CN217000386U - Three-dimensional adjustable semi-unit type curtain wall system - Google Patents

Three-dimensional adjustable semi-unit type curtain wall system Download PDF

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Publication number
CN217000386U
CN217000386U CN202123185732.7U CN202123185732U CN217000386U CN 217000386 U CN217000386 U CN 217000386U CN 202123185732 U CN202123185732 U CN 202123185732U CN 217000386 U CN217000386 U CN 217000386U
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aluminum alloy
cross beam
curtain wall
shaped connecting
connecting angle
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CN202123185732.7U
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米松
刘立江
杨兴安
鲁欢欢
于佳月
韩杨
李春光
莫盛钦
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Co Create Golden Technique Project Management Beijing Co ltd
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Co Create Golden Technique Project Management Beijing Co ltd
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Abstract

The utility model provides a three-dimensional adjustable half-unit type curtain wall system, which relates to the technical field of half-unit modular building curtain walls and solves the problems that the existing half-unit structural type curtain wall is limited by higher requirements on processing and construction precision and relatively few engineering applications in practical application, and comprises a plate-groove type embedded part; the plate-groove type embedded part is characterized in that two sides of the plate-groove type embedded part are connected with L-shaped connecting angle codes through T-shaped bolts, one of the L-shaped connecting angle codes is connected with an aluminum alloy upper cross beam through a stainless steel bolt group, the other L-shaped connecting angle code is connected with a C-shaped connecting angle code through T-shaped bolts, the C-shaped connecting angle code is connected with an aluminum alloy lower cross beam, and an aluminum alloy sliding door pedal is installed at the top of the aluminum alloy lower cross beam. The curtain wall system realizes three-dimensional adjustability through the L-shaped connecting angle brace, the C-shaped connecting angle brace and the stainless steel bolts, adopts a modularized installation mode, and greatly shortens the installation period.

Description

Three-dimensional adjustable semi-unit type curtain wall system
Technical Field
The utility model belongs to the technical field of semi-unit modular building curtain walls, and particularly relates to a three-dimensional adjustable semi-unit type curtain wall system.
Background
Building engineering develops to the direction of pluralism, the practicality, it is pleasing to the eye comfortable that people also attach attention to the building appearance gradually, common unitized curtain wall and frame-type curtain wall respectively have the advantage and disadvantage, it is swift to find a kind of installation, the modularization installation, the structural style that again can conveniently transport and hoist and mount is especially important, this is exactly half unitized curtain wall, it is a curtain structural style between unitized curtain wall and frame-type curtain wall, it has the installation convenience, installation economy and good performance. The existing curtain wall with the semi-unit structure form is limited in practical application by higher requirements on processing and construction precision and relatively less engineering application.
Therefore, in view of the above, research and improvement are made for the existing structure and defects, and a three-dimensional adjustable half-unit curtain wall system is provided, so as to achieve the purpose of having more practical value.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problems, the utility model provides a three-dimensional adjustable half-unit type curtain wall system which is used for solving the problems that the existing half-unit structural type curtain wall is limited by high requirements on processing and construction precision and relatively few engineering applications.
The purpose and the effect of the three-dimensional adjustable semi-unit type curtain wall system are achieved by the following specific technical means:
a three-dimensional adjustable semi-unit type curtain wall system comprises a plate-groove type embedded part; the aluminum alloy door comprises a plate-groove type embedded part, wherein two sides of the plate-groove type embedded part are connected with L-shaped connecting angle codes through T-shaped bolts, one of the L-shaped connecting angle codes is connected with an aluminum alloy upper cross beam through a stainless steel bolt group, the other L-shaped connecting angle code is connected with a C-shaped connecting angle code through a T-shaped bolt, the C-shaped connecting angle code is connected with an aluminum alloy lower cross beam, the top of the aluminum alloy lower cross beam is provided with an aluminum alloy sliding door pedal, the top of the aluminum alloy lower cross beam at one side of the aluminum alloy sliding door pedal is provided with an aluminum alloy sliding door lower slide, the top of the aluminum alloy sliding door lower slide is symmetrically provided with sliding door hardware, the sliding door hardware is provided with a sliding door leaf, the end parts of the aluminum alloy lower cross beam and the aluminum alloy upper cross beam far away from the plate-groove type embedded part are provided with aluminum alloy edge sealing profiles, and the aluminum alloy pressing plate is arranged on the aluminum alloy edge sealing profiles, the aluminum alloy pressing plate is characterized in that an aluminum alloy buckle cover is installed on the aluminum alloy pressing plate, an aluminum alloy upright post is installed between the aluminum alloy lower cross beam and the aluminum alloy upper cross beam through a self-tapping screw, an aluminum alloy sleeve and an aluminum alloy pressing block are installed on the aluminum alloy upright post through a pan head mechanism bolt group, a glass auxiliary frame is installed between the two sides of the aluminum alloy pressing block and the aluminum alloy upright post, and the glass auxiliary frame is connected with hollow laminated glass through an inner glass adhesive tape and a black silicone structure sealant.
Furthermore, black silicone weather-resistant sealant is filled among the plurality of hollow laminated glasses.
Furthermore, the T-shaped bolt and the stainless steel bolt group are both sleeved with aluminum alloy cushion blocks.
Furthermore, all be fixed with fire prevention rock wool on aluminum alloy entablature and the aluminum alloy bottom end rail, be fixed with galvanized steel sheet on the fire prevention rock wool.
Furthermore, heat insulation cushion blocks are fixedly arranged among the aluminum alloy upright columns, the aluminum alloy upper cross beam, the aluminum alloy lower cross beam and the aluminum alloy pressing plate.
Furthermore, drain holes are formed between the aluminum alloy pressing plate and the aluminum alloy upper cross beam and between the aluminum alloy buckle cover and the aluminum alloy upper cross beam.
Compared with the prior art, the utility model has the following beneficial effects:
the three-dimensional adjustability is realized through the L-shaped connecting angle brace, the C-shaped connecting angle brace and the stainless steel bolts, the operability of the main structure and the half-unit curtain wall system in construction is ensured to a great extent, a great amount of manpower and material resources can be saved by processing and forming each part according to design requirements, the installation can be carried out immediately in a construction site, a great amount of space is not needed for stacking materials, and the installation can be completed only by manpower or simple hoisting machinery due to the small area of a common glass plate; by adopting a modularized installation mode, compared with a frame curtain wall, the installation period is greatly shortened, and the curtain wall has good waterproof performance, thermal insulation performance and sound insulation performance.
Drawings
FIG. 1 is a schematic cross-sectional node structure of the present invention.
FIG. 2 is a schematic view of a vertical cross-section node structure of the present invention.
In the drawings, the corresponding relationship between the component names and the reference numbers is as follows:
101. hollow laminated glass; 201. aluminum alloy upright posts; 202. an aluminum alloy upper cross beam; 203. an aluminum alloy lower beam; 204. an aluminum alloy sleeve; 205. pressing the aluminum alloy block; 206. a glass subframe; 207. l-shaped connecting corner connectors; 208. an aluminum alloy cushion block; 209. aluminum alloy edge banding section bars; 210. pressing an aluminum alloy plate; 211. an aluminum alloy buckle cover; 212. c-shaped connecting corner connectors; 213. an aluminum alloy sliding door pedal; 214. the aluminum alloy sliding door glides downwards; 215. a sliding door hardware; 216. pushing and pulling the door leaf; 301. a plate-groove type embedded part; 302. a galvanized steel sheet; 401. an adhesive tape in the glass; 402. a black silicone structural sealant; 403. black silicone weather-resistant sealant; 501. fireproof rock wool; 601. a T-bolt; 602. a stainless steel bolt set; 603. and a pan head mechanism bolt group.
Detailed Description
Embodiments of the present invention will be described in further detail with reference to the drawings and examples. The following examples are intended to illustrate the utility model but are not intended to limit the scope of the utility model.
In the description of the present invention, "a plurality" means two or more unless otherwise specified; the terms "upper", "lower", "left", "right", "inner", "outer", "front", "rear", "head", "tail", and the like, indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, are merely for convenience in describing the present invention and to simplify the description, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed in a particular orientation, and be operated, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
In the description of the present invention, it is to be noted that, unless otherwise explicitly specified or limited, the terms "connected" and "connected" are to be interpreted broadly, e.g., as being fixed or detachable or integrally connected; can be mechanically or electrically connected; may be directly connected or indirectly connected through an intermediate. The specific meanings of the above terms in the present invention can be understood in specific cases to those skilled in the art.
Example (b):
as shown in figures 1 to 2:
the utility model provides a three-dimensional adjustable semi-unit type curtain wall system, which comprises a plate-groove type embedded part 301; the upper two sides of the plate-groove type embedded part 301 are connected with L-shaped connecting corner connectors 207 through T-shaped bolts 601, one L-shaped connecting corner connector 207 is connected with an aluminum alloy upper cross beam 202 through a stainless steel bolt group 602, the other L-shaped connecting corner connector 207 is connected with a C-shaped connecting corner connector 212 through a T-shaped bolt 601, the C-shaped connecting corner connector 212 is connected with an aluminum alloy lower cross beam 203, the top of the aluminum alloy lower cross beam 203 is provided with an aluminum alloy sliding door pedal 213, the top of the aluminum alloy lower cross beam 203 at one side of the aluminum alloy sliding door pedal 213 is provided with an aluminum alloy sliding door lower slide 214, the top of the aluminum alloy sliding door lower slide 214 is symmetrically provided with a sliding door hardware 215, the sliding door hardware 215 is provided with a sliding door leaf 216, the ends of the aluminum alloy lower cross beam 203 and the aluminum alloy upper cross beam 202, which are far away from the plate-groove type embedded part 301, are provided with aluminum alloy edge sealing profiles 209, and the aluminum alloy pressing plates 210 are arranged on the aluminum alloy edge sealing profiles 209, an aluminum alloy buckle cover 211 is arranged on an aluminum alloy pressing plate 210, an aluminum alloy upright 201 is arranged between an aluminum alloy lower cross beam 203 and an aluminum alloy upper cross beam 202 through self-tapping screws, the aluminum alloy upright 201, the aluminum alloy upper cross beam 202 and the aluminum alloy lower cross beam 203 are connected through the self-tapping screws, the closed section curtain wall cross beam has strong torsion resistance and high work efficiency, an aluminum alloy sleeve 204 and an aluminum alloy pressing block 205 are arranged on the aluminum alloy upright 201 through a pan head mechanism bolt group 603, a glass auxiliary frame 206 is arranged between two sides of the aluminum alloy pressing block 205 and the aluminum alloy upright 201, the glass auxiliary frame 206 is connected with hollow laminated glass 101 through an in-glass strip 401 and a black silicone structure sealant 402, each hollow laminated glass 101 is a small unit, and the independent hollow laminated glass 101 and the glass auxiliary frame 206 are installed in a composite processing plant through the in-glass strip 401 and the two-component black silicone structure sealant 402, forming a module.
The black silicone weather-resistant sealant 403 is filled between the plurality of hollow laminated glasses 101, and the sealing property between the hollow laminated glasses 101 is improved through the black silicone weather-resistant sealant 403.
The T-shaped bolts 601 and the stainless steel bolt group 602 are sleeved with aluminum alloy cushion blocks 208, and the installation tightness of the T-shaped bolts 601 and the stainless steel bolt group 602 is improved through the aluminum alloy cushion blocks 208.
Wherein, all fixedly on aluminium alloy entablature 202 and the aluminium alloy bottom end rail 203 be equipped with fire prevention rock wool 501, fixedly on the fire prevention rock wool 501 being equipped with galvanized steel sheet 302, through fire prevention rock wool 501 increase fire behavior.
And heat insulation cushion blocks are fixedly arranged between the aluminum alloy upright 201, the aluminum alloy upper cross beam 202, the aluminum alloy lower cross beam 203 and the aluminum alloy pressing plate 210, and the waterproof and heat insulation performance is further enhanced through the heat insulation cushion blocks.
The drain holes are formed between the aluminum alloy pressing plate 210 and the aluminum alloy upper cross beam 202 and between the aluminum alloy fastening cover 211 and the aluminum alloy upper cross beam 202, and rainwater can be quickly drained after penetrating into gaps of the glass panel through the drain holes, so that the probability that the sealing rubber strips are soaked in the rainwater is reduced, the probability of water seepage of the curtain wall is smaller, and the waterproof performance is good.
The specific use mode and function of the embodiment are as follows:
in the utility model, each part is processed and molded according to the design requirement, the plate-groove type embedded part 301 and the main body structure are constructed simultaneously, the processing technology of the plate-groove type embedded part 301 is simple, the processing efficiency is higher, the engineering cost is saved, the volume is small, the construction is very convenient, the channel steel volume is smaller, the interference with the steel bars of the main body structure is not easy, the construction period is shorter, the plate-groove type embedded part 301 is connected with the curtain wall keel adapter part through the T-shaped bolt 601 which can slide in the notch of the plate-groove type embedded part, the curtain wall adapter part connected with the T-shaped bolt 601 is provided with a long round hole in the vertical direction, the long round hole vertical to the curtain wall surface direction is arranged at the position where the curtain wall adapter part is connected with the curtain wall keel, thus the three-dimensional adjustment of the curtain wall keel device is completed, each hollow laminated glass 101 is taken as a small unit, the single hollow laminated glass 101 and the glass subframe 206 are compositely installed in a processing plant through the two-component black silicone structural sealant 401 and 402, forming a module, connecting wedge-shaped friction plates on the vertical frame of the hollow laminated glass 101, determining the interval arrangement of the friction plates according to the calculation result, completing the frame combination of the hollow laminated glass 101 in a processing plant, then transporting the hollow laminated glass 101 to a construction site as an integral module, placing the hollow laminated glass 101 at two ends below the glass by matching an aluminum alloy edge sealing section 209 through an aluminum alloy pressing plate 210, adding a heat insulation cushion block between the aluminum alloy upright post 201, the aluminum alloy upper cross beam 202, the aluminum alloy lower cross beam 203 and the aluminum alloy pressing plate 210, smearing sealant on the inner side to further enhance the waterproof performance, installing an aluminum alloy sliding door pedal 213, an aluminum alloy sliding door downslide 214, a sliding door hardware 215 and a sliding door leaf 216 at the position of the aluminum alloy lower cross beam 203, and installing an aluminum alloy buckle cover 211, wherein the installation process is convenient, the work efficiency is high, and the hollow laminated glass 101 and the aluminum alloy upright post 201, Aluminum alloy upper beam 202, aluminum alloy lower beam 203, aluminum alloy sleeve 204 and aluminum alloy pressing block 205 are arranged through pan head mechanism bolt group 603 to finish fixing, and finally aluminum alloy buckle cover 211 is connected with aluminum alloy pressing plate 210 to finish panel installation.
The embodiments of the present invention have been presented for purposes of illustration and description, and are not intended to be exhaustive or limited to the utility model in the form disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. The embodiment was chosen and described in order to best explain the principles of the utility model and the practical application, and to enable others of ordinary skill in the art to understand the utility model for various embodiments with various modifications as are suited to the particular use contemplated.

Claims (6)

1. The utility model provides a three-dimensional adjustable half unitized curtain wall system which characterized in that: comprises a plate-groove type embedded part (301); the plate-groove type embedded part (301) is connected with L-shaped connecting angle codes (207) on two sides through T-shaped bolts (601), one L-shaped connecting angle code (207) is connected with an aluminum alloy upper cross beam (202) through a stainless steel bolt group (602), the other L-shaped connecting angle code (207) is connected with a C-shaped connecting angle code (212) through a T-shaped bolt (601), the C-shaped connecting angle code (212) is connected with an aluminum alloy lower cross beam (203), an aluminum alloy sliding door pedal (213) is installed at the top of the aluminum alloy lower cross beam (203), an aluminum alloy sliding door lower slide (214) is installed at the top of the aluminum alloy lower cross beam (203) on one side of the aluminum alloy sliding door pedal (213), sliding door hardware (215) are symmetrically installed at the top of the aluminum alloy sliding door lower slide (214), and a sliding door leaf (216) is installed on the sliding door hardware (215), the aluminum alloy edge sealing section bar (209) is arranged at the end parts of the aluminum alloy lower cross beam (203) and the aluminum alloy upper cross beam (202) far away from the plate groove type embedded part (301), an aluminum alloy pressing plate (210) is arranged on the aluminum alloy edge sealing section bar (209), an aluminum alloy buckle cover (211) is arranged on the aluminum alloy pressing plate (210), an aluminum alloy upright post (201) is arranged between the aluminum alloy lower cross beam (203) and the aluminum alloy upper cross beam (202) through a self-tapping screw, an aluminum alloy sleeve (204) and an aluminum alloy pressing block (205) are arranged on the aluminum alloy upright post (201) through a pan head mechanism bolt group (603), a glass auxiliary frame (206) is arranged between the two sides of the aluminum alloy pressing block (205) and the aluminum alloy upright post (201), the glass auxiliary frame (206) is connected with the black silicone structure sealant (402) through an in-glass adhesive tape (401) to form the hollow laminated glass (101).
2. The three-dimensionally adjustable semi-unitized curtain wall system of claim 1, wherein: black silicone weather-proof sealant (403) is filled between the hollow laminated glass (101).
3. The three-dimensionally adjustable semi-unitized curtain wall system of claim 1, wherein: and the T-shaped bolt (601) and the stainless steel bolt group (602) are respectively sleeved with an aluminum alloy cushion block (208).
4. The three-dimensionally adjustable semi-unitized curtain wall system of claim 1, wherein: all fixed fire prevention rock wool (501) that is equipped with on aluminum alloy entablature (202) and aluminum alloy bottom end rail (203), fixed galvanized steel sheet (302) that is equipped with on fire prevention rock wool (501).
5. The three-dimensionally adjustable semi-unitized curtain wall system of claim 1, wherein: and heat insulation cushion blocks are fixedly arranged between the aluminum alloy upright columns (201), the aluminum alloy upper cross beam (202), the aluminum alloy lower cross beam (203) and the aluminum alloy pressing plate (210).
6. The three-dimensionally adjustable semi-unitized curtain wall system of claim 1, wherein: drainage holes are formed between the aluminum alloy pressing plate (210) and the aluminum alloy upper cross beam (202) and between the aluminum alloy buckle cover (211) and the aluminum alloy upper cross beam (202).
CN202123185732.7U 2021-12-17 2021-12-17 Three-dimensional adjustable semi-unit type curtain wall system Active CN217000386U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123185732.7U CN217000386U (en) 2021-12-17 2021-12-17 Three-dimensional adjustable semi-unit type curtain wall system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123185732.7U CN217000386U (en) 2021-12-17 2021-12-17 Three-dimensional adjustable semi-unit type curtain wall system

Publications (1)

Publication Number Publication Date
CN217000386U true CN217000386U (en) 2022-07-19

Family

ID=82383883

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123185732.7U Active CN217000386U (en) 2021-12-17 2021-12-17 Three-dimensional adjustable semi-unit type curtain wall system

Country Status (1)

Country Link
CN (1) CN217000386U (en)

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