PVC double-sided polymer steel-plastic composite panel splicing structure

CN224621874UActive Publication Date: 2026-08-11WUXI PINSHANG BUILDING MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-11
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0005]为了克服现有的钢塑板在使用时,两块钢塑板之间通常采用连接件配合螺丝进行固定,不具备快速拼接机构,安装时较为繁琐的问题

Benefits of technology

[0015]通过在钢塑板本体的两端开设两个相互适配的插槽,配合卡条能够实现快速对位插接,不仅大幅提高了两块钢塑板的连接便捷性,还显著提升了施工效率,确保拼接过程更加精准可靠,同时,无需借助复杂工具即可完成组装,降低了操作难度,节省了人力成本,此外,插槽与卡条的紧密配合增强了整体结构的稳定性,使拼接后的钢塑板更加牢固耐用,适用于多种应用场景,充分满足了现代建筑对高效施工和稳定性能的双重需求。

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Abstract

This utility model discloses a splicing structure for PVC double-sided polymer steel-plastic composite panels, including a steel-plastic composite panel body and a first slot. The first slot is located at the right end of the steel-plastic composite panel body, and a second slot is located at the left end. Multiple equally spaced positioning holes are located at the front right end of the steel-plastic composite panel body. Each positioning hole contains a press-type spring clip. A through groove is located on the front side of the steel-plastic composite panel body corresponding to the position of the second slot. A connecting mechanism is located inside the through groove, and multiple locking blocks are located on the rear side of the connecting mechanism. A fixing mechanism is provided on the steel-plastic composite panel body, and locking strips are fixed to the inner sides of both the first and second slots. This utility model, by opening two mutually compatible slots at both ends of the steel-plastic composite panel body and using locking strips, enables rapid alignment and insertion, significantly improving the ease of connection between the two steel-plastic composite panels and greatly enhancing construction efficiency, ensuring a more precise and reliable splicing process.
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Description

Technical Field

[0001] This utility model relates to the field of steel-plastic composite panel technology, and in particular to the splicing structure of PVC double-sided polymer steel-plastic composite panels. Background Technology

[0002] Steel-plastic composite panels are a type of composite material made by bonding steel plates and plastic layers under high temperature and pressure. They combine the strength of steel with the corrosion resistance of plastic, and can be coated with colored coatings for a beautiful and durable finish. Widely used in building curtain walls, interior decoration, and appliance housings, they are lightweight, waterproof, and impact-resistant, making them an economical and environmentally friendly new building material.

[0003] When using existing steel-plastic composite panels, two panels are usually fixed together with screws using connectors. This traditional connection method requires tools to drill holes and tighten the screws, making the installation process time-consuming and labor-intensive. Due to the lack of a quick splicing mechanism, construction workers need to repeatedly adjust the position of the panels, which not only reduces installation efficiency but also makes it easy for the connection to become unstable due to loose screws, failing to meet the needs of modern buildings for rapid construction.

[0004] Therefore, to address the problem that existing steel-plastic composite panels typically use connectors and screws to fix two panels together, lacking a quick splicing mechanism and making installation cumbersome, a PVC double-sided polymer steel-plastic composite panel splicing structure can be designed. Utility Model Content

[0005] To overcome the problem that existing steel-plastic composite panels are usually fixed together with screws using connectors, which lack a quick splicing mechanism and make installation cumbersome.

[0006] The technical solution of this utility model is as follows: a PVC double-sided polymer steel-plastic panel splicing structure, including a steel-plastic panel body; it also includes a first slot, the right end of the steel-plastic panel body has a first slot, the left end of the steel-plastic panel body has a second slot, the front right end of the steel-plastic panel body has multiple equally spaced positioning holes, each positioning hole is provided with a press-type spring buckle, the front side of the steel-plastic panel body has a through groove corresponding to the position of the second slot, the through groove is provided with a connecting mechanism, the rear side of the connecting mechanism is provided with multiple locking blocks, the steel-plastic panel body is provided with a fixing mechanism, and the inner sides of the first slot and the second slot are both fixed with locking strips.

[0007] Preferably, by setting a first slot and a second slot, the splicing of two steel-plastic panels can be achieved through the first slot and the second slot. After splicing, the clips can form an interlocking structure, improving the stability of the splicing. At the same time, the connecting mechanism can press the clips inward into the press-type spring buckle of the positioning hole to achieve quick positioning. This solves the problem that when using existing steel-plastic panels, the two steel-plastic panels are usually fixed with connectors and screws, which does not have a quick splicing mechanism and is relatively cumbersome during installation.

[0008] Preferably, the connecting mechanism includes an installation component and a pull-out component, wherein the installation component is used to install the pull-out component and the pull-out component is used to push and pull the locking block.

[0009] Preferably, the pull-out assembly includes an insert strip disposed inside the through groove, the insert strip being slidably connected to the through groove, and two mounting slots being provided on the front side of the insert strip.

[0010] Preferably, each of the two mounting slots is rotatably connected to a shaft, and each of the two shafts is fixed to a connecting rod on its outer side, with a fixing plate fixed to the end of the connecting rod.

[0011] Preferably, the fixing mechanism includes a sliding component and a positioning component, wherein the sliding component is used to adjust the horizontal position of the positioning component, and the positioning component is used to fix the sliding component.

[0012] Preferably, the sliding assembly includes two slide grooves formed on the steel-plastic plate body, and a slide seat is slidably connected inside each of the two slide grooves, with a screw hole formed on the slide seat.

[0013] Preferably, the positioning assembly includes a positioning bolt connected inside the screw hole, and a washer is provided on the outside of the positioning bolt.

[0014] The beneficial effects of this utility model are:

[0015] By creating two matching slots at both ends of the steel-plastic composite panel, and using locking strips, quick alignment and insertion can be achieved. This not only significantly improves the ease of connecting two steel-plastic composite panels but also greatly enhances construction efficiency, ensuring a more precise and reliable splicing process. Furthermore, assembly can be completed without the need for complex tools, reducing operational difficulty and saving labor costs. In addition, the tight fit between the slots and locking strips enhances the stability of the overall structure, making the spliced ​​steel-plastic composite panel more robust and durable. Suitable for various application scenarios, it fully meets the dual requirements of modern architecture for efficient construction and stable performance. Attached Figure Description

[0016] Figure 1 The diagram shown is a three-dimensional structural schematic of this utility model;

[0017] Figure 2 The diagram shown is a three-dimensional structural schematic of the groove of this utility model;

[0018] Figure 3 The diagram shown is a three-dimensional structural schematic of the insert of this utility model;

[0019] Figure 4 The diagram shown is a half-sectional three-dimensional structural schematic of this utility model;

[0020] Figure 5 The diagram shown is a three-dimensional structural schematic of the card strip of this utility model;

[0021] Figure 6 This utility model is shown. Figure 3 A magnified structural diagram of point A is shown.

[0022] Explanation of reference numerals in the attached drawings: 1. Steel-plastic composite panel body; 2. First slot; 3. Second slot; 4. Positioning hole; 5. Press-type spring buckle; 61. Insert strip; 62. Mounting groove; 63. Rotating shaft; 64. Connecting rod; 65. Fixing plate; 71. Slide groove; 72. Slide seat; 73. Screw hole; 74. Positioning bolt; 75. Washer; 8. Locking strip; 9. Locking block. Detailed Implementation

[0023] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0024] Please see Figures 1-6 This utility model provides an embodiment of a PVC double-sided polymer steel-plastic composite panel splicing structure, including a steel-plastic composite panel body 1; it also includes a first slot 2, the first slot 2 is provided at the right end of the steel-plastic composite panel body 1, the second slot 3 is provided at the left end of the steel-plastic composite panel body 1, and a plurality of equally spaced positioning holes 4 are provided at the front right end of the steel-plastic composite panel body 1. Each positioning hole 4 is provided with a press-type spring buckle 5 inside. A through groove is provided on the front side of the steel-plastic composite panel body 1 corresponding to the position of the second slot 3. A connecting mechanism is provided inside the through groove. A plurality of locking blocks 9 are provided on the rear side of the connecting mechanism. A fixing mechanism is provided on the steel-plastic composite panel body 1. Locking strips 8 are fixed inside the first slot 2 and the second slot 3. The splicing of the two steel-plastic composite panel bodies 1 is achieved by the cooperation of the first slot 2 and the second slot 3. After splicing, the locking strips 8 form an interlocking structure to enhance stability. The connecting mechanism drives the locking blocks 9 to press inward, so that they are embedded in the press-type spring buckles 5 in the positioning holes 4, and complete the quick positioning and fixing.

[0025] Please see Figure 2 , Figure 3 and Figure 6In this embodiment, the connecting mechanism includes an installation component and a pull component. The installation component is used to install the pull component, and the pull component is used to push and pull the locking block 9. The pull component includes an insert 61 disposed inside the through groove. The insert 61 is slidably connected to the through groove. Two installation slots 62 are opened on the front side of the insert 61. A rotating shaft 63 is rotatably connected inside the two installation slots 62. A connecting rod 64 is fixed to the outside of the two rotating shafts 63. A fixing plate 65 is fixed to the end of the connecting rod 64. By setting the rotating shaft 63, when pushing and pulling the insert 61, the fixing plate 65 can be grasped to rotate the connecting rod 64 to a horizontal state. Then, the insert 61 and the locking block 9 are pushed and pulled to realize the connection or separation of the locking block 9 and the press-type spring buckle 5. After the adjustment is completed, the fixing plate 65 is released. Under the action of gravity, the connecting rod 64 will automatically rotate and hang down and be stored inside the installation slot 62.

[0026] Please see Figure 2 and Figure 4 In this embodiment, the fixing mechanism includes a sliding component and a positioning component. The sliding component is used to adjust the horizontal position of the positioning component, and the positioning component is used to fix the sliding component. The sliding component includes two slide grooves 71 opened on the steel-plastic panel body 1. A slide seat 72 is slidably connected inside each of the two slide grooves 71. A screw hole 73 is opened on the slide seat 72. By setting the slide grooves 71, the slide seat 72 can slide inside the slide grooves 71 to adjust the positioning position. The positioning component includes a positioning bolt 74 connected inside the screw hole 73. A washer 75 is provided on the outside of the positioning bolt 74. By setting the positioning bolt 74, the slide seat 72 can be fixed to the wall or external support.

[0027] When two steel-plastic composite panels 1 need to be spliced, the second slot 3 on the left end of one steel-plastic composite panel 1 is aligned and inserted into the first slot 2 on the right end of the other steel-plastic composite panel 1. During the insertion process, the locking strips 8 fixed inside the first slot 2 and the second slot 3 will interlock with each other, forming an interlocking structure, which initially improves the stability of the splicing. Then, the operator holds the fixing plate 65 in the mounting groove 62 on the front side of the insert 61, rotates the connecting rod 64 to make it horizontal, and then pulls the insert 61 outward, causing the multiple locking blocks 9 on the rear side of the insert 61 to move inward synchronously. The locking blocks 9 are pressed into the positioning holes 4 at the corresponding positions on the front side of the adjacent steel-plastic composite panel 1. The two steel-plastic panels are automatically locked by the press-type spring clip 5 in the positioning hole 4, achieving quick positioning and firm connection. After locking, the fixing plate 65 is released, and the connecting rod 64 automatically rotates downward around the pivot 63 under the action of gravity and hangs back into the mounting groove 62. When it is necessary to fix it to the wall or bracket, the sliding seat 72 in the sliding groove 71 on the steel-plastic panel body 1 can be slid to the desired position, and then the positioning bolt 74 is screwed into the screw hole 73 on the sliding seat 72 to fix it to the external support. When disassembling, simply pull up the fixing plate 65 again, rotate the connecting rod 64 to the horizontal and push the insert 61 in the opposite direction to make the locking block 9 disengage from the press-type spring clip 5, and the two panels can be separated.

[0028] Through the above steps, during the splicing of steel-plastic panels, the first slot 2 and the second slot 3 interlock with each other, allowing the two steel-plastic panel bodies 1 to be precisely aligned. At the same time, the locking strips 8 form an interlocking structure to ensure the overall stability after splicing. The connecting mechanism pushes the locking block 9 inward by pressing, so that it is locked into the pressing spring buckle 5 in the positioning hole 4, achieving quick locking and improving installation efficiency. This solves the problem that when using existing steel-plastic panels, the two steel-plastic panels are usually fixed with connectors and screws, which does not have a quick splicing mechanism and is relatively cumbersome to install.

Claims

1. A PVC double-sided polymer steel-plastic composite panel splicing structure, comprising a steel-plastic composite panel body (1); characterized in that: It also includes a first slot (2), a first slot (2) is provided at the right end of the steel-plastic panel body (1), a second slot (3) is provided at the left end of the steel-plastic panel body (1), a number of equally spaced positioning holes (4) are provided at the right end of the front side of the steel-plastic panel body (1), each positioning hole (4) is provided with a press-type spring buckle (5), a through groove is provided on the front side of the steel-plastic panel body (1) corresponding to the position of the second slot (3), a connecting mechanism is provided inside the through groove, a number of locking blocks (9) are provided on the rear side of the connecting mechanism, a fixing mechanism is provided on the steel-plastic panel body (1), and locking strips (8) are fixed on the inner side of the first slot (2) and the second slot (3).

2. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 1, characterized in that: The connection mechanism includes an installation component and a pull-out component. The installation component is used to install the pull-out component, and the pull-out component is used to push and pull the locking block (9).

3. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 2, characterized in that: The pull-out assembly includes an insert (61) disposed inside the through slot, the insert (61) being slidably connected to the through slot, and two mounting slots (62) being provided on the front side of the insert (61).

4. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 3, characterized in that: The interior of each of the two mounting slots (62) is rotatably connected to a rotating shaft (63), and a connecting rod (64) is fixed to the outside of each of the two rotating shafts (63). A fixing plate (65) is fixed to the end of the connecting rod (64).

5. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 1, characterized in that: The fixing mechanism includes a sliding component and a positioning component. The sliding component is used to adjust the horizontal position of the positioning component, and the positioning component is used to fix the sliding component.

6. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 5, characterized in that: The sliding assembly includes two slide grooves (71) formed on the steel-plastic panel body (1), and a slide seat (72) is slidably connected inside each of the two slide grooves (71). The slide seat (72) is provided with a screw hole (73).

7. The PVC double-sided polymer steel-plastic composite panel splicing structure according to claim 6, characterized in that: The positioning assembly includes a positioning bolt (74) connected inside the screw hole (73), and a washer (75) is provided on the outside of the positioning bolt (74).