Auxiliary hoisting structure of special-shaped unit plate

By installing lifting channel steel and fasteners within the external wall panel lifting module, combined with threaded holes and seals, the problems of material waste and low construction efficiency in lifting tools for irregular structures are solved, achieving efficient and stable lifting of irregular structures and waterproof and heat-proof effects.

CN223936074UActive Publication Date: 2026-02-24SHANGHAI QIANGRONG CONSTR GRP CO LTD
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Patent Information

Application Number
CN202520709924.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-02-24
Estimated Expiration
2035-04-15

AI Technical Summary

Technical Problem

Existing external wall panel hoisting tools are difficult to adapt to irregular walls, resulting in low construction efficiency. Furthermore, the welding of lifting lugs leads to material waste and complicated processing.

Method used

The hoisting module is equipped with a hoisting channel steel, and the hoisting module is fixed to the irregular unit plate with fasteners. The hoisting hole is set as a threaded hole, and the hoisting lug is detachable and filled with sealant to realize the hoisting of irregular structure. The connection stability and waterproof and heat-proof performance are improved by multi-layer sealant.

Benefits of technology

It enables efficient hoisting of irregularly shaped exterior wall panels, reduces material waste, simplifies the construction process, improves connection stability and waterproof and heat-resistant performance, and enhances the aesthetics of the building.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of building materials, in particular to an auxiliary hoisting structure of a special-shaped unit plate, which comprises a hoisting module and hoisting channel steel detachably mounted in the hoisting module through a first fastener, and the hoisting channel steel and the hoisting module are connected and fixed by the first fastener. The outer vertical face of the hoisting module is detachably connected with the first special-shaped unit plate through a middle connecting piece, the hoisting module is connected with the second special-shaped unit plate through a second fastening piece, a hoisting hole is formed in the top of the hoisting channel steel, and the hoisting channel steel is detachably connected with a lifting lug through the hoisting hole. The lifting lug penetrates through a through hole formed in one side of the first special-shaped unit plate to be connected into a lifting hole in the top of the lifting channel steel, the lifting module serves as a part of the special-shaped unit plate, and the lifting module and the special-shaped unit plate are fixed through a fastener; a hoisting hole is formed in one side of the hoisting module, a through hole is formed in the position, corresponding to the hoisting hole, of the special-shaped unit plate, a lifting lug is screwed into the hoisting hole, and the overall structure is hoisted through the lifting lug.
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Description

Technical Field

[0001] This utility model mainly relates to the field of building materials technology, and in particular to an auxiliary hoisting structure for irregularly shaped unit panels. Background Technology

[0002] Building exterior wall panels are essential components of a building's external facade, typically made of precast or cast-in-place materials such as concrete, metal, stone, and glass. They not only provide enclosure, protecting against wind and rain and offering thermal insulation, but also enhance the building's aesthetics through different materials, colors, and designs. Exterior wall panels possess excellent durability and fire resistance, and can withstand various climatic conditions. In modern architecture, exterior wall panels are often installed using dry-hanging or curtain wall methods, facilitating construction and maintenance while meeting energy-saving and environmental protection requirements, making them an indispensable part of modern buildings.

[0003] However, in actual engineering projects, since the exterior walls of buildings are usually irregular, the exterior wall panels also need to be designed according to the irregular walls. When installing irregularly shaped wall panels, it is not very convenient to hoist them.

[0004] While there are many types of external wall panel hoisting tools on the market, most are designed for rectangular standard parts, making it difficult to adapt to the diverse needs of construction sites and resulting in low work efficiency. Some related technologies use welded lifting lugs as a solution, which involves installing channel steel on the irregularly shaped unit panels to be hoisted, welding several lifting lugs onto the channel steel, and connecting and fixing the welded lifting lugs to the crane using shackles or wire ropes. Then, the crane is used for hoisting. After hoisting, the welded lifting lugs are cut off. The lifting lugs are only used once and are scrapped without being reused. The process also requires welding and cutting, resulting in material waste, complicated processing, and inconvenience in use. Utility Model Content

[0005] The purpose of this invention is to provide an auxiliary hoisting structure for irregularly shaped unit panels to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, this utility model provides the following technical solution: an auxiliary hoisting structure for irregularly shaped unit panels, the irregularly shaped unit panels including a first irregularly shaped unit panel and a second irregularly shaped unit panel arranged adjacent to each other, the auxiliary hoisting structure including a hoisting module and a hoisting channel steel detachably installed inside the hoisting module by a first fastener, the first fastener connecting and fixing the hoisting channel steel and the hoisting module, the outer facade of the hoisting module being detachably connected to the first irregularly shaped unit panel through an intermediate connector, the hoisting module being connected to the second irregularly shaped unit panel by a second fastener, the top of the hoisting channel steel having a hoisting hole and a lifting lug detachably connected through the hoisting hole, the lifting lug passing through a through hole on one side of the first irregularly shaped unit panel and connected to the hoisting hole at the top of the hoisting channel steel.

[0007] By adopting the above technical solution, a lifting channel steel is installed inside the lifting module. The lifting channel steel and the lifting module are fixedly connected in series by the first fastener. Then, the outer facade of the lifting module is fixed to the first irregular unit panel by the intermediate connector. The lifting module is then fixedly connected to one side of the second irregular unit panel by the second fastener, making the lifting module part of the irregular unit panel. A lifting hole is opened at the top of the lifting channel steel, and a threaded through hole is opened at the position of the corresponding lifting hole on the first irregular unit panel. When lifting is required, the lifting lug is screwed inward from the threaded through hole on the first irregular unit panel into the lifting hole at the top of the lifting channel steel, so that the lifting module is fixedly connected to the first irregular unit panel. Then, a crane is used to lift the entire structure of the irregular unit panel through the lifting lug. This allows the lifting module to be used for wall panels with various irregular shapes. The lifting hole is set as a threaded hole.

[0008] Preferably, the lifting hole and through hole correspond to the installation position of the lifting lug and can be filled with a first seal, which is used to fill the lifting hole and through hole after the lifting lug is removed.

[0009] By adopting the above technical solution, it is convenient for operators to fill the lifting holes and through holes corresponding to the installation positions of the lifting lugs after the lifting operation is completed and the lifting lugs are unscrewed, so as to seal the lifting holes and through holes and prevent rainwater from entering the interior of the irregular unit panels from the lifting holes and through holes.

[0010] Preferably, the first fastener passes through the lifting module and the lifting channel steel laterally and enters the first irregular unit plate, with the operating end of the first fastener located on the outside of the lifting module.

[0011] By adopting the above technical solution, the hoisting module and the hoisting channel steel are fixedly connected by the first fastener. Then, the first fastener passes through the hoisting module and connects to the first irregular unit plate, so that the hoisting module becomes part of the irregular unit plate. In this way, any two adjacent irregular unit plates can be fixedly connected by the hoisting module. At the same time, the operating end of the first fastener is set on the outside of the hoisting module, which is convenient for operators to disassemble and replace.

[0012] Preferably, the second irregular unit plate is provided with a connecting plate, the outer side of the hoisting module is provided with a first connecting groove, the second fastener connects the hoisting module and the connecting plate longitudinally, and the snap-fit ​​end of the second fastener snaps into the first connecting groove.

[0013] By adopting the above technical solution, the second fastener snap-fit ​​end is installed in the first connecting groove, and then the first connecting groove limits the operation end of the second fastener. The connecting end of the second fastener passes through the corresponding wall surface of the second irregular unit plate and is fixedly connected to the connecting plate located in the second irregular unit plate, making the connection between the hoisting module and the second irregular unit plate more secure and effectively improving the stability of the connection between adjacent irregular unit plates.

[0014] Preferably, the hoisting module has a connecting block extending from the side away from the second fastener. The connecting block is connected to a hoisting connector via a heat-insulating profile. A receiving cavity for accommodating the second seal is formed between the hoisting connector and the intermediate connecting member. The hoisting connector has a connecting part extending from the side away from the first irregularly shaped unit plate, which is fixedly connected to the second irregularly shaped unit plate. A receiving groove for accommodating the second seal is formed between the connecting part and the second irregularly shaped unit plate.

[0015] By adopting the above technical solution, the hoisting module can be connected to the hoisting connector through the heat-insulating profile, and then fixedly connected to the second irregular unit plate through the connecting part extended from the hoisting connector. This further improves the stability of the connection between adjacent irregular unit plates by fixing the hoisting module and the second irregular unit plate together. At the same time, by setting the receiving groove and receiving cavity, it is convenient to fill the receiving groove and receiving cavity with the second sealing element, which effectively improves the performance of the irregular unit plate in resisting wind and rain and heat insulation. It also prevents rainwater from entering the irregular unit plate from the connection and corroding the irregular unit plate, and at the same time prevents indoor heat from escaping from the irregular unit plate.

[0016] Preferably, a decorative cover is fixedly connected to the side of the hoisting connector away from the connecting block via a fastener. A connecting panel is provided on the side of the decorative cover near the wall of the first irregularly shaped unit panel. The fastener passes through the connecting panel and the hoisting connector and is fixedly connected to the connecting block. The side of the connecting panel away from the intermediate connecting member is fixedly connected to the decorative cover via a connector. A third sealing member is installed on the side of the connecting panel near the hoisting connector. The third sealing member is in contact with the outer facade of the first irregularly shaped unit panel and the second irregularly shaped unit panel.

[0017] By adopting the above technical solution, a decorative cover is installed on the wall on the side of the hoisting module away from the second fastener. The decorative cover is located outside the wall between the hoisting module and the first irregular unit panel, which can increase the aesthetics of the building. At the same time, the fastener passes through the connecting panel and the hoisting connector and is fixed to the connecting block extended on the hoisting module. The connecting panel is fixedly connected to the decorative cover on the side away from the middle connector using the connector. By repeatedly connecting and fixing multiple components in parallel, the stability of the connection between adjacent irregular unit panels is further improved. A third sealing element is installed on the connecting panel and the third connector is in contact with the exterior of the first and second irregular unit panels, which effectively improves the performance of the irregular unit panels in resisting wind and rain and prevents rainwater from entering the interior of the irregular unit panels from the connection and corroding the irregular unit panels.

[0018] Preferably, the connecting panel has a second connecting groove for accommodating the third sealing member, and the second connecting groove has a limiting edge for limiting the connecting end of the third sealing member.

[0019] By adopting the above technical solution, a third sealing element is installed in the second connecting groove, and then the limiting edge of the second connecting groove fixes and limits the connecting end of the sealing element, and the side of the third sealing element facing away from the connecting panel contacts the outer surface of the first irregular unit plate and the second irregular unit plate, which effectively improves the performance of the irregular unit plate in resisting wind and rain, and prevents rainwater from entering the interior of the irregular unit plate from the connection between the decorative cover and the irregular unit plate and corroding the irregular unit plate.

[0020] Preferably, a heat insulation blanket is provided between the side of the hoisting module away from the first irregular unit plate and the inner facade of the second irregular unit plate.

[0021] By adopting the above technical solutions, the thermal insulation performance of irregularly shaped unit panels is improved, and indoor heat is prevented from escaping from the irregularly shaped unit panels.

[0022] Preferably, the first sealing element is configured as sealant, a sealing strip, or a foam strip coated with sealant, and the second and third sealing elements are configured as sealing strips or foam strips coated with sealant.

[0023] By adopting the above technical solution, sealing elements are filled and installed between adjacent irregular-shaped unit panels and the hoisting module or between the irregular-shaped unit panels and the decorative cover, which effectively improves the performance of the irregular-shaped unit panels in resisting wind and rain and insulating heat, prevents rainwater from entering the interior of the irregular-shaped unit panels from the connection between the components and corroding the irregular-shaped unit panels, and also prevents indoor heat from escaping from the irregular-shaped unit panels.

[0024] Preferably, both the first and second irregularly shaped unit panels are filled with thermal insulation rock wool boards.

[0025] By adopting the above technical solutions, the thermal insulation performance of irregularly shaped unit panels is improved, and indoor heat is prevented from escaping from the irregularly shaped unit panels.

[0026] In summary, this application includes at least one of the following beneficial technical effects:

[0027] 1. Install the lifting module within the irregular-shaped unit panel, treating the lifting module as part of the irregular-shaped unit panel. Secure the lifting module to the other structures of the irregular-shaped unit panel using fasteners. A lifting hole is opened on one side of the lifting module, and a through hole is opened in the irregular-shaped unit panel at the corresponding position of the lifting hole. When lifting operations are required, a lifting lug is screwed into the lifting hole, and the entire structure is lifted using the lifting lug. This allows the lifting module to be applicable to wall panels with various irregular shapes.

[0028] 2. After the hoisting operation is completed, unscrew the lifting lugs and fill the corresponding installation positions of the lifting lugs on the through holes of the irregular unit plate and the hoisting holes of the hoisting module to seal the two connection holes. No professional personnel are required to perform welding and cutting processing. The construction is quick and easy to use. The lifting lugs can also be reused, so there is no waste of materials and the overall cost is low. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of the irregularly shaped unit plate of this utility model from the front view.

[0030] Figure 2 This is a schematic diagram of the main view frame structure of the irregular unit plate of this utility model;

[0031] Figure 3 This is a cross-sectional view of the overall structure of this utility model;

[0032] Figure 4 This is a partial cross-sectional view of the hoisting module of this utility model;

[0033] Figure 5 This utility model Figure 1 Enlarged structural diagram at point A;

[0034] Figure 6 This utility model Figure 2 Enlarged structural diagram at point B;

[0035] Figure 7 This utility model Figure 3 A magnified structural diagram at point C.

[0036] Explanation of reference numerals in the attached drawings: 1. Irregularly shaped unit panel; 110. First irregularly shaped unit panel; 120. Second irregularly shaped unit panel; 1201. Connecting plate; 2. Auxiliary hoisting structure; 21. Hoisting module; 211. First connecting groove; 212. Connecting block; 213. Thermal insulation profile; 214. Hoisting connector; 215. Connecting part; 22. Hoisting channel steel; 221. Hoisting hole; 3. First fastener; 4. Intermediate connector; 5. Second fastener; 51. Snap-fit ​​end; 6. Lifting lug; 7. First sealing element; 8. Second sealing element; 9. Fixing element; 10. Decorative cover; 101. Connecting panel; 102. Second connecting groove; 11. Third sealing element; 12. Thermal insulation blanket; 13. Thermal insulation rock wool board. Detailed Implementation

[0037] The following is in conjunction with the appendix Figure 1-7 This application will be described in further detail.

[0038] like Figure 1-4 As shown in the embodiment of this application, an auxiliary hoisting structure for irregularly shaped unit panels is disclosed. The irregularly shaped unit panel 1 includes a first irregularly shaped unit panel 110 and a second irregularly shaped unit panel 120 arranged adjacent to each other. The auxiliary hoisting structure 2 includes a hoisting module 21 and a hoisting channel steel 22 that is detachably installed inside the hoisting module 21 by a first fastener 3. The first fastener 3 connects and fixes the hoisting channel steel 22 and the hoisting module 21. The outer surface of the hoisting module 21 is detachably connected to the first irregularly shaped unit panel 110 by an intermediate connector 4. The hoisting module 21 is connected to the second irregularly shaped unit panel 120 by a second fastener 5. The top of the hoisting channel steel 22 is provided with a hoisting hole 221 and a lifting lug 6 is detachably connected through the hoisting hole 221. The lifting lug 6 passes through a through hole opened on one side of the first irregularly shaped unit panel 110 and connects to the hoisting hole 221 at the top of the hoisting channel steel 22.

[0039] Please see Figure 1 and Figure 3In this embodiment, a lifting channel steel 22 is installed inside the lifting module 21. The lifting channel steel 22 and the lifting module 21 are fixedly connected in series by the first fastener 3. Then, the outer surface of the lifting module 21 is fixed to the first irregular unit plate 110 by the intermediate connector 4. The lifting module 21 is then fixedly connected to one side of the second irregular unit plate 120 by the second fastener 5, making the lifting module 21 part of the irregular unit plate 1. A lifting hole 221 is opened on the top of the lifting channel steel 22. The irregular unit panel 110 has a threaded through hole at the position corresponding to the lifting hole 221. When lifting is required, the lifting lug 6 is screwed inward from the threaded through hole on the first irregular unit panel 110 into the lifting hole 221 at the top of the lifting channel steel 22, so that the lifting module 21 is fixedly connected to the first irregular unit panel 110. Then, the crane is used to lift the entire structure of the irregular unit panel 1 through the lifting lug 6, so that the lifting module 21 can be used for wall panels with various irregular structures. The lifting hole 221 is a threaded hole.

[0040] Please see Figure 4 In this embodiment, the lifting hole 221 and the through hole correspond to the installation position of the lifting lug 6 and can be filled with the first sealing member 7. The first sealing member 7 is used to fill the lifting hole 221 and the through hole after the lifting lug 6 is removed, so that after the lifting operation is completed and the lifting lug 6 is unscrewed, the operator can fill the lifting hole 221 and the through hole corresponding to the installation position of the lifting lug 6 with the first sealing member 7 to seal the lifting hole 221 and the through hole and prevent rainwater from entering the interior of the irregular unit plate 1 from the lifting hole 221 and the through hole.

[0041] Please see Figure 3 , Figure 4 and Figure 7 In this embodiment, the first fastener 3 passes through the lifting module 21 and the lifting channel steel 22 laterally and enters the first irregular unit plate 110. The operating end 31 of the first fastener 3 is placed on the outside of the lifting module 21. The lifting module 21 and the lifting channel steel 22 are fixedly connected by the first fastener 3. Then, the first fastener 3 passes through the lifting module 21 and connects to the first irregular unit plate 110, so that the lifting module 21 becomes part of the irregular unit plate 1. This realizes that any two adjacent irregular unit plates 1 can be fixedly connected by the lifting module 21. At the same time, the operating end 31 of the first fastener 3 is placed on the outside of the lifting module 21, which is convenient for the operator to disassemble and replace.

[0042] Please see Figure 3 , Figure 6 and Figure 7In this embodiment, a connecting plate 1201 is provided inside the second irregular unit plate 120, and a first connecting groove 211 is provided on the outer side of the hoisting module 21. The second fastener 5 connects the hoisting module 21 and the connecting plate 1201 longitudinally. The snap-fit ​​end 51 of the second fastener 5 snaps into the first connecting groove 211. The snap-fit ​​end 51 of the second fastener 5 is installed in the first connecting groove 211, and then the first connecting groove 211 limits the operation end 31 of the second fastener 5. The connecting end of the second fastener 5 passes through the corresponding wall surface of the second irregular unit plate 120 and is fixedly connected to the connecting plate 1201 located in the second irregular unit plate 120, so that the connection between the hoisting module 21 and the second irregular unit plate 120 is more solid and effectively improves the stability of the connection between adjacent irregular unit plates 1.

[0043] Please see Figure 3 , Figure 5 and Figure 7 In this embodiment, a connecting block 212 extends from the side of the lifting module 21 away from the second fastener 5. The connecting block 212 is connected to a lifting connector 214 via a heat-insulating profile 213. A receiving cavity for accommodating the second sealing element 8 is formed between the lifting connector 214 and the intermediate connector 4. A connecting portion 215, which is fixedly connected to the second irregular unit plate 120, extends from the side of the lifting connector 214 away from the first irregular unit plate 110. A receiving groove for accommodating the second sealing element 8 is formed between the connecting portion 215 and the second irregular unit plate 120, so that the lifting module 21 can be connected to the lifting module 21 via the heat-insulating profile 213. The connecting piece 214 is installed, and then the connecting part 215 extended from the hoisting connecting piece 214 is fixedly connected to the second irregular unit plate 120, so that the hoisting module 21 and the second irregular unit plate 120 are fixedly connected again, thereby further improving the stability of the connection between adjacent irregular unit plates 1. At the same time, by setting the receiving groove and receiving cavity, it is convenient to fill the receiving groove and receiving cavity respectively with the second sealing piece 8, which effectively improves the performance of the irregular unit plate 1 in resisting wind and rain and heat insulation, prevents rainwater from entering the interior of the irregular unit plate 1 from the connection and corroding the irregular unit plate 1, and also prevents indoor heat from escaping from the irregular unit plate 1.

[0044] Please see Figure 3 , Figure 5 and Figure 7In this embodiment, a decorative cover 10 is fixedly connected to the side of the hoisting connector 214 away from the connecting block 212 via a fixing member 9. A connecting panel 101 is provided on the side of the decorative cover 10 near the wall of the first irregular unit plate 110. The fixing member 9 passes through the connecting panel 101 and the hoisting connector 214 and is fixedly connected to the connecting block 212. The side of the connecting panel 101 away from the intermediate connecting member 4 is fixedly connected to the decorative cover 10 via a connecting member. A third sealing member 11 is installed on the side of the connecting panel 101 near the hoisting connector 214. The third sealing member 11 is in contact with the outer facade of the first irregular unit plate 110 and the second irregular unit plate 120. The decorative cover 10 is installed on the wall of the hoisting module 21 away from the second fastener 5. The decorative cover 10 is located in the hoisting module. Block 21, outside the wall of the first irregular unit panel 110, can enhance the aesthetics of the building. At the same time, the fastener 9 passes through the connecting panel 101 and the hoisting connector 214 and is fixed to the connecting block 212 extending on the hoisting module 21. The connecting panel 101 is fixedly connected to the decorative cover 10 on the side away from the middle connector 4 using the connector. By repeatedly connecting and fixing multiple components in parallel, the stability of the connection between adjacent irregular unit panels 1 is further improved. The third sealing member 11 is installed on the connecting panel 101 and the third connector is in contact with the exterior of the first irregular unit panel 110 and the second irregular unit panel 120, which effectively improves the performance of the irregular unit panel 1 in resisting wind and rain and prevents rainwater from entering the interior of the irregular unit panel 1 from the connection and corroding the irregular unit panel 1.

[0045] Please see Figure 3 and Figure 7 In this embodiment, the connecting panel 101 has a second connecting groove 102 for accommodating the third sealing member 11. The second connecting groove 102 has a limiting edge for limiting the connecting end of the third sealing member 11. The third sealing member 11 is installed in the second connecting groove 102, and then the limiting edge of the second connecting groove 102 fixes and limits the connecting end of the sealing member, and makes the side of the third sealing member 11 facing away from the connecting panel 101 contact the outer surface of the first irregular unit plate 110 and the second irregular unit plate 120, which effectively improves the performance of the irregular unit plate 1 in resisting wind and rain, and prevents rainwater from entering the interior of the irregular unit plate 1 from the connection between the decorative cover 10 and the irregular unit plate 1 and corroding the irregular unit plate 1.

[0046] Please see Figure 3 and Figure 7 In this embodiment, a heat insulation blanket 12 is provided between the side of the hoisting module 21 away from the first irregular unit plate 110 and the inner facade of the second irregular unit plate 120, so as to improve the heat insulation performance of the irregular unit plate 1 and prevent indoor heat from escaping from the irregular unit plate 1.

[0047] Please see Figure 4 and Figure 7 In this embodiment, the first sealing element 7 is configured as sealant, sealing strip, or foam strip coated with sealant, and the second sealing element 8 and the third sealing element 11 are configured as sealing strip or foam strip coated with sealant. The sealing elements are filled between adjacent irregular unit panels 1 and the hoisting module 21 or between irregular unit panels 1 and the decorative cover 10, which effectively improves the performance of irregular unit panels 1 in resisting wind and rain and insulating heat, prevents rainwater from entering the interior of irregular unit panels 1 from the connection between the components and corroding the irregular unit panels 1, and also prevents indoor heat from escaping from the irregular unit panels 1.

[0048] Please see Figure 3 In this embodiment, both the first irregular-shaped unit panel 110 and the second irregular-shaped unit panel 120 are filled with thermal insulation rock wool board 13 to improve the thermal insulation performance of the irregular-shaped unit panel 1 and prevent indoor heat from escaping from the irregular-shaped unit panel 1.

[0049] The implementation principle of this embodiment is as follows: a hoisting module 21 is installed between adjacent irregular-shaped unit panels 1, and the hoisting module 21 is used as part of the irregular-shaped unit panel 1. The hoisting module 21 is fixed to the other structures of the two adjacent irregular-shaped unit panels 1 by fasteners. A hoisting hole 221 is opened on one side of the hoisting module 21, and a through hole is opened on the first irregular-shaped unit panel 110 at the position corresponding to the hoisting hole 221. When hoisting is required, a lifting lug 6 is screwed into the hoisting hole 221, and the entire structure is hoisted by the lifting lug 6. This allows the hoisting module 21 to be applicable to wall panels with various irregular shapes. Different types of seals are set at the connection between the components to prevent rainwater from entering the interior of the irregular-shaped unit panel 1 from the connection between the components and corroding the irregular-shaped unit panel 1. At the same time, it can also prevent indoor heat from escaping from the irregular-shaped unit panel 1, thereby improving the performance of the irregular-shaped unit panel 1 in resisting wind and rain and insulating heat.

[0050] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. An auxiliary hoisting structure for irregularly shaped unit panels, wherein the irregularly shaped unit panel (1) comprises a first irregularly shaped unit panel (110) and a second irregularly shaped unit panel (120) arranged adjacent to each other, characterized in that: The auxiliary hoisting structure (2) includes a hoisting module (21) and a hoisting channel steel (22) that is detachably installed inside the hoisting module (21) via a first fastener (3). The first fastener (3) connects and fixes the hoisting channel steel (22) and the hoisting module (21). The outer facade of the hoisting module (21) is detachably connected to the first irregular unit plate (110) via an intermediate connector (4). The hoisting module (21) is connected to the second irregular unit plate (120) via a second fastener (5). The top of the hoisting channel steel (22) is provided with a hoisting hole (221) and a lifting lug (6) is detachably connected to the hoisting hole (221). The lifting lug (6) passes through a through hole on one side of the first irregular unit plate (110) and is connected to the hoisting hole (221) at the top of the hoisting channel steel (22).

2. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 1, characterized in that: The lifting hole (221) and through hole correspond to the installation position of the lifting lug (6) and can be filled with the first seal (7). The first seal (7) is used to fill the lifting hole (221) and through hole after the lifting lug (6) is removed.

3. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 1, characterized in that: The first fastener (3) passes through the hoisting module (21) and the hoisting channel steel (22) in the transverse direction and enters the first irregular unit plate (110). The operating end of the first fastener (3) is placed on the outside of the hoisting module (21).

4. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 1, characterized in that: The second irregular unit plate (120) is provided with a connecting plate (1201), and the outer side of the hoisting module (21) is provided with a first connecting groove (211). The second fastener (5) connects the hoisting module (21) and the connecting plate (1201) in the longitudinal direction, and the snap-fit ​​end (51) of the second fastener (5) snaps into the first connecting groove (211).

5. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 2, characterized in that: The hoisting module (21) extends a connecting block (212) on the side away from the second fastener (5). The connecting block (212) is connected to a hoisting connector (214) via a heat-insulating profile (213). The hoisting connector (214) and the intermediate connector (4) form a receiving cavity for accommodating the second seal (8). The hoisting connector (214) extends a connecting part (215) on the side away from the first irregular unit plate (110) and is fixedly connected to the second irregular unit plate (120). A receiving groove for accommodating the second seal (8) is opened between the connecting part (215) and the second irregular unit plate (120).

6. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 5, characterized in that: The side of the hoisting connector (214) away from the connecting block (212) is fixedly connected to a decorative cover (10) by a fastener (9). The decorative cover (10) is provided with a connecting panel (101) on the side of the wall of the first irregular unit panel (110). The fastener (9) passes through the connecting panel (101) and the hoisting connector (214) and is fixedly connected to the connecting block (212). The side of the connecting panel (101) away from the intermediate connector (4) is fixedly connected to the decorative cover (10) by a connector. The side of the connecting panel (101) near the hoisting connector (214) is equipped with a third sealing element (11). The third sealing element (11) is in contact with the outer facade of the first irregular unit panel (110) and the second irregular unit panel (120).

7. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 6, characterized in that: The connecting panel (101) has a second connecting groove (102) for accommodating the third seal (11), and the second connecting groove (102) has a limiting edge for limiting the connecting end of the third seal (11).

8. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 7, characterized in that: The first seal (7) is configured as a sealant, a sealant strip or a foam strip coated with sealant, and the second seal (8) and the third seal (11) are configured as a sealant strip or a foam strip coated with sealant.

9. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 1, characterized in that: A heat insulation blanket (12) is provided between the exterior of the hoisting module (21) and the first irregular unit panel (110).

10. The auxiliary hoisting structure for irregularly shaped unit panels according to claim 1, characterized in that: Both the first irregular unit plate (110) and the second irregular unit plate (120) are filled with thermal insulation rock wool boards (13).