Splicing type building decoration thin plate
Through the design of the splicing plate and splicing mechanism, and the use of the combination of trapezoidal sliders and splicing claws, the cumbersome problems of traditional splicing methods are solved, and fast and labor-saving splicing of building decorative thin panels is achieved.
Patent Information
- Application Number
- CN202422793918.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-15
- Publication Date
- 2025-09-09
- Estimated Expiration
- 2034-11-15
AI Technical Summary
The traditional splicing method of building decorative thin panels is cumbersome, resulting in a heavy workload for workers and making it difficult to efficiently complete the splicing of multiple thin panels.
The splicing plate and splicing mechanism, including trapezoidal sliders, pins, splicing claws and other components, are used. Through the cooperation of springs and guide slides, the thin plates can be spliced quickly and labor-savingly.
It simplifies the splicing process, improves workers' splicing efficiency, reduces labor intensity, and realizes fast and convenient splicing of thin plates.
Smart Images

Figure CN223317470U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of construction, in particular to a spliced building decorative thin plate. Background Art
[0002] Spliced architectural decorative panels are a modern building decorative material widely used in indoor and outdoor wall, ceiling, floor and other decorative projects. These panels are usually made of polymer materials, metal alloys, or other composite materials, and are characterized by being lightweight, durable, easy to install, and aesthetically pleasing.
[0003] When some traditional building decorative thin panels are spliced together, workers are usually required to align the two building decorative thin panels and then use bolts, welding or other installation and fixing methods to splice the two building decorative thin panels together.
[0004] There are some problems. In reality, the splicing work of building decorative thin panels is often more than two pieces. As the number of building decorative thin panels that need to be spliced increases, the workers' splicing tasks also increase dramatically. However, the above traditional method is relatively cumbersome, which greatly increases the workload of workers in splicing building decorative thin panels. For this reason, we propose a splicing type building decorative thin panel. Utility Model Content
[0005] The technical problem to be solved by the present invention is to overcome the existing defects and provide a splicing type building decorative thin plate. Workers can quickly splice the building decorative thin plates with the cooperation of the splicing mechanism. The operation is simple and labor-saving, which greatly increases the work efficiency of splicing the building decorative thin plates and can effectively solve the problems in the background technology.
[0006] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a spliced architectural decorative sheet, comprising a splicing plate and a splicing mechanism;
[0007] Splicing plate: a decorative groove is provided on the front side thereof, splicing grooves are provided on the front and rear sides of the left end of the splicing plate, a splicing installation groove is provided on the lower right end of the splicing plate, and a splicing slide groove is provided on the lower right end of the splicing plate;
[0008] Splicing mechanism: It includes a trapezoidal slider, a pin and a splicing claw. The splicing claws are rotatably connected to the front and rear sides between the upper and lower inner walls of the splicing installation groove through the pin. The inner sides of the splicing claws are provided with oblique grooves. The trapezoidal slider is slidably connected to the inside of the splicing slide groove. The lower end of the trapezoidal slider is installed in conjunction with the two splicing claws, and the splicing claws are installed in conjunction with the splicing groove. With the cooperation of the splicing mechanism, workers can quickly splice the building decorative thin panels. The operation is simple and labor-saving, which greatly increases the work efficiency of splicing building decorative thin panels.
[0009] Furthermore, the splicing mechanism also includes a spring three and a guide slide column. A spring three is provided between the upper end of the trapezoidal slider and the top wall of the splicing slide groove. The upper end of the trapezoidal slider is provided with a guide slide column. The guide slide column is located inside the spring three. The top wall of the splicing slide groove is provided with an avoidance hole corresponding to the guide slide column. Before the splicing-type architectural decorative thin plate is spliced, the spring is opened to overcome the gravity of the trapezoidal slider itself to ensure the initial state of the splicing mechanism.
[0010] Furthermore, the splicing mechanism also includes a docking block, a docking block is provided on the right side of the trapezoidal slider, and a docking groove is opened on the lower side of the left end of the splicing plate. The docking groove and the docking block are installed in coordination to facilitate coordination when splicing two spliced building decorative thin panels.
[0011] Furthermore, the splicing mechanism also includes a second spring, a rotating groove, a connecting block and a rotating hole. The left end of the splicing claw is provided with a rotating hole, and the upper and lower inner walls of the rotating hole are provided with a rotating groove. A connecting block is installed between two vertically adjacent rotating grooves, and a second spring is fixedly connected between the two connecting blocks. The elastic potential energy of the spring is used to ensure the initial state of the splicing mechanism.
[0012] Furthermore, a sliding groove is provided at the right end of the splicing plate, and a locking column is slidably connected inside the sliding groove. A locking hole is provided at the left end of the splicing plate, and the outer arc surface of the locking column is slidably connected to the inner wall of the locking hole, which facilitates the final locking of the spliced building decorative thin panels after splicing.
[0013] Furthermore, a spring is fixedly connected between the slide groove and the locking column to facilitate quick locking.
[0014] Furthermore, a connecting column is provided on the rear side of the outer arc surface of the locking column, and the rear end of the connecting column passes through the locking avoidance opening opened on the rear side of the splicing plate. The rear end of the connecting column is rotatably connected to the limiting ring. The rear side surface of the splicing plate is provided with a limiting column, and the limiting column and the limiting ring are installed in cooperation to prepare for the locking work after the splicing of the spliced building decorative thin panels.
[0015] Compared with the prior art, the beneficial effects of the present invention are: the spliced building decorative thin plate has the following advantages:
[0016] When workers are splicing building decorative thin panels, they are spliced with another building decorative thin panel through the cooperation between the trapezoidal slide and the splicing claws in the splicing mechanism. Before the building decorative thin panels are spliced, spring three, the connecting block and spring two ensure the initial state of the splicing mechanism before splicing, which is convenient for workers to splice the building decorative thin panels. With the cooperation of the splicing mechanism, workers can quickly splice the building decorative thin panels. The operation is simple and labor-saving, which greatly increases the work efficiency of splicing building decorative thin panels. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is a schematic diagram of the structure of the utility model;
[0018] Figure 2 It is a schematic structural diagram of a partial cross-section of the rear side of the utility model;
[0019] Figure 3 This is an enlarged structural diagram of point A of the present utility model;
[0020] Figure 4 It is a schematic structural diagram of a partial cross-section of the front side of the utility model;
[0021] Figure 5 It is a schematic diagram of the structure of the utility model enlarged at B;
[0022] Figure 6 It is a schematic diagram of the overall structure of the splicing mechanism of the utility model;
[0023] Figure 7 It is a schematic diagram of the structure of a part of the splicing mechanism of the utility model;
[0024] Figure 8 It is a schematic structural diagram of the front side cross-section of the splicing claw of the present invention.
[0025] In the figure: 1 splicing plate, 2 splicing mechanism, 201 trapezoidal slider, 202 docking block, 203 pin, 204 splicing claw, 205 spring 2, 206 spring 3, 207 rotating groove, 208 connecting block, 209 guide slide, 210 rotating hole, 3 decorative groove, 4 splicing groove, 5 locking column, 6 locking hole, 7 docking groove, 8 slide, 9 spring 1, 10 connecting column, 11 limiting ring, 12 limiting column, 13 splicing slide. DETAILED DESCRIPTION
[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0027] See also Figure 1-8 This embodiment provides a technical solution: a spliced building decorative sheet,
[0028] It includes a splicing plate 1 and a splicing mechanism 2;
[0029] Splicing plate 1: a decorative groove 3 is provided on the front side, a splicing groove 4 is provided on the front and rear sides of the left end of the splicing plate 1, a splicing installation groove is provided on the lower right end of the splicing plate 1, a splicing slide 13 is provided on the lower right end of the splicing plate 1, a slide 8 is provided on the right end of the splicing plate 1, a locking column 5 is connected to the internal sliding connection of the slide 8, a locking hole 6 is provided on the left end of the splicing plate 1, the outer arc surface of the locking column 5 is slidably connected to the inner wall of the locking hole 6, a spring 9 is fixedly connected between the slide 8 and the locking column 5, and the lock A connecting post 10 is provided on the rear side of the outer arc surface of the stop post 5. The rear end of the connecting post 10 passes through the locking avoidance opening opened on the rear side of the splicing plate 1. The rear end of the connecting post 10 is rotatably connected to the limiting ring 11. A limiting post 12 is provided on the rear side of the splicing plate 1. The left end of the limiting post 12 is opened by the worker to open a limiting card slot. The limiting post 12 is installed in conjunction with the limiting ring 11. The worker installs the decoration in the decorative groove 3 on the splicing plate 1. Then the worker pulls the connecting post 10 and the locking post 5 to the left through the limiting ring 11. At this time, the locking column 5 slides inside the slide groove 8, and at the same time gradually squeezes the spring 19, which is under pressure. When the right end of the locking column 5 is flush with the rightmost edge of the slide groove 8, the worker rotates the limiting ring 11 clockwise so that the leftmost end of the limiting ring 11 is located inside the limiting slot on the left side of the limiting column 12. At this time, the locking column 5 is ready to lock through the cooperation of the limiting column 12, the limiting ring 11 and the spring 19. When the two building decorative thin plates are spliced, the worker rotates the limiting ring 11 and it disengages from the limiting column 12 The worker loosens the limiting ring 11. When the limiting ring 11 is separated from the limiting post 12, the spring 19 loses its pressure. Under the elastic potential energy of the spring 19, the locking post 5 and the connecting post 10 are pushed to the right. At this time, the locking post 5 enters the locking hole 6 at the left end of the second spliced building decorative sheet (the central axis of the locking hole 6 coincides with that of the locking post 5, and the diameter of the locking post 5 is not greater than that of the locking hole 6). At this time, the locking of the two spliced building decorative sheets is completed.
[0030] Splicing mechanism 2: It includes a trapezoidal slider 201, a pin 203 and a splicing claw 204. The splicing claw 204 is rotatably connected to the front and rear sides between the upper and lower inner walls of the splicing installation groove through the pin 203. The inner sides of the splicing claws 204 are provided with oblique grooves. The trapezoidal slider 201 is slidably connected to the inside of the splicing slide 13. The lower end of the trapezoidal slider 201 is installed in conjunction with the two splicing claws 204. The splicing claws 204 are installed in conjunction with the splicing groove 4. The splicing mechanism 2 also includes a spring three 206 and a guide slide 209. A spring three 206 is provided between the upper end of the trapezoidal slider 201 and the top wall of the splicing slide 13. A guide slide 209 is provided at the upper end of the trapezoidal slider 201. The guide slide 209 is located inside the spring three 206. The top wall of the splicing slide 13 An avoidance hole corresponding to the guide slide 209 is opened, the splicing mechanism 2 also includes a docking block 202, a docking block 202 is provided on the right side of the trapezoidal slider 201, a docking groove 7 is opened on the lower side of the left end of the splicing plate 1, and the docking groove 7 is installed in conjunction with the docking block 202. The splicing mechanism 2 also includes a second spring 205, a rotating groove 207, a connecting block 208 and a rotating hole 210. The left end of the splicing claw 204 is provided with a rotating hole 210, and the upper and lower inner walls of the rotating hole 210 are provided with a rotating groove 207. A connecting block 208 is installed between two vertically adjacent rotating grooves 207. A second spring 205 is fixedly connected between the two connecting blocks 208. The worker takes the left end of the second spliced building decorative sheet and fits it with the right end of the first span spliced building decorative sheet. The worker slides the second spliced building decoration sheet downward. When the docking groove 7 on the lower side of the left end of the second spliced building decoration sheet contacts the docking block 202 on the right end of the first span spliced building decoration (at this time, the docking block 202 on the right end of the first span spliced building decoration is located inside the docking groove 7 on the lower side of the left end of the second spliced building decoration sheet), the second spliced building decoration sheet continues to move downward. At this time, the docking groove 7 squeezes the docking block 202 downward, and the docking block 202 drives the whole composed of the trapezoidal slider 201 and the guide slide 209 to move downward. At this time, the moving trapezoidal slider 201 pulls the lower end of the spring three 206 downward (in the process of the moving trapezoidal slider 201 pulling the spring three 206 downward, the pulling spring three 206 always changes along the guide slide 209, The two splicing claws 204 are rotated with the adjacent pins 203. At this time, the rear ends of the two splicing claws 204 rotate outward synchronously, and at the same time, the two connecting blocks 208 are driven to rotate.At this time, the two connecting blocks 208 pull the second spring 205 outward, and the second spring 205 is subjected to tension. Under the elastic potential energy of the second spring 205, the two connecting blocks 208 slide and rotate between the adjacent upper and lower rotating grooves 207. Then, the front ends of the two splicing claws 204 rotate inward until the front ends of the two splicing claws 204 are inserted into the splicing grooves 4 on the front and rear sides of the lower left end of the second splicing type building decorative sheet. At this time, the splicing of the splicing type building decorative sheet is completed. At this point, the splicing of the splicing type building decorative sheet is quickly and conveniently completed by the splicing mechanism.
[0031] When the left end of the second splicing type building decorative sheet is aligned with the right end edge of the sliding groove 8, the worker rotates the limiting ring 11 clockwise so that the left end of the limiting ring 11 is located in the left limiting slot of the limiting post 12. At this time, the locking post 5 is ready to lock through the cooperation of the limiting post 12, the limiting ring 11 and the spring 9. Then the worker takes the left end of the second splicing type building decorative sheet and fits it with the right end of the first span splicing type building decorative sheet, and slides the second splicing type building decorative sheet downward. When the docking groove 7 on the lower side of the left end of the second splicing type building decorative sheet contacts the first span splicing type building decorative sheet When the docking block 202 at the right end of the decoration is moved (at this time, the docking block 202 at the right end of the first span spliced architectural decoration is located in the docking groove 7 on the lower side of the left end of the second spliced architectural decoration sheet), the second spliced architectural decoration sheet continues to move downward. At this time, the docking groove 7 squeezes the docking block 202 downward, and the docking block 202 drives the trapezoidal slider 201 and the guide slide 209 to move downward. At this time, the moving trapezoidal slider 201 pulls the lower end of the spring three 206 downward (in the process of the moving trapezoidal slider 201 pulling the spring three 206 downward, the pulling spring three 206 always changes along the guide slide 209 to keep the number of vertical directions from deviating). The trapezoidal slider 201 moves downward until it contacts the two The inclined grooves at the rear ends of the splicing claws 204 (the two splicing claws 204 are acted upon by the springs 205 between the connecting blocks 208 inside the rear ends thereof to ensure that before the two building decorative thin panels are spliced, the distance between the rightmost ends of the two splicing claws 204 is greater than the distance between the leftmost ends of the two splicing claws 204). At this time, as the trapezoidal slider 201 continues to move downward, the lower end of the trapezoidal slider 201 cooperates with the inclined grooves at the rear ends of the two splicing claws 204 to gradually squeeze the two splicing claws 204 to both sides. At this time, the splicing claws 204 rotate with the adjacent pin shafts 203. At this time, the rear ends of the two splicing claws 204 rotate outward synchronously, and at the same time drive the two connecting blocks 208 to rotate. At this time, the two connecting The connecting block 208 pulls the spring 205 outward, and the spring 205 is subjected to tension. Under the elastic potential energy of the spring 205, the two connecting blocks 208 slide and rotate between the adjacent upper and lower rotating grooves 207, and then the front ends of the two splicing claws 204 rotate inward until the front ends of the two splicing claws 204 are inserted into the splicing grooves 4 on the front and rear sides of the left lower end of the second splicing type building decorative sheet. At this time, the splicing work of the splicing type building decorative sheet is completed. Then when the worker rotates the limit ring 11, it breaks away from the limit position of the limit column 12. The worker loosens the limit ring 11. At the same time, the limit ring 11 breaks away from the limit position of the limit column 12, and the spring 1 9 loses pressure. Under the elastic potential energy of the spring 1 9,Push the locking post 5 and connecting post 10 to the right, and the locking post 5 enters the locking hole 6 on the left end of the second spliced building decorative sheet (the central axis of the locking hole 6 and the locking post 5 coincide, and the diameter of the locking post 5 is no larger than the diameter of the locking hole 6). This completes the locking of the two spliced building decorative sheets. At this point, the spliced building decorative sheets are quickly and conveniently spliced together through the splicing mechanism.
[0032] The above description is merely an embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structure or equivalent process transformation made by using the contents of the description and drawings of the present invention, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present invention.
Claims
1. A spliced architectural decorative sheet, characterized by: It includes a splicing plate (1) and a splicing mechanism (2); The splicing plate (1) is provided with a decorative groove (3) on its front side, the front and rear sides of the left end of the splicing plate (1) are provided with a splicing groove (4), the lower right end of the splicing plate (1) is provided with a splicing installation groove, and the lower right end of the splicing plate (1) is provided with a splicing slide groove (13); A splicing mechanism (2): comprising a trapezoidal slider (201), a pin (203) and a splicing claw (204), wherein the splicing claw (204) is rotatably connected to the front and rear sides between the upper and lower inner walls of the splicing installation groove through the pin (203), and an oblique groove is provided on the inner side of each of the splicing claws (204). The trapezoidal slider (201) is slidably connected to the inside of the splicing chute (13), and the lower end of the trapezoidal slider (201) is mounted in cooperation with the two splicing claws (204), and the splicing claw (204) is mounted in cooperation with the splicing groove (4).
2. The spliced architectural decorative sheet according to claim 1, characterized in that: The splicing mechanism (2) further includes a spring three (206) and a guide slide (209), wherein a spring three (206) is provided between the upper end of the trapezoidal slider (201) and the top wall of the splicing chute (13), and a guide slide (209) is provided at the upper end of the trapezoidal slider (201), wherein the guide slide (209) is located inside the spring three (206), and a avoidance hole corresponding to the guide slide (209) is provided on the top wall of the splicing chute (13).
3. The spliced architectural decorative sheet according to claim 2, characterized in that: The splicing mechanism (2) further comprises a docking block (202), the right side of the trapezoidal slider (201) is provided with the docking block (202), the lower left side of the splicing plate (1) is provided with a docking groove (7), and the docking groove (7) is mounted in cooperation with the docking block (202).
4. The spliced architectural decorative sheet according to claim 1, characterized in that: The splicing mechanism (2) further comprises a second spring (205), a rotation groove (207), a connecting block (208) and a rotation hole (210). The left end of each splicing claw (204) is provided with a rotation hole (210). The upper and lower inner walls of the rotation hole (210) are provided with a rotation groove (207). A connecting block (208) is fitted between two vertically adjacent rotation grooves (207). The second spring (205) is fixedly connected between the two connecting blocks (208).
5. The spliced architectural decorative sheet according to claim 1, characterized in that: A sliding groove (8) is provided at the right end of the splicing plate (1), and a locking column (5) is slidably connected inside the sliding groove (8). A locking hole (6) is provided at the left end of the splicing plate (1), and the outer arc surface of the locking column (5) is slidably connected to the inner wall of the locking hole (6).
6. The spliced architectural decorative sheet according to claim 5, characterized in that: A spring 1 (9) is fixedly connected between the slide groove (8) and the locking column (5).
7. The spliced architectural decorative sheet according to claim 5, characterized in that: A connecting column (10) is provided on the rear side of the outer arc surface of the locking column (5), and the rear end of the connecting column (10) passes through the locking avoidance opening opened on the rear side of the splicing plate (1). The rear end of the connecting column (10) is rotatably connected to the limiting ring (11), and a limiting column (12) is provided on the rear side surface of the splicing plate (1), and the limiting column (12) is installed in cooperation with the limiting ring (11).