Fixing structure of non-dismantling insulation board wall-attached climbing frame

By presetting through holes on the insulation board and using connecting plates and fixing components, the problem of damage to the insulation board by traditional installation methods is solved, and the stable connection and insulation effect of the attached wall frame is improved.

CN223269588UActive Publication Date: 2025-08-26CHINA RAILWAY GUANGZHOU ENG GRP CO LTD +1
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Patent Information

Application Number
CN202422630450.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-29
Publication Date
2025-08-26
Estimated Expiration
2034-10-29

AI Technical Summary

Technical Problem

When installing a wall-attached climbing frame, the integrity and insulation effect of the insulation board are damaged by excavating installation holes on the insulation board and using fixtures to connect it with the wall, which affects the insulation performance of the building.

Method used

A fixed structure with a wall-mounted frame of the insulation board without disassembly is designed. By pre-opening through holes on the insulation board, connecting with the connecting board, reinforcement and fixing components, the connecting board is arranged parallel to the wall, and the insertion component is closely fitted with the insulation board, and the fixing component ensures stable connection and avoids large-scale damage to the insulation board.

Benefits of technology

It effectively avoids damage to the insulation board, improves the overall stability and construction safety of the wall-mounted frame, improves the insulation effect of the building, and improves the construction efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of constructional engineering, in particular to a fixing structure of a disassembly-free insulation board wall-attached climbing frame, which comprises a plurality of connecting assemblies, a plurality of inserting assemblies and a plurality of fixing assemblies, the plurality of connecting assemblies are distributed on an insulation board according to construction requirements, each connecting assembly comprises a connecting plate, and the connecting plates are positioned on one side, far away from a wall body, of the insulation board; the connecting plates are parallel to the wall and correspond to the inserting assemblies one to one, the inserting assemblies are provided with a plurality of reinforcing pieces, the reinforcing pieces are connected with the connecting plates, the heat preservation plate is provided with a plurality of through holes for the reinforcing pieces to be inserted, the reinforcing pieces are used for being inserted into the through holes to abut against the wall, and the fixing assemblies correspond to the connecting assemblies one to one. The fixing assembly sequentially penetrates through the connecting plate, the heat preservation plate and the wall body and is used for fixing the connecting plate, the heat preservation plate and the wall body, and the wall-attached climbing frame is connected with the connecting plate; the method has the effect of improving the situation that the heat preservation effect of a building becomes poor.
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Description

Technical Field

[0001] The present application relates to the technical field of construction engineering, and in particular to a fixing structure of a wall-mounted climbing frame of a heat preservation board that does not require disassembly. Background Art

[0002] In construction engineering, wall-mounted climbing frames are essential equipment for high-rise building construction, playing a vital role in improving construction efficiency and ensuring construction safety. Furthermore, insulation panels are a crucial component of exterior wall energy conservation, and their integrity and thermal insulation performance directly impact the building's energy efficiency. Currently, with the popularization of green building concepts and technological advancements, efficient and environmentally friendly construction has become an inevitable trend in the industry.

[0003] In the related art, when it is necessary to install a wall-mounted climbing frame, first, fix the insulation board to the wall, lift the personnel to the construction area through the lifting mechanism, select a suitable position on the surface of the insulation board according to the construction requirements, and then excavate the installation hole on the surface of the insulation board until the installation hole passes through the insulation board. After the excavation of the installation hole is completed, take out the fixing part, place the fixing part in the installation hole, make the side wall of the fixing part fit with the side wall of the installation hole, and then pass the tension bolts through the fixing part and the wall in turn to fix the fixing part to the wall. After that, the wall-mounted climbing frame is installed.

[0004] Regarding the above-mentioned related technologies, mounting holes are excavated in the insulation panels, fixing parts are placed in the mounting holes, and the fixing parts can be connected to the wall through tension bolts. However, this fixing method will destroy the integrity of the insulation panels and a large area of ​​the insulation wall panels will be damaged, thereby affecting the insulation effect and causing the insulation effect of the building to deteriorate. Utility Model Content

[0005] In order to improve the problem of deteriorating thermal insulation effect of buildings, the present application provides a fixing structure of a wall-mounted climbing frame for a heat preservation board that does not require disassembly.

[0006] The fixing structure of the non-disassembly insulation board wall-mounted climbing frame provided in this application adopts the following technical solution:

[0007] A fixing structure of a non-disassembly insulation board wall climbing frame, comprising multiple connecting components, multiple insertion components and multiple fixing components, wherein the multiple connecting components are distributed on the insulation board according to construction requirements, the connecting component comprises a connecting plate, the connecting plate is located on the side of the insulation board away from the wall, the connecting plate is arranged parallel to the wall, the connecting plate corresponds one-to-one with the inserting component, the inserting component has multiple reinforcements, and the multiple reinforcements are all connected to the connecting plate, the insulation board is provided with multiple through holes for inserting the reinforcements, the reinforcements are used to be inserted into the through holes and pressed against the wall, the fixing components correspond one-to-one with the connecting components, the fixing components pass through the connecting plate, the insulation board and the wall in turn, the fixing components are used to fix the connecting plate, the insulation board and the wall, and the wall-attached climbing frame is connected to the connecting plate.

[0008] By adopting the above technical solution, when it is necessary to install the wall-mounted climbing frame, according to the construction requirements, multiple through holes are opened on the insulation board in advance, the connecting plate is taken out, and then the connecting plate is moved to the area where it needs to be installed, the reinforcement is inserted into the through hole and pressed against the wall, and then the connecting plate, insulation board and wall are fixed by the fixing assembly. According to the above operation, the remaining connecting plates are connected to the wall, and then the wall-mounted climbing frame is connected to the connecting plate. Compared with the related art, the present application does not require large-scale damage to the insulation board by opening multiple through holes for inserting reinforcements on the insulation board. Multiple connecting components can be flexibly arranged on the insulation board according to construction requirements. The connecting plate is arranged parallel to the wall and can be tightly fitted with the insulation board through the insertion component. The fixing component further ensures a stable connection between the connecting plate, insulation board and wall. Therefore, it not only effectively avoids the damage to the insulation board caused by the traditional installation method, but also improves the overall stability of the wall-mounted climbing frame, improves construction safety and efficiency, and is conducive to improving the problem of poor insulation effect of the building.

[0009] In a specific possible implementation scheme, the reinforcement includes a steel column, and a plurality of positioning holes for the steel column to pass through are opened on the connecting plate. The steel column is arranged vertically to the connecting plate, and the steel column is connected to the connecting plate. When the connecting plate is installed on the insulation board, the steel column passes through the through hole and abuts against the wall. The length of the steel column inserted into the insulation board is 4-5 times the diameter of the cross-section of the steel column.

[0010] By adopting the above technical solution, when it is necessary to install the connecting plate, the steel column on the connecting plate is passed through the through hole on the insulation board and abutted against the wall. The connecting plate is fixed by the fixing assembly. The length of the steel column inserted into the insulation board is 4-5 times the cross-sectional diameter of the steel column, which enhances the stability of the wall-mounted climbing frame connection and ensures that there is sufficient contact area between the steel column and the insulation board, thereby improving the firmness of the connection and preventing loosening or slipping when bearing load.

[0011] In a specific embodiment, the steel column is detachably connected to the connecting plate.

[0012] By adopting the above technical solution, the steel column can be detachably connected to the connecting plate, so that the steel column can be flexibly selected to different lengths according to the thickness of the insulation board, which is convenient for adjustment during the construction process, ensuring that the steel column and the insulation board have sufficient contact area, thereby improving the firmness of the connection and preventing loosening or slipping when bearing load.

[0013] In a specific possible implementation scheme, the insertion component also includes multiple adsorption parts, which correspond one-to-one to the connecting plates, and the adsorption parts are located on the side walls of the connecting plates. The adsorption parts include multiple reinforcing rods and multiple suction cups, and the reinforcing rods are L-shaped rods. Multiple reinforcing rods are distributed circumferentially along the connecting plate, one side of the reinforcing rod is close to the insulation plate, and the other side is fixed to the connecting plate. One reinforcing rod corresponds to multiple suction cups, and multiple suction cups are all fixed to the side of the reinforcing rod close to the insulation plate. Multiple suction cups are distributed at intervals along the setting direction of the reinforcing rod close to the insulation plate. When the connecting plate is installed on the insulation plate, the suction cups are adsorbed on the insulation plate.

[0014] By adopting the above technical solution, when the connecting plate is installed on the insulation board, the reinforcing rod in the adsorption part is fixed to the connecting plate, and the multiple suction cups on the reinforcing rod are adsorbed on the insulation board, thereby achieving a firm fixation of the connecting plate without penetrating the insulation board, avoiding damage to the insulation board, improving the stability of the wall-mounted climbing frame, enhancing the safety and construction efficiency of the construction site, and reducing energy loss and impact on the environment.

[0015] In a specific embodiment, the connecting plate is provided with a plurality of adjustment holes, and the plurality of adjustment holes are arranged in a matrix;

[0016] The reinforcement includes a stud and two locking nuts. The stud passes through the adjustment hole and is connected to the connecting plate. The two locking nuts are each fixed on one side of the connecting plate. The two locking nuts are coaxially arranged with the adjustment hole, and the two locking nuts are both threadedly engaged with the stud.

[0017] By adopting the above technical solution, when it is necessary to fix the connecting plate and the insulation board, first, the personnel adjust the length of one end of the stud according to the thickness of the insulation board. If the insulation board is thicker, the personnel screw multiple studs in sequence, and the length of one end of the stud becomes longer. After the stud moves to a suitable position, the longer end of the stud is inserted into the insulation board. At this time, the longer end of the stud contacts the wall; if the insulation board is thinner, the personnel screw multiple studs in the opposite direction in sequence. At this time, the length of one end of the stud is reduced, and then the shorter end of the stud is inserted into the insulation board to make the stud contact the wall. The cooperation of the stud and the two locking nuts, on the one hand, according to the thickness of the insulation board, the personnel only need to screw the stud to change the length of the stud close to the wall, so that the stud close to the wall is inserted into the insulation board and contacts the wall, which is convenient for personnel to operate; on the other hand, the cooperation of the locking nut and the stud is conducive to reducing the shaking of the stud when inserted into the insulation board; the two locking nuts are coaxially arranged with the adjustment hole and cooperate with the stud thread, so that the connecting plate can adjust the protruding length of the stud according to the thickness of the insulation board, which improves the adaptability and flexibility of the connection and enhances the stability and safety of the structure.

[0018] In a specific embodiment, the stud is threadedly connected to the connecting plate.

[0019] By adopting the above technical solution, the studs are threadedly connected to the connecting plate, so that the length of the studs can be adjusted according to the thickness of the insulation board, thereby adapting to insulation boards of different thicknesses, ensuring the stability and reliability of the connection, and the length of the studs inserted into the insulation board can be adjusted according to actual needs, thereby improving the applicability and versatility of the wall-mounted climbing frame fixing structure.

[0020] In a specific possible implementation scheme, the insertion component also includes a plurality of fixing parts, and a plurality of fixing holes are correspondingly opened on the wall. The fixing parts are located in the fixing holes, and the fixing parts correspond to the fixing holes one by one. The fixing parts are fixing nuts, and the fixing nuts are fixed to the wall. When the stud is inserted into the insulation board, the stud passes through the through hole and then through the fixing nut, and the stud is threadedly engaged with the fixing nut.

[0021] By adopting the above technical solution, when the stud is inserted into the insulation board, the stud passes through the through hole and then through the fixing nut. The stud and the fixing nut thread cooperate to enhance the stability and reliability of the connection structure, avoid loosening or falling off of the stud during use, and ensure the stable installation of the wall-mounted climbing frame.

[0022] In a specific embodiment, the connecting plate is provided with a connecting hole;

[0023] The fixing assembly includes a tensioning screw and two tensioning nuts. One end of the tensioning screw passes through the wall-mounted climbing frame, the connecting hole, the insulation board and the wall in sequence. The tensioning screws are slidably connected to the connecting plate, the insulation board and the wall. Both ends of the tensioning screw are threadedly connected to one of the tensioning nuts. The tensioning screws can fix the wall-mounted climbing frame, the connecting plate, the insulation board and the wall.

[0024] By adopting the above technical solution, when it is necessary to fix the wall-mounted climbing frame and the connecting plate, first, the wall-mounted climbing frame is hoisted to the side of the connecting plate away from the wall, then the tension screw is taken out, and the tension screw is passed through the wall-mounted climbing frame, the connecting plate, the insulation board and the wall in turn, and then the tension nut is connected to the tension screw, and the tension nut is screwed until the wall-mounted climbing frame, the connecting plate, the insulation board and the wall are fixed. By arranging the coordination of the tension screw and the tension nut, on the one hand, it is convenient to fix the wall-mounted climbing frame, the connecting plate, the insulation board and the wall; on the other hand, it is beneficial to reduce the shaking of the wall-mounted climbing frame after the wall-mounted climbing frame is connected to the connecting plate, thereby achieving a stable connection between the wall-mounted climbing frame and the connecting plate, the insulation board and the wall, and improving the stability and safety of the overall structure.

[0025] In a specific embodiment, the connecting hole is cross-shaped.

[0026] By adopting the above technical solution, the cross-shaped design of the connecting hole is conducive to reducing construction errors and facilitating the precise correspondence between the connecting hole and the perforation on the insulation board and the reserved hole on the wall, thereby improving the installation accuracy and efficiency of the connecting plate.

[0027] In summary, this application includes at least one of the following beneficial technical effects:

[0028] 1. The designed fixing structure of the non-disassembly insulation board wall-mounted climbing frame. Compared with the related art, the present application has multiple through-holes for inserting reinforcement members in the insulation board, which eliminates the need for large-scale damage to the insulation board. Multiple connecting components can be flexibly arranged on the insulation board according to construction requirements. The connecting board is arranged parallel to the wall and can be tightly fitted with the insulation board through the insertion components. The fixing components further ensure the stable connection between the connecting board, the insulation board and the wall. This not only effectively avoids the damage to the insulation board caused by traditional installation methods, but also improves the overall stability of the wall-mounted climbing frame, improves construction safety and efficiency, and helps to improve the problem of poor insulation effect of the building.

[0029] 2. The designed fixing structure of the non-removable insulation board wall-mounted climbing frame. When the connecting plate needs to be installed, the steel column on the connecting plate is passed through the through-hole on the insulation board and abutted against the wall. The connecting plate is then fixed using the fixing assembly. The length of the steel column inserted into the insulation board is 4-5 times its cross-sectional diameter. This enhances the stability of the wall-mounted climbing frame connection and ensures sufficient contact area between the steel column and the insulation board, thereby improving the firmness of the connection and preventing loosening or slipping when bearing loads.

[0030] 3. The fixed structure of the designed non-disassembly insulation board wall-mounted climbing frame, on the one hand, personnel only need to screw the studs according to the thickness of the insulation board to change the length of the studs close to the wall, so that the studs close to the wall are inserted into the insulation board and contact the wall, which is convenient for personnel to operate; on the other hand, the cooperation of the locking nuts and studs is conducive to reducing the shaking of the studs when inserted into the insulation board; the two locking nuts are coaxially arranged with the adjustment holes and cooperate with the stud threads, so that the connecting plate can adjust the protruding length of the studs according to the thickness of the insulation board, which improves the adaptability and flexibility of the connection and enhances the stability and safety of the structure. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] Figure 1 It is a schematic diagram of the overall structure in Example 1.

[0032] Figure 2 This is a cross-sectional view of Example 1.

[0033] Figure 3 It is a structural diagram of the insertion component in Example 1.

[0034] Figure 4 This is a cross-sectional view of Example 2.

[0035] Figure 5 yes Figure 4 A magnified view of center.

[0036] Explanation of the accompanying drawings: 1. Connecting assembly; 11. Connecting plate; 111. Positioning hole; 112. Connecting hole; 113. Adjusting hole; 2. Inserting assembly; 21. Reinforcement member; 211. Steel column; 212. Stud; 213. Locking nut; 22. Adsorption member; 221. Reinforcement rod; 222. Suction cup; 23. Fixing member; 3. Fixing assembly; 31. Tension screw; 32. Tension nut; 4. Insulation board; 41. Through hole; 42. Through hole; 5. Wall; 51. Reserved hole; 52. Fixing hole. DETAILED DESCRIPTION

[0037] The following is combined with Figure 1-5 This application is described in further detail.

[0038] The embodiment of the present application discloses a fixing structure of a wall-mounted climbing frame of a heat preservation board that does not require disassembly.

[0039] Example 1

[0040] Reference Figure 1 A fixing structure of a non-disassembly insulation board wall-mounted climbing frame includes multiple connecting components 1, multiple insertion components 2 and multiple fixing components 3. The fixing components 3 are arranged on the connecting components 1, and the connecting components 1 are used to connect the wall-mounted climbing frame.

[0041] Reference Figure 1 The insulation board 4 is located on the outer wall of the wall 5. The insulation board 4 and the wall 5 are fixedly connected by reinforcing screws. A plurality of connection components 1 are distributed on the insulation board 4 according to construction requirements. The connection component 1 includes a connection plate 11. The connection plate 11 can be a circular plate or a rectangular plate. In the present embodiment, the connection plate 11 is a rectangular plate. For the convenience of description, one of the connection plates 11 is selected for description in the present embodiment. The connection plate 11 is located on the side of the insulation board 4 away from the wall 5, and the connection plate 11 is arranged parallel to the wall 5. The connection plate 11 adopts a flat plate structure. The material can be selected from high-strength aluminum alloy material or high-strength engineering plastic material. The thickness of the connection plate 11 is 5mm to 15mm and the width is 300mm to 500mm to ensure sufficient rigidity and load-bearing capacity. In addition, the surface of the connection plate 11 can be provided with grooves or reinforcing ribs to enhance its compressive strength and structural stability.

[0042] Reference Figure 1 、 Figure 2 and Figure 3, one connecting plate 11 corresponds to multiple insertion components 2, the insertion components 2 include multiple reinforcement members 21 and multiple adsorption members 22, multiple reinforcement members 21 are all located on the connecting plate 11, and a plurality of positioning holes 111 are opened on the connecting plate 11. The number of positioning holes 111 can be four or six. In this embodiment, the number of positioning holes 111 is six, and the six positioning holes 111 are arranged in a matrix. The reinforcement members 21 correspond one to one with the positioning holes 111. The reinforcement member 21 includes a steel column 211, which is perpendicular to the connecting plate 11. The steel column 211 is passed through the positioning hole 111, and the steel column 211 is detachably connected to the connecting plate 11 by a threaded connection. A plurality of through holes 41 for the steel columns 211 to pass through are opened on the insulation board 4. The steel columns 211 correspond one to one with the through holes 41. The through holes 41 penetrate the insulation board 4 along the thickness direction of the insulation board 4. When the connecting plate 11 needs to be installed on the insulation board 4, if the insulation board 4 When the load is thicker, personnel choose a longer steel column 211 length, pass the steel column 211 through the positioning hole 111, and connect it to the connecting plate 11 by threaded connection. When the steel column 211 is inserted into the insulation board 4, the steel column 211 can contact the wall 5; on the contrary, if the insulation board 4 is thinner, personnel choose a shorter steel column 211 length, connect the steel column 211 with the connecting plate 11, and when the steel column 211 is inserted into the insulation board 4, the steel column 211 can contact the wall 5. The length of the steel column 211 inserted into the insulation board 4 is 4-5 times the cross-sectional diameter of the steel column 211, which can increase the stability of the wall climbing frame connection and ensure that the steel column 211 has sufficient contact area with the insulation board 4, thereby improving the firmness of the connection and preventing loosening or slipping when bearing load. The insertion point of the steel column 211 needs to withstand a force greater than the design load. Therefore, increasing the insertion length of the steel column 211 can improve the safety of the connection and reduce potential structural risks.

[0043] Reference Figure 2 and Figure 3, the adsorption member 22 corresponds to the connecting plate 11 one by one, the adsorption member 22 is located on the side wall of the connecting plate 11, the adsorption member 22 includes a plurality of reinforcing rods 221 and a plurality of suction cups 222, and the plurality of reinforcing rods 221 can be distributed along the circumference of the connecting plate 11. In this embodiment, the number of the reinforcing rods 221 is one, and the reinforcing rod 221 is an L-shaped rod. One side of the reinforcing rod 221 is close to the insulation board 4, and the other side is welded to the connecting plate 11. One reinforcing rod 221 corresponds to a plurality of suction cups 222, and a plurality of suction cups 222 are all located on the side of the reinforcing rod 221 close to the insulation board 4, and multiple suction cups 222 are spaced apart along the setting direction of the reinforcing rod 221 close to the insulation board 4. The suction cups 222 are fixedly connected to the reinforcing rod 221. When the connecting plate 11 is installed on the insulation board 4, the suction cups 222 are adsorbed on the insulation board 4. The diameter of a single suction cup 222 is 100mm to 200mm. The number can be selected according to the stress condition of the wall 5. The material of the suction cup 222 can be soft rubber or silicone. The glue has good adsorption force and elasticity, and can be firmly fixed without penetrating the insulation board 4, preventing it from falling off due to severe single-point force. In addition, in order to improve the reliability of the adsorption force of the suction cup 222, a suction cup 222 release valve system can be set on the surface of the suction cup 222 to control the air pressure in the suction cup 222 to ensure the adsorption stability under any circumstances. Magnetic adsorption can also be used, and strong magnet materials such as neodymium iron boron magnets are selected, and magnetic adsorption areas are configured according to actual needs to meet the characteristics of different insulation board 4 surfaces, so as to achieve the purpose of fixing the wall-mounted climbing frame without penetrating the insulation board 4, which not only avoids damage to the insulation board 4, but also ensures the stability of the wall-mounted climbing frame, improves the safety and construction efficiency of the construction site; ensures that fixation is achieved without penetrating the insulation board 4, avoids damage to the insulation layer, reduces damage to the insulation board 4, reduces energy loss, and also reduces the impact of the construction process on the environment.

[0044] Reference Figure 2 and Figure 3, a connecting hole 112 is opened on the connecting plate 11, and the connecting hole 112 passes through the connecting plate 11 along the thickness of the connecting plate 11. The fixing assembly 3 includes a plurality of tension screws 31 and a plurality of tension nuts 32. In this embodiment, one connecting plate 11 corresponds to two tension screws 31, and a reserved hole 51 for the tension screw 31 to pass through is opened in advance on the wall 5. A through hole 42 for the tension screw 31 to pass through is opened on the insulation board 4, and when the insulation board 4 is installed on the wall 5, the through hole 42 corresponds to the reserved hole 51, and the connecting hole 112 is cross-shaped, which is conducive to reducing Less construction error, can facilitate the correspondence between the connecting hole 112 and the through hole 42, when the connecting plate 11 is installed, fine adjustment can be made, the tension screw 31 passes through the connecting hole 112, the through hole 42 and the reserved hole 51 in sequence, and the tension screw 31 is slidably connected to the connecting plate 11, the insulation board 4 and the wall 5, and the two ends of the tension screw 31 are respectively threadedly connected with a tension nut 32, the tension nut 32 can slide on the tension screw 31 along the length direction of the tension screw 31, and the tension screw 31 can fix the wall-mounted climbing frame, the connecting plate 11, the insulation board 4 and the wall 5.

[0045] The implementation principle of Example 1 is: when the wall-mounted climbing frame needs to be installed, first, take out the connecting component 1, and then move the connecting component 1 to the area where it needs to be installed. Then, according to the thickness of the insulation board 4, take out the fixing component 3, and select a steel column 211 of appropriate length. Connect the steel column 211 to the connecting plate 11 accordingly, and insert the steel column 211 into the insulation board 4 until the steel column 211 is tightly pressed against the wall 5. Then, the personnel connect the adsorption part 22 to the insulation board 4. According to the above steps, the remaining connecting plates 11 can be fixedly connected to the insulation board 4 according to the construction requirements. After that, take out the wall-mounted climbing frame and fix the wall-mounted climbing frame to the connecting plate 11.

[0046] Example 2

[0047] Reference Figure 4 and Figure 5, the difference between this embodiment and embodiment 1 is that the reinforcement member 21 further includes a stud 212 and two locking nuts 213, multiple adjustment members are located on the connecting plate 11, and the connecting plate 11 is provided with multiple adjustment holes 113. The number of adjustment holes 113 can be four or six. In this embodiment, the number of adjustment holes 113 is six, and the six adjustment holes 113 are arranged in a matrix. One stud 212 corresponds to one adjustment hole 113, the stud 212 is passed through the adjustment hole 113, and the stud 212 is threadedly connected to the connecting plate 11, one stud 212 corresponds to two locking nuts 213, and the two locking nuts 213 are embedded in the adjustment hole 113, two locking nuts 213 are coaxially arranged with the adjustment hole 113, and the two locking nuts 213 are both threadedly matched with the stud 212. The locking nuts 213 are welded to the connecting plate 11. When the connecting plate 11 needs to be installed on the insulation board 4, if the insulation board 4 is thicker, the personnel screw the stud 212 away from the end of the wall 5. At this time, the stud 212 becomes longer near the end of the wall 5. When the personnel screw the stud 212 to the appropriate position, when the stud 212 is inserted into the insulation board 4, the stud 212 can contact the wall 5; on the contrary, if the insulation board 4 is thinner, the personnel screw the stud 212 away from the end of the wall 5. At this time, the stud 212 becomes shorter near the end of the wall 5.

[0048] Reference Figure 4 and Figure 5 The insertion component 2 also includes a plurality of fixing parts 23. A plurality of fixing holes 52 are correspondingly opened on the wall 5. The fixing parts 23 are located in the fixing holes 52, and the fixing parts 23 correspond to the fixing holes 52 one by one. The fixing parts 23 are fixing nuts, and the fixing nuts are fixed to the wall 5 by pouring. When the stud 212 is inserted into the insulation board 4, the stud 212 passes through the through hole 41 and then passes through the fixing nut. The personnel screws the stud 212, and the stud 212 is threadedly matched with the fixing nut to enable the connecting plate 11 to be installed on the insulation board 4. After the installation of the connecting plate 11 is completed, the wall-mounted climbing frame is installed.

[0049] The implementation principle of Example 2 is: when the wall-mounted climbing frame needs to be installed, first, take out the connecting component 1, and then move the connecting component 1 to the area where it needs to be installed. Then, according to the thickness of the insulation board 4, start the fixing component 3, and by screwing the stud 212, the length of the stud 212 close to the wall 5 is increased or decreased, so that the stud 212 can be inserted into the insulation board 4. Then, the personnel screw the stud 212 so that the stud 212 is threadedly engaged with the fixing nut. According to the above steps, the remaining connecting plates 11 can be fixedly connected to the insulation board 4 according to the construction requirements. After that, take out the wall-mounted climbing frame and fix the wall-mounted climbing frame to the connecting plate 11.

[0050] When it is necessary to fix the connecting plate 11 and the insulation board 4, first, the personnel adjust the length of the stud 212 away from the wall 5 end according to the thickness of the insulation board 4. If the insulation board 4 is thicker, the personnel screw multiple studs 212 in sequence, and the length of the stud 212 close to the wall 5 end becomes longer. After the stud 212 moves to the appropriate position, the stud 212 is inserted into the exterior wall insulation board 4; if the insulation board 4 is thinner, the personnel screw multiple studs 212 in the opposite direction in sequence. At this time, the length of the stud 212 close to the wall 5 end is reduced, and then the stud 212 is inserted into the exterior wall insulation board 4. After the stud 212 is inserted, the stud 212 is connected to the fixing nut.

[0051] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A fixing structure for a wall-mounted climbing frame with a heat preservation board that does not require disassembly, characterized by: The invention comprises a plurality of connection components (1), a plurality of insertion components (2) and a plurality of fixing components (3), wherein the plurality of connection components (1) are distributed on the insulation board (4) according to construction requirements, the connection component (1) comprises a connection plate (11), the connection plate (11) is located on the side of the insulation board (4) away from the wall (5), the connection plate (11) is arranged parallel to the wall (5), the connection plate (11) corresponds to the insertion components (2) one by one, the insertion components (2) have a plurality of reinforcement members (21), and the plurality of reinforcement members (21) are all connected to the insulation board (4). The connecting plate (11) is connected, and a plurality of through holes (41) for inserting the reinforcing members (21) are provided on the insulation plate (4). The reinforcing members (21) are used to be inserted into the through holes (41) and pressed against the wall (5). The fixing assembly (3) corresponds to the connecting assembly (1) one by one. The fixing assembly (3) passes through the connecting plate (11), the insulation plate (4) and the wall (5) in sequence. The fixing assembly (3) is used to fix the connecting plate (11), the insulation plate (4) and the wall (5). The wall-mounted climbing frame is connected to the connecting plate (11).

2. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 1 is characterized in that: The reinforcement (21) includes a steel column (211). The connecting plate (11) is provided with a plurality of positioning holes (111) for the steel column (211) to pass through. The steel column (211) is arranged perpendicular to the connecting plate (11). The steel column (211) is connected to the connecting plate (11). When the connecting plate (11) is installed on the insulation board (4), the steel column (211) passes through the through hole (41) and abuts against the wall (5). The length of the steel column (211) inserted into the insulation board (4) is 4-5 times the cross-sectional diameter of the steel column (211).

3. The fixing structure of the wall-mounted climbing frame for the heat preservation board according to claim 2 is characterized in that: The steel column (211) is detachably connected to the connecting plate (11).

4. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 3 is characterized by: The insertion assembly (2) further comprises a plurality of adsorption members (22), the adsorption members (22) corresponding to the connection plates (11) one by one, the adsorption members (22) being located on the side walls of the connection plates (11), the adsorption members (22) comprising a plurality of reinforcing rods (221) and a plurality of suction cups (222), the reinforcing rods (221) being L-shaped rods, the plurality of reinforcing rods (221) being distributed circumferentially along the connection plates (11), one side of the reinforcing rods (221) being close to the insulation plate (4 ), and the other side is fixed to the connecting plate (11), one reinforcing rod (221) corresponds to a plurality of suction cups (222), and the plurality of suction cups (222) are all fixed to the reinforcing rod (221) on the side close to the insulation board (4), and the plurality of suction cups (222) are spaced apart along the setting direction of the reinforcing rod (221) on the side close to the insulation board (4), and when the connecting plate (11) is installed on the insulation board (4), the suction cups (222) are adsorbed on the insulation board (4).

5. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 1 is characterized in that: The connecting plate (11) is provided with a plurality of adjustment holes (113), and the plurality of adjustment holes (113) are arranged in a matrix; The reinforcement (21) includes a stud (212) and two locking nuts (213), the stud (212) passes through the adjustment hole (113), the stud (212) is connected to the connecting plate (11), the two locking nuts (213) are respectively fixed to one side of the connecting plate (11), the two locking nuts (213) are coaxially arranged with the adjustment hole (113), and the two locking nuts (213) are both threadedly matched with the stud (212).

6. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 5 is characterized in that: The stud (212) is threadedly connected to the connecting plate (11).

7. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 6 is characterized in that: The insertion assembly (2) further comprises a plurality of fixing members (23), a plurality of fixing holes (52) correspondingly opened on the wall (5), the fixing members (23) being located in the fixing holes (52), the fixing members (23) corresponding one-to-one with the fixing holes (52), the fixing members (23) being fixing nuts, the fixing nuts being fixed to the wall (5), and when the stud (212) is inserted into the insulation board (4), the stud (212) passes through the through hole (41) and then through the fixing nut, and the stud (212) is threadedly engaged with the fixing nut.

8. A fixing structure for a non-disassembly-required thermal insulation board wall-mounted climbing frame according to any one of claims 1 to 7, characterized in that: The connecting plate (11) is provided with a connecting hole (112); The fixing assembly (3) includes a tensioning screw (31) and two tensioning nuts (32), one end of the tensioning screw (31) passes through the wall-mounted climbing frame, the connecting hole (112), the insulation board (4) and the wall (5) in sequence, and the tensioning screw (31) is slidably connected to the connecting plate (11), the insulation board (4) and the wall (5), and each end of the tensioning screw (31) is threadedly connected to one of the tensioning nuts (32), and the tensioning screw (31) can fix the wall-mounted climbing frame, the connecting plate (11), the insulation board (4) and the wall (5).

9. The fixing structure of the non-disassembly insulation board wall-mounted climbing frame according to claim 8, characterized in that: The connecting hole (112) is in a cross shape.

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