Assembly type wall protection plate mounting structure and mounting method
By combining detachable connecting components and positioning parts, the problems of difficult disassembly and insufficient environmental protection of wall panels are solved, realizing flexible and environmentally friendly installation of wall panels.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- JIANGSU RUIXING ZHAOHUA NEW MATERIAL TECH CO LTD
- Filing Date
- 2023-10-27
- Publication Date
- 2026-04-17
AI Technical Summary
In existing technologies, wall panels are difficult to remove once fixed to the wall, and the use of structural adhesives is not environmentally friendly, leading to difficulties in later maintenance and environmental pollution.
The wall panel can be detached and installed by using detachable connecting components and positioning parts. The combination of the first positioning part, the first connecting component, the first leveling part, the second connecting component and the second leveling part can achieve detachable installation, thus avoiding the use of structural adhesive.
It facilitates the later disassembly of the wall panels, improves environmental friendliness, and enhances the flexibility and safety of the prefabricated wall panel placement.
Smart Images

Figure CN121875449A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of prefabricated building structures, and in particular to a prefabricated wall panel installation structure and installation method. Background Technology
[0002] When renovating the walls of unfinished houses, fully furnished houses, and old houses, in order to prevent damage to the wall structure, it is necessary to achieve waterless renovation of the walls and to separate the pipelines from the walls.
[0003] Currently, one way to achieve waterless wall decoration and separate pipelines from the wall is to attach the wall panel to the leveled wall surface using structural adhesive, or to lock the wall panel to the leveled wall surface with screws, thereby installing the wall panel on the wall structure.
[0004] However, if the wall structure or wainscoting needs to be repaired later, the wainscoting will be fixed to the wall, which will make the repair work more difficult. In addition, structural adhesives can release trace amounts of harmful substances during use, which is not environmentally friendly. In summary, it is clear that after fixing the wainscoting to the wall with the existing technology, it is difficult to remove the wainscoting as needed, and the existing technology for installing wainscoting on the wall is not environmentally friendly. Summary of the Invention
[0005] To facilitate the disassembly of the wall panels as needed and to improve the environmental friendliness of the wall panel installation method, this application provides a prefabricated wall panel installation structure and installation method.
[0006] The prefabricated wall panel installation structure provided in this application adopts the following technical solution:
[0007] An installation structure for prefabricated wall panels includes a first positioning member, on which a first connecting component is connected, the first positioning member being used to position the first connecting component on a wall; the first connecting component is detachably connected to a first leveling member, and the first leveling member is detachably connected to a second connecting component, the second connecting component being used to detachably connect to the prefabricated wall panel.
[0008] By adopting the above technical solution, the first connecting component is fixed to a preset first position on the wall by the first positioning component. Then, the first leveling component is detachably connected to the first connecting component. Next, the second connecting component is detachably connected to the first leveling component. Finally, the prefabricated wall panel is detachably connected to the second connecting component. In this way, the prefabricated wall panel can be detachably installed on the wall. If the prefabricated wall panel needs to be disassembled later, it can be easily removed from the wall. Moreover, the use of structural adhesive is eliminated during the installation of the prefabricated wall panel in the above manner, thereby improving the environmental friendliness of the installation of the prefabricated wall panel.
[0009] In one specific implementation, the first connection component includes:
[0010] The first corner code has a first strip hole through which the first positioning member passes;
[0011] The first positioning screw is used to pass through the pre-set second strip hole on the first corner bracket and connect to the first corner bracket;
[0012] The first positioning nut is disposed on the first leveling component and is used for threaded connection with the first positioning screw.
[0013] By adopting the above technical solution, the first corner bracket can be positioned on the wall by passing the first positioning member through the first strip hole. During the positioning process, the position of the first corner bracket in the length direction of the first strip hole can be flexibly adjusted. Then, the first leveling member can be positioned on the first corner bracket by passing the first positioning screw through the second strip hole. During the positioning process, the position of the first leveling member in the length direction of the second strip hole can be flexibly adjusted. In this way, the position of the first leveling member can be flexibly adjusted by the first connecting component, thereby allowing the prefabricated wall panel connected to the first leveling member to be flexibly adjusted in position.
[0014] In one specific implementation, the first leveling component is provided with a first guide groove for the first positioning nut to slide, and the width of the first guide groove is smaller than the minimum outer diameter of the first positioning nut.
[0015] By adopting the above technical solution, the first positioning nut can slide in the first guide groove of the first leveling component, thereby allowing the first leveling component to flexibly adjust its position relative to the first connecting component in the length direction of its first guide groove, thereby further improving the flexibility of adjusting the position of the prefabricated wall panel.
[0016] In one specific implementation, the second connection component includes:
[0017] The second positioning nut is set in the second guide groove preset in the first leveling component, and the minimum outer diameter of the second positioning nut is greater than the width of the second guide groove opening;
[0018] The second corner bracket is connected to the first leveling component, and the second corner bracket has a third strip hole corresponding to the second positioning nut.
[0019] The second positioning screw is used to pass through the third strip hole and be threaded to the second positioning nut, thereby positioning the second angle bracket on the first leveling component;
[0020] Internal threaded positioning component, used to fix the pre-set position of the assembled wall panel;
[0021] The dry-hanging screw passes through the pre-set fourth strip hole on the second angle bracket and is threadedly connected to the internal threaded positioning part.
[0022] By adopting the above technical solution, the second positioning nut can move flexibly along the length of the second guide groove, thereby allowing the entire second connecting assembly to be flexibly adjusted in position relative to the first leveling component, and further allowing the prefabricated wall panel connected to the second connecting assembly to be flexibly adjusted in position; in addition, by threading the dry-hanging screw to the internal thread positioning component, the prefabricated wall panel can be detachably connected to the second connecting assembly, thereby improving the detachability of the prefabricated wall panel.
[0023] In one specific implementation scheme, the prefabricated wall panel installation structure further includes: a second positioning member, on which a third connecting component is connected, the second positioning member being used to position the third connecting component on the wall; and a second leveling member for supporting the prefabricated wall panel being detachably connected to the third connecting component.
[0024] By adopting the above technical solution, the third connecting component is positioned on the wall by the second positioning component, and then a second leveling component is set on the third connecting component to support the prefabricated wall panel. In this way, based on the positioning of the prefabricated wall panel by the second connecting component, the second leveling component also plays a supporting role for the prefabricated wall panel, which facilitates further improvement of the stability of the prefabricated wall panel installation.
[0025] In one specific implementation, the third connection component includes:
[0026] The third corner code has a fifth strip hole for the second positioning member to pass through, and the third corner code also has a sixth strip hole;
[0027] The third positioning nut is set in the third guide groove preset on the second leveling component, and the minimum outer diameter of the third positioning nut is greater than the width of the third guide groove opening;
[0028] The third positioning screw is used to pass through the sixth slot and be threaded to the third positioning nut.
[0029] By adopting the above technical solution, when the second positioning component positions the third corner code, the third corner code can be flexibly adjusted along the length direction of the fifth strip hole. In addition, the third positioning nut can slide flexibly in the third guide groove on the second leveling component, so that the second leveling component can flexibly adjust its position relative to the third connecting component in the length direction of the sixth strip hole. This makes it easy for the second leveling component to flexibly adjust the position of the prefabricated wall panel.
[0030] In one specific implementation, a baseboard is detachably connected to the second leveling component.
[0031] By adopting the above technical solution, the baseboard helps prevent people from accidentally touching the prefabricated wall panels and / or the prefabricated wall panel installation structure when they approach the prefabricated wall panels, thereby preventing damage to the prefabricated wall panels and / or the prefabricated wall panel installation structure. This helps to improve the safety of the prefabricated wall panels and / or the prefabricated wall panel installation structure.
[0032] In one specific implementation, a skirting board trim panel is detachably connected to the skirting board base plate.
[0033] By adopting the above technical solution, the skirting board decorative panel can not only improve the aesthetics of the skirting board base plate, but also protect it.
[0034] This application also provides a method for installing prefabricated wall panels, including:
[0035] The first connecting component is fixed to a preset first position on the wall by the first positioning element;
[0036] The first leveling component is detachably connected to the first connecting assembly;
[0037] A second connecting component can be detachably connected to the first leveling component;
[0038] The prefabricated wall panel can be detachably connected to the second connecting component.
[0039] By adopting the above technical solution, the first connecting component is fixed to a preset first position on the wall by the first positioning component. Then, the first leveling component is detachably connected to the first connecting component. Next, the second connecting component is detachably connected to the first leveling component. Finally, the prefabricated wall panel is detachably connected to the second connecting component. In this way, the prefabricated wall panel can be detachably installed on the wall. If the prefabricated wall panel needs to be disassembled later, it can be easily removed from the wall. Moreover, the use of structural adhesive is eliminated during the installation of the prefabricated wall panel in the above manner, thereby improving the environmental friendliness of the installation of the prefabricated wall panel.
[0040] In one specific feasible implementation, the prefabricated wall panel installation method also includes:
[0041] The third connecting component is positioned at a predetermined second position on the wall using the second positioning element;
[0042] The third connecting component is detachably connected to the second leveling component, and the second leveling component carries the assembled wall panel.
[0043] A base plate for the skirting board is provided on the second leveling component, and a skirting board decorative panel is provided on the base plate for the skirting board.
[0044] By adopting the above technical solution, the load-bearing function of the second leveling component on the prefabricated wall panel can further improve the installation stability of the prefabricated wall panel based on the positioning of the prefabricated wall panel by the second connecting component. Furthermore, the use of the skirting board base plate and skirting board decorative panel can also prevent personnel from accidentally touching the prefabricated wall panel and / or the prefabricated wall panel installation structure when approaching it, thereby preventing damage to the prefabricated wall panel and / or the prefabricated wall panel installation structure. This facilitates the improvement of the safety of the prefabricated wall panel and / or the prefabricated wall panel installation structure.
[0045] In summary, this application includes at least one of the following beneficial technical effects:
[0046] 1. Facilitates the removal and disassembly of the wall panels as needed later, and improves the environmental friendliness of the wall panel installation method;
[0047] 2. Facilitates greater flexibility in adjusting the position of prefabricated wall panels;
[0048] 3. Facilitates the improvement of the safety of prefabricated wall panels and / or prefabricated wall panel installation structures. Attached Figure Description
[0049] Figure 1 This is a structural diagram in the embodiments of this application used to illustrate the connection relationship between several sets of prefabricated wall panel installation structures and the wall.
[0050] Figure 2 This is a structural schematic diagram in the embodiments of this application used to illustrate the positional relationship between the wall, connecting components and prefabricated wall panels.
[0051] Figure 3 These are the three views of the first corner code in the embodiments of this application.
[0052] Figure 4 This is a structural schematic diagram in the embodiments of this application used to illustrate the connection relationship between the first positioning member and the first connecting component.
[0053] Figure 5 This is a structural schematic diagram in the embodiments of this application used to illustrate the connection relationship between the first connecting component and the prefabricated wall panel.
[0054] Figure 6 These are the three views of the second corner code in the embodiments of this application.
[0055] Figure 7 This is a structural schematic diagram used in the embodiments of this application to illustrate the positional relationship between the wall, the load-bearing components, and the prefabricated wall panel.
[0056] Figure 8 This is a structural schematic diagram in the embodiments of this application used to illustrate the connection relationship between the second positioning member and the bearing member.
[0057] Figure 9 These are the three views of the third corner code in the embodiments of this application.
[0058] Figure 10 This is a flowchart illustrating a prefabricated wall panel installation method according to an embodiment of this application.
[0059] Explanation of reference numerals in the attached drawings: 1. Connecting component; 11. First positioning component; 12. First connecting assembly; 121. First angle bracket; 1211. First strip hole; 1212. Second strip hole; 122. First positioning nut; 123. First positioning screw; 13. First leveling component; 131. First guide groove; 132. Second guide groove; 14. Second connecting assembly; 141. Second angle bracket; 1411. Third strip hole; 1412. Fourth strip hole; 142. Second positioning nut; 143. Second positioning screw 1. Thread; 144. Internal thread positioning component; 145. Dry hanging screw; 2. Bearing component; 21. Second positioning component; 22. Third connecting component; 221. Third angle bracket; 2211. Fifth strip hole; 2212. Sixth strip hole; 23. Second leveling component; 231. Third guide groove; 232. Fourth guide groove; 24. Third positioning nut; 25. Third positioning screw; 26. Baseboard plate; 27. Fourth positioning nut; 28. Fourth positioning screw; 29. Baseboard decorative panel; 3. Prefabricated wall panel. Detailed Implementation
[0060] The following is in conjunction with the appendix Figure 1-10 This application will be described in further detail.
[0061] This application discloses a prefabricated wall panel installation structure. (Refer to...) Figure 1 The wall is equipped with multiple sets of prefabricated wall panel installation structures along the horizontal direction. Taking one set of prefabricated wall panel installation structures as an example, the prefabricated wall panel installation structure includes several connecting parts 1 that are sequentially connected to the wall in the same vertical direction. Figure 2 The connecting component 1 is used to detachably connect to the side wall of a corresponding prefabricated wall panel 3; a supporting component 2 for supporting the corresponding prefabricated wall panel 3 is also provided below several connecting components 1.
[0062] Reference Figure 2 Taking a connecting component 1 in the prefabricated wall panel installation structure as an example, the connecting component 1 includes a first positioning component 11, on which a first connecting assembly 12 is connected. The first positioning component 11 is used to position the first connecting assembly 12 on the wall. The first connecting assembly 12 is detachably connected to a first leveling component 13, on which a second connecting assembly 14 is detachably connected. The second connecting assembly 14 is used to detachably connect with the prefabricated wall panel 3.
[0063] In implementation, the first connecting component 12 is set at a preset first position on the wall by the first positioning component 11, and then the first leveling component 13 is detachably connected to the first connecting component 12. Next, the second connecting component 14 is detachably connected to the first leveling component 13, and finally the prefabricated wall panel 3 is detachably connected to the second connecting component 14. In this way, the corresponding prefabricated wall panel 3 can be detachably positioned on the wall by the wall panel side wall connecting component 1. This not only enables the disassembly of the wall panel 3 when it needs to be disassembled later, but also improves the environmental friendliness of the installation of the prefabricated wall panel 3 since no structural adhesive is used in the process of positioning the prefabricated wall panel 3.
[0064] In one embodiment, refer to Figure 2 The first connecting component 12 includes two first corner brackets 121 at the same horizontal level, combined with Figure 3Taking one of the first corner brackets 121 as an example, the first corner bracket 121 has a first strip hole 1211 through which the first positioning member 11 passes. In this embodiment, the first positioning member 11 is an expansion screw used to wed into a preset first position on the wall. In practice, the length direction of the first strip hole 1211 on the first corner bracket 121 is first set in the vertical direction, and then the first positioning member 11 is controlled to pass through the first strip hole 1211 on the first corner bracket 121 and wed into the preset first position on the wall until the first positioning member 11 tightly fixes the first corner bracket 121 to the wall.
[0065] Reference Figure 3 The first corner bracket 121 also has a second strip-shaped hole 1212. When the first corner bracket 121 is fixed to the wall, the length direction of the second strip-shaped hole 1212 is horizontal. After the two first corner brackets 121 are fixed to the wall, the first leveling component 13 is further placed on the two first corner brackets 121. (Refer to...) Figure 4 In this embodiment, the first leveling component 13 is specifically a leveling keel. The first leveling component 13 has a top wall, a bottom wall, a first side wall, and a second side wall. The bottom wall of the first leveling component 13 is connected to two first corner brackets 121. A first guide groove 131 is formed on the bottom wall of the first leveling component 13, and a second guide groove 132 is formed on the top wall of the first leveling component 13. The first connecting assembly 12 also includes a first positioning nut 122 that is slidably connected in the first guide groove 131. The minimum outer diameter of the first positioning nut 122 is greater than the width of the opening of the first guide groove 131. The first leveling component 13 is positioned such that the first positioning nut 122 is prevented from sliding out of the slot of the first guide groove 131. When the first leveling component 13 is placed on the first corner bracket 121, the slot of the first leveling component 13 is directly opposite the second strip hole 1212. The first connecting assembly 12 also includes a first positioning screw 123 that passes through the first strip hole 1211 and is threadedly connected to the first positioning nut 122 in the first guide groove 131. By threading the first positioning screw 123 to the corresponding first positioning nut 122, the first leveling component 13 can be positioned on the two first corner brackets 121.
[0066] It should be noted that, since the first strip-shaped hole 1211 is elongated, the position of the first angle bracket 121 can be adjusted vertically before it is fully positioned on the wall. This allows for adjustment of the vertical positions of the first leveling component 13 and the second connecting assembly 14. Since the prefabricated wall panel 3 will subsequently be installed on the second connecting assembly 14, adjusting the position of the first angle bracket 121 vertically facilitates flexible adjustment of the position of the prefabricated wall panel 3 in the vertical direction. Furthermore, when the first positioning screw 123 is not tightened with the first positioning nut 122, the first leveling component 13 can be flexibly adjusted horizontally relative to the first positioning nut 122. Therefore, adjusting the position of the first leveling component 13 horizontally facilitates flexible adjustment of the position of the prefabricated wall panel 3 in the horizontal direction.
[0067] In one embodiment, refer to Figure 5 The second connecting assembly 14 includes two second corner brackets 141 for connecting to the top wall of the first leveling member 13. Taking one of the second corner brackets 141 as an example, combined with... Figure 6 The second angle bracket 141 has a third strip hole 1411 on its side wall for connecting with the top wall of the first leveling component 13. When the second angle bracket 141 is positioned on the top wall of the first leveling component 13, the length direction of the third strip hole 1411 is set in the horizontal direction. The second connecting assembly 14 also includes a second positioning nut 142 that is slidably connected in the second guide groove 132 of the first leveling component 13. The minimum outer diameter of the second positioning nut 142 is greater than the width of the groove opening of the second guide groove 132, so as to prevent the second positioning nut 142 from sliding out of the groove opening of the second guide groove 132. The second connecting assembly 14 also includes a second positioning screw 143 for passing through the third strip hole 1411 and the groove opening of the second guide groove 132 and being threadedly connected to the second positioning nut 142. By threading the second positioning screw 143 with the corresponding second positioning nut 142, the second angle bracket 141 can be positioned on the top wall of the first leveling component 13.
[0068] Reference Figure 6 The second corner bracket 141 also has a fourth strip-shaped hole 1412, specifically, the fourth strip-shaped hole 1412 is formed by a circular hole and an elongated hole connected together; looking back Figure 5 The second connecting component 14 also includes an internally threaded positioning member 144 fixed at a preset position on the prefabricated wall panel 3. In this embodiment, the internally threaded positioning member 144 is specifically an internally threaded rivet. The second connecting component 14 also includes a dry-hanging screw 145 that passes through the fourth strip hole 1412 and is threadedly connected to the internally threaded positioning member 144. By having the dry-hanging screw 145 first pass through the circular hole and then slide into the elongated hole, and then further threadedly connected to the internally threaded positioning member 144, the prefabricated wall panel 3 is positioned on the second corner bracket 141.
[0069] It should be noted that when the second positioning screw 143 is not tightened with the second positioning nut 142, the second angle bracket 141 can move horizontally along the length direction of the third strip hole 1411. Since the prefabricated wall panel 3 is connected to the second angle bracket 141, the position of the prefabricated wall panel 3 can be flexibly adjusted along the horizontal direction. In addition, when the dry-hanging screw 145 is not tightened with the internal thread positioning part 144, the position of the prefabricated wall panel 3 in the vertical direction can be flexibly changed by controlling the prefabricated wall panel 3 to move along the length direction of the fourth strip hole 1412.
[0070] In one embodiment, refer to Figure 7 The supporting component 2 includes a second positioning component 21, on which a third connecting component 22 is connected. The second positioning component 21 is used to position the third connecting component 22 on the wall. A second leveling component 23 for supporting the assembled wall panel 3 is detachably connected to the third connecting component 22.
[0071] In implementation, the third connecting component 22 is positioned on the wall by the second positioning component 21. Then, the second leveling component 23 is detachably connected to the third connecting component 22, and the second leveling component 23 carries the prefabricated wall panel 3. This facilitates the second connecting component 14 to initially position the prefabricated wall panel 3, and then to reposition the prefabricated wall panel 3 by supporting the bottom wall of the prefabricated wall panel 3, thereby further improving the stability of the prefabricated wall panel 3.
[0072] In practice, a second preset position is provided below the lowest preset first position on the wall. The second preset position is used for the second positioning member 21 to be wedged into the wall. In this embodiment, the second positioning member 21 is specifically an expansion screw.
[0073] In one embodiment, refer to Figure 8 The third connecting component 22 includes a third angle code 221, combined with Figure 9The third angle bracket 221 has a fifth strip hole 2211 through which the second positioning member 21 passes. Additionally, the third angle bracket 221 also has a sixth strip hole 2212, the length of which is perpendicular to the length of the fifth strip hole 2211. The second leveling member 23 is disposed on both third angle brackets 221. In this embodiment, the second leveling member 23 is a leveling keel. Guide grooves are provided on the top wall, bottom wall, and two side walls of the second leveling member 23. The length of these guide grooves is consistent with the length of the second leveling member 23. The guide groove on the bottom wall of the second leveling member 23 is designated as the third guide groove 231, and the guide groove on the side wall of the second leveling member 23 away from the wall is designated as the fourth guide groove 232. The third connecting assembly 22 also includes a third positioning nut 24 slidably connected in the third guide groove 231. The minimum outer diameter of the third positioning nut 24 is greater than the width of the groove opening of the third guide groove 231, so as to prevent the third positioning nut 24 from sliding out of the third guide groove 231. The third connecting assembly 22 also includes a third positioning screw 25 for threaded connection with the third positioning nut 24 through the sixth strip hole 2212 and the groove opening of the third guide groove 231. The third positioning screw 25 can position the second leveling member 23 on the first triangle code 221 by threaded connection with the corresponding third positioning nut 24.
[0074] It should be noted that when the first positioning member 11 is not fully wedged into the wall, the third angle bracket 221 can move along the length direction of the fifth strip hole 2211, thereby adjusting the position of the third angle bracket 221. Since the second leveling member 23 is set on the third angle bracket 221 and is used to support the prefabricated wall panel 3, by adjusting the position of the third angle bracket 221 along the length direction of the fifth strip hole 2211, the position of the second leveling member 23 supporting the prefabricated wall panel 3 can be flexibly adjusted in the vertical direction. In addition, when the third positioning screw 25 is not tightened with the third positioning nut 24, by adjusting the position of the second leveling member 23 along the length direction of the sixth strip hole 2212, the position of the second leveling member 23 supporting the prefabricated wall panel 3 can be flexibly adjusted in the horizontal direction.
[0075] In one embodiment, the prefabricated wall panel installation structure further includes a skirting board base plate 26 detachably connected to the second leveling member 23; specifically, the prefabricated wall panel installation structure includes a fourth positioning nut 27 slidably connected in the fourth guide groove 232 of the second leveling member 23, the minimum outer diameter of the fourth positioning nut 27 being larger than the width of the groove of the fourth guide groove 232, thereby preventing the fourth positioning nut 27 from sliding out of the fourth guide groove 232; the skirting board base plate 26 is provided with a fourth positioning screw 28 for extending into the groove of the fourth guide groove 232 and threadedly connected to the fourth positioning nut 27; by threading the fourth positioning screw 28 with the corresponding fourth positioning nut 27, the skirting board base plate 26 can be positioned on the second leveling member 23; in addition, the bottom end of the skirting board base plate 26 is close to the ground.
[0076] By setting a skirting board base plate 26 on the second leveling component 23, it is easier to prevent personnel from accidentally touching the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure when approaching the prefabricated wall panel 3, thereby preventing damage to the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure. This helps to improve the safety of the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure.
[0077] In one embodiment, a skirting board decorative panel 29 is also snapped onto the skirting board base plate 26. The skirting board decorative panel 29 not only enhances the aesthetics of the skirting board base plate 26, but also provides protection for the skirting board base plate 26.
[0078] This invention also provides a method for installing prefabricated wall panels 3, based on the above-mentioned prefabricated wall panel installation structure, with reference to... Figure 10 The installation methods for prefabricated wall panels include:
[0079] S100, The first connecting component 12 is fixed to a preset first position on the wall by the first positioning component 11;
[0080] S200, The first leveling component 13 is detachably connected to the first connecting assembly 12;
[0081] S300, The second connecting assembly 14 is detachably connected to the first leveling component 13;
[0082] S400, the prefabricated wall panel 3 is detachably connected to the second connecting assembly 14.
[0083] First, several preset first positions are predetermined on the wall. The first connecting component 12 is first attached to the corresponding preset first position on the wall. The first connecting component 12 is positioned on the wall by passing through the first positioning member 11 through the first connecting component 12 and wedging it into the wall.
[0084] Specifically, by passing an expansion screw through the first slot 1211 of the first corner bracket 121 in the corresponding first connecting component 12 and wedging it into a preset first position on the wall, the first corner bracket 121 is first positioned at the preset first position, and then the entire first connecting component 12 is positioned at the corresponding preset first position on the wall.
[0085] Then, the first leveling component 13 is detachably connected to the two corresponding first connecting components 12.
[0086] Specifically, a leveling keel is first placed on two corresponding first angle brackets 121, and the leveling keel is made perpendicular to the first angle brackets 121. At the same time, the first guide groove 131 on the bottom wall of the leveling keel is aligned with the second strip hole 1212 on the first angle bracket 121. Then, the first positioning screw 123 passes through the second strip hole 1212 and the first guide groove 131 from the bottom of the second strip hole 1212 upwards, and is threaded to the first positioning nut 122 pre-set in the first guide groove 131, thereby positioning the leveling keel on the corresponding set of first angle brackets 121.
[0087] Furthermore, two corresponding second connecting components 14 are detachably connected to the first leveling component 13.
[0088] Specifically, two corresponding second angle brackets 141 are first placed on the top wall of the leveling keel, and the third strip hole 1411 of the second angle bracket 141 is aligned with the second guide groove 132 on the top wall of the leveling keel. Then, the second positioning screw 143 is made to connect the third strip hole 1411 and the second guide groove 132 from above the third strip hole 1411 downwards, and is threadedly connected to the second positioning nut 142 preset in the second guide groove 132, thereby positioning a set of second angle brackets 141 on the corresponding leveling keel.
[0089] Furthermore, a prefabricated wall panel 3 can be detachably connected to a corresponding set of second corner brackets 141.
[0090] Specifically, the internal threaded positioning piece 144 in the second connecting assembly 14 is pre-installed at a preset position on the prefabricated wall panel 3. Then, the prefabricated wall panel 3 is lifted upwards by a jack until the internal threaded positioning piece 144 is aligned with the circular hole of the fourth strip hole 1412 on the second angle bracket 141. At this time, the dry-hanging screw 145 passes through the circular hole towards the internal threaded positioning piece 144 and is threadedly connected to the internal threaded positioning piece 144. At this time, the dry-hanging screw 145 and the internal threaded positioning piece 144 are not tightened. Then, the prefabricated wall panel 3 is lifted upwards to a preset height by a jack, and then the dry-hanging screw 145 and the internal threaded positioning piece 144 are tightened, thereby positioning one prefabricated wall panel 3 on the two second angle brackets 141.
[0091] Finally, following the steps described above, position the other prefabricated wall panels 3 onto the corresponding two second corner brackets 141.
[0092] In one embodiment, the installation method of the prefabricated wall panel 3 further includes:
[0093] S500, The third connecting component 22 is positioned at a preset second position on the wall by means of the second positioning element 21;
[0094] S600, the second leveling component 23 is detachably connected to the third connecting component 22, and the second leveling component 23 carries the assembled wall panel 3;
[0095] S700, a skirting board base plate 26 is provided on the second leveling component 23, and a skirting board decorative panel 29 is provided on the skirting board base plate 26.
[0096] Through the implementation of the above embodiment, the prefabricated wall panel 3 can be initially positioned on the prefabricated wall panel installation structure. Furthermore, the third connecting component 22 is positioned at a preset second position on the wall by the second positioning component 21.
[0097] Specifically, several preset second positions are predetermined below the first positioning member 11 with the lowest height. In practice, the fifth strip hole 2211 on the third angle bracket 221 of the third connecting component 22 is first aligned with the corresponding preset second position. Then, the expansion screw is driven into the wall in the direction of the corresponding preset second position, passing through the corresponding fifth strip hole 2211, thereby fixing the third angle bracket 221 to the wall, that is, positioning the third connecting component 22 on the wall.
[0098] After positioning the third connecting component 22 on the wall, the second leveling component 23 is detachably installed on the third connecting component 22, and the second leveling component 23 carries the corresponding prefabricated wall panel 3.
[0099] Specifically, the leveling keel is placed on two corresponding triangular brackets 221, and the third guide groove 231 on the bottom wall of the leveling keel is aligned with the sixth strip hole 2212 on the third triangular bracket 221. Then, the third positioning screw 25 passes through the sixth strip hole 2212 and the third guide groove 231 from the bottom of the sixth strip hole 2212 upwards, and is threadedly connected to the third positioning nut 24 preset in the third guide groove 231. Before the third positioning screw 25 and the corresponding third positioning nut 24 are tightened, the height of the leveling keel is adjusted until the leveling keel is tightly abutting against the bottom wall of the corresponding prefabricated wall panel 3. Then, the third positioning screw 25 and the corresponding third positioning nut 24 are tightened, thereby realizing the positioning of the leveling keel used to support the prefabricated wall panel 3.
[0100] Furthermore, a base plate 26 is provided on the second leveling component 23, and a base plate decorative panel 29 is provided on the base plate 26.
[0101] Specifically, the fourth positioning screw 28 passes through the base plate 26 and is threadedly connected to the fourth positioning nut 27 preset in the fourth guide groove 232 on the leveling keel, thereby fixing the base plate 26 to the leveling keel; furthermore, the preset base plate decorative panel 29 is also snapped onto the corresponding base plate 26; the base plate 26 and the base plate decorative panel 29 can prevent personnel from accidentally touching the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure when approaching it, thereby preventing damage to the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure, thus improving the safety of the prefabricated wall panel 3 and / or the prefabricated wall panel installation structure; in addition, the base plate decorative panel 29 can also increase the aesthetics of the prefabricated wall panel installation structure.
[0102] By implementing the above-mentioned method for installing prefabricated wall panels 3, the prefabricated wall panels 3 can be detachably installed on the wall. While ensuring the convenience of subsequent disassembly of the prefabricated wall panels 3, modular installation of the prefabricated wall panels 3 is also achieved. Furthermore, since no structural adhesive is used, the environmental friendliness of the prefabricated wall panels 3 during installation and subsequent use is also effectively improved.
[0103] 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. A panel mount structure of a fabricated panel, characterized by: It includes a first positioning component (11), on which a first connecting component (12) is connected, the first positioning component (11) being used to position the first connecting component (12) on the wall; the first connecting component (12) is detachably connected to a first leveling component (13), and the first leveling component (13) is detachably connected to a second connecting component (14), the second connecting component (14) being used to detachably connect to the prefabricated wall panel (3).
2. The prefabricated wall panel installation structure according to claim 1, characterized in that: The first connection component (12) includes: The first corner code (121) is provided with a first strip hole (1211) through which the first positioning member (11) passes; The first positioning screw (123) is used to pass through the second pre-set strip hole (1212) on the first corner bracket (121) and connect to the first corner bracket (121); The first positioning nut (122) is disposed on the first leveling component (13) and is used to be threadedly connected to the first positioning screw (123).
3. The prefabricated wall panel installation structure according to claim 2, characterized in that: The first leveling component (13) is provided with a first guide groove (131) for the first positioning nut (122) to slide. The groove width of the first guide groove (131) is smaller than the minimum outer diameter of the first positioning nut (122).
4. The prefabricated wall panel installation structure according to claim 1, characterized in that: The second connection component (14) includes: The second positioning nut (142) is set in the second guide groove (132) preset in the first leveling component (13), and the minimum outer diameter of the second positioning nut (142) is greater than the width of the groove opening of the second guide groove (132); The second corner bracket (141) is connected to the first leveling component (13), and the second corner bracket (141) has a third strip hole (1411) corresponding to the second positioning nut (142); The second positioning screw (143) is used to thread through the third strip hole (1411) and connect with the second positioning nut (142) to position the second angle bracket (141) on the first leveling member (13); The internal thread positioning part (144) is used to fix the assembled wall panel (3) at a preset position; The dry-hanging screw (145) passes through the pre-set fourth strip hole (1412) on the second angle bracket (141) and is threadedly connected to the internal threaded positioning member (144).
5. The prefabricated wall panel installation structure according to claim 1, characterized in that: Also includes: The second positioning component (21) is connected to a third connecting component (22), which is used to position the third connecting component (22) on the wall. The third connecting component (22) is detachably connected to a second leveling component (23) for supporting the prefabricated wall panel (3).
6. The prefabricated wall panel installation structure according to claim 5, characterized in that: The third connection component (22) includes: The third corner code (221) is provided with a fifth strip hole (2211) through which the second positioning member (21) passes, and the third corner code (221) is also provided with a sixth strip hole (2212); The third positioning nut (24) is set in the third guide groove (231) preset on the second leveling component (23), and the minimum outer diameter of the third positioning nut (24) is greater than the width of the groove opening of the third guide groove (231). The third positioning screw (25) is used to thread through the sixth strip hole (2212) and connect with the third positioning nut (24).
7. The prefabricated wall panel installation structure according to claim 5, characterized in that: The second leveling component (23) is detachably connected to a base plate (26).
8. The prefabricated wall panel installation structure according to claim 7, characterized in that: A skirting board decorative panel (29) is detachably connected to the skirting board base plate (26).
9. A method for installing prefabricated wall panels, characterized in that: include: The first connecting component (12) is positioned at a preset first position on the wall by means of the first positioning element (11); The first leveling component (13) is detachably connected to the first connecting assembly (12); The second connecting assembly (14) can be detachably connected to the first leveling component (13); The prefabricated wall panel (3) is detachably connected to the second connecting component (14).
10. A method for installing prefabricated wall panels according to claim 9, characterized in that: Also includes: The third connecting component (22) is positioned at a predetermined second position on the wall by means of the second positioning element (21); The third connecting component (22) is detachably connected to the second leveling component (23), and the second leveling component (23) carries the assembled wall panel (3); A base plate (26) is provided on the second leveling component (23), and a skirting board decorative panel (29) is provided on the base plate (26).