Lightweight fabricated partition panel mounting structure
Patent Information
- Application Number
- CN202522270146.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-27
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-27
AI Technical Summary
[0005]本申请的目的是提供轻质装配式隔墙板安装结构,具备稳定安装等优点,解决了现有装置在拆装的过程中需要配合固定螺栓对其进行拆装,长时间的使用容易造成结构不稳定,难以拆装,并且其步骤繁琐容易造成拆装效率降低,容易导致整体流程耗时长的问题
该轻质装配式隔墙板安装结构,通过设置外墙板、内墙板、第一安装槽、第一弹簧、支撑杆、支撑槽、第二安装槽、第二弹簧、第一插杆、第三安装槽、第三弹簧、第二插杆、第二插槽、第三插槽等部件,通过将两个相邻的墙板进行插接,在此过程中,通过第一插杆与对应第一插槽间的插接即可对左右两侧的墙板进行快速固定,然后通过第二插杆与对应第二插槽间的插接即可对前后两侧的墙板进行快速固定,在此过程中,通过支撑杆与对应支撑槽间的插接能够增强相邻墙体之间的连接,进而达到了本装置能够对墙板进行稳定安装的效果。
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Figure CN224799706U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of partition wall installation structure technology, and in particular to lightweight prefabricated partition wall installation structure. Background Technology
[0002] Lightweight prefabricated partition wall panels are a new type of energy-saving wall material. They are wall panels that look like hollow floor slabs. They are composed of harmless phosphogypsum, lightweight steel slag, fly ash and other industrial waste residues, and are cured by variable frequency steam pressure. Lightweight prefabricated partition wall panels have the advantages of being lightweight, high-strength, environmentally friendly, heat-insulating, sound-insulating, breathable and humidity-regulating, and low-cost.
[0003] An existing patent (publication number: CN220150619U) discloses a lightweight prefabricated partition wall panel installation structure, including a lightweight prefabricated partition wall panel body and an installation connector. One side of the interior of the lightweight prefabricated partition wall panel body has an assembly opening, and a guide branch block is located in the middle of the assembly opening. The other side of the interior of the lightweight prefabricated partition wall panel body has a limiting groove. The installation connector is embedded in the limiting groove, and support frames are provided on both sides of one end of the installation connector. This utility model uses the installation connector to install two lightweight prefabricated partition wall panels. The support spring inside the installation connector is retracted and positioned by fixing screws, allowing the support frame to be hidden and fixed inside the limiting groove. During assembly, simply align and splice the two lightweight prefabricated partition wall panels, remove the fixing screws with a screwdriver, and the elasticity of the support spring allows the support frame to extend into the assembly opening.
[0004] The above solution requires the use of fixing bolts for disassembly and assembly. Prolonged use can easily lead to structural instability and difficulty in disassembly and assembly. Furthermore, the cumbersome steps can reduce disassembly and assembly efficiency and result in a long overall process. Utility Model Content
[0005] The purpose of this application is to provide a lightweight prefabricated partition wall installation structure with advantages such as stable installation. It solves the problem that existing devices require fixing bolts for disassembly and assembly, which can easily lead to structural instability and difficulty in disassembly and assembly after long-term use. Furthermore, the cumbersome steps can reduce disassembly and assembly efficiency and result in a long overall process.
[0006] The lightweight prefabricated partition wall panel installation structure provided in this application adopts the following technical solution: it includes several outer wall panels, with an inner wall panel between every two outer wall panels. Each inner wall panel has a first mounting groove on its inner wall. A first spring is fixedly connected to the inner wall of each first mounting groove. A support rod is fixedly connected to the end of each first spring away from its corresponding first mounting groove. The outer surface of each support rod is slidably connected to its corresponding first mounting groove. Each inner wall panel has a support groove at its end away from its corresponding support rod. The outer surface of each support rod is inserted into its corresponding support groove. Each inner wall panel has a second mounting groove on its inner wall. Each of the second mounting slots has a second spring fixedly connected to its inner wall, and a first insert rod fixedly connected to the top of each second spring. Each of the outer wall panels has a first slot on its outer surface, and the outer surface of each first insert rod is inserted into the corresponding first slot. Each of the inner wall panels has a third mounting slot on its inner wall, and a third spring fixedly connected to its inner wall. Each of the third springs has a second insert rod fixedly connected to its top, and the outer surface of each second insert rod is slidably connected to the corresponding third mounting slot. Each of the outer wall panels has a second slot on its outer surface, and the inner wall of each second slot is inserted into the corresponding second insert rod.
[0007] By adopting the above technical solution, the basic components include exterior wall panels and interior wall panels, which are arranged alternately. An interior wall panel is placed between every two exterior wall panels. The two wall panels are spliced together. During this process, the interior wall panel of one wall panel is inserted between and into the exterior wall panels of the other wall panel. During this process, the support rod is pressed and slid into the corresponding first mounting groove, the first spring is compressed, and then the first insert rod is pressed to vertically insert along the corresponding second mounting groove. The second spring is compressed, and then the wall panel is pushed so that the support rod and the corresponding support groove are on the same central axis. At this time, the support rod is inserted into the corresponding support groove. When the first insert rod is on the same central axis as the corresponding first slot, the second spring... Under its rebound force, the corresponding first insert rod will be pushed into the first slot, thereby enhancing the connection between the two wall panels through the cooperation of the support rod and the support slot. The insertion between the first insert rod and the corresponding first slot can quickly fix the two adjacent wall panels. The third spring serves as the elastic support base for subsequent added components, allowing the device to adapt to more complex installation environments or functional requirements. The third mounting slot provides a clear sliding path for the second insert rod, preventing the second insert rod from shifting or getting stuck during the extension and retraction process, ensuring that it can accurately align with the target slot and improve the reliability of the connection. During the installation and fixing of the wall panels, the insertion between the second insert rod and the corresponding second slot can fix the adjacent wall panels.
[0008] Preferably, each of the exterior wall panels has a chamfered groove on its outer surface.
[0009] By adopting the above technical solution, the chamfered groove can avoid corner interference during the splicing of exterior wall panels, making the connection between adjacent exterior wall panels smoother. It can also accommodate slight installation deviations, reduce assembly difficulty, and make the overall spliced surface of the wall panels more aesthetically pleasing. It can also prevent damage caused by corner bumps and reduce the accumulation of rainwater and dust at the corners, thus extending the service life of the exterior wall panels.
[0010] Preferably, the outer surface of each of the first inserts is slidably connected to the corresponding first slot.
[0011] By adopting the above technical solution, the sliding connection allows the first plug to move slightly within the first slot, which can accommodate slight dimensional deviations or uneven wall surfaces during installation, avoid rigid jamming, and reduce assembly precision requirements. Compared with fixed plugging, the sliding fit makes the separation of the inner wall panel and the outer wall panel easier, facilitates later maintenance, replacement of individual wall panels, or adjustment of the assembly position as needed, and enhances the maintainability of the device.
[0012] Preferably, each of the inner wall panels has a U-shaped plate on its outer side.
[0013] By adopting the above technical solution, the U-shaped plate can wrap around the outer edge of the inner wall panel to form an additional limiting structure and reduce the shaking of the inner wall panel during use.
[0014] Preferably, each of the U-shaped plates has a third slot on its outer surface, and the inner wall of each third slot is inserted into the corresponding second insert.
[0015] By adopting the above technical solution, the third slot can provide an installation base for possible auxiliary fixing components. Its connection with the second plug can make the connection between the inner wall panel and the surrounding structure tighter and the overall deformation resistance stronger. After the wall panel is spliced, the inner wall panel at the edge can be wrapped with a U-shaped plate to prevent the inner wall panel from being damaged due to external pressure. It can also keep multiple inner wall panels in a neat arrangement after assembly, and at the same time cover the gaps at the joints between the inner wall panel and the outer wall panel, making the overall structure more beautiful and reducing the risk of dust accumulation and water seepage in the gaps.
[0016] Preferably, a support plate is provided between every two exterior wall panels, and a fourth mounting groove is provided on the inner wall of each support plate.
[0017] By adopting the above technical solution, the support plate provides a supporting foundation for the wall panel located at the outermost edge.
[0018] Preferably, a fourth spring is fixedly connected to the inner wall of each of the fourth mounting slots, and a third insert rod is fixedly connected to the top of each of the fourth springs.
[0019] By adopting the above technical solution, the third insertion rod can slide vertically along the corresponding fourth mounting groove, and the fourth spring enables the third insertion rod to have a self-resetting characteristic.
[0020] Preferably, the outer surface of each of the third inserts is inserted into the corresponding first slot, and the outer surface of each of the third inserts is slidably connected to the corresponding fourth mounting slot.
[0021] By adopting the above technical solution, the third insert rod is pressed and slid vertically into the corresponding fourth mounting slot, the fourth spring is compressed, and then the support plate is slid horizontally into the empty groove on the edge of the wall panel until the third insert rod and the corresponding first slot are on the same central axis. At this time, the fourth spring will push the corresponding third insert rod to reset and insert into the corresponding first slot under the action of its rebound force, so as to facilitate the quick fixation of the support plate.
[0022] In summary, this application includes at least one of the following beneficial technical effects: This lightweight prefabricated partition wall installation structure, through the inclusion of components such as an outer wall panel, an inner wall panel, a first mounting groove, a first spring, a support rod, a support groove, a second mounting groove, a second spring, a first insert rod, a third mounting groove, a third spring, a second insert rod, a second slot, and a third slot, connects two adjacent wall panels. During this process, the first insert rod, when inserted into its corresponding first slot, quickly fixes the left and right wall panels. Then, the second insert rod, when inserted into its corresponding second slot, quickly fixes the front and rear wall panels. Furthermore, the support rod, when inserted into its corresponding support groove, enhances the connection between adjacent walls, thus achieving a stable installation of the wall panels. Attached Figure Description
[0023] Figure 1 This is a schematic diagram of the overall structure of this application; Figure 2 This is a schematic diagram of the support groove structure of this application; Figure 3 This is a schematic diagram of the support rod structure of this application; Figure 4 This is a schematic diagram of the exterior wall panel structure of this application; Figure 5 This is a schematic diagram of the internal structure of the wall panel in this application. Figure 6 This is a schematic diagram of the support plate structure of this application.
[0024] In the picture: 1. Exterior wall panel; 2. Interior wall panel; 3. Support plate; 4. U-shaped plate; 5. Chamfered groove; 6. First mounting groove; 7. First spring; 8. Support rod; 9. Support groove; 10. First slot; 11. Second mounting groove; 12. Second spring; 13. First insert rod; 14. Third mounting groove; 15. Third spring; 16. Second insert rod; 17. Second slot; 18. Third slot; 19. Fourth mounting groove; 20. Fourth spring; 21. Third insert rod. Detailed Implementation
[0025] The following is in conjunction with the appendix Figure 1 - Appendix Figure 6 This application will be described in further detail below.
[0026] Example 1: Lightweight prefabricated partition wall installation structure, refer to Figure 1 , Figure 3 , Figure 5 The system includes several exterior wall panels 1, with an interior wall panel 2 between every two exterior wall panels 1. Each interior wall panel 2 has a first mounting groove 6 on its inner wall, and a first spring 7 is fixedly connected to the inner wall of each first mounting groove 6. A support rod 8 is fixedly connected to the end of each first spring 7 furthest from the corresponding first mounting groove 6, and the outer surface of each support rod 8 is slidably connected to the corresponding first mounting groove 6. Each interior wall panel 2 has a support groove 9 at the end furthest from the corresponding support rod 8, and the outer surface of each support rod 8 is inserted into the corresponding support groove 9. Each interior wall panel 2 has a second mounting groove 11 on its inner wall, and a second spring is fixedly connected to the inner wall of each second mounting groove 11. 12. A first insert rod 13 is fixedly connected to the top of each second spring 12. A first slot 10 is opened on the outer surface of each outer wall panel 1. The outer surface of each first insert rod 13 is inserted into the corresponding first slot 10. A third mounting groove 14 is opened on the inner wall of each inner wall panel 2. A third spring 15 is fixedly connected to the inner wall of each third mounting groove 14. A second insert rod 16 is fixedly connected to the top of each third spring 15. The outer surface of each second insert rod 16 is slidably connected to the corresponding third mounting groove 14. A second slot 17 is opened on the outer surface of each outer wall panel 1. The inner wall of each second slot 17 is inserted into the corresponding second insert rod 16.
[0027] like Figure 3 , Figure 4 , Figure 5The basic components include an outer wall panel 1 and an inner wall panel 2, which are arranged alternately. An inner wall panel 2 is placed between every two outer wall panels 1. The two wall panels are spliced together. During this process, the inner wall panel 2 of one wall panel is inserted between the outer wall panels 1 of the other wall panel and comes into contact with its inner wall panel 2. During this process, the support rod 8 is pressed and slid into the corresponding first mounting groove 6, and the first spring 7 is compressed. Then, the first insert rod 13 is pressed down to vertically insert along the corresponding second mounting groove 11, and the second spring 12 is compressed. Then, the wall panel is pushed so that the support rod 8 and the corresponding support groove 9 are on the same central axis. At this time, the support rod 8 will insert into the corresponding support groove 9, and the first spring 7 will be compressed. For easy separation, the first spring 7 will push the two apart under its rebound force. When the first insert rod 13 is in contact with the corresponding first slot 10... On the same central axis, the second spring 12, under the action of its rebound force, pushes the corresponding first insertion rod 13 into the first slot 10, thereby enhancing the connection between the two wall panels through the cooperation of the support rod 8 and the support groove 9. The insertion between the first insertion rod 13 and the corresponding first slot 10 can quickly fix the two adjacent wall panels. The third spring 15 serves as the elastic support base for subsequent added components, allowing the device to adapt to more complex installation environments or functional requirements. The third mounting groove 14 provides a clear sliding path for the second insertion rod 16, preventing the second insertion rod 16 from shifting or getting stuck during the extension and retraction process, ensuring that it can accurately align with the target slot and improve the reliability of the connection. During the installation and fixing of the wall panels, the insertion between the second insertion rod 16 and the corresponding second slot 17 can fix the adjacent wall panels.
[0028] Example 2: Lightweight prefabricated partition wall installation structure, please refer to... Figure 1 Each exterior wall panel 1 has a chamfered groove 5 on its outer surface. The chamfered groove 5 can prevent corner interference when splicing exterior wall panels 1, making the connection between adjacent exterior wall panels 1 smoother. It can also accommodate slight installation deviations, reduce assembly difficulty, and make the overall spliced surface of the wall panels more beautiful. It can also prevent damage caused by corner bumps and reduce the accumulation of rainwater and dust at the corners, thus extending the service life of the exterior wall panel 1.
[0029] Please see Figure 3 , Figure 4 , Figure 5 The outer surface of each first insertion rod 13 is slidably connected to the corresponding first slot 10. The sliding connection allows the first insertion rod 13 to move slightly within the first slot 10, which can accommodate slight dimensional deviations or uneven wall surfaces during installation, avoid rigid jamming, and reduce assembly precision requirements. Compared with fixed insertion, sliding connection makes the separation of inner wall panel 2 and outer wall panel 1 easier, facilitates later maintenance, replacement of individual wall panels, or adjustment of assembly position as needed, and enhances the maintainability of the device.
[0030] Please see Figure 1 Each inner wall panel 2 has a U-shaped plate 4 on its outer side. The U-shaped plate 4 can wrap around the outer edge of the inner wall panel 2 to form an additional limiting structure and reduce the shaking of the inner wall panel 2 during use.
[0031] Please see Figure 1 Each U-shaped panel 4 has a third slot 18 on its outer surface. The inner wall of each third slot 18 is inserted into the corresponding second rod 16. The third slot 18 can provide an installation base for possible auxiliary fixing components. The insertion between the third slot 18 and the second rod 16 can make the connection between the inner wall panel 2 and the surrounding structure tighter and the overall deformation resistance stronger. After the wall panels are spliced, the inner wall panel 2 at the edge can be wrapped by using the U-shaped panel 4 to prevent the inner wall panel 2 from being damaged due to external pressure. It can also keep multiple inner wall panels 2 in a neat arrangement after assembly, and at the same time cover the gaps at the joint between the inner wall panel 2 and the outer wall panel 1, making the overall structure more beautiful and reducing the risk of dust accumulation and water seepage in the gaps.
[0032] Please see Figure 1 , Figure 6 A support plate 3 is provided between every two outer wall panels 1, and a fourth mounting groove 19 is provided on the inner wall of each support plate 3. The support plate 3 provides a support base for the wall panel at the outermost edge.
[0033] Please see Figure 6 Each fourth mounting slot 19 has a fourth spring 20 fixedly connected to its inner wall, and a third rod 21 fixedly connected to the top of each fourth spring 20. The third rod 21 can slide vertically along the corresponding fourth mounting slot 19. The fourth spring 20 enables the third rod 21 to have a self-resetting characteristic.
[0034] Please see Figure 6 Each third insert 21 has its outer surface inserted into its corresponding first slot 10, and its outer surface also has its corresponding fourth mounting groove 19 slidably connected. By pressing down on the third insert 21, it slides vertically into its corresponding fourth mounting groove 19, compressing the fourth spring 20. Then, the support plate 3 slides horizontally into the empty groove on the edge of the wall panel until the third insert 21 and its corresponding first slot 10 are on the same central axis. At this point, the fourth spring 20 will push the corresponding third insert 21 to reset and insert it into its corresponding first slot 10 under its rebound force, thus facilitating the quick fixation of the support plate 3.
[0035] The implementation principle of this application embodiment is as follows: By inserting two adjacent wall panels, during this process, the outer wall panel 1 will press the corresponding first insertion rod 13 and second insertion rod 16 so that they slide vertically into the corresponding second mounting groove 11 and third mounting groove 14. The corresponding second spring 12 and third spring 15 will be compressed until the first insertion rod 13 and the corresponding first slot 10, and the second insertion rod 16 and the corresponding second slot 17 are on the same central axis. At this time, under the action of the spring rebound force, the first insertion rod 13 and the second insertion rod 16 will be inserted into the corresponding first slot 10 and the second slot 17, thereby facilitating the quick installation and fixing of wall panels in different positions. At the same time, the support rod 8 will be inserted into the corresponding support groove 9, and the first spring 7 will be... When compression is required and disassembly is needed, the first spring 7 separates the two wall panels under its rebound force. Then, by horizontally inserting the U-shaped plate 4 along the outermost inner wall panel 2, and pressing the corresponding second insert 16 until the second insert 16 and the corresponding third slot 18 are on the same central axis, the U-shaped plate 4 can be installed on the corresponding inner wall panel 2. Then, the support plate 3 is inserted into the gap between the two outermost outer wall panels 1. By pressing the third insert 21 and pushing the support plate 3 until the third insert 21 and the corresponding first slot 10 or second slot 17 are on the same central axis, the fourth spring 20 causes it to self-reset and insert into the corresponding first slot 10 or second slot 17 to complete the installation, thereby increasing the integrity of the wall panel.
Claims
1. A lightweight prefabricated partition wall installation structure, comprising several exterior wall panels (1), characterized in that: An inner wall panel (2) is provided between every two outer wall panels (1). Each inner wall panel (2) has a first mounting groove (6) on its inner wall. A first spring (7) is fixedly connected to the inner wall of each first mounting groove (6). A support rod (8) is fixedly connected to the end of each first spring (7) away from the corresponding first mounting groove (6). The outer surface of each support rod (8) is slidably connected to the corresponding first mounting groove (6). A support groove (9) is provided at the end of each inner wall panel (2) away from the corresponding support rod (8). The outer surface of each support rod (8) is inserted into the corresponding support groove (9). A second mounting groove (11) is provided on the inner wall of each inner wall panel (2). A second spring (12) is fixedly connected to the inner wall of each second mounting groove (11). Each of the second springs (12) is fixedly connected to a first insert rod (13) at its top end. Each of the outer wall panels (1) has a first slot (10) on its outer surface. The outer surface of each of the first insert rods (13) is inserted into the corresponding first slot (10). Each of the inner wall panels (2) has a third mounting groove (14) on its inner wall. Each of the third mounting grooves (14) has a third spring (15) fixedly connected to its inner wall. Each of the third springs (15) has a second insert rod (16) fixedly connected to its top end. The outer surface of each of the second insert rods (16) is slidably connected to the corresponding third mounting groove (14). Each of the outer wall panels (1) has a second slot (17) on its outer surface. The inner wall of each of the second slots (17) is inserted into the corresponding second insert rod (16).
2. The lightweight prefabricated partition wall installation structure according to claim 1, characterized in that: Each of the exterior wall panels (1) has a chamfered groove (5) on its outer surface.
3. The lightweight prefabricated partition wall installation structure according to claim 1, characterized in that: The outer surface of each of the first inserts (13) is slidably connected to the corresponding first slot (10).
4. The lightweight prefabricated partition wall installation structure according to claim 1, characterized in that: Each of the inner wall panels (2) has a U-shaped panel (4) on its outer side.
5. The lightweight prefabricated partition wall installation structure according to claim 4, characterized in that: Each of the U-shaped plates (4) has a third slot (18) on its outer surface, and the inner wall of each third slot (18) is inserted into the corresponding second plug (16).
6. The lightweight prefabricated partition wall installation structure according to claim 2, characterized in that: A support plate (3) is provided between every two exterior wall panels (1), and a fourth mounting groove (19) is provided on the inner wall of each support plate (3).
7. The lightweight prefabricated partition wall installation structure according to claim 6, characterized in that: Each of the fourth mounting slots (19) has a fourth spring (20) fixedly connected to its inner wall, and each of the fourth springs (20) has a third insert rod (21) fixedly connected to its top end.
8. The lightweight prefabricated partition wall installation structure according to claim 7, characterized in that: The outer surface of each of the third inserts (21) is inserted into the corresponding first slot (10), and the outer surface of each of the third inserts (21) is slidably connected to the corresponding fourth mounting slot (19).
Citation Information
Patent Citations
Light assembly type partition board mounting structure
CN220150619U