypsum board, cement board, gypsum board, calcium silicate board, glass magnesium board, magnesium oxide board, foam board, and the like.
  • FIG. 1 is a perspective 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 left side view of the first keel of the uppermost side in the first embodiment of the present invention.
  • Fig. 3 is a perspective view showing the projection of the first embodiment of the present invention from the inside (toward the mounting direction of the partition module).
  • Fig. 4 is an enlarged schematic view showing a portion I of Fig. 3.
  • Fig. 5 is a left side view of the first keel in the intermediate position of the embodiment 1 of the present invention.
  • Fig. 6 is a perspective exploded perspective view showing the projection from the room in the first embodiment of the present invention.
  • Fig. 7 is a plan view showing the second left keel of the first embodiment of the present invention.
  • Figure 8 is a plan view of a second keel at an intermediate position in the first embodiment of the present invention.
  • Figure 9 is a left side elevational view of a bead mounted on the uppermost first keel in accordance with an embodiment of the present invention.
  • Figure 10 is a left side elevational view of a bead on a first keel mounted in an intermediate position in accordance with an embodiment of the present invention.
  • Figure 11 is a top plan view of a bead mounted on the leftmost second keel in the first embodiment of the present invention.
  • Figure 12 is a top plan view of a bead on a second keel mounted in an intermediate position in accordance with an embodiment of the present invention.
  • Figure 13 is a perspective exploded view showing the partition module of the embodiment of the present invention projected from the outside.
  • Figure 14 is a perspective exploded perspective view of the second embodiment of the present invention projected from the front side.
  • Figure 15 is a perspective exploded view of the third embodiment of the present invention from an outdoor projection (away from the mounting direction of the compartment module).
  • Fig. 16 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of the embodiment 3 of the present invention.
  • Figure 17 is a plan view showing a first keel in which a first spacer is attached at an intermediate position in Embodiment 3 of the present invention.
  • Figure 18 is a right side view of the second keel to which the second spacer is attached on the uppermost side of Embodiment 3 of the present invention.
  • Figure 19 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the third embodiment of the present invention.
  • Figure 20 is an end elevational view of the outermost decorative strip of the third embodiment of the present invention.
  • Figure 21 is an end elevational view of a decorative strip at an intermediate position in the third embodiment of the present invention.
  • Figure 22 is a perspective exploded view of the fourth embodiment of the present invention from an outdoor projection (away from the mounting direction of the compartment module).
  • Figure 23 is a plan view showing a first keel to which the first spacer is attached on the rightmost side of Embodiment 4 of the present invention.
  • Figure 24 is a right side view of the second keel to which the second spacer is attached on the uppermost side of Embodiment 4 of the present invention.
  • Fig. 25 is a perspective exploded perspective view showing the first type of compartment module projected from the outside in the fourth embodiment of the present invention.
  • Figure 26 is a perspective exploded view showing the second partition module of the fourth embodiment of the present invention projected from the outside.
  • Figure 27 is a perspective exploded view showing the outdoor projection (from the direction in which the partition module is mounted) according to the fifth embodiment of the present invention.
  • Figure 28 is a perspective exploded view of a spacer module according to Embodiment 5 of the present invention.
  • Figure 29 is a plan view of the first keel at an intermediate position in the fifth embodiment of the present invention.
  • Figure 30 is a right side elevational view of the second keel of the second row of embodiment 5 of the present invention.
  • Figure 31 is a perspective exploded perspective view showing the partition module of the sixth embodiment of the present invention projected from the room.
  • Figure 32 is an enlarged schematic view showing a portion II of Figure 31.
  • Figure 33 is a perspective exploded perspective view showing the louver compartment module of the seventh embodiment of the present invention projected from the room.
  • Figure 34 is a left side view of the louver of the seventh embodiment of the present invention.
  • Figure 35 is an enlarged schematic view of a portion II of Figure 33.
  • Figure 36 is a left side view of the louver of the eighth embodiment of the present invention.
  • Figure 37 is a perspective exploded view of the louver compartment module projected from the interior of the eighth embodiment of the present invention.
  • Figure 38 is a perspective exploded view of the louver compartment module of the ninth embodiment of the present invention.
  • Figure 39 is a perspective view showing a tenth embodiment of the present invention.
  • Figure 40 is an end elevational view of an H-shaped steel first keel mounted with a first spacer in accordance with a tenth embodiment of the present invention.
  • Figure 41 is an end elevational view of a square tubular steel second keel fitted with a second spacer in accordance with an embodiment 10 of the present invention.
  • Figure 42 is a perspective exploded view of Embodiment 10 of the present invention.
  • Figure 43 is a perspective view showing the projection from the outside of the single door compartment module of the tenth embodiment of the present invention.
  • Fig. 44 is a perspective exploded perspective view showing the single door door compartment module of the embodiment 10 of the present invention projected from the room.
  • Figure 45 is a perspective exploded perspective view showing the sliding window compartment module of the embodiment 10 of the present invention projected from the room.
  • Figure 46 is a perspective view showing the double door barrier module of the eleventh embodiment of the present invention.
  • Figure 47 is a perspective view showing a twelfth embodiment of the present invention.
  • Figure 48 is a perspective view showing another direction of Embodiment 12 of the present invention.
  • Figure 49 is an enlarged view of the IV of Figure 48.
  • Figure 50 is a perspective view showing the connecting keel of Embodiment 12 of the present invention.
  • Figure 51 is a perspective view showing a thirteenth embodiment of the present invention.
  • Figure 52 is a perspective view showing the connecting keel of Embodiment 13 of the present invention.
  • Figure 53 is a perspective view showing the connecting keel of Embodiment 14 of the present invention.
  • Figure 54 is a perspective view showing a fourteenth embodiment of the present invention.
  • Figure 55 is a schematic view showing the structure of a composite building structure according to Embodiment 15 of the present invention mounted on a main body frame.
  • Fig. 56 is a perspective exploded perspective view showing the indoor projection of the composite building structure in which the angle iron is fixed in the embodiment 15 of the present invention (away from the installation direction of the partition module).
  • Figure 57 is a left side elevational view of the leftmost first keel of Embodiment 15 of the present invention.
  • Figure 58 is a left side elevational view of the first keel in the intermediate position of the embodiment 15 of the present invention.
  • Figure 59 is a plan view showing the second keel of the uppermost side in the fifteenth embodiment of the present invention.
  • Figure 60 is a plan view of a second keel at an intermediate position in the fifteenth embodiment of the present invention.
  • Figure 61 is a perspective exploded view of the composite building structure of Embodiment 16 of the present invention.
  • Figure 62 is a plan view showing an H-shaped steel first keel to which a first spacer is attached, in accordance with a seventeenth embodiment of the present invention.
  • Figure 63 is a left side view of the H-shaped steel second keel to which the second spacer is attached, according to Embodiment 17 of the present invention.
  • Figure 64 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of the embodiment 18 of the present invention.
  • Figure 65 is a plan view showing a first keel in which a first spacer is attached at an intermediate position in Embodiment 18 of the present invention.
  • Figure 66 is a right side view of the second keel with the second spacer attached to the uppermost side of the embodiment 18 of the present invention.
  • Figure 67 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the embodiment 18 of the present invention.
  • Figure 68 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of the embodiment 19 of the present invention.
  • Figure 69 is a plan view showing a first keel in which a first spacer is attached at an intermediate position in Embodiment 19 of the present invention.
  • Figure 70 is a right side elevational view of the second keel with the second spacer attached to the uppermost side of the embodiment 19 of the present invention.
  • Figure 71 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the embodiment 19 of the present invention.
  • Figure 72 is a perspective exploded view showing the partition module of the embodiment 20 of the present invention projected from the room.
  • Figure 73 is a perspective exploded perspective view showing the partition module of the embodiment 21 of the present invention projected from the room.
  • Figure 74 is a perspective exploded perspective view showing the partition module of the embodiment 22 of the present invention projected from the room.
  • Figure 75 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of Embodiment 23 of the present invention.
  • Figure 76 is a plan view showing the first keel in which the first spacer is attached at the intermediate position in the embodiment 23 of the present invention.
  • Figure 77 is a right side elevational view of the second keel with the second spacer attached to the uppermost side of the embodiment 23 of the present invention.
  • Figure 78 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the embodiment 23 of the present invention.
  • Figure 79 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of the embodiment 24 of the present invention.
  • Figure 80 is a plan view showing a first keel in which a first spacer is attached at an intermediate position in Embodiment 24 of the present invention.
  • Figure 81 is a right side elevational view of the second keel with the second spacer attached to the uppermost side of the embodiment 24 of the present invention.
  • Figure 82 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the embodiment 24 of the present invention.
  • Figure 83 is a plan view showing the first keel to which the first spacer is attached, which is the rightmost side of the embodiment 25 of the present invention.
  • Figure 84 is a plan view showing a first keel in which a first spacer is attached at an intermediate position in Embodiment 25 of the present invention.
  • Figure 85 is a right side view of the second keel to which the second spacer is attached on the uppermost side of Embodiment 25 of the present invention.
  • Figure 86 is a right side elevational view of the second keel with the second spacer installed at an intermediate position in the embodiment 25 of the present invention.
  • Figure 87 is a perspective exploded view of Embodiment 26 of the present invention.
  • Figure 88 is a perspective exploded view of Embodiment 27 of the present invention.
  • Figure 89 is a perspective view showing a twenty-seventh embodiment of the present invention.
  • Figure 90 is a plan view of the rightmost first keel of Embodiment 27 of the present invention.
  • Figure 91 is a plan view of the first keel at an intermediate position in the embodiment 27 of the present invention.
  • Figure 92 is a right side view of the second keel of the uppermost side of Embodiment 27 of the present invention.
  • Figure 93 is a right side view of the second keel at an intermediate position in the embodiment 27 of the present invention.
  • Figure 94 is a plan view showing the first bead of Embodiment 27 of the present invention.
  • Figure 95 is a plan view showing a second bead of Embodiment 27 of the present invention.
  • Figure 96 is a right side view of a third bead of Embodiment 27 of the present invention.
  • Figure 97 is a right side view of a fourth bead of Embodiment 27 of the present invention.
  • Figure 98 is a perspective exploded view of Embodiment 28 of the present invention.
  • Figure 99 is a plan view showing the rightmost first keel of Embodiment 28 of the present invention.
  • Figure 100 is a plan view of the first keel at an intermediate position in the embodiment 28 of the present invention.
  • Figure 101 is a left side elevational view of the second keel of the uppermost side of Embodiment 28 of the present invention.
  • Figure 102 is a left side elevational view of the second keel at an intermediate position in accordance with an embodiment 28 of the present invention.
  • a combined building structure is a combined wall structure, including a first keel 1, a first keel 2, a first keel 3, and a first keel 4 in a horizontal direction from top to bottom.
  • the keel 7, the second keel 8, and the second keel 9, are installed in the first keel 2, the first keel 3 and the first keel 2, the first keel 3 and are respectively located in the second keel 5, the second keel 6, the first The second keel 10, the second keel 11, the second keel 12, the second keel 13, and the second keel 14 in the horizontal array immediately below the second keel 7, the second keel 8, and the second keel 9 are mounted on the first keel 3
  • the first keel 4 is perpendicular to the first keel 3 and the first keel 4, and is located horizontally below the second keel 10, the second kee
  • the second keel 15, the second keel 16, The second keel 17, the second keel 18, the second keel 19, the fixed shaft 20, the fixed shaft 21, the fixed shaft 22, the fixed shaft 23, and the fixed shaft 24 are respectively mounted on the fixed shaft 20, the fixed shaft 21, the fixed shaft 22, The shaft 23 is fixed, and the locking member 52 at both ends of the shaft 24 is fixed.
  • the first keel 4 is symmetrical with respect to the horizontal plane of the first keel 1 about its center position.
  • the first keel 3 has the same structure as the first keel 2.
  • the first keel 1 is an integrally extruded profile, comprising a square first keel body 44, communicating with the top surface of the first keel body 44, and extending through the first groove 45 at both ends of the first keel body 44, and the first keel
  • the front side of the main body 44 communicates with the left and right sides of the first keel body 44 and the second recess 46 adjacent to the lower side of the first keel body 44, and penetrates the two ends of the first keel body 44 to make the first keel 1 have a uniform wall thickness.
  • the hollow through hole 47 is perpendicular to the bottom surface of the first keel body 44, and the resisting strip 48 is flush with the rear side surface of the first keel body 44, and the five first through holes 49 are evenly distributed through the first keel body 44.
  • the resisting strip 48 includes a first straight portion 50 that is coupled to the bottom surface of the first keel body 44 and a first curved curved portion 51 that is curved from the bottom of the first straight portion 50 toward the front side.
  • the first keel 2 is an integrally extruded profile, including a square first keel body 53, which communicates with the front side of the first keel body 53 and penetrates the two ends of the first keel body 53 to the left and right.
  • the two grooves 54 extend through the hollow end holes 55 of the first keel 2 with a relatively uniform wall thickness, and the first keel body 53 is vertically protruded from the bottom surface of the first keel body 53 and is flush with the rear side of the first keel body 53.
  • the resisting strip 56 includes a first straight portion 57 connected to the first keel body 53 and a first curved curved portion 58 bent from the bottom of the first straight portion 57 to the front side;
  • the top surface of the keel body 53 is convexly disposed, and the resisting strip 59 is symmetric with the horizontal plane of the resisting strip 56, and penetrates the two sides of the first keel body 53 up and down, evenly distributed, and the five first through holes on the first keel 1. 49 one-to-one corresponding five first through holes 60.
  • the second keel 5, the second keel 10, and the second keel 15 have the same structure
  • the second keel 9, the second keel 14, and the second keel 19 have the same structure
  • the second keel 9 is The vertical of the second keel 5 about its center position Symmetrical.
  • the second keel 5 includes a square second keel body 61, communicates with the front side surface of the second keel body 61, and penetrates the third groove 62 of the two ends of the second keel body 61 up and down, and penetrates the two end faces of the second keel body 61 up and down.
  • the resisting strip 65 includes a first straight portion 66 connected to the right side surface of the second keel body 61 and a second curved forward portion from the right side of the first straight portion 66 Curved curved portion 67.
  • the second keel 6 is different from the first keel 5 in that a left side of the second keel body is provided with a resisting strip 69 that is symmetrical with respect to the vertical surface of the resisting strip 68 with respect to its center position.
  • the partition module 72 includes a partition plate 101 of the glass, a partition plate 102, and two side-by-side vertical keels 103 and third keels 104 which are vertically symmetric with respect to the center position thereof. Between the third keel 103 and the third keel 104, the third keel 105 and the fourth keel 106 which are perpendicular to the third keel 103 and the third keel 104 and are horizontally symmetrical with respect to the horizontal plane of the center position.
  • the fourth keel 105 is an integrally extruded profile, and includes a square fourth keel body 107 , which communicates with the lower side of the fourth keel body 107 , and extends through the positioning groove 108 at both ends of the fourth keel body 107 .
  • the positioning groove 109 extends through the two ends of the fourth keel body 107, the two ends of the mounting screw (not shown), the through holes 110 and the through holes 111, which are threaded holes at both ends, and penetrate the two ends of the fourth keel 105 to make the fourth
  • the keel wall has a relatively uniform wall thickness and a hollow through hole 113.
  • the third keel 103 includes a square third keel body 114 , which communicates with the left side surface of the third keel body 114 , and penetrates the two ends of the third keel body 114 up and down to communicate with the positioning slot 108 and the positioning slot 109 respectively.
  • the positioning groove 115, the positioning groove 116, and the hollow through holes 117 which penetrate the two ends of the third keel 103 so that the third keel 103 has a relatively uniform wall thickness are coaxially matched with the through hole 110 and the through hole 111, respectively.
  • a partition plate 101 having a U-shaped weather strip 118 and a partition plate 102 each having a U-shaped weather strip 122 mounted on each side are mounted on the upper, lower, left, and right sides, each side, and correspondingly mounted thereon.
  • the third keel 103, the third keel 104, the fourth keel 105, and the fourth keel 106 are fixed together by screws (not shown), and a sealed space is formed between the partition plate 101 and the partition plate 102.
  • a square first frame-shaped first weather strip 123 is attached to the surface of the resisting ring 71.
  • the widths of the third keel 103, the third keel 104, the fourth keel 105, and the fourth keel 106, which are exposed from the compartment module, are the same as the width of the first sealing strip 123, and are smaller than the width of the resisting ring 71 of the frame 70.
  • the combined building structure further includes a horizontally symmetrical bead 25 and a bead 28 fixed on the first keel 1 and the first keel 4, respectively, and fixed to the first keel 2, respectively.
  • the second keel 9, the second keel 14, and the second keel 19 have the same structure of the bead 33, the bead 38, and the bead 43 respectively fixed to the second keel 6, the second keel 7, the second keel 8, and the second keel 11 respectively.
  • the bead 33 is symmetrical with the bead 29 about the vertical plane of its center position.
  • the bead 25 is a T-shaped strip, and the upper side flange 92 of the bead 25 has a straight strip shape, and the lower side flange of the bead 25 includes a first straight portion 94 connected to the web and a curved curved rearward. Curved portion 95.
  • the bead 26 is a T-shaped strip, and the lower flange 96 of the bead 26 includes a first straight portion 97 connected to the web and a first curved curved portion 98 bent backward, the upper side of the bead 26
  • the rim 99 is symmetrical with the lower flange 96 about the horizontal plane of its center position.
  • the bead 29 is a T-shaped strip, and the left side flange 84 of the bead 29 has a straight strip shape, and the right side flange 85 of the bead 29 includes a straight portion 86 connected to the web and a curved curved rearward. Curved portion 87.
  • the bead 30 is a T-shaped strip, and the right side flange 88 of the bead 30 includes a second line that is connected to the web.
  • the portion 89 and the curved curved portion 90 that is bent rearward, the left side flange 91 of the bead 30 is symmetrical with the vertical surface of the right side flange 88 with respect to its center position.
  • the installation method of the combined building structure includes the following steps: installing the first keel, the second keel, the fixed shaft, and the locking member: the fixed shaft 20, the fixed shaft 21, The lower end of the fixed shaft 22, the fixed shaft 23, and the fixed shaft 24 are fixed to the locking member 52.
  • the upper end passes through the five first through holes corresponding to the first keel 4, and then passes through the second keel 15 and the second keel 16 respectively.
  • the fifth through hole corresponding to the first keel 3 passes through the second keel 10 and the second through the second keel.
  • the second through hole corresponding to the keel 11, the second keel 12, the second keel 13, and the second keel 14 passes through the five first through holes corresponding to the first keel 2, and then passes through the second keel 5, respectively.
  • the fifth first through holes corresponding to the first keel 1 are finally fixed with the locking member 52.
  • the locking members 52 at the opposite ends of the fixed shaft are locked along the axial direction of the fixed shaft.
  • the keel and the second keel form a block 70 between each adjacent first keel and the adjacent two second keels, and the adjacent two first keels and the adjacent two second keels are in the resisting strip.
  • the four inner sides of block 70 form a closed resisting ring 71.
  • each compartment 70 between the first keel 1 and the first keel 2 is provided with a compartment module 72 from the interior, and the bead 25 of both ends is flush with the first keel 1
  • the web extends into the second groove of the first keel 1 and is fixed on the first keel 1 by screws 110.
  • the two ends are shorter than the corresponding second keel 5, the second keel 6, the second keel 7, and the second keel. 8.
  • the bead 29 of the second keel 9, the bead 30, the bead 31, the bead 32, and the web of the bead 33 extend into the third groove of the corresponding second keel and are fixed by the screw 109 with the corresponding second keel, correspondingly The bead is pressed against the sealing strip 123 in the direction of the resisting ring 71.
  • a compartment module 72 is placed in each of the blocks 70 between the first keel 2 and the first keel 3, and the web of the bead 26 that is flush with the first keel 2 is inserted into the first keel 2
  • the second groove is fixed on the first keel 2 by screws 110, and the two ends are shorter than the bead 34 of the corresponding second keel 10, the second keel 11, the second keel 12, the second keel 13, and the second keel 14, respectively.
  • the webs of the bead 35, the bead 35, the bead 37, and the bead 38 extend into the third recess of the corresponding second keel and are fixed to the corresponding second keel by screws 109 to push the spacer module 72 toward the resisting ring 71.
  • the sealing strip 123 is pressed.
  • a compartment module 72 is placed in each of the blocks 70 between the first keel 3 and the first keel 4, and the webs of the bead 27 that are flush with the first keel 3 are inserted into the first keel 3
  • the second groove is fixed on the first keel 3 by screws 110, and the two ends are shorter than the corresponding second keel 15, the second keel 16, the second keel 17, the second keel 18, and the second keel 19.
  • the webs of the bead 40, the bead 41, the bead 42, and the bead 43 extend into the third groove of the corresponding second keel and are fixed by the screw 109 to the corresponding second keel, and the ends are flush with the first keel 4
  • the web of 28 extends into the second recess of the first keel 4 and is fixed to the first keel 4 by screws 110.
  • the corresponding bead presses the sealing strip 123 against the urging layer module 72 in the direction of the resisting ring 71.
  • the combined building structure 140 on the left side and the combined building structure 141 on the right side are joined together to form a combined building structure.
  • the first keel 142, the first keel 143, the first keel 144, and the first keel 145 are respectively inserted into the through hole from the right side, and are similar to the cross section of the corresponding through hole, and corresponding to the first
  • the connecting member 147, the first keel connecting member 148 and the first keel connecting member 149 are respectively provided with a third through hole 151, a third through hole 152 and a third through joint with the fixed shaft 150 of the rightmost side of the combined building structure 140.
  • the hole 153, the third through hole 154, the lower end of the fixed shaft 150 is fixed with a locking member (not shown), the upper end passes through the first through hole of the rightmost end of the first keel 145 and the first keel connector inserted into the through hole thereof 149.
  • the first keel 142 and the first keel connector 146 inserted into its through hole are secured to the locking member 159.
  • the combined building structure 141 is different from the combined building structure of the first embodiment in that the first keel 160 and the first keel 161 of the combined building structure 141 are only associated with the first keel 160 and the first keel.
  • the second keel 162, the second keel 163, the second keel 164, and the second keel 165, which are arranged in the right four fourth through holes, are arranged in the right to the left, in the first keel 161 of the combined building structure 141.
  • the right end of the first keel connector 146 is inserted into the through hole of the first keel 160 and the first keel 160 is fixed by screws, and the right end of the first keel connector 147 is inserted into the through hole of the first keel 161.
  • the first keel 161 is fixed by screws
  • the right end of the first keel connector 148 is inserted into the through hole of the first keel 170
  • the first keel 170 is fixed by screws.
  • the right end of the first keel connector 149 is inserted into the first keel 171.
  • the first keel 142 and the first keel 160, the first keel 143 and the first keel 161, the first keel 142 and the first keel 160 are spliced together with the first keel 171 in the through hole and the first keel 171.
  • a keel 144 is secured to the first keel 170, the first keel 145, and the first keel 171 to assemble and assemble the composite building structure 141 with the composite building structure 140.
  • the first keel is vertically installed in four pieces, and four second keels are laterally installed between each adjacent two when the second keel is installed.
  • the first keel 180 of the rightmost side includes a square first keel body 184 , which penetrates the two ends of the first keel body 184 , and cooperates with the first spacer 186 to form a resisting groove 185 .
  • the right side surface 188 of the groove wall adjacent to the outer side of the groove 185 is lower than the right side surface 189 of the groove wall of the inner side of the resisting groove 185, and penetrates the two ends of the first keel body 184 up and down to make the first keel body 184 thick.
  • the relatively uniform hollow through hole 190 is perpendicular to the bottom surface of the first keel body 184, and the resisting strip 191 is flush with the first keel body 184 facing the outdoor surface, and extends through the first keel body 184 and the four evenly distributed A through hole 192.
  • the first keel of the intermediate position 181 includes a square first keel body 193, and a hollow through hole that penetrates both ends of the first keel body 193 so that the first keel body 193 has a relatively uniform wall thickness.
  • a vertical resisting strip 195 protruding from the right side of the first keel body 193 and flushing with the first keel body 193 facing the outdoor surface, perpendicular to the left side of the first keel body 193, and the center of the resisting strip
  • the horizontally symmetrical resisting strips 196 extend through the two sides of the first keel body 193, and are evenly distributed, four first through holes 197 corresponding to the four first through holes 192 on the first keel 180.
  • the second upper keel 182 includes a square second keel body 198, and abutting groove 199 that penetrates the two ends of the second keel body 198 and cooperates with the second spacer 200 to resist the groove 199.
  • the top surface 202 of the groove wall near the outdoor side is lower than the top surface 203 of the groove wall of the resisting groove 199 near the indoor side, and the two end faces of the second keel body 198 are penetrated left and right, and the first keel 180 is from top to bottom.
  • the second through hole 204 of the first through hole 192 is connected to the two ends of the second keel body 198, and the second keel body 198 has a relatively uniform wall thickness, and the hollow hole 206 is hollowed out.
  • the hollow through hole 207 and the hollow through hole 208 are perpendicular to the bottom surface of the second keel body 198, and the resisting strip 209 is flush with the surface of the second keel body 198 facing the outdoor.
  • the second keel 183 includes a square second keel body 210, which penetrates the two end faces of the second keel body 210 to the left and right, and the second first hole from the top to the bottom of the first keel 180.
  • the second through hole 211 of the 192 is inserted, and the two hollow through holes 212, the hollow through holes 213, the hollow through holes 214, and the hollowing out of the second keel body 210 are relatively uniform.
  • the through hole 215 is perpendicular to the bottom surface of the second keel body 210, and the resisting strip 216 is flush with the surface of the second keel body 210 facing the indoor.
  • the top surface of the second keel body 210 is convex and the second keel body 210 faces the outdoor. The face is flush with the strip 217.
  • the fourth keel 218 and the fourth keel 219 of the compartment module 231 are symmetric about the horizontal plane of the center position thereof, and the third keel 220 and the third keel 221 are symmetrical about the vertical plane of the center position thereof.
  • the top surface of the fourth square keel body 222 of the vertical square is provided with an abutting edge 223 which is flush with the surface of the fourth keel body 222 facing the room and flush with both end faces of the fourth keel body 222, and is provided on the top surface of the abutting edge 223.
  • the card slot 224 is provided with a card slot (not shown) on the outdoor facing surface of the fourth keel 218.
  • a right side of the vertical square third keel body 225 is provided with an abutting edge 226 that is flush with the third keel body 225 facing the outdoor surface and flush with both end faces of the third keel body 225, and the right side of the abutting edge 226
  • a card slot 227 is defined therein, and a card slot 228 is formed on a surface of the third keel 220 facing outward.
  • the outermost decorative strip 229 includes a flat decorative strip body 230, two elastic buckles 232 that cooperate with the fourth keel of the partition module 231 or the third keel facing the outdoor surface, and the decorative strip body An outer side of the 230 is flush, and the vertical decorative strip body 230 is convex toward the inner surface of the room, and is bent inwardly, and the L-shaped resisting strip 233 is attached to the first keel or the second keel.
  • the elastic buckle 232 of the decorative strip 229 Insert into the third keel on the upper side of the compartment module 231 or the card slot on the rear side of the fourth keel.
  • the decorative strip 234 installed at the intermediate position comprises a flat-shaped decorative strip body 235, and a snap-fit elastic buckle 240 and a buckle elastic buckle respectively corresponding to the faces of the adjacent two adjacent resisting strips of the adjacent two compartment modules 241.
  • a recess (not shown) for accommodating wires or the like is formed between the opposite abutting edges of the adjacent partition modules, and the elastic snaps 240 of the trim strip 229 and the snap elastic snaps 241 are inserted into the two phases of the adjacent two compartment modules.
  • the opposite faces of the adjacent abutting edges cover the grooves.
  • the installation method of the composite building structure is different from that of the embodiment 1 in that:
  • the compartment module 231 is placed in the block 243, and is fixed to the corresponding first keel and the second keel by the through edges of the four sides of the compartment module 231, and the compartment module 231 is The urging layer module 231 of the resisting ring 244 presses the sealing strip 245.
  • the square first keel body 261 of the rightmost first keel 260 is provided on the side facing the indoor side and is flush with the right side of the first keel body 261.
  • the flat decorative rib 262 penetrates the first keel body 261 and the decorative rib 262 such that the first keel 260 has a relatively uniform wall thickness.
  • the leftmost first keel 264 is symmetrical with the rightmost first keel 260 about the vertical plane of its center position.
  • a decorative rib 267 is formed on the side of the square second keel body 266 of the second keel 265 of the uppermost row facing the room, which is flush with the top surface of the second keel body 266.
  • the hollow hole 268 of the second keel 265 having a relatively uniform wall thickness close to the indoor side penetrates the second keel body 266 and the decorative rib 267.
  • the lowermost three second keels 270 and the uppermost three second keels 265 are symmetrical about the horizontal plane of their center position.
  • the three compartment modules 271 of the first row from the bottom to the top are identical in structure to the three compartment modules 272 of the third row, and the three compartment modules 273 of the second row are the same structure of the sliding window modules.
  • 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 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 holes 279 having relatively uniform wall thickness penetrate the two small through holes (not shown) of the left side wall of the third keel body 274, penetrate the right side wall of the
  • the fourth keel 284 on the upper side of the compartment module 271 includes a square fourth keel body 285 extending through the two through holes 286 at the two ends of the fourth keel body 285, perpendicular to the top surface of the fourth keel body 285,
  • the fourth keel body 285 is protruded from both ends of the fourth keel body 285 facing the room, 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 damper side 287, the left and right sides of the fourth keel 284, and the fourth keel 284 have a relatively uniform thickness of the hollow through hole 288 and the blast hole 289.
  • 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.
  • the sliding window 294 includes two layers of glass 295, two horizontally arranged fifth keels 296 and a fifth keel 297, which are perpendicular to the fifth keel 296 and are mounted side by side 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 303 that cooperates with the rotating shaft 300 and penetrates the two ends of the fifth keel body 302, and the limiting shaft
  • the 301 cooperates with the through hole 304 passing through the two ends of the fifth keel body 302, and is disposed on the bottom surface of the fifth keel 296 and extends through the two positioning grooves 305 at both ends of the fifth keel body 302, so that the wall thickness of the fifth keel 296 is relatively uniform and runs through the first A hollow through hole 306 at both ends of the five keel body 302.
  • the fifth keel 297 includes a square number
  • the fifth keel body is disposed on the top surface of the fifth keel 297, and the two positioning grooves 307 respectively intersecting the two positioning grooves 305 at the two ends of the fifth keel body, so that the fifth keel 297 has a relatively uniform wall thickness and runs through the fifth A hollow through hole 308 at both ends of the keel 297.
  • the sixth keel 298 includes a square sixth keel body for mounting screws, two threaded holes at both ends, and two through holes 319 extending through the two ends of the sixth keel body, disposed on the right side of the sixth keel 298, and running through the upper and lower sides.
  • a handle 311 fixed on the front side of the sixth keel 298.
  • 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 fifth keel 296, and the fifth keel 297, and a sealed space is formed between the two glasses 295.
  • the through hole of the fifth keel 296 through the screw and the through hole of the fifth keel 297 from below are fixed to the sixth keel 298.
  • the through hole of the fifth keel 296 through the screw and the through hole of the fifth keel 297 from below are fixed to the sixth keel 299.
  • the bottom surface of the upper third keel 323 is provided with a groove 312 for the fifth keel 296 to rotate within a certain angle, and the right side wall of the fourth keel 292 is provided with a circular through hole 313 for cooperating 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.
  • each adjacent two compartment modules are spliced together with respect to opposite sides of the edge, and are sealed at the splicing portion 317 by a decorative sealing strip (not shown); the resisting edge of the compartment module is opposite to the decorative rib
  • the faces are spliced together, and the splicing portion 318 is sealed by a decorative sealing strip (not shown), and the facing side of the compartment module facing the interior is flush with the surface of the decorative rib facing the interior.
  • the square keel body 341 of the first keel 340 having the same structure at the intermediate position is provided with a decorative rib 342 at an intermediate position of the surface of the first keel body 341 facing the room.
  • the hollow through hole 343 of the first keel 340 having a relatively uniform wall thickness penetrates the first keel body 341 and the decorative rib 342.
  • the square second keel body 346 of the second keel 345 of each row of three rows in the middle two rows is provided with a decorative ridge 347 in the middle of the face facing the room, and three walls 345 are provided for the second keel.
  • the hollow through hole 344, the hollow through hole 348, and the hollow through hole 349 are relatively uniform in thickness, and the hollow through hole 344 near the indoor side penetrates the second keel body 346 and the decorative ridge 347.
  • the three structurally identical compartment modules 350 of the first row from the bottom to the top are identical in structure to the three compartmental modules 351 of the third row, and the three identically structured compartment modules 352 of the second row are the same structure of the sliding window. Module.
  • the compartment module 350 includes four layers of partitions, a layer facing the interior of the room is a glass plate 353, and a layer facing the outside is a glass plate 354, and the middle two layers are a plastic plate 355 and a plastic plate 356.
  • On the third keel 357 on the right side of the compartment module 350 four positioning slots 359 extending through the ends of the third keel body 358 are provided.
  • the third keel 360 on the left side is symmetric with the third keel 357 about the vertical plane of its center position.
  • Four locating grooves 363 extending through the ends of the fourth keel body 362 are provided on the fourth keel 361 on the upper side of the compartment module 350.
  • the fourth keel 364 on the lower side is symmetric with the fourth keel 361 about the vertical plane of its center position.
  • the decorative ribs of each of the two adjacent first keels and each of the two adjacent second keels are flush toward the indoor surface and form a resisting edge of the accommodating compartment module, and the abutting edge is oriented.
  • the square of the room is flush with the square accommodating frame 365 connected to the square.
  • the spacer module is secured in the block 366 and the receiving frame 365 by screws (not shown) through the abutting edge of the compartment module and the corresponding first keel and the second keel, in the compartment module and receiving
  • the splicing portion 367 of the frame is sealed by a decorative sealing strip (not shown).
  • 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 383 composed of two layers of glass 381 and two The push window 384 is formed by the layer glass 382.
  • the third keel 385 is an integrally extruded profile, including a square third keel body 389, communicating with the top surface of the third keel body 389, penetrating through the groove 390 at both ends of the third keel body 389, and perpendicular to the third keel body 389 top
  • the surface of the third keel body 389 is convexly disposed on the bottom surface of the third keel body 389, and is flush with the surface of the second keel body 389 facing the indoor and outdoor surfaces, respectively.
  • the bottom surface of the vertical third keel body 389 is convex, located between the rib 391 and the rib 392, and the third keel
  • the guiding strip 393 and the guiding strip 394 of the body 389 are flush with the top surface of the third keel body 389, and are flush with the surface of the third keel body 389 facing the outside, and are flush with the two ends of the third keel body 389.
  • the third keel 386 is symmetrical with the third keel 385 about the horizontal plane of its center position.
  • a guide groove 395 that cooperates with the guide strip 393 is disposed on the upper side of the fixing frame of the push window 383, and a guide groove 397 that cooperates with the guide strip 396 of the third keel 386 is disposed on the lower side.
  • a guide groove (not shown) that cooperates with the guide bar 394 is provided on the upper side of the push window 384, and a guide groove 400 that cooperates with the guide bar 399 of the third keel 386 is provided on the lower side.
  • the fourth keel includes an outer tubular body 401 and an inner circular tubular body 402, and four evenly connected connecting ribs 403 connecting the outer tubular body 401 and the inner circular tubular body 402, and the escaping groove matched with the guiding strip 393 and the guiding strip 394 404, the avoidance groove 405, the avoidance groove 406 and the avoidance groove 407 which cooperate with the guide bar 396 and the guide bar 399, the left side surface of the vertical outer pipe body 401 is convex, and the outer pipe body 401 faces the outdoor surface.
  • the abutting edge 413 of both end faces of the outer tubular body 401 is protruded.
  • the top surface of the abutting edge 413 is flush with the top surface of the abutting edge 412 of the third keel 385, and the bottom surface is flush with the bottom surface of the abutting edge of the third keel 386.
  • the push window 383 is installed between the third keel 385 and the third keel 386 through the guide groove 395 and the guide groove 397 respectively; the push window 384 passes through the guide groove and the guide groove.
  • 400 is respectively installed between the third keel 385 and the third keel 386 in cooperation with the guiding strip 394 and the guiding strip 399.
  • the fourth keel 387 on the left side is fixed to the third keel 385 and the third keel 386 from the upper and lower sides by screws 408, and the fourth keel 388 and the third keel 385 are third from the upper and lower sides by screws 409.
  • the keel 386 is fixed together, and the push window 383 and the push window 384 are slidably and slidably mounted together with the third keel 385, the third keel 386, and the two fourth keels 387.
  • the top screw 408 and the screw 409 are received in the recess 390.
  • a sealing strip 410 is attached to the surface of the third keel 385 and the third keel 386 of the partition module facing the resisting ring, and the two fourth keels are directly flush with the sealing strip 410 on the surface of the resisting ring.
  • Strip 411, two sealing strips 410 and two sealing strips 411 form a closed sealing ring.
  • 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 and third keels 423, two of which are arranged side by side. Side by side of the fourth keel 424 fourth keel 425, multi-piece louver 426, louver adjustment mechanism.
  • 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 portion 428 is protruded from the top surface of the louver body 427, and has an inverted concave-shaped convex portion 429 that is convexly fitted with the inverted L-shaped convex portion 428 and flush with the louver body 427 facing the indoor surface, and is disposed in an inverted L shape.
  • the accommodating recess 430 of the mounting seal 454 of the two outwardly facing faces of the projection 429, and the accommodating recess 431 of the mounting seal 455 are protruded at an intermediate position on both end faces of the louver body 427.
  • the vane shaft 432 forms the louver 426 with an axial hollow hole 433 and an axial hollow hole 435 having a relatively uniform wall thickness.
  • the louver 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 the outdoor surface of the slider 437, 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 room, 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 side 421 of the right side 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 set in the first a rib 456 on the outer bottom surface of the 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 convexly disposed, and the flank of the fourth keel body 447 facing the indoor surface and the two end faces are opposite.
  • the convex portions of the T-shaped guide grooves 448 which are formed on the upper and rear inner side surfaces with the fourth keel body 447 and the guide bars 441 and the guide bars 442 on the sliding seat 437 are disposed on the rear side wall of the fourth keel body 447.
  • a straight guide through hole (not shown) that cooperates with the adjustment handle 446 is disposed on the left side wall of the fourth keel body 447, concentric with the blade shaft 432 on the left side of the corresponding louver 426, and larger than the outer side of the gear 436 a plurality of hollow holes 449 of the diameter, and a blade shaft 432 disposed on the left side of each of the louvers 426 and a mounting hole (not shown) concentric with the hollow holes 449 are disposed on the right side wall of the fourth keel body 447.
  • the fourth keel 425 includes a square tubular 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 louver 426, and is disposed on the right side wall and the mounting hole.
  • Corresponding mounting holes (not shown) are disposed on the left side wall of the square tube body, and have small through holes (not shown) corresponding to the through holes 444, and are disposed on the right side wall of the square tube body. Large through hole 453 of the through hole.
  • the blade shaft 432 on the left side of the louver 426 is fixed to the gear 436 through a mounting hole on the right side wall of the fourth keel body 447, and the right blade shaft 432 is rotatably mounted on the body 452.
  • the guide bar 441 of the carriage 437 is 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 slide 437, the slide 437 moves up and down, and the straight rack 438 on the slide 437 drives all the gears 436 to rotate synchronously, and drives the shutters 426 to open and close.
  • the inverted L-shaped projection 428 of the adjacent one hundred 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 projections 429 of the joined uppermost louvers 426 are inserted together with the inverted L-shaped projections 457 on the third keel 422 and sealed by the sealing strips 458
  • the strip 459 is sealed;
  • the inverted L-shaped projection 428 of the joined lowermost louver 426 is inserted into the inverted L-shaped projection 461 on the third keel 423 and sealed by the sealing strip 454.
  • Strip 455 is sealed.
  • the louver 480 is an integrally extruded aluminum-plastic profile comprising an outer plastic layer and an inner metal layer
  • the plastic layer comprises a rectangular plastic layer louver body 481
  • the bottom surface of the plastic layer louver body 481 is downwardly protruded, and an L-shaped convex portion 482 which is flush with the surface of the louver 480 body facing the room is protruded from the top surface of the plastic layer louver body 481, and the L-shaped convex portion 482
  • the shape is concave-convex, and the inverted L-shaped protrusion 483 is flush with the surface of the plastic layer louver body 481 facing the outdoor, and the plastic layer is formed into an axial hollow hole 484 having a relatively uniform wall thickness;
  • the metal layer includes the outer side surface and the plastic layer
  • the metal layer louver body 485 which is completely attached to the side surface penetrates the through hole 502 which is engaged with the blade shaft 486 at both ends of the metal layer, and forms a
  • a linear convex portion 489 and a non-closed curved convex portion 490 connecting the linear convex portion 489 are provided on the front inner side surface of the square tubular body 488 of the fourth keel 487, and the curved convex portion 490 is formed at the curved convex portion 490.
  • the louver 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 to the glass plate 500 by screws and glass glue (not shown) on the inverted L-shaped mounting portion 497 and the L-shaped mounting portion 499.
  • the louver body is convexly protruded from the bottom surface of the louver body 520.
  • the convex portion 521 that faces the outdoor surface of the 520 is convexly provided from the top surface of the louver body 520 so as to be convex with the convex portion 521 and flush with the surface of the louver body 520 facing the room.
  • the louver adjustment mechanism includes a gear 523 fixed to the right end of each louver 522, placed in the tubular body of the fourth keel 524, mounted on the left side of the fourth keel 524 and with the gear of the tubular body of the fourth keel 524
  • the 523 meshing gear 525, the gear 526, the timing belt 527 engaged with the gear 523, the gear 525, and the gear 526 on the gear 523, the gear 525, and the gear 526 adjust the handle 528.
  • the gear shaft 529 of the gear 523 passes through the tubular body of the fourth keel 524 and is fixed to the louver 522.
  • a straight guide hole 531 is provided on the face of the fourth keel 524 facing the room, and the adjustment handle 528 is fixed to the timing belt 527 through the straight guide hole 531.
  • the timing belt 527 is driven up and down, and the timing belt 527 drives the gear 523, the gear 525, and the gear 526 to rotate forward and reverse, and controls the opening and closing of the louver 522.
  • a reverse L-shaped mounting portion 533 is provided at a corner of the square facing surface and the lower side of the third keel body 532, and is provided at a corner of the square-facing third keel body 532 facing the interior and the lower side of the room.
  • the L-shaped mounting portion 534 is provided with a reverse mounting portion 536 at a corner facing the outdoor facing surface and the upper side surface of the square third keel body 535, on the facing surface and the upper side of the square third keel body 535
  • An L-shaped mounting portion 537 is provided at the corner, and a glass plate 538 is fixed to the inverted L-shaped mounting portion 533 and the inverted L-shaped mounting portion 536 by screws and glass glue (not shown), in the inverted L-shaped mounting portions 534 and L.
  • a glass plate 539 is fixed to the mounting portion 537 by screws and glass glue (not shown).
  • 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 fourth 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 547 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 square-shaped second fixing member 549 fixed to both ends of the second keel body 565, and a second fixing member 549 is provided with a fixing shaft 563. Two through holes 548.
  • a flange 644 of one of the five first keels 560 is fastened from the outdoor direction to the first spacer 645 of the elastic snap type, and the two buckles 646 of the first spacer 645 are flanged 644.
  • the face 648 facing the flange 647 is resisted, and the other side flange 647 is fastened from the indoor direction with the first snap 648 of the elastic snap type, and the two snaps 649 of the first spacer 648 are flanged 647 toward the flange 644
  • the face 650 resists.
  • a second spacer 651 is inserted from the upper side of the square tubular second keel body 565 of the five second keels 561, and the second spacer includes a horizontal connection portion.
  • the two side walls of the vertical direction extending from the bottom surface of the connecting portion and flushing with the two outer sides opposite to the connecting portion completely cover the surface 652 of the second keel body 565 facing outward, the top surface 653 and Face 654 facing the interior.
  • the side wall of the second spacer 651, which is mounted on the uppermost second keel 651, having the top surface 653 is clamped by the second keel 561 and the roof 557, and the remaining second partition mounted on the second keel 651
  • the strip 651 has a side wall 653 whose side wall is clamped by two adjacent second keels 561.
  • Module 562 is a sliding window module, and the remaining barrier module 546 differs from the compartment module module of embodiment 4 in that it includes only two layers of glass spacers.
  • Each of the first keel and the second keel is also fitted with a decorative strip 547 from the outside, and the decorative strip 547 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 fixed by the acute angle angle iron 656 and the first keel 567 and the horizontal direction inclined H-shaped steel keel 572; the two ends are respectively associated with the first keel 567, the first dragon
  • the bone 568 is fixed by the angle iron to the five horizontal H-shaped steel second keel 573 and one horizontally inclined H-shaped steel keel 574; the two ends
  • 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 540 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 floor front wall 552 is different from the rear wall 554 in that it includes a first keel 590 of a vertical H-shaped steel, a first keel 591, a first keel 592, a first keel 593, and a first keel 594.
  • the two ends are respectively separated from the first keel 590 and the first keel 591 by three horizontal 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 593.
  • the floor 556 differs from the left wall 553 in that it includes six first keels 541, and five second keels 542 are installed between each adjacent two first keels 541.
  • the first keel 541 is a square tube. Shaped steel. No spacers are installed on each of the first keel 541 and the second keel 542.
  • the roof 557 is different from the left wall 553 in that it includes seven first keels 543, and four second keels 544 are installed between each adjacent two first keels 543, and the first keel 543 is a square tube.
  • a first steel strip 545 having the same shape as the second spacer 651 is attached to the first keel 543;
  • a wavy decorative strip 548 is fixed from the room by screws on each of the first keels 543.
  • the adjacent two decorative strips 548 are interlaced with a combination of concave and convex portions, and the decorative strip 548 covers all of the first keel 543 and the second keel 544, and a compartment module installed between the first keel 543 and the second keel 544. 549.
  • 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.
  • a third keel 604 and a third keel 605 which are perpendicular to the fourth keel 603 and perpendicular to the fourth keel 602 and the fourth keel 603, and are arranged side by side with respect to a vertical plane of the center position thereof, and the connecting shaft 606
  • a hexagonal lock nut 607 mounted on both ends of the connecting shaft 606, a connecting shaft 608, and a hexagonal lock nut 609 mounted on both ends of the connecting shaft 608.
  • the fourth keel 602 includes a square fourth keel body 610, and a resisting strip that is flush with the surface of the fourth keel body 610 facing the outdoor is protruded from the top surface of the fourth keel body 610.
  • 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 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 strip 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 has a large through hole 624 larger than the maximum outer diameter of the hexagonal lock nut 607 and the through hole
  • the right side wall of the three keel body 620 and the small through hole 625 that cooperates 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 maximum of the hexagonal lock nut 609.
  • 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.
  • 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 left side of the resisting strip 631 of the resisting strip 611 and the fourth keel 603 protrudes from the left side of the fourth keel body 610 and the third side of the resisting strip 621 of the third keel 604, and the right side is convex.
  • the fourth keel body 610 is flush with the right side of the resist strip 630 of the third keel 605.
  • the through hole 637 through the screw 632 through the resisting strip of the compartment module 588 is fixed to the first keel 581, the first keel 582, and the corresponding two second keels.
  • the sash window module is different from the sash window module of the fourth embodiment in that the resisting strip of the fourth keel 640, the resisting strip of the fourth keel 641, the resisting strip of the third keel 642, and the third keel 643 are The resisting strip 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 661 and a door 662.
  • the door 661 is pivotally connected to the rear side of the fourth keel 664 by a leaflet 663.
  • the door 662 is pivotally attached to the rear side of the fourth keel 666 by a leaflet 665.
  • a handle 667 is provided on the door 661, and a handle 668 is provided on the door 662.
  • a composite building structure includes three vertical first keels 670, which are laterally arrayed from left to right, and a connecting keel 671, which is connected to the keel from the rear to the front.
  • the three vertical first keels 672 of the lateral array are mounted between each adjacent first keel 670, or four transverse second keels 673 arranged vertically from top to bottom between the first keel 670 and the connecting keel 671.
  • transverse second keels 674 are arranged between each adjacent first keel 672, or between the first keel 672 and the connecting keel 671 from top to bottom, four parallel first fixed axes 675, four
  • the second fixing shaft 676 which is perpendicular to the first fixed shaft, is respectively mounted on the first locking member 677 at both ends of the first fixing shaft 675, and is respectively mounted on the second locking member 691 at both ends of the second fixing shaft 676.
  • the connecting keel 671 is L-shaped, including a square axial through hole 678, a square axial through hole 679, a square axial through hole, which penetrates the two ends of the keel 671, and has a uniform wall thickness of the connecting keel 671.
  • the third side wall 683 is perpendicular to the second side wall 682 and is the fourth side wall 684 of the hole wall of the axial through hole 680.
  • the first side wall 681 is provided with the first fixing shaft 675.
  • Four first through holes 685 of the upper and lower arrays are provided with four first through holes 686 which are arranged in the upper and lower arrays on the second side wall 682; and the third side walls 683 are respectively provided with a first through hole 685 - a corresponding first through hole 687 through which the tool for mounting the locking member passes; and a fourth side wall 684 corresponding to the first through hole 686 respectively for mounting and locking a second hollow through hole 688 through which the tool of the piece passes; a resisting strip 689 disposed on the left side surface of the first side wall 681, A resist strip 690 is disposed on the front side of the second side wall 682.
  • the first keel 670, the second keel 673, the first keel 672, and the second keel 674 are different from the first keel and the second keel structure corresponding to the first embodiment, and are in the first keel 670, the first Two keel 673, the first keel 672, There is no accommodating groove on the second keel 674.
  • the left end of the first fixed shaft 675 is fixed to the first locking member 677, and passes through the first through hole of the first keel 670 and the second through hole of the second keel 673 in sequence, and finally wears.
  • the first through hole 685 of the connecting keel 671 passes through the first locking member 677 received in the axial through hole 678 and installed at the right end of the first fixed shaft 675 to connect the first keel 670, the second keel 673, and the connecting keel.
  • the 671 is locked and mounted together; the front end of the second fixed shaft 676 is fixed to the second locking member 691, and passes through the first through hole of the first keel 672 and the second through hole of the second keel 674 in sequence, and finally passes through the connection.
  • the first through hole 686 of the keel 671 locks the first keel 670, the second keel 673, and the connecting keel 671 by a second locking member 691 received in the axial through hole 680 and mounted at the right end of the second fixed shaft 676. Tightly installed together.
  • a composite building structure includes three vertical first keels 700, a keel 701 connected laterally from left to right, and a lateral array of connecting keels 701 from the rear to the front.
  • the connecting keel 701 is T-shaped, and includes a square axial through hole 711, a square axial through hole 712, and a square axial through hole 713 which are connected to both ends of the keel 701 and have a uniform wall thickness of the connecting keel 701.
  • first sidewall 714 perpendicular to the first fixed axis 707, a second sidewall 715 perpendicular to the second fixed axis 708, and a first sidewall 716 perpendicular to the first fixed axis 709, perpendicular to the first sidewall 714, And a third sidewall 717 of the hole wall of the axial through hole 711, a fourth sidewall 718 perpendicular to the second sidewall 715 and being the same as the sidewall of the axial through hole 712, and the first sidewall 716 a third sidewall 719 that is perpendicular to the hole wall of the axial through hole 713; and a first first through hole 720 disposed on the first sidewall 714 and coupled to the first fixed shaft 707, in the upper and lower arrays,
  • the first side wall 715 is provided with four first through holes 721 which are matched with the second fixed shaft 708 and arranged in the upper and lower rows.
  • the first side wall 716 is provided with four first and second arrays 710. a through hole 722; corresponding to the first through hole 720, respectively, on the third side wall 717 for mounting and locking a first air venting hole 723 through which the tool passes; and a second air venting hole 724 through which the tool for mounting the locking member passes through the first through hole 721, respectively, is disposed on the fourth side wall 718.
  • the first side wall 719 is provided with a first hollow hole 725 through which the tool for mounting the locking member passes through the first through hole 722, and is disposed on the left side surface of the first side wall 714.
  • the first keel 700, the second keel 704, the first keel 702, the second keel 705, the first keel 703, and the second keel 706 are different from the first keel and the second keel structure corresponding to the first embodiment.
  • the left end of the first fixed shaft 707 is fixed to the first locking member 710, and passes through the first through hole of the first keel 700 and the second through hole of the second keel 704 in sequence, and finally wears.
  • the first through hole 720 is connected to the keel 701, and the first keel 700, the second keel 704, and the keel are connected by the first locking member 710 received in the axial through hole 711 and installed at the right end of the first fixed shaft 707.
  • the 701 locks are installed together.
  • the front end of the second fixed shaft 708 is fixed to the second locking member 729, and passes through the first through hole of the first keel 702 and the second through hole of the second keel 705 three times, and finally passes through the first through hole of the connecting keel 701.
  • the first keel 702, the second keel 705, and the connecting keel 701 are locked and assembled together by a second locking member 729 received in the axial through hole 712 and mounted on the right end of the second fixed shaft 708.
  • the right end of the first fixed shaft 709 is fixed to the first locking member 728, and passes through the first through hole of the first keel 703 and the second through hole of the second keel 706 three times in sequence, and finally passes through the first through hole of the connecting keel 701. 722.
  • the first keel 703, the second keel 706, and the connecting keel 701 are locked and assembled together by a first locking member 728 received in the axial through hole 713 and installed at the left end of the first fixed shaft 709.
  • Fig. 54 different from the embodiment 13, further comprising three vertical first keels 731 from the front to the rear and the lateral array of the connecting keels 730, installed between each adjacent first keel 731, or the first keel. 471 and four transverse second keels 732 connecting the keels 730 from top to bottom in a vertical direction, respectively, and second fixed shafts 734 collinear with the four second fixed shafts 733.
  • the connecting keel 730 has a cross shape, including an axial through hole 735 that penetrates both ends of the keel 730 to make the connecting keel 730 uniform in thickness, an axial through hole 736, an axial through hole 737, and an axial passage.
  • Four first through holes 741 are arranged in the upper and lower arrays, which are matched with the second fixed shaft 734.
  • the fourth side wall 740 is provided with a tool corresponding to the first through holes 741 for mounting the second locking member 743. a second escape through hole 742 passing through; a resisting strip (not shown) disposed on a rear side of the second side wall 739.
  • the front end of the second fixed shaft 734 is fixed to the second locking member 743, and passes through the first through hole of the first keel 731 and the second through hole of the second keel 732 in sequence, and finally wears.
  • the first through hole 741 is connected to the keel 730, and the first keel 731, the second keel 732, and the keel are connected by a second locking member 743 received in the axial through hole 738 and installed at the right end of the second fixed shaft 734.
  • the 730 locks are installed together.
  • a composite building structure is a glass curtain wall structure including a vertical leftmost first fixing member 751 passing through an angle iron structure.
  • the first keel 754 is symmetrical with the vertical plane of the first keel 753 about its central position, the first keel 772, the first keel 773, the first keel 774, the first keel 775, the first keel 776, the first keel 777 and
  • the first keel 755 has the same structure, and the first keel 773 and the first keel 775 are connected to the keel.
  • the second keel 758 is symmetrical with the second keel 756 about the horizontal plane of its center position.
  • the fixed shaft on the same straight line includes a first fixed shaft 770, a second fixed shaft 778, and a first fixed shaft 780 arranged in order from left to right;
  • the locking member includes a first locking member installed at both ends of the first fixed shaft 770 764, a second locking member 779 mounted on both ends of the second fixing shaft 778, and a first locking member 781 mounted on both ends of the first fixing shaft 780.
  • the first keel 753, the first keel 755, the first keel 772, the first keel 773 and the second keel on the same straight line pass through a first fixed shaft 770 and a first lock fixed at both ends of the first fixed shaft
  • the fastener 764 is fixed.
  • the first keel 773, the first keel 774, the first keel 775, and the second keel on the same straight line are fixed by a second fixed shaft 778 and a second locking member 779 fixed to the two ends of the second fixed shaft 778.
  • the first keel 775, the first keel 776, the first keel 777, the first keel 754, and the second keel on the same straight line pass through a first fixed shaft 780 and a first end fixed to the first fixed shaft 780
  • the locking member 781 is fixed.
  • the first keel 753 includes a square first keel body 759, and the vertical first keel body 759 protrudes toward the outdoor surface, and is flush with the left and right sides of the first keel body 759.
  • a decorative rib 760 a hollow through hole 761 that penetrates both ends of the first keel body 759 so that the first keel 753 has a uniform wall thickness, and a vertical rib 762 protruding from the left side of the first keel body 759
  • the right side wall of the keel 753 and the evenly distributed nine first through holes 763 are provided on the rear side wall of the first keel 753 with a tool corresponding to the first through hole 763 for mounting the locking member 764.
  • the escape hole 765 is provided on the rear side wall of the first keel 753 with a tool corresponding to the first through hole 763 for mounting the locking member 764.
  • the first keel 755 includes a square first keel body 766, and a hollow through hole 767 that penetrates the two ends of the first keel body 766 so that the first keel body 766 has a relatively uniform wall thickness.
  • the left side of the first keel body 766 protrudes from the left side of the first keel body 766, and the right side of the first keel body 766 is convex.
  • the right side of the first keel body 766 is convex, and the resisting strip 768 is vertical with respect to the center position thereof.
  • the surface symmetrical resisting strip 769 extends through the left and right side walls of the first keel body 766, and the nine first through holes (not shown) that are evenly distributed with the fixed shaft, at the first keel 755
  • the rear side wall is provided with a hole 771 through which the tool for mounting the locking member 764 passes in one-to-one correspondence with the first through hole of the first keel 755.
  • the second keel 756 includes a second keel body 782, and the vertical keel body 782 protrudes toward the outdoor surface, and the decorative rib 783 is flush with the top surface and the both end surfaces of the second keel body 782.
  • the two end faces of the second keel body 782 and the second through holes 784 that are matched with the fixed shaft are left and right, and the hollow ends of the second keel 756 are relatively uniform.
  • the through hole 786, the hollow through hole 787, and the hollow through hole 788 are perpendicular to the lower side of the second keel body 782, and the resisting strip 789 is flush with the surface of the second keel body 782 facing the indoor.
  • the second keel 757 includes a square second keel body 790, and a second through hole 791 that cooperates with the fixed shaft on both ends of the second keel body 790, and extends through the second keel body 790.
  • the two keel body 790 faces the flushing strip 796 of the indoor surface, and the upper side of the second keel body 790 protrudes from the upper side of the second keel body 790, and the resisting strip 797 is symmetric with respect to the horizontal position of the resisting strip 796.
  • a composite building structure is a glass curtain wall structure including a vertical, first angle fixing member 834 of an angle iron structure and each floor 840 of the main body frame structure.
  • the first keel 800 is symmetric with respect to the vertical plane of the first keel 841 about its central position, the first keel 842, the first keel 843, the first keel 844, the first keel 845, the first keel 846, the first keel 847, The first keel 848 and the first keel 849 have the same structure.
  • the first keel 841 is a square tube steel. On the right side wall of the first keel 841, there are fourteen first through holes (not shown) that cooperate with the fixed shaft, and the left side wall is respectively provided with the first pass. Holes one by one corresponding to the hole 815.
  • the first keel 842 is a square tube steel, and fourteen first through holes (not shown) that cooperate with the fixed shaft are provided on the left and right side walls of the first keel 841.
  • the second keel 801 includes a second keel body 816 of square tube steel, a square-shaped second fixing member (not shown) fixed to both ends of the second keel body 816, and a second fixing member is provided with the fixed shaft. a second through hole (not shown).
  • the fixed shaft 817 passes through the second through holes of the two second fixing members.
  • a compartment module 818 each of which is mounted between the first keel 841 and the first keel 842, is mounted within each of the boxes between the first keel 845 and the first keel 846 Compartment module 819, compartment module 820 installed in each box between first keel 849 and first keel 800, nine second keels 801 mounted on the same line, and nine second on the same line A compartment module 821 in each of the boxes between each of the keels 802, nine second keels 805 mounted on the same line, and nine second keels 806 on the same line.
  • the compartment module 823 in each of the nine second keels 809 mounted on the same line and the nine second keels 810 on the same line protrudes from the outside to project the first keel and the second keel
  • the compartment module installed indoors is flush toward the indoor surface, and the remaining compartment modules not supported by the main body frame are installed indoors to project the first keel and the second keel from the outdoor and the compartment module 818 installed from the outside.
  • Layer module 819, the compartment module 820, the compartment module 821, the compartment module 822, and the compartment module 823 are flush toward the outdoor surface.
  • the third keel 835 and the third keel 824 of all the compartment modules are symmetric about the horizontal plane of the center position thereof, and the fourth keel 825 and the fourth keel 826 are symmetrical about the vertical plane of the center position thereof.
  • a card slot 827 is provided on the side of the third keel 835 with the resisting strip facing upward, a card slot (not shown) is provided on the rear side, and a card slot 828 is provided on the front side.
  • a card slot 829 is provided on the rear side of the fourth keel 825, a card slot 830 is provided on the front side, and a card slot 831 is provided on the left side of the resisting strip of the fourth keel 825.
  • a rigid decorative strip 832 is fixed on each of the first keel and on the front and rear sides of each second keel, and two rows of symmetrical elastic buckles 833 are disposed on the decorative strip 832.
  • the elastic buckle mounted on the outermost decorative strip is inserted into the corresponding third keel of the corresponding compartment module or the card slot on the front side or the rear side of the fourth keel.
  • the elastic snaps of the trim strips mounted in the intermediate position are inserted into the slots of the opposite opposing strips of the adjacent two compartment modules.
  • the first keel 846 opens toward the C-shaped steel in the room
  • the second keel 847 opens toward the C-shaped steel in the room.
  • the card groove 851 that penetrates the first keel 850 is provided on the surface of the rightmost first keel 850 facing the outdoor.
  • the first spacer fastened to the first keel 850 includes a flat first spacer body 852, and an elastic buckle 853 that cooperates with the card slot 851 is provided on the surface facing the indoor from the first spacer body 852.
  • the left and right sides of the first spacer body 852 are flush with the left and right sides of the first keel 850, and the first spacer body 852 completely covers the surface of the first keel 850 facing outward.
  • the first keel 854 at the intermediate position faces the outdoor surface and is provided with a card slot 855 that penetrates the first keel 854 up and down.
  • the first spacer on the first keel 854 includes a flat first spacer body 856, and an elastic buckle 857 that cooperates with the card slot 855 is provided on the surface facing the indoor from the first spacer body 856.
  • the left and right sides of the first spacer body 856 are flush with the left and right sides of the first keel 854, and the first spacer body 856 completely covers the surface of the first keel 854 facing outward.
  • a card slot 859 that penetrates the second keel 858 up and down is provided on the surface on the upper side of the second keel 858.
  • the second spacer on the second keel 858 includes a flat second spacer body 860, and an elastic buckle 861 that cooperates with the card slot 859 is provided on the surface facing the indoor from the second spacer body 860.
  • the second spacer body 860 is flush with the upper and lower sides of the second keel 858, and the second spacer body 860 completely covers the second keel 858 facing the outdoor surface.
  • the second keel 862 at the intermediate position faces the outdoor surface and is provided with a card slot 863 which penetrates the second keel 862 up and down.
  • the second spacer on the second keel 862 includes a flat second spacer body 864, and an elastic buckle 865 mated with the card slot 863 is provided on the surface facing the indoor from the second spacer body 864.
  • the upper and lower sides of the second spacer body 864 are flush with the upper and lower sides of the second keel 862, and the second spacer body 864 completely covers the surface of the second keel 858 facing outward.
  • the first accommodating groove 871 such as a mounting wire that penetrates both end faces of the first keel 870 is provided on the surface of the rightmost first keel 870 facing the room.
  • the right side wall of the first receiving groove 871 is flush with the left side wall of the decorative rib 872.
  • the first keel 873 at the intermediate position faces the indoor surface and is provided with a first accommodating groove 874 such as a mounting wire that penetrates both end faces of the first keel 873.
  • the second accommodating groove 876 such as a mounting wire that penetrates both end faces of the second keel 875 is provided on the surface of the uppermost second keel 875 facing the room.
  • the upper side wall of the second receiving groove 876 is flush with the lower side wall of the decorative rib 877.
  • the second keel 878 at the intermediate position faces the indoor surface, and is provided with a second accommodating groove 879 such as a mounting wire that penetrates both end faces of the second keel 878.
  • the first accommodating groove on the first keel and the second accommodating groove on the second keel are connected to each other.
  • the partition module is different from the partition module of the fourth embodiment in that the partition module includes a partition 880, a partition 881, and a roller blind 882.
  • the third keel 883, the third keel 884 are horizontally installed, 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 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 attaching an elastic snap-type decorative strip is provided on the surface facing the interior of the third keel 883.
  • a receiving groove 889 for accommodating the roller blind 882 is disposed at the top of the third keel 884, and a card slot 890 for attaching the elastic snap-type decorative strip is disposed on the surface facing the interior of the third keel 884.
  • a card slot 891 is provided on the face of the fourth keel 885 facing the room.
  • the fourth keel 886 is symmetric with the fourth keel 885 about the vertical plane of its 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.
  • Example 21 As shown in FIG. 73, the partition module is different from the partition module in Embodiment 4 in that the partition module includes two outer opaque decorative panels 896 and a decorative panel 897, and the sealing panel 896 and the decorative panel 897 are sealed. A gypsum splint 898 that is attached to the surface opposite to the decorative panel 896 and the decorative panel 897 is also provided in the 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 a resisting strip 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 two third keels 901 and the fourth keel 902 are spliced at 45°, and are fixed together by an angle iron 907 accommodated in the first hollow hole 905.
  • the rightmost first keel includes an inner metal layer 910 and an outer plastic layer 911.
  • the inner metal layer 910 includes a square first keel body 912 disposed on a side of the square first keel body 912 facing the room.
  • the decorative rib 913 is flush with the right side surface of the first keel body 912, and the hollow metal through hole 914 having a relatively uniform wall thickness of the inner metal layer is protruded from the left side of the first keel body 912 and the first keel body
  • the 912 is facing the outdoor flushing strip 915, and the first and second through holes (not shown) extend through the two sides of the first keel body 912.
  • the outer plastic layer 911 is completely similar to the outer side of the inner metal layer 910. , wrapping the outer side of the inner metal layer 910.
  • the two first keels of the same structure at the intermediate position include an inner metal layer 916 and an outer plastic layer 917.
  • the inner metal layer 916 includes a square first keel body 918, which faces the indoor first keel body 912.
  • the middle side of the side is provided with a decorative rib 919, such as a hollow through hole 920 having a relatively uniform wall thickness of the inner metal layer, and a vertical side of the first keel body 918 is convex, and the first keel body 918 faces the outdoor surface.
  • the flat resisting strip 921 is perpendicular to the right side of the first keel body 918, and the resisting strip 922 is flush with the first keel body 918 facing the outdoor surface, and the four sides of the first side of the first keel body 918 are circumscribed.
  • a through hole (not shown), the outer plastic layer 917 is completely similar to the outer side of the inner metal layer 916, wrapping the outer side of the inner metal layer 916.
  • the uppermost second keel includes an inner metal layer 923 and an outer plastic layer 924.
  • the inner metal layer 923 includes a square second keel body 925, and is disposed on a side of the square second keel body 925 facing the room.
  • a decorative rib 926 flush with the top surface of the second keel body 925, and a second through hole 927 extending through the two end faces of the second keel body 925 to the left and right sides of the second keel body 925
  • the hollow through hole 929 and the hollow through hole 930 are perpendicular to the bottom surface of the second keel body 925, and the resist strip 931 is flush with the surface of the second keel body 925 facing the outdoor, and the outer plastic layer 924 and the inner metal layer 923 are outside.
  • the sides are completely similar and wrap the outer side of the inner metal layer 923.
  • the two second keels of the same structure at the intermediate position include an inner metal layer 932 and an outer plastic layer 933.
  • the inner metal layer 932 includes a square second keel body 934, and the square second keel body 934 faces the interior.
  • a second through hole 936 is formed at a position between the two sides of the second keel body 934, so that the inner metal layer has a relatively uniform wall thickness 937, hollowed out a hole 938, a hollow through hole 939, a top surface of the second second keel body 934, a resisting strip 940 that is flush with the second keel body 934 facing the outdoor surface, and a vertical second keel body 934 is protruded from the bottom surface, and the second surface
  • the keel body 934 faces the outdoor flushing strip 941, and the outer plastic layer 933 is completely similar to the outer side of the inner metal layer 932, wrapping the outer side of the inner metal layer 932.
  • the rightmost first keel 950 is a metal profile, and the first side of the first keel 950 is provided with a first profile of a plastic profile similar to the outer side of the first keel 950.
  • the first keel 950 is inserted into the first spacer 951 from the end, and is in clearance with the first spacer 951.
  • the two first keels 952 having the same structure at the intermediate position are metal profiles, and the first spacer 953 of the plastic profile similar to the outer side of the first keel 952 is provided on the outer side of the first keel 952, A keel 952 is inserted into the first spacer 953 from the end and is in clearance engagement with the first spacer 953.
  • the uppermost second keel 954 is a metal profile, and the outer side of the second keel 954 is provided with a second profile 955 of a plastic profile similar to the outer side of the second keel 954, and the second keel 954 is from the end. Insert the second spacer 955 Inside, it is matched with the second spacer 955.
  • the two second keels 956 having the same structure at the intermediate position are metal profiles, and the second rib 957 of the plastic profile similar to the outer side of the second keel 956 is provided on the outer side of the second keel 956.
  • the second keel 956 is inserted into the second spacer 957 from the end and is in clearance with the second spacer 957.
  • a U-shaped first spacer 961 is further disposed on the side of the first keel 960 facing the indoor side, on the opposite sides of the first keel 960.
  • a resisting groove 962 that cooperates with the first spacer 960 is disposed on a side close to the outdoor.
  • the first keel 963 installed at the intermediate position is further provided with a U-shaped first spacer 964 on the side facing the indoor, and is provided on the side opposite to the first side of the first dragon and adjacent to the outdoor side.
  • the first spacer 964 cooperates with the abutting groove 965.
  • the second keel 966 mounted on the uppermost side is further provided with a U-shaped second spacer 967 on the side facing the indoor, and is disposed on the opposite sides of the second keel 966 and adjacent to the outdoor side.
  • a resisting groove 968 that cooperates with the second spacer 967.
  • a second U-shaped spacer 970 is further disposed on a side of the second keel 969 installed in the middle position toward the indoor, and is disposed on a side of the second dragon opposite to the outdoor side.
  • the second spacer 970 cooperates with the abutting groove 969. All of the first keels have no clearance fit with all of the mating faces of the first spacers mounted thereon, and all of the second keels have no clearance fit with all of the mating faces of the second spacers mounted thereon.
  • the structure, fixing manner, and fixing manner 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 of the bathroom and the left wall of the embodiment 10 are as shown in FIG. 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 keel is vertically installed in four pieces, and four second keels are laterally installed between each adjacent two when the second keel is installed.
  • the rightmost first keel 1404 includes a square first keel body 1422, which communicates with the front side surface of the first keel body 1422 and penetrates the wire slot 1423 at both ends of the first keel body 1422 up and down.
  • the leftmost first keel 1401 is symmetrical with respect to the vertical plane of the first keel 1404 about its center position.
  • the first keel 1402 at the two intermediate positions includes a square first keel body 1430, which communicates with the front side of the first keel body 1430, and penetrates the groove 1431 of the first keel body 1430 at both ends.
  • the resisting strip 1435 protruding from the middle of the left side of the 1430 and the middle of the right side of the vertical first keel body 1430 are convex, and the resisting strip 1438 is symmetric with respect to the vertical position of the resisting strip 1435 with respect to the central position thereof, and the first keel is penetrated left and right.
  • Two sides of the body 1430 are evenly distributed, and four first through holes are respectively concentric with the four first through holes 1426.
  • the second keel 1413 mounted on the uppermost side between the adjacent two first keels includes a second keel body 1439 communicating with the front side of the second keel body 1439 and penetrating the second side.
  • the wire slot 1440 at both ends of the keel body 1439 penetrates the second through hole 1441 of the two end faces of the second keel body 1439 up and down, and penetrates the two ends of the second keel body 1439 to make the wall thickness of the second keel 1413 relatively uniform.
  • the shaped projection 1447, the curved projection 1448 and the second keel body 1439 form a non-closed through hole 1451 which is a threaded hole at both ends.
  • the lowermost second keel 1416 is symmetrical with the second keel 1413 about the horizontal plane of its center position.
  • the second second keel 1414 is installed at an intermediate position between the adjacent two first keels, and includes a square second keel body 1452 which communicates with the front side of the second keel body 1452 and is connected to the left and right.
  • the two wire slots 1453 at the two ends of the second keel body 1452 extend through the second through holes 1454 of the two end faces of the second keel body 1452, and penetrate the two ends of the second keel body 1452 to make the wall thickness of the second keel 1415 relatively uniform.
  • the curved projection 1461, the curved projection 1462 and the second keel body 1452 form a non-closed through hole 1465 having a threaded hole at both ends.
  • the compartment module 1468 includes a partition 1469 and a U-shaped sealing strip 1470 mounted on the four sides of the partition 1469.
  • the composite building structure further includes a horizontally symmetrical strip 1471 and a bead 1474 fixed on the first keel 1401 and the first keel 1404, respectively, about the central position thereof, respectively fixed to the first keel 1402.
  • the bead 1472 and the bead 1473 having the same structure on the first keel 1403 are respectively fixed on the second keel 1405, the second keel 1409, and the second keel 1413, and the bead 1475, the bead 1479, and the bead 1483 are respectively fixed on the first keel 1405, the second keel 1409, and the second keel 1413, respectively.
  • the second keel 1408, the second keel 1412, the second keel 1416 have the same structure of the bead 1478, the bead 1482, and the bead I486, respectively fixed to the second keel 1406, the second keel 1410, the second keel 1414, the second keel 1407,
  • the second keel 1411 and the second keel 1415 have the same structure of the bead 1476, the bead 1480, the bead 1484, the bead 1477, the bead 1481, and the bead 1485.
  • the bead 1478 is symmetrical with the bead 1475 about the vertical plane of its center position.
  • the bead 1471 includes a flat bead body 1487, and a rear side surface of the vertical bead main body 1487 is protruded and is flush with the right side surface of the bead main body 1487, and is straight from the straight portion 1488.
  • a straight portion 1489 of the curved corner and an arcuate curved portion 1490 bent backward from the straight portion 1489 are separated from the bead 1475, the bead 1476, the bead 1477, and the bead 1478 (not shown).
  • the bead 1473 includes a flat bead body 1491.
  • the rear side of the vertical bead body 1491 is convexly flush with the left and right sides of the bead body 1491, respectively, with respect to the center position thereof.
  • a linear portion 1492 that is vertically symmetrical, a straight portion 1493 that is curved from the straight portion 1492 to the left arc, and an arcuate curved portion 1494 that is bent backward from the straight portion 1493, and a hollow portion that is fitted to the bead 1479 and the bead 148 1495, a hollow portion 1496 matched with the bead 1480 and the bead 1484, a hollow portion 1497 mated with the bead 1481 and the bead 1485, a hollow portion 1498 mated with the bead 1482, the bead 1486, and a rear side center position of the vertical bead body 1491 Protrusion, a projection 1499 that mates with a recess in the first keel 1403.
  • the bead 1486 includes a flat bead body 1500, and a straight portion 1501 of the rear side surface of the vertical bead body 1500 and flush with the upper side of the bead body 1500 is curved upward from the straight portion 1501.
  • the bead 1485 includes a flat bead body 1504.
  • the rear side of the vertical bead body 1504 is convexly flush with the upper side and the lower side of the bead body 1504, respectively, and the vertical position about the center position thereof.
  • the bead 1474 which is flush with the first keel 1404 at both ends is fixed on the first keel 1404 by screws 1508, and the bead 1448 which is flush with the second keel 1413 at both ends is fixed by the screw 1509.
  • the protruding portion of the bead 1473 which is flush with the first keel 1403 extends into the groove of the first keel 1403 and is fixed on the first keel 1403 by screws 1510.
  • the two ends are flush with the second keel 1414.
  • the flat bead 1484 is secured to the second keel 1414 by screws 1511.
  • the ribs of the bead 1474, the bead 1484, the bead 1473, and the bead 1484 form a closed rib that resists the side of the compartment module 1468 that faces away from the resisting ring 1467.
  • the compartment module 1468 is mounted with the first keel 1403, the second keel 1413, the first keel 1404, and the second keel 1414.
  • the first keel 1530 on the rightmost side is an integrally extruded profile, including a square first keel body 1531, and a first keel body 1531.
  • the side surface and the left side surface communicate with each other, and the bead fixing portion 1532 of the first keel body 1531 is connected to the rear side surface and the left side surface of the first keel body 1531, and the bead fixing portion 1533 of the first keel body 1531 is vertically penetrated.
  • a hollow through hole 1534 that penetrates both ends of the first keel body 1531 so that the first keel body 1531 has a relatively uniform wall thickness, and penetrates left and right sides of the first keel body 1531, respectively, and the fixed shaft 1535, the fixed shaft 1536, and the fixed
  • the first through hole 1539, the first through hole 1540, the first through hole 1541, and the first through hole 1542 are engaged with the shaft 1537 and the fixed shaft 1538.
  • the right side of the first keel body 1531 is connected to the first through hole 1539, the first through hole 1540, the first through hole 1541, and the first through hole 1542, and the hole diameter is larger than the outer diameter of the locking member 1547.
  • the first keel 1548 at the intermediate position is an integrally extruded profile, including a square first keel body 1549, and a groove 1550 disposed at a middle position of the front side of the first keel body 1549.
  • the groove 1551 at the middle of the rear side of the first keel body 1549 penetrates the two ends of the first keel body 1549 so that the first keel body 1549 has a relatively uniform wall thickness, and the hollow shaft 1552 is fixed to the fixed shaft 1535 and the fixed shaft respectively.
  • the uppermost second keel 1553 includes a square second keel body 1554, a resisting strip 1555 protruding from the lower side of the second keel body 1554, and a front side of the first keel body 1554.
  • the bead fixing portion 1556 that communicates with the lower side surface and penetrates both ends of the first keel body 1554, communicates with the rear side surface and the lower side surface of the first keel body 1554, and penetrates the bead fixing portion 1557 at both ends of the first keel body 1554 to the left and right.
  • the second through hole 1558 of the two end faces of the keel body 1554 penetrates the two ends of the second keel 1553 so that the second keel 1553 has a relatively uniform wall thickness of the through hole 1559, the hollow through hole 1560, and the hollow through hole 1561 , a hollow through hole 1562, two symmetric concentric arcuate projections 1563 protruding from the rear side of the hollow through hole 1562, an arcuate projection 1564; an arcuate projection 1563, an arcuate projection
  • the portion 1564 and the second keel body 1554 form a non-closed through hole 1565 having threaded holes at both ends.
  • the second keel 1567 in the middle position includes a square second keel body 1568, a resisting strip 1569 protruding from the lower side of the second keel body 1568, and a vertical convex surface of the second keel body 1568. And a second through hole 1571 extending from the two end faces of the second keel body 1568 to the left and right, and the second keel 1567 is relatively uniform in thickness.
  • An empty through hole 1572, a hollow through hole 1573, a hollow through hole 1574, a hollow through hole 1575, and a common hole wall of the hollow through hole 1574 and the hollow through hole 1575 are disconnected, and two symmetric and concentric arcs are formed.
  • the arcuate projection 1576, the arcuate projection 1577 and the second keel body 1568 form a non-closed through hole 1578 having a threaded hole at both ends.
  • the partition module 1580, the glass partition module 1579, and the glass partition module 1580 are resisted by the resisting strip 1555 of the second keel 1553 and the resisting strip 1570 of the second keel 1567.
  • the glass partition module 1579 and the glass partition module 1580 are separated from the resisting strip. 1555.
  • One side of the resisting strip 1570 is resisted by a bead.
  • a frame 1566 of identical structure is formed between all adjacent two first keels and two adjacent second keels and two adjacent second keels, and a structurally identical glass is installed in block 1566.
  • the partition module 1579 and the glass partition module 1580 are
  • the decorative strip in the present invention may be made of a metal material or a plastic material having good heat insulation properties.
  • the separator may be a composite separator, such as a composite glass panel and a plastic panel, for some simple embodiments that can be implemented without the need for inventive labor in accordance with embodiments of the present invention, and the present invention is not described in the Detailed Description.

Landscapes

  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Finishing Walls (AREA)

Abstract

Cette invention concerne une structure de bâtiment combinée et son procédé de montage, une unité d'habitation et une toilette. La structure de bâtiment comprend de premières poutres (1 à 4), de secondes poutres (5 à 19), et des modules intermédiaires (72), et elle comprend en outre plus de deux axes de fixation (20 à 24) et des éléments de blocage (52) fixés aux deux extrémités de chacun des axes de fixation (20 à 24). Chacune des premières poutres (1 à 4) comprend au moins deux premiers orifices traversants (29) qui traversent verticalement deux parois latérales opposées de la première poutre (1 à 4) et correspondent à l'axe de fixation (20 à 24). Chacune des secondes poutres (5 à 19) présente un seul second orifice traversant (63) correspondant à l'axe de fixation (20 à 24) et traversant deux parties d'extrémité de la seconde poutre (5 à 19). Plus de deux secondes poutres parallèles (5 à 19) sont montées entre deux premières poutres adjacentes (1 à 4), les axes de fixation (20 à 24) sont introduits à travers les premiers orifices traversants (49) des premières poutres (1 à 4), puis à travers les seconds orifices traversants (63) des secondes poutres (5 à 19) en séquence plus de deux fois, et enfin les éléments de blocage (52) disposés aux deux extrémités des axes de fixation (20 à 24) sont utilisés pour bloquer et solidariser mutuellement les premières poutres (1 à 4) et les secondes poutres (5 à 19). Enfin, lesdits éléments de blocage (52) sont logés dans les premières poutres correspondantes (1 à 4). La structure selon l'invention est avantageuse du point de vue de la simplicité structurale, de l'esthétique, de la fiabilité de la fixation, de la rigidité et de la résistance, ainsi que de la simplicité et de la commodité du montage.
PCT/CN2012/086731 2012-05-10 2012-12-17 Structure de bâtiment combinée, procédé de montage, unité d'habitation et toilette WO2013166834A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201220210924.0 2012-05-10
CN201220210924 2012-05-10

Publications (1)

Publication Number Publication Date
WO2013166834A1 true WO2013166834A1 (fr) 2013-11-14

Family

ID=47964583

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2012/086731 WO2013166834A1 (fr) 2012-05-10 2012-12-17 Structure de bâtiment combinée, procédé de montage, unité d'habitation et toilette

Country Status (2)

Country Link
CN (1) CN103015525B (fr)
WO (1) WO2013166834A1 (fr)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU2018271283B2 (en) * 2018-11-27 2020-09-17 Gibs Building Tech Pty Ltd A prefabricated building system, a prefabricated wall panel and a prefabricated floor panel thereof

Families Citing this family (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2014094387A1 (fr) * 2012-12-17 2014-06-26 Yang Dongzuo Structure de construction assemblée, maison et toilettes
CN104695592B (zh) * 2014-02-25 2017-03-29 深圳市昌隆彩图钢隔断型材有限公司 一种组合式隔墙及其安装方法
CN105863116B (zh) * 2016-05-25 2018-03-06 深圳市建艺装饰集团股份有限公司 一种双层方钢通隔音墙结构及其安装方法
CN106522421B (zh) * 2016-10-28 2018-11-09 清华大学建筑设计研究院有限公司 一种建筑内组合隔板及其施工方法
IT201800005621A1 (it) * 2018-05-23 2019-11-23 Unità di rivestimento verticale perfezionata
CN109235766A (zh) * 2018-11-06 2019-01-18 中建钢构有限公司 一种墙体结构及建筑
CN110453821B (zh) * 2019-08-22 2020-11-10 台州学院 建筑装配式隔墙支撑骨架及其装配方法
CN111005442B (zh) * 2019-11-16 2021-08-06 武汉市阿可云建筑科技有限公司 一种结合轻钢的sip板式结构装配式房屋建筑及其建造方法
CN111764543B (zh) * 2020-08-11 2021-11-26 湖南中装科技有限公司 一种装配式隔墙龙骨型材使用卡板扣件的装配方法
CN111764544B (zh) * 2020-08-11 2021-11-26 湖南中装科技有限公司 一种装配式隔墙龙骨型材
CN111764545B (zh) * 2020-08-11 2021-11-26 湖南中装科技有限公司 一种装配式隔墙龙骨型材的装配方法
CN114000617A (zh) * 2021-10-19 2022-02-01 沈阳港华建设集团股份有限公司 一种室内空间非承重隔墙系统
CN115076666B (zh) * 2022-08-22 2023-03-24 江苏雄浦照明电器有限公司 一种高光效组装方便的防水照明模组

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10131367A (ja) * 1996-10-28 1998-05-19 Sankyo Alum Ind Co Ltd 結合装置
GB2365032A (en) * 2000-07-18 2002-02-13 L H Woodhouse & Co Ltd A reinforced sectional structure
CN2622271Y (zh) * 2003-01-14 2004-06-30 有利华建筑预制件(深圳)有限公司 半玻半板组合隔墙
CN201217865Y (zh) * 2008-05-23 2009-04-08 钟志东 拉杆式轻质墙体复合龙骨
KR20100100070A (ko) * 2009-03-05 2010-09-15 주식회사 시공테크 전시패널 체결 시스템
CN102677821A (zh) * 2012-05-10 2012-09-19 杨东佐 一种复合墙板及组合墙板

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN2693850Y (zh) * 2003-09-09 2005-04-20 孙建华 无机龙骨接插式复合墙体
CN2777094Y (zh) * 2004-12-23 2006-05-03 国立勇 氟碳铝蜂窝幕墙及其扣条式安装方式
DE102005025105A1 (de) * 2005-05-24 2006-12-07 Münster, Mirko Licht- und luftdurchlässige Umhausung
CN2821003Y (zh) * 2005-08-26 2006-09-27 姜敏 新型轻钢龙骨
CN101173536B (zh) * 2006-10-30 2010-10-06 上海丸瑞新型建材有限公司 组合式轻钢龙骨隔墙骨架
CN201495956U (zh) * 2009-08-31 2010-06-02 中国建筑西南设计研究院有限公司 一种全角度百叶开启窗
CN101672123A (zh) * 2009-09-22 2010-03-17 申昌均 组合抗震节能房屋
CN201649374U (zh) * 2010-01-15 2010-11-24 深圳市方大装饰工程有限公司 一种具有装饰条龙骨的框架式幕墙

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH10131367A (ja) * 1996-10-28 1998-05-19 Sankyo Alum Ind Co Ltd 結合装置
GB2365032A (en) * 2000-07-18 2002-02-13 L H Woodhouse & Co Ltd A reinforced sectional structure
CN2622271Y (zh) * 2003-01-14 2004-06-30 有利华建筑预制件(深圳)有限公司 半玻半板组合隔墙
CN201217865Y (zh) * 2008-05-23 2009-04-08 钟志东 拉杆式轻质墙体复合龙骨
KR20100100070A (ko) * 2009-03-05 2010-09-15 주식회사 시공테크 전시패널 체결 시스템
CN102677821A (zh) * 2012-05-10 2012-09-19 杨东佐 一种复合墙板及组合墙板

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU2018271283B2 (en) * 2018-11-27 2020-09-17 Gibs Building Tech Pty Ltd A prefabricated building system, a prefabricated wall panel and a prefabricated floor panel thereof

Also Published As

Publication number Publication date
CN103015525B (zh) 2015-09-23
CN103015525A (zh) 2013-04-03

Similar Documents

Publication Publication Date Title
WO2013166834A1 (fr) Structure de bâtiment combinée, procédé de montage, unité d'habitation et toilette
CN103075075B (zh) 一种组合建筑结构
CN203034602U (zh) 一种组合建筑结构
CA2466057A1 (fr) Ensemble fenetre avec elements a charniere
US8833012B2 (en) Transparent sustainable wall system
EP2568094B1 (fr) Lucarne, en particulier d'une fenêtre de toit apte à être montée à l'intérieur d'un ensemble de panneaux solaires
WO2020216266A1 (fr) Maison à économie d'énergie hautement efficace
WO2015051545A1 (fr) Mur rideau architectural
CN102587552B (zh) 博古架主体结构双层玻璃幕墙
CN104769195A (zh) 一种组合式墙体及其施工方法
CN203795652U (zh) 一种组合式墙体
CN201933666U (zh) 整体单元式双层外循环幕墙
CN202299016U (zh) 防水保温单元式幕墙
CN108978857B (zh) 一种装配式房屋用保温装饰一体化屋顶板
KR101586427B1 (ko) 단열 효과를 극대화한 친환경 커튼월
KR101673418B1 (ko) 건축물의 오픈 조인트 커튼 월 시공용 복합 외장 패널 조립체 유닛
JP2004250964A (ja) 方立
CN217461074U (zh) 一种外通风呼吸式双层幕墙层间构造系统
KR20160129349A (ko) 건축물의 오픈 조인트 커튼월 외장시스템 및 그 시공방법
CN202577676U (zh) 博古架主体结构双层玻璃幕墙
CN219794345U (zh) 一种针对幕墙玻璃室内安装的固定组件
WO2021088312A1 (fr) Unité de paroi appliquée à un bâtiment et corps de paroi combiné
CN210263528U (zh) 防火玻璃隔断系统
CN209469314U (zh) 一种节能耐火的铝塑复合平开窗
CN115749063A (zh) 一种外通风呼吸式双层幕墙层间构造系统

Legal Events

Date Code Title Description
121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 12876483

Country of ref document: EP

Kind code of ref document: A1

NENP Non-entry into the national phase

Ref country code: DE

122 Ep: pct application non-entry in european phase

Ref document number: 12876483

Country of ref document: EP

Kind code of ref document: A1