Adjustable hanging structure of high-rise inclined unit curtain wall

By combining support connectors, aluminum alloy hangers, and grooved embedded parts, three-dimensional adjustment of the high-rise inclined unit curtain wall is achieved, solving the installation difficulties caused by civil engineering errors, improving installation accuracy and efficiency, and maintaining the appearance.

CN223689162UActive Publication Date: 2025-12-19SUZHOU GOLD MANTIS CURTAIN WALL CO LTD
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Patent Information

Application Number
CN202423104957.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-16
Publication Date
2025-12-19
Estimated Expiration
2034-12-16

AI Technical Summary

Technical Problem

In high-rise buildings, the installation of inclined unitized curtain walls is affected by errors in the civil engineering structure, making it difficult to achieve precise positioning and flexible adjustment, resulting in installation difficulties.

Method used

By using the hook structure on the support connector to cooperate with the support shaft of the aluminum alloy hanger, the long hole on the grooved embedded part to cooperate with the adjusting bolt, and the hanging part of the aluminum alloy hanger to cooperate with the support part of the hanger, the three-dimensional adjustment of the unit panel is realized, which can eliminate the errors of civil engineering structure and processing and installation.

Benefits of technology

This improved the installation accuracy and efficiency of high-rise inclined unit curtain walls while ensuring the aesthetic appeal of the facade.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an adjustable hanging structure of a high-rise inclined unit curtain wall, which relates to the technical field of unit curtain walls and comprises a male upright post, a female upright post, a unit cross beam, a glass panel and a hanging component, the male stand columns and the female stand columns are fixedly connected to the two ends of the unit cross beams respectively, the two ends of the glass panels are fixedly installed on the male stand columns and the female stand columns respectively, and the adjacent male stand columns and female stand columns are fixedly connected. According to the scheme, through cooperation of a hook structure on the support connecting piece and a supporting shaft on the aluminum alloy hanging piece, cooperation of a long hole in the groove type embedded piece and the adjusting bolt and cooperation of the hanging parts of the aluminum alloy hanging piece and the supporting parts of the aluminum alloy hanging base, three-dimensional adjustment of the unit plate is achieved on the whole; errors of civil engineering structures and processing and installation errors of wanted plates are effectively eliminated, the installation precision and the installation efficiency of the high-rise inclined unit curtain wall are improved, and meanwhile the appearance effect of the outer vertical face of the curtain wall is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of adjustable hanging structure of high-level inclined unit curtain wall, belong to unit curtain wall technical field. BACKGROUND

[0002] In modern high-rise building design, inclined unit curtain wall is widely used in many landmark building projects due to its unique modeling and aesthetic effect. It can give the building a unique appearance style, enhance the visual impact and artistic sense of the building, while meeting the special lighting, ventilation and other functional needs.

[0003] As the basis for curtain wall installation, civil structure inevitably produces various errors during construction, including but not limited to horizontal deviation, vertical deviation, etc. When the civil structure error is large, compared with ordinary curtain wall, the adjustable range of high-level inclined unit curtain wall is greatly limited. For example, when dealing with large deviations in horizontal or vertical directions, the connection node is difficult to adjust the position and angle flexibly through conventional adjusting bolts, shims, etc. as ordinary curtain wall, which leads to the situation that unit panels are difficult to be accurately positioned during the installation of high-level inclined unit curtain wall. SUMMARY

[0004] The utility model aims at overcoming the defects of prior art and providing an adjustable hanging structure of high-level inclined unit curtain wall.

[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme: an adjustable hanging structure of high-level inclined unit curtain wall, comprising public columns, female columns, unit beams, glass panels and hanging components; the public columns and female columns are respectively connected and fixed at both ends of the unit beam, and the two ends of the glass panel are respectively fixed and installed on the public column and the female column, and adjacent public columns and female columns are connected and fixed with each other.

[0006] The hanging component is provided with two groups, and the two groups of hanging components are respectively installed on the public column and the female column. Each group of hanging components comprises a support connector, an aluminum alloy hanging piece and an aluminum alloy hanging seat. The support connector is connected and fixed at the rear end of the public column or the female column, and has a hook structure on the support connector. The front end of the aluminum alloy hanging piece has a support shaft, the support shaft of the aluminum alloy hanging piece is embedded in the hook structure of the support connector, and the hook structure rotates around the support shaft. A fixed bolt is vertically arranged on the hook structure, and the fixed bolt is used to fix the hook structure. The rear ends of adjacent aluminum alloy hanging pieces are hung on the same aluminum alloy hanging seat. The aluminum alloy hanging seat is connected and fixed on the slot-type embedded part of the building body. A plurality of long holes in the front-rear direction are formed on the slot-type embedded part. An adjusting bolt is arranged in the long hole.

[0007] Preferably, the rear end of the aluminum alloy hanging piece is provided with a hanging part, the front end of the aluminum alloy hanging seat is provided with a supporting part, the aluminum alloy hanging piece is hung on the supporting part of the aluminum alloy hanging seat through the hanging part, and the supporting part is used for moving the hanging part left and right.

[0008] Preferably, the hanging part of the aluminum alloy hanging piece is provided with an anti-jumping corner code, and the hanging part of the aluminum alloy hanging piece is fixed on the supporting part of the aluminum alloy hanging seat through the anti-jumping corner code.

[0009] Preferably, the anti-jumping corner code is in the shape of a U.

[0010] Preferably, a plurality of grooves are formed in the male column, and a plurality of convex strips matched with the grooves are integrally arranged on the female column, and adjacent male columns and female columns are fixed by being inserted into the grooves and the convex strips.

[0011] Preferably, the rear side of the unit transverse beam is provided with thermal insulation cotton, and the two ends of the thermal insulation cotton are respectively connected and fixed on the male column and the female column.

[0012] Preferably, the two ends of the glass panel are provided with heat insulation rubber strips, the rear end of the heat insulation rubber strip is connected and fixed on the male column or the female column, the front end of the heat insulation rubber strip is connected and fixed on the glass panel through silicone sealant, and a foam rod is arranged between the heat insulation rubber strip and the glass panel; aluminum alloy buckling strips are arranged between adjacent heat insulation rubber strips, and the adjacent heat insulation rubber strips are connected and fixed through the aluminum alloy buckling strips.

[0013] Thanks to the use of the above technical solutions, the present application has the following advantages compared with the prior art:

[0014] The adjustable hanging structure of the high-rise inclined unit curtain wall has the following advantages: the three-dimensional adjustment of the unit panel is realized as a whole through the cooperation of the hook structure on the support connecting piece and the supporting shaft on the aluminum alloy hanging piece, the cooperation of the long hole on the slot type embedded part and the adjusting bolt, and the cooperation of the hanging part of the aluminum alloy hanging piece and the supporting part of the aluminum alloy hanging seat, the errors of the civil structure and the processing and installation errors of the unit panel are effectively eliminated, the installation precision and efficiency of the high-rise inclined unit curtain wall are improved, and the appearance effect of the outer facade of the curtain wall is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0015] The technical scheme of the present application will be further described below with reference to the drawings:

[0016] ATTACHMENT Figure 1 The present application is a cross-sectional view of the adjustable hanging structure of the high-rise inclined unit curtain wall.

[0017] ATTACHMENT Figure 2 The present application is a cross-sectional view of the adjustable hanging structure of the high-rise inclined unit curtain wall. Figure 1 The present application is an enlarged view of position A in the middle.

[0018] Figure 1 is a structural schematic diagram of the anti-jumping corner code according to the present application. Figure 3 Figure 2 is a structural schematic diagram of the anti-jumping corner code according to the present application. Figure 1 Figure 3 is an enlarged view of the B in figure 2.

[0019] Figure 4 is a structural schematic diagram of the anti-jumping corner code according to the present application. Figure 4 Figure 5 is a structural schematic diagram of the anti-jumping corner code according to the present application.

[0020] In the figure: 1, male column; 11, groove; 2, female column; 21, convex strip; 3, unit crossbeam; 4, glass panel; 41, heat insulation adhesive tape; 42, silicone sealant; 43, foam stick; 44, aluminum alloy clamping strip; 5, support connecting piece; 51, hook structure; 511, fixing bolt; 6, aluminum alloy hanging piece; 61, supporting shaft; 62, hanging part; 621, anti-jumping corner code; 7, aluminum alloy hanging seat; 71, supporting part; 8, building main body; 9, slot type embedded part; 91, long hole; 92, adjusting bolt; 10, thermal insulation cotton. DETAILED DESCRIPTION

[0021] The present application will be further described in detail below in combination with the drawings and specific embodiments.

[0022] As shown in figure 1, the adjustable hanging structure of the high-rise inclined unit curtain wall according to the present application comprises a male column 1, a female column 2, a unit crossbeam 3, a glass panel 4 and a hanging assembly. Figures 1-3 The male column 1 and the female column 2 are respectively welded and fixed at two ends of the unit crossbeam 3, and the two ends of the glass panel 4 are respectively fixedly installed on the male column 1 and the female column 2 to form a unit panel block, and adjacent male columns 1 and female columns 2 are fixedly connected with each other; specifically, a plurality of grooves 11 are formed on the male column 1, and a plurality of convex strips 21 matched with the grooves 11 are integrally arranged on the female column 2, and adjacent male columns 1 and female columns 2 are fixedly connected by the plurality of grooves 11 and the plurality of convex strips 21 to fix adjacent unit panel blocks.

[0023] The hanging assembly is provided with two groups, and the two groups of hanging assemblies are respectively installed on the male column 1 and the female column 2 to install the unit panel block on the building main body 8.

[0024] Specifically, each group of hanging assemblies comprises a support connecting piece 5, an aluminum alloy hanging piece 6 and an aluminum alloy hanging seat 7, the support connecting piece 5 is connected and fixed on the rear end of the male column 1 or the female column 2 by self-tapping screws, the rear end of the support connecting piece 5 is rotatably arranged on the aluminum alloy hanging piece 6, the rear ends of adjacent aluminum alloy hanging pieces 6 are all hung on the same aluminum alloy hanging seat 7, and the aluminum alloy hanging seat 7 is connected and fixed on the slot type embedded part 9 of the building main body 8.

[0025]

[0026] ​In this embodiment, the support connector 5 has a hook structure 51, and the front end of the aluminum alloy hanger 6 has a support shaft 61. The support shaft 61 of the aluminum alloy hanger 6 is embedded in the hook structure 51 of the support connector 5, and the hook structure 51 rotates around the support shaft 61. A fixing bolt 511 is vertically provided on the hook structure 51. The fixing bolt 511 is used to fix the hook structure 51. Through the cooperation between the hook structure 51 on the support connector 5 and the support shaft 61 on the aluminum alloy hanger 6, the tilt angle of the unit panel can be adjusted, which can effectively avoid the influence of the error of the building body 8 on the curtain wall structure, thereby improving the installation accuracy of the curtain wall. After the angle of the unit panel is determined, the support connector 5 is fixed by the fixing bolt 511.

[0027] The grooved embedded part 9 has multiple elongated holes 91 in the front-to-back direction. Adjusting bolts 92 are inserted into the elongated holes 91. By cooperating with the elongated holes 91 in the front-to-back direction and the adjusting bolts 92, the position of the aluminum alloy bracket 7 can be adjusted. Furthermore, the position of the unit plate can be adjusted, thereby reducing the installation error of the unit plate in the front-to-back direction.

[0028] The aluminum alloy hanger 6 has a hanging part 62 at its rear end and a support part 71 at its front end. The aluminum alloy hanger 6 is hung on the support part 71 of the aluminum alloy hanger 7 through the hanging part 62, and the support part 71 allows the hanging part 62 to move left and right. Through the cooperation between the hanging part 62 of the aluminum alloy hanger 6 and the support part 71 of the aluminum alloy hanger 7, the left and right position of the aluminum alloy hanger 6 can be adjusted, and the left and right position of the unit panel can be further adjusted, thereby reducing the installation error of the unit panel in the left and right direction.

[0029] An anti-jump bracket 621 is provided on the hanging part 62 of the aluminum alloy bracket 6. In this embodiment, as shown in the attached... Figure 4 As shown, the anti-jump bracket 621 is shaped like a "Z". The hanging part 62 of the aluminum alloy hanger 6 is fixed to the support part 71 of the aluminum alloy bracket 7 through the anti-jump bracket 621. Specifically, the top of the anti-jump bracket 621 is pressed against the hanging part 62 of the aluminum alloy hanger 6, and the two ends of the anti-jump bracket 621 are fixed to the support part 71 of the aluminum alloy bracket 7 by screws. After the left and right positions of the aluminum alloy hanger 6 are determined, it is fixed by the anti-jump bracket 621 to ensure structural stability.

[0030] In summary, this solution achieves three-dimensional adjustment of the unit panels by cooperating the hook structure 51 on the support connector 5 with the support shaft 61 on the aluminum alloy hanger 6, cooperating the elongated hole 91 on the grooved embedded part 9 with the adjusting bolt 92, and cooperating the hanging part 62 of the aluminum alloy hanger 6 with the support part 71 of the aluminum alloy hanger 7. This effectively absorbs the errors of the civil engineering structure and the processing and installation errors of the panels, improves the installation accuracy and efficiency of the high-rise inclined unit curtain wall, and also ensures the appearance of the curtain wall facade.

[0031] The rear side of the unit crossbeam 3 is provided with thermal insulation cotton 10, both ends of the thermal insulation cotton 10 are respectively connected and fixed on the male column 1 and the female column 2, so as to ensure the thermal insulation performance of the unit board.

[0032] Both ends of the glass panel 4 are provided with heat insulation rubber strips 41, the rear end of the heat insulation rubber strip 41 is connected and fixed on the male column 1 or the female column 2, and the front end of the heat insulation rubber strip 41 is connected and fixed on the glass panel 4 through the silicone sealant 42, so as to improve the heat insulation performance between adjacent glass panels 4.

[0033] The foam stick 43 is arranged between the heat insulation rubber strip 41 and the glass panel 4, so as to ensure the sound insulation effect; the aluminum alloy buckles 44 are arranged between adjacent heat insulation rubber strips 41, and the adjacent heat insulation rubber strips 41 are connected and fixed through the aluminum alloy buckles 44.

[0034] The above is only a specific application example of the utility model, and does not constitute any limitation on the protection scope of the utility model; the technical solutions formed by equivalent transformation or equivalent replacement all fall within the protection scope of the utility model.

Claims

1. An adjustable hanging structure for a high-rise inclined unit curtain wall, characterized in that: The utility model provides a kind of glass curtain wall, including male column (1), female column (2), unit crossbeam (3), glass panel (4) and hanging component;The male column (1) and female column (2) are respectively connected and fixed in the both ends of unit crossbeam (3), and the both ends of glass panel (4) are respectively fixed and installed on male column (1) and female column (2), and adjacent male column (1) and female column (2) are mutually connected and fixed; The hanging component is provided with two groups, and two groups of hanging components are respectively installed on the male column (1) and female column (2), and each group of the hanging component includes support connecting piece (5), aluminum alloy hanging piece (6) and aluminum alloy hanging seat (7), the support connecting piece (5) is connected and fixed at the rear end of male column (1) or female column (2), and the support connecting piece (5) has a hook structure (51) on it, the front end of aluminum alloy hanging piece (6) has a support shaft (61), the support shaft (61) of aluminum alloy hanging piece (6) is embedded in the hook structure (51) of support connecting piece (5), and the hook structure (51) rotates around the support shaft (61), and a fixed bolt (511) is vertically arranged on the hook structure (51), the fixed bolt (511) is used to fix the hook structure (51), the rear end of adjacent aluminum alloy hanging piece (6) is hung on the same aluminum alloy hanging seat (7), the aluminum alloy hanging seat (7) is connected and fixed on the slot type embedded part (9) of building main body (8), a plurality of long holes (91) in front-rear direction are formed on the slot type embedded part (9), and an adjusting bolt (92) is arranged in the long hole (91).

2. The adjustable suspension structure of a high-rise inclined unit curtain wall according to claim 1, characterized in that: The rear end of the aluminum alloy hanging piece (6) has a hanging part (62), the front end of the aluminum alloy hanging seat (7) has a supporting part (71), and the aluminum alloy hanging piece (6) is hung on the supporting part (71) of the aluminum alloy hanging seat (7) through the hanging part (62), and the supporting part (71) allows the hanging part (62) to move left and right.

3. The adjustable suspension structure of a high-rise tilted unit curtain wall according to claim 2, characterized in that: The hanging part (62) of the aluminum alloy hanging piece (6) is provided with an anti-jumping angle code (621), and the hanging part (62) of the aluminum alloy hanging piece (6) is fixed on the supporting part (71) of the aluminum alloy hanging seat (7) through the anti-jumping angle code (621).

4. The adjustable suspension structure of a high-rise tilted unit curtain wall according to claim 3, characterized in that: The anti-jumping angle code (621) is in the shape of a U.

5. The adjustable suspension structure of a high-rise tilted unit curtain wall according to claim 1, characterized in that: A plurality of grooves (11) are formed on the male column (1), and a plurality of convex strips (21) matched with the grooves (11) are integrally arranged on the female column (2), and adjacent male column (1) and female column (2) are fixed by inserting the grooves (11) and the convex strips (21).

6. The adjustable suspension structure of a high-rise tilted unit curtain wall according to claim 1, wherein: The rear side of the unit crossbeam (3) is provided with thermal cotton (10), and the both ends of the thermal cotton (10) are respectively connected and fixed on the male column (1) and the female column (2).

7. The adjustable suspension structure of a high-rise tilted unit curtain wall according to claim 1, characterized in that: Both ends of the glass panel (4) are provided with heat insulation rubber strips (41), rear ends of the heat insulation rubber strips (41) are connected and fixed on the male column (1) or the female column (2), front ends of the heat insulation rubber strips (41) are connected and fixed on the glass panel (4) through silicone sealant (42), and a foam stick (43) is arranged between the heat insulation rubber strip (41) and the glass panel (4); aluminum alloy buckles (44) are arranged between adjacent heat insulation rubber strips (41), and the adjacent heat insulation rubber strips (41) are connected and fixed through the aluminum alloy buckles (44).