Decorative panel system
By integrating keels in the decorative panel system and using elastic positioning and connecting components, the problem of inefficient installation of traditional decorative panels is solved, achieving a more efficient and convenient installation process.
Patent Information
- Application Number
- CN202010898821.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2020-08-31
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2040-08-31
AI Technical Summary
The installation efficiency of traditional decorative panels is low, especially when the size of the decorative panel is greater than 500×600, the construction is time-consuming and labor-intensive and the installation efficiency is low.
A decorative panel system is designed, which includes a panel body, an elastic positioning assembly and a connecting assembly. The first keel and the second keel are integrated on the panel body, and the positioning and fixing connection between adjacent panel bodies is achieved through the elastic positioning assembly and the connecting assembly, reducing the need for additional keel installation.
By integrating keels and using elastic positioning and connecting components, the installation process of decorative panels is simplified, installation efficiency is improved, construction costs are reduced, and assembly is simpler and more convenient.
Smart Images

Figure CN111894226B_ABST
Abstract
Description
Technical Field
[0001] The embodiments of the present application relate to the field of building technology, and specifically to a decorative panel system. Background Art
[0002] Decorative panels are widely used in the field of interior decoration due to their easy installation and low cost. Generally, the traditional installation process of decorative panels is to first install the support on the main body of the building, then install the primary and secondary keels, then install the connecting hangers, and finally install the decorative panels, align and lock each fixing point of the connecting hangers and the decorative panels. The above-mentioned installation method of decorative panels is not easy to carry out when the size of the decorative panels is greater than 500×600, which is time-consuming and labor-intensive, and the installation efficiency is low. Summary of the invention
[0003] The embodiment of the present application provides a decorative panel system, which is used to solve the problem of low installation efficiency when the decorative panel is installed on the main body of a building.
[0004] In order to solve the above technical problems, the embodiments of the present application provide the following technical solutions:
[0005] A decorative panel system includes a wall, and also includes: multiple panel bodies, elastic positioning components and connecting components, the panel body includes a first keel and a second keel, the first keel of the panel body is connected to the first keel of the adjacent panel body of the panel body through the elastic positioning component to achieve positioning and installation between adjacent panel bodies, the second keel of the panel body is connected to the second keel of the adjacent panel body of the panel body through the connecting component to achieve fixed connection between adjacent panel bodies, the first keel and the second keel are both connected to the wall to achieve installation of the panel body on the wall.
[0006] As a preferred technical solution of the embodiment of the present application, the elastic positioning assembly includes a first insert and an elastic positioner, the elastic positioner is arranged at one end of the first keel, and the first insert includes a first limiter;
[0007] A first groove is provided in the first keel. When the panel body and the adjacent panel body are positioned and connected, one end of the first core is clamped in one end of the first groove of the panel body, and the other end of the first core is inserted in the other end of the first groove of the adjacent panel body, and the outer side surface of the first core abuts against the elastic locator, and the first limit piece abuts against the notch at one end of the first groove of the panel body.
[0008] As a preferred technical solution of an embodiment of the present application, the first core also includes a first positioning plate, a first middle plate and a second positioning plate, the first middle plate is located between the first positioning plate and the second positioning plate, one end of the first middle plate is connected to the first positioning plate, the other end of the first middle plate is connected to the second positioning plate, and the first positioning plate is parallel to the second positioning plate.
[0009] As a preferred technical solution of an embodiment of the present application, the first core also includes: a first folding plate extending at an angle from one end of the first positioning plate away from the first middle plate and a second folding plate extending at an angle from one end of the second positioning plate away from the first middle plate, the shortest distance between one end of the first folding plate close to the first positioning plate and one end of the second folding plate close to the second positioning plate is greater than the shortest distance between the other end of the first folding plate and the top of the second folding plate.
[0010] As a preferred technical solution of an embodiment of the present application, the first insert includes at least one first stopper, and at least one first stopper is arranged on the first positioning plate and / or the second positioning plate.
[0011] As a preferred technical solution of an embodiment of the present application, the elastic locator includes: a locator body and an elastic frustum, the locator body is connected to one end of the first keel, the elastic frustum includes a first bottom surface and a second bottom surface, the area of the first bottom surface is larger than the area of the second bottom surface, the first bottom surface is connected to the locator body, and when one end of the first core is clamped in one end of the first groove of the panel body, the second bottom surface abuts against the first core.
[0012] As a preferred technical solution of the embodiment of the present application, at least two elastic positioners are provided.
[0013] As a preferred technical solution of the embodiment of the present application, the connection assembly includes a second ferrule and a connector, the second ferrule includes a second stopper, and the connector includes a first connector and a second connector;
[0014] A second groove is provided in the second keel;
[0015] When the panel body and the adjacent panel body are fixedly connected, one end of the second core is clamped in one end of the second groove of the panel body, the other end of the second core is inserted in the other end of the second groove of the second keel of the adjacent panel body, the second limiter abuts against the notch at one end of the second groove of the panel body, the first connecting member passes through the second keel of the panel body and abuts against the second core, and the second connecting member passes through the second keel of the adjacent panel body and abuts against the second core.
[0016] As a preferred technical solution of an embodiment of the present application, the second core includes a third positioning plate, a second middle plate and a fourth positioning plate, the second middle plate is located between the third positioning plate and the fourth positioning plate, one end of the second middle plate is connected to the third positioning plate, the other end of the second middle plate is connected to the fourth positioning plate, the third positioning plate is parallel to the fourth positioning plate, and the second limit member is arranged on the second middle plate.
[0017] As a preferred technical solution of an embodiment of the present application, the first keel and the second keel of the same panel body are connected by a cross beam.
[0018] The beneficial effects achieved by the embodiments of the present application are: by integrating the first keel and the second keel on the panel body, there is no need to perform additional installation of the main and secondary keels at the construction site, and the transportation is convenient and the assembly is simple; when the first keel and the second keel of one of the two adjacent panel bodies are connected to the wall, the adjacent panel bodies are first positioned by an elastic positioning component and then fixedly connected by a connecting component to achieve a fixed connection between the adjacent panel bodies, thereby ensuring that the adjacent panel bodies are located in the same plane, and the assembly is convenient and quick, and the installation efficiency is high. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The accompanying drawings are used to provide a further understanding of the present application and constitute a part of the specification. Together with the embodiments of the present application, they are used to explain the present application and do not constitute a limitation of the present application. In the accompanying drawings:
[0020] Figure 1 is a schematic diagram of the overall structure of the decorative panel system of Example 1 of the present application;
[0021] Figure 2 is an exploded schematic diagram of the structure of the decorative panel system in the first embodiment of the present application;
[0022] Figure 3 It is a structural schematic diagram of the first plug core in the decorative panel system of the first embodiment of the present application;
[0023] Figure 4 is a schematic structural diagram of an elastic positioner in a decorative panel system of Embodiment 1 of the present application;
[0024] Figure 5 It is a schematic diagram of the structure of the second plug core in the decorative panel system of the first embodiment of the present application;
[0025] Figure 6 is a schematic structural diagram of a second plug core at a first angle in a decorative panel system of Embodiment 2 of the present application;
[0026] Figure 7 is a schematic structural diagram of a second angle of a second plug core in a decorative panel system of Embodiment 2 of the present application;
[0027] Figure 8 It is a schematic structural diagram of a second position-limiting member and an ejector pin in a decorative panel system of a second embodiment of the present application;
[0028] Fig. 9 It is a structural schematic diagram of the second insert and the second keel in the decorative panel system of the second embodiment of the present application when used in combination;
[0029] Fig.10 It is a structural schematic diagram of a second position-limiting member in a decorative panel system of the second embodiment of the present application, which is received in a second plug core;
[0030] Fig.11 This is a schematic diagram of the overall structure of the second plug-in core and the second keel being out of contact in the decorative panel system of another embodiment 2 of the present application;
[0031] Fig.12 It is a schematic diagram of the structure explosion of the second limiter and the elastic buckle in the decorative panel system of another embodiment 2 of the present application;
[0032] Fig.13 It is a structural schematic diagram of the second limiting member and the elastic buckle in the decorative panel system of another embodiment 2 of the present application when they cooperate with each other;
[0033] Fig.14 This is a schematic structural diagram of the assembly of the second insert and the second keel in the decorative panel system of the first embodiment of the present application;
[0034] Fig.15 yes Fig.12 An enlarged schematic diagram of the third slot in FIG.
[0035] Fig.16 is a structural schematic diagram of a first locking assembly in a decorative panel system of Embodiment 3 of the present application;
[0036] Fig.17 is a structural schematic diagram of a decorative panel system in Embodiment 4 of the present application in which a sixth plate is accommodated in a panel body;
[0037] Fig.18 It is a structural schematic diagram of the first cleaning component in the decorative panel system of Example 4 of the present application. DETAILED DESCRIPTION
[0038] The preferred embodiments of the present application are described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present application and are not used to limit the present application. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0039] The technical solutions between the various embodiments can be combined with each other, but they must be based on the fact that they can be implemented by ordinary technicians in the field. When the combination of technical solutions is contradictory or cannot be implemented, it should be deemed that such combination of technical solutions does not exist and is not within the scope of protection required by the present invention.
[0040] Embodiment 1
[0041] See also Figure 1 and Figure 2 An embodiment of the present application provides a decorative panel system, including multiple panel bodies 1, an elastic positioning component 2 and a connecting component 3, the panel body 1 including a first keel 10 and a second keel 11, the first keel 10 of the panel body 1 is connected to the first keel 10 of the adjacent panel body of the panel body 1 through the elastic positioning component 2 to achieve positioning and installation between adjacent panel bodies 1, the second keel 11 of the panel body 1 is connected to the second keel 11 of the adjacent panel body of the panel body 1 through the connecting component 3 to achieve fixed connection between adjacent panel bodies 1, the first keel 10 and the second keel 11 are both connected to the wall to achieve installation of the panel body 1 on the wall.
[0042] Exemplarily, when the panel body 1 and the adjacent panel body are installed on the wall, the panel body 1 is located above the adjacent panel body. When multiple decorative panels are installed on the wall of a building, the ground is used as a reference, and the basic panel body 1 is first installed on the side close to the ground. These panel bodies 1 are fixedly installed on the wall of the building as basic panel bodies, and then other panel bodies 1 are installed in turn above the basic panel body by hanging up and plugging down.
[0043] Specifically, the panel body 1 is a decorative panel. The panel body 1 is in the shape of a rectangular parallelepiped.
[0044] For example, see Figure 1 and Figure 2The decorative panel system further includes a first support 4 and a second support 5, both of which are arranged in an "L" shape. The first keel 10 is connected to the first support 4 through a first mounting member 6, the second keel 11 is connected to the first support 4 through a first mounting member 6, and the second support 5 is connected to the wall through a second mounting member 7. The first support 4 and the second support 5 are connected through a third mounting member (not shown in the figure).
[0045] Further, the first mounting member 6 is a first bolt. The second mounting member 7 is a second bolt. The third mounting member is a third bolt. In other embodiments, the connection between the first support 4 and the second support 5 may also be welding.
[0046] In an exemplary embodiment, the elastic positioning assembly 2 includes a first core 20 and an elastic locator 21, the elastic locator 21 is arranged at one end of the first keel 10, and the first core 20 includes a first limiter 22; a first groove is provided in the first keel 10, and when the panel body 1 and the adjacent panel body are positioned and connected, one end of the first core 20 is clamped in one end of the first groove of the panel body 1, and the other end of the first core 20 is inserted into the other end of the first groove of the adjacent panel body, and the outer side surface of the first core 20 abuts against the elastic locator 21, and the first limiter 22 abuts against the notch at one end of the first groove of the panel body 1.
[0047] In an exemplary embodiment, the first keel 10 is hollow, that is, the first slot is a through slot.
[0048] In an exemplary embodiment, see Figure 2 and Figure 3 The first core 20 also includes a first positioning plate 200, a first middle plate 201 and a second positioning plate 202, the first middle plate 201 is located between the first positioning plate 200 and the second positioning plate 202, one end of the first middle plate 201 is connected to the first positioning plate 200, the other end of the first middle plate 201 is connected to the second positioning plate 202, and the first positioning plate 200 is parallel to the second positioning plate 202.
[0049] Specifically, the first insert 20 is arranged in a "U" shape. When the panel body 1 and the adjacent panel body are positioned and connected, the first intermediate plate 201 is located in the other end of the first slot of the adjacent panel body, one end of the first insert 20 is clamped in one end of the first slot of the panel body 1, and the other end of the first insert 20 is inserted in the other end of the first slot of the adjacent panel body. The first positioning plate 200 and the second positioning plate 202 abut against the first slot of the panel body 1 and the first slot of the adjacent panel body. One end of the first insert 20 is interference fit with one end of the first keel 10 of the panel body 1.
[0050] In an exemplary embodiment, in combination with Figure 2 , Figure 3 and Figure 4 The elastic locator 21 includes: a locator body 210 and an elastic cone 211. The locator body 210 is connected to one end of the first keel 10. The elastic cone 211 includes a first bottom surface and a second bottom surface. The area of the first bottom surface is greater than the area of the second bottom surface. The first bottom surface is connected to the locator body 210. When one end of the first core 20 is clamped in one end of the first groove of the panel body 1, the second bottom surface abuts against the first core 20.
[0051] In an exemplary embodiment, at least two elastic positioners 21 are provided.
[0052] In an exemplary embodiment, two elastic locators 21 are provided, wherein one elastic locator 21 is provided at a first position at one end of the first keel 10, and the other elastic locator 21 is provided at a second position at one end of the first keel 10, wherein the first position and the second position are relative positions.
[0053] Specifically, when the panel body 1 and the adjacent panel body are positioned and connected, when one end of the first core 20 is clamped in one end of the first groove of the panel body 1, the first positioning plate 200 and the second positioning plate 202 both squeeze the elastic cone 211 of the elastic locator 21. When the first limiting member 22 is placed on the notch at one end of the first groove of the panel body 1, the elastic cone 211 releases elastic potential energy, and the elastic cone 211 clamps the first positioning plate 200 and the second positioning plate 202 to clamp one end of the first core 20.
[0054] Two elastic positioners 21 are provided, so that the force on the panel body 1 and the adjacent panel body is more balanced when they are elastically positioned and connected, thereby improving the stability of the elastic positioning connection.
[0055] In an exemplary embodiment, the elastic retainer 21 is a resin elastic retainer.
[0056] In an exemplary embodiment, see Figure 2 and Figure 3 The first insert 20 also includes: a first folding plate 203 extending at an angle from one end of the first positioning plate 200 away from the first middle plate 201, and a second folding plate 204 extending at an angle from one end of the second positioning plate 202 away from the first middle plate 201, the shortest distance between one end of the first folding plate 203 close to the first positioning plate 200 and one end of the second folding plate 204 close to the second positioning plate 202 is greater than the shortest distance between the other end of the first folding plate 203 and the top of the second folding plate 204.
[0057] Specifically, when the panel body 1 and the adjacent panel body are positioned and connected, during the process in which one end of the first plug core 20 is snapped into one end of the first slot of the panel body 1, the first folding plate 203 and the second folding plate 204 are used to guide the first plug core 20 so that the first plug core 20 can be snapped into the first slot of the panel body 1 more easily. When the first plug core 20 approaches one end of the first slot of the panel body 1 and snaps into place, if the first plug core 20 is not aligned with the notch of the first slot of the panel body 1, the first folding plate 203 or the second folding plate 204 will first contact the elastic truncated cone 211 and squeeze the elastic truncated cone 211, and the elastic truncated cone 211 releases elastic potential energy to push the first plug core 20 to move so that the first plug core 20 can find the notch position of the first slot. The installation convenience of the elastic positioning of the panel body 1 and the adjacent panel body is improved.
[0058] In an exemplary embodiment, the first ferrule 20 includes at least one first stopper 22 , and the at least one first stopper 22 is disposed on the first positioning plate 200 and / or the second positioning plate 202 .
[0059] Specifically, when the first core 20 is engaged with the panel body 1, the first limiting member 22 limits the first core 20 to prevent the first core 20 from slipping out of the first keel 10 of the panel body 1, that is, to prevent the first core 20 from losing contact with one end of the first keel 10 of the panel body 1.
[0060] In an exemplary embodiment, see Figure 2 and Figure 5The connecting component 3 includes a second core 30 and a connecting member 31, the second core 30 includes a second limiting member 32, and the connecting member 31 includes a first connecting member 310 and a second connecting member 311; a second groove is provided in the second keel 11; when the panel body 1 and the adjacent panel body are fixedly connected, one end of the second core 30 is clamped in one end of the second groove of the panel body 1, and the other end of the second core 30 is inserted into the other end of the second groove of the second keel 11 of the adjacent panel body, and the second limiting member 32 abuts against the notch at one end of the second groove of the panel body 1, the first connecting member 310 passes through the second keel 11 of the panel body 1 and abuts against the second core 30, and the second connecting member 311 passes through the second keel 11 of the adjacent panel body and abuts against the second core 30.
[0061] In an exemplary embodiment, the second keel 11 is hollow, that is, the second groove is a through groove.
[0062] In an exemplary embodiment, the second core 30 includes a third positioning plate 300, a second middle plate 301 and a fourth positioning plate 302, the second middle plate 301 is located between the third positioning plate 300 and the fourth positioning plate 302, one end of the second middle plate 301 is connected to the third positioning plate 300, the other end of the second middle plate 301 is connected to the fourth positioning plate 302, the third positioning plate 300 is parallel to the fourth positioning plate 302, and the second limit member 32 is arranged on the second middle plate 301.
[0063] In an exemplary embodiment, the second insert 30 is arranged in a "U" shape. When the panel body 1 and the adjacent panel body are fixedly connected, the third positioning plate 300, the fourth positioning plate 302 and the second middle plate 301 are all in contact with the groove wall of the second groove of the panel body 1 and the groove wall of the second groove of the adjacent panel body, the first connecting member 310 passes through the second keel 11 of the panel body 1 and abuts on the second middle plate 301, the second connecting member 311 passes through the second keel 11 of the adjacent panel body and abuts on the second middle plate 301, and the end of the third positioning plate 300 away from the second middle plate 301 and the end of the fourth positioning plate 302 away from the second middle plate 301 are both pressed against the groove wall of the second groove of the panel body 1 and the groove wall of the second groove of the adjacent panel body.
[0064] Furthermore, the first connecting member 310 is threadedly connected to the second keel 11 of the panel body 1, and the second connecting member 311 is threadedly connected to the second keel 11 of the adjacent panel body. The first connecting member 310 is a first locking screw. The second connecting member 311 is a second locking screw.
[0065] In an exemplary embodiment, see Figure 1The first keel 10 and the second keel 11 of the same panel body 1 are connected by a crossbeam 12.
[0066] The provision of the crossbeam 12 improves the connection strength between the first keel 10 and the second keel 11 on the same panel body 1 .
[0067] In an exemplary embodiment, the first keel 10 and the second keel 11 may be made of flat steel, U-shaped channel steel or angle steel, and the cross beam 12 may be made of U-shaped channel steel or angle steel.
[0068] Assembly principle: The first keel 10, the second keel 11 and the crossbeam 12 are all processed and assembled on the panel body 1 in the factory to form a unit board. At the installation site, the unit board can be assembled by placing it on the second support 5 pre-installed on the wall through the first support 4 according to the drawing number and assembling it by the method of upper hanging and lower plugging.
[0069] Recombination Figure 1 , the adjacent panel body is panel body B, and the remaining panel bodies 1 are panel bodies A, C, and D. When panel bodies A, C, and D are all fixedly installed on the wall, panel body B first needs to insert the other end of the first plug core 20 into the other end of the first keel 10 of the adjacent panel body, and then insert one end of the first plug core 20 into one end of the first keel 10 of the panel body 1, and the first positioning plate 200 and the second positioning plate 202 of the first plug core 20 are both in contact with the elastic positioner 21 at one end of the first keel 10 of the panel body 1, and are automatically positioned by the elasticity of the elastic positioner 21. At this time, the first limiter 22 is placed at the notch of the first groove of the panel body 1.
[0070] Insert the other end of the second ferrule 30 into the other end of the second keel 11 of the adjacent panel body, and then insert one end of the second ferrule 30 into one end of the second keel 11 of the panel body 1. At this time, the second stopper 32 is placed at the notch of the second groove of the panel body 1. Tighten the first connector 310 and the second connector 311 to press and fix the second ferrule 30 in the second keel 11 of the panel body 1 and the second keel 11 of the adjacent panel body, so as to fix the panel body B, thereby ensuring that the adjacent panel body (panel body B) and the panel body 1 (panel bodies A, C, D) are kept within the same flatness requirement.
[0071] The beneficial effects achieved by the embodiment of the present application are: by integrating the first keel 10 and the second keel 11 on the panel body 1, there is no need to perform additional installation of the primary and secondary keels at the construction site, which is convenient for transportation and simple to assemble; when the first keel 10 and the second keel 11 of one of the two upper and lower adjacent panel bodies 1 are connected to the wall, the adjacent panel bodies 1 are first positioned by the elastic positioning component 2, and then fixedly connected by the connecting component 3 to achieve a fixed connection between the upper and lower adjacent panel bodies 1, ensuring that the adjacent panel bodies 1 are located in the same plane, and the assembly is convenient, fast, and efficient. The decorative panel system of the embodiment of the present application solves the problem that the decorative panels need to be adjusted and tightened at various points during the wall decoration construction, especially the problem that the decorative panels with larger sizes are inconvenient to construct; and the assembly construction of the decorative panels is effectively guaranteed; the decorative panel system of the embodiment of the present invention is easy to install, simple in structure, convenient and practical, greatly improves the construction and installation efficiency, shortens the construction period, and effectively reduces the construction cost.
[0072] Embodiment 2
[0073] The difference between this embodiment and the first embodiment is that the second limit member 32 is movably connected to the second plug core 30. When the panel body 1 is assembled, the second limit member 32 extends from the second plug core 30 so that the second limit member 32 can limit the second plug core 30. When the second plug core 30 is transported from the factory to the assembly site, the second limit member 32 can be stored in the second plug core 30, reducing the space occupied by the second plug core 30 and facilitating the transportation and storage of the second plug core 30.
[0074] See also Figure 6 , Figure 7 and Figure 8, the second stopper 32 is slidably connected to the second plug 30. The second plug 30 also includes a slide rail 303, a first elastic clamp 304 and a first stopper 305. The second plug 30 is also provided with a first slide groove 306 and a second slide groove 307, and the first slide groove 306 is parallel to the second slide groove 307. The slide rail 303 is arranged on the second stopper 32, and the slide rail 303 is slidably connected in the second slide groove 307, and the first elastic clamp 304 is slidably connected to the second stopper 32. When the second plug 30 is used in conjunction with the second keel 11 of the panel body 1, the first stopper 305 is arranged to prevent the second stopper 32 from being out of contact with the second plug 30. Further, the first elastic clamp 304 includes: a first elastic member (not shown in the figure) and a first clamp body, wherein the first clamp body is slidably connected to the second limiter 32, the first elastic member is located between the first clamp body and the second limiter 32, one end of the first elastic member is connected to the first clamp body, and the other end of the first elastic member is connected to the second limiter 32. A first inclined surface is provided on the first clamp body. Specifically, the first elastic member is a first spring. The first inclined surface is an arc surface. The setting of the arc surface reduces the wear caused by the first clamp body and the second intermediate plate 301 when they are in contact.
[0075] In an exemplary embodiment, a first support plate 309 is disposed on the second ferrule 30 , and a first receiving groove is opened on the first support plate 309 . The first receiving groove (not shown in the figure) is used to accommodate the second limiting member 32 to accommodate the second limiting member 32 in the second ferrule 30 .
[0076] The first slide groove and the second slide groove are both opened on the first support plate 309. A first driving member is arranged between the first support plate 309 and the second limiting member 32 to drive the second limiting member 32 to slide horizontally on the first support plate 309 when the panel body 1 and the second keel 11 are assembled and used, so that the second limiting member 32 protrudes out of the second middle plate 301 of the second plug core 30.
[0077] In an exemplary embodiment, two second slide grooves are provided. The first receiving groove includes a first groove wall and a second groove wall, the first groove wall and the second groove wall are arranged opposite to each other, and the two second slide grooves are respectively opened at relative positions of the first groove wall and the second groove wall.
[0078] In an exemplary embodiment, the first driving member of the second ferrule 30 includes a pin 308, which is slidably connected to the first slide groove 306. During transportation, the second stopper 32 is received in the second ferrule 30, and one end of the pin 308 abuts against the side of the second stopper 32. The other end of the pin 308 is provided with a first protrusion. The first protrusion facilitates manual pushing of the pin 308 to move.
[0079] Please combine Figure 6 , Figure 7, Figure 8 and Fig. 9 When the second plug core 30 is used in conjunction with the second keel 11 of the panel body 1, the ejector pin 308 is pushed in the direction of the second limit piece 32, and the ejector pin 308 pushes the second limit piece 32 to slide outward on the second plug core 30, and the second limit piece 32 extends from the side of the second middle plate 301 of the second plug core 30. When the first elastic clip 304 contacts the second middle plate 301, the bottom end of the second middle plate 301 contacts the first inclined surface of the first elastic clip 304, the first clip body is compressed, the first elastic part is compressed, and the first clip body slides downward on the second limit piece 32. When the first elastic clip 304 passes through the second middle plate 301, the first elastic part releases its elastic potential energy, pushing the first clip body to slide upward on the second limit piece 32, so that the first clip body pops out from the second limit piece 32 to limit the position of the second limit piece 32.
[0080] Please combine Fig.10 When it is necessary to release the connection between the second plug core 30 and the panel body 1 and store the second plug core 30, press the first clamp body downward and push the second limit member 32 toward the second middle plate 301, so that the first elastic clamp 304 passes through the second middle plate 301, and the first elastic clamp 304 returns to its original state, and the second limit member 32 can be stored in the second plug core 30.
[0081] In other embodiments, the first driving member includes a second elastic member (not shown) connected between the second stopper 32 and the second insert 30. When the second stopper 32 is received in the second insert 30, the second elastic member is in a compressed state.
[0082] Specifically, the second ferrule 30 also includes a second elastic clamp (not shown in the figure). The second elastic clamp includes: a third elastic member and a second clamp body, wherein the second clamp body is slidably connected to the second ferrule 30, one end of the second clamp body protrudes from the second ferrule 30, the other end of the second clamp body is provided with an elastic protrusion, and the first limit block 305 is provided with a first groove (not shown in the figure) that is engaged with the elastic protrusion. The third elastic member is located between the second clamp body and the second ferrule 30, one end of the third elastic member is connected to the other end of the second clamp body, and the other end of the third elastic member is connected to the second ferrule 30. A second inclined surface is provided on one end of the second clamp body. When the second ferrule 30 is assembled with the second keel 11, the second inclined surface of the second clamp body contacts one end of the second keel 11, and the second clamp body slides on the second ferrule 30 so that one end of the second clamp body is received in the second ferrule 30.
[0083] Specifically, the second elastic member is a second spring. The third elastic member is a third spring. The second inclined surface is an arc surface. One end of the elastic protrusion that is engaged with the first groove is a hemispherical arc surface. Through the engagement of the elastic protrusion with the first groove, when the second limiting member 32 is received in the second plug core 30, the movement of the second plug core 30 is limited.
[0084] In an exemplary embodiment, the second clamp body is slidably connected to the first support plate 309. One end of the third elastic member is connected to the other end of the second clamp body, and the other end of the third elastic member is connected to the first support plate 309.
[0085] Further, when the third elastic member is in a state of not being compressed or stretched, that is, when the third elastic member is in a normal state, one end of the second clamp body protrudes from the third positioning plate 300 or the fourth positioning plate 302 of the second ferrule 30 .
[0086] When the second plug core 30 is used in conjunction with the second keel 11 of the panel body 1, one end of the second card body contacts the groove wall of the second groove of the panel body 1, the second card body is pressurized, the third elastic member is compressed, the elastic protrusion on the second card body is out of contact with the first groove, the second elastic member releases elastic potential energy, and pushes the second limit member 32 to slide horizontally outward on the second plug core 30, so that the second limit member 32 extends from the side of the second middle plate 301 of the second plug core 30, when the first elastic card 304 contacts the second middle plate 301, the bottom end of the second middle plate 301 contacts the first inclined surface of the first elastic card 304, the first card body is pressurized, the first elastic member is compressed, the first card body slides downward on the second limit member 32, when the first elastic card 304 passes through the second middle plate 301, the first elastic member releases elastic potential energy, pushes the first card body to slide upward on the second limit member 32, and makes the first card body pop out from the second limit member 32 to limit the position of the second limit member 32.
[0087] When it is necessary to release the connection between the second plug core 30 and the panel body 1 and store the second plug core 30, the second plug core 30 is pulled out from one end of the second groove of the panel body 1, the second card body is out of contact with the groove wall of the second groove of the panel body 1, the third elastic member releases the elastic potential energy, pushes the second card body to slide, and one end of the second card body extends out of the third positioning plate 300 or the fourth positioning plate 302 of the second plug core 30; at the same time, the second limiting member 32 is pushed toward the direction of the second middle plate 301, so that the first elastic card 304 passes through the second middle plate 301, the first elastic card 304 returns to its original state, and the elastic protrusion is engaged with the first groove, so that the second limiting member 32 can be stored in the second plug core 30.
[0088] In other exemplary embodiments, see Fig.11 , Fig.12 , Fig.13 , Fig.14 and Fig.15 , the first driving member includes a fourth elastic member 330. The second plug core 30 includes a first supporting base 331 and an elastic buckle 332, the first supporting base 331 is fixed on the second plug core 30, and the fourth elastic member 330 is connected between the first supporting base 331 and the second stopper 32. The first end of the elastic buckle 332 is arranged at one end of the first supporting base 331, and the first end of the elastic buckle 332 protrudes outside the second plug core 30, and the second end of the elastic buckle 332 is movably connected to the first supporting base 331. The first end of the elastic buckle 332 is arranged in a hemispherical shape.
[0089] Specifically, the first limiting block is disposed at one end of the second limiting member 32 , one end of the fourth elastic member 330 is connected to the other end of the first supporting base 331 , and the other end of the fourth elastic member 330 is connected to the first limiting block.
[0090] Furthermore, combined with Fig.12 The first side wall and the second side wall of one end of the second stopper 32 are both provided with a third groove 333, and the first side wall and the second side wall are arranged opposite to each other. The second end of the elastic buckle 332 is provided with a bending portion 3321. The third groove 333 includes a first groove 3331, a second groove (not shown in the figure), a third groove 3332, a fourth groove 3333 and a fifth groove 3334. The first groove 3331 is connected to the second groove and the fifth groove 3334 respectively. A second protrusion (not shown in the figure) is provided between the first groove 3331 and the second groove. The second protrusion is provided at the bottom of the second groove. The third groove 3332 is connected to the second groove and the fourth groove 3333 respectively. A third protrusion 3335 is provided between the third groove 3332 and the fourth groove 3333. The third protrusion 3335 is provided at the bottom of the fourth groove 3333. The fourth groove 3333 is connected to the fifth groove 3334. The end of the second protrusion away from the first groove 3331 is provided with a third inclined surface, and the end of the third protrusion 3335 close to the fifth groove 3334 is provided with a fourth inclined surface 3336. The first groove 3331 is located above the fourth groove 3333, and the fifth groove 3334 is provided with a first guide surface (not shown in the figure) extending from the first groove 3331 to the fourth groove 3333.
[0091] In an exemplary embodiment, in combination with Fig.15The first groove 3331, the second groove (not shown in the figure), the third groove 3332, the fourth groove 3333 and the fifth groove 3334 on the first side wall are all formed by the first side wall being recessed in the direction toward the second side wall, and the first groove 3331, the second groove, the third groove 3332, the fourth groove 3333 and the fifth groove 3334 on the second side wall are all formed by the second side wall being recessed in the direction toward the first side wall. The first groove 3331, the second groove, the third groove 3332, the fourth groove 3333 and the fifth groove 3334 are all recessed inwardly, and the second limiting block 3330 is formed on the second limiting member 32. The distance between the bottom of the second groove and the side surface of the second protrusion away from the bottom of the second groove is smaller than the distance between the bottom of the second groove and the first side wall or the second side wall. The distance between the bottom of the fourth groove 3333 and the side surface of the third protrusion 3335 away from the bottom of the fourth groove 3333 is smaller than the distance between the bottom of the fourth groove 3333 and the first side wall or the second side wall.
[0092] In an exemplary embodiment, in combination with Fig.12 , Fig.14 and Fig.15 When the second ferrule 30 is assembled with the second keel 11, that is, when the second stopper 32 extends out of the second ferrule 30 to limit the position of the second ferrule 30, the first end of the elastic buckle 332 is squeezed by the second keel 11, so that the bent portion 3321 passes through the third groove 3332, the second groove and the first groove 3331 in sequence along the arc-shaped side wall of the third groove 3332, and at the same time, the fourth elastic member 330 releases elastic potential energy, and the second stopper 32 extends out of the second ferrule 30. When the bent portion 3321 reaches the second protruding portion, it climbs along the third inclined surface of the second protruding portion, and when it reaches the highest point of the second protruding portion, it breaks away from the second protruding portion and enters the first groove 3331, and the bent portion 3321 abuts against one end of the second stopper 32, that is, the bent portion 3321 hooks one end of the second stopper 32.
[0093] In an exemplary embodiment, in combination with Fig.11 , Fig.12 and Fig.15When the second stopper 32 is received in the second insert 30, the second end of the elastic buckle 332 extends from the other end of the first supporting base 331, and the bent portion 3321 passes through the first groove 3331, the fifth groove 3334 and the third groove 3332 in sequence, and reaches the second groove; after passing through the first groove 3331, the bent portion 3321 is blocked by the third protrusion 3335, and at this time, enters the fifth groove 3334 along the first guide surface, enters the third groove 3332, and reaches the third protrusion 3335 when the bent portion 3321 reaches the third protrusion 3335, it climbs along the fourth inclined surface 3336 of the third protrusion 3335, and when it reaches the highest point of the third protrusion 3335, it breaks away from the third protrusion 3335 and enters the second groove. The bending portion 3321 abuts against the second limit block 3330, and the bending portion 3321 is blocked by the third protrusion 3335, so that the movement of the second limit member 32 is restricted, that is, the bending portion 3321 hooks the second limit block 3330, and the bending portion 3321 abuts against the third protrusion 3335 to limit the movement of the second limit member 32.
[0094] Embodiment 3
[0095] The difference between this embodiment and the first embodiment is that the decorative panel system further includes a first locking assembly 40 (see Fig.16 ). When the first support and the second support 5 are connected via the third mounting member, the first locking assembly 40 is used to lock the third mounting member to prevent the third mounting member from loosening and causing the decorative panel to detach from the wall, thereby enhancing the connection strength between the decorative panel and the wall.
[0096] In an exemplary embodiment, see Fig.16 The third mounting member includes a third screw and a third nut threadedly connected to the third screw. The decorative panel system includes a first locking assembly 40, and the first locking assembly 40 is arranged on the second support 5. The second support 5 includes a first plate body and a second plate body, the first plate body is connected to the second plate body, the first plate body is connected to the first support, and the second plate body is connected to the wall. The first locking assembly 40 includes a second supporting base 400, and the second supporting base 400 is arranged on the first plate body.
[0097] In an exemplary embodiment, the first locking assembly 40 also includes a third plate 410, a fourth plate 420 and a fifth plate 430. The fourth plate 420 is located between the fifth plate 430 and the third plate 410. The third plate 410 and the fifth plate 430 are both slidably connected to the second supporting base 400. The fourth plate 420 is rotatably connected to the second supporting base 400. A first one-way ratchet 431 is provided on the side of the fifth plate 430 close to the fourth plate 420, and a second one-way ratchet 425 that is snap-fitted with the first one-way ratchet 431 is provided on the side of the fourth plate 420 away from the third plate 410.
[0098] Specifically, the fourth plate body 420 is hinged to the second supporting base 400 .
[0099] In an exemplary embodiment, a "U"-shaped clamp 440 is provided on one side of the fifth plate 430 away from the fourth plate 420. When the "U"-shaped clamp 440 is used to clamp onto the third screw when locking the third mounting member, the "U"-shaped clamp 440 abuts against the side of the third nut away from the first plate to lock the third nut, thereby locking the third mounting member and enhancing the connection strength between the first support and the second support 5.
[0100] Exemplarily, the third plate body 410 and the fourth plate body 420 are connected via a fifth elastic member.
[0101] Specifically, the fifth elastic member is a U-shaped spring piece 450. The bottom end of the U-shaped spring piece 450 abuts against the hinge between the fourth plate 420 and the second supporting base 400, one side of the U-shaped spring piece 450 abuts against the third plate 410, and the other side of the U-shaped spring piece 450 abuts against the fourth plate 420.
[0102] In an exemplary embodiment, a first end of the third plate 410 is provided with a first protrusion 411 and a second protrusion 412, and a second groove 415 is formed between the first protrusion 411, the third plate 410 and the second protrusion 412. A first limiting groove 413 and a second limiting groove 414 are provided at the second end of the third plate 410, and the distance from the first limiting groove 413 to the first protrusion 411 is smaller than the distance from the second limiting groove 414 to the first protrusion 411. A first limiting clamp 451 is provided at the end of one side of the "U"-shaped spring piece 450. The first limiting clamp 451 can be engaged with the first limiting groove 413 or the second limiting groove 414. When the first one-way ratchet 431 and the second one-way ratchet 425 are engaged, the first limit clamp 451 is engaged with the second limit groove 414 ; when the first one-way ratchet 431 and the second one-way ratchet 425 are out of contact, the first limit clamp 451 is engaged with the first limit groove 413 .
[0103] Exemplarily, a third protrusion 421 is disposed on the fourth plate 420 , and the third protrusion 421 is used to support the other side of the “U”-shaped spring piece 450 .
[0104] In an exemplary embodiment, a fourth protrusion 422 is disposed at a first end of the fourth plate 420, a fifth protrusion 423 extends from the fourth protrusion 422, and a fourth protrusion 424 is disposed on a side of the fifth protrusion 423 away from the third plate 410. A second end of the fourth plate 420 is hinged to the second supporting base 400. The second groove 415 is used to accommodate the fourth protrusion 422.
[0105] Further, the second supporting base 400 is rotatably connected to the first plate body 460 on one side close to the second protrusion 412. The first plate body 460 is disc-shaped. The outer side of the first plate body 460 is connected to the sixth protrusion 461. The second supporting base 400 is provided with a third limit block 470 on one side close to the fifth protrusion 423. When the first one-way ratchet 431 and the second one-way ratchet 425 are engaged, the third limit block 470 abuts against the fourth protrusion 424 to limit the rotation of the fourth plate body 420.
[0106] In an exemplary embodiment, a fourth limit block 480 is disposed on one side of the second supporting base 400 close to the second end of the fourth plate 420. The fourth limit block 480 is used to limit the movement of the fifth plate 430. When the first one-way ratchet 431 and the second one-way ratchet 425 are engaged, the fifth plate 430 abuts against the fourth limit block 480.
[0107] Specifically, a fifth protrusion 490 is provided on the end surface of the first plate body 460, and the fifth protrusion 490 is rotatably connected to the third plate body 410 via a connecting rod 491. The connecting rod 491 includes a first rod and a second rod, one end of the first rod is rotatably connected to the second protrusion 412 of the third plate body 410, the other end of the first rod is rotatably connected to one end of the second rod, and the other end of the second rod is rotatably connected to the fifth protrusion 490.
[0108] In an exemplary embodiment, when the first locking assembly 40 does not lock the third mounting member, the "U"-shaped clamping member 440 is disengaged from the third mounting member, the first one-way ratchet 431 is disengaged from the second one-way ratchet 425, the fourth protrusion 424 is disengaged from the third limiting block 470, the sixth protrusion 461 on the first disk 460 abuts against the fifth protrusion 423 of the fourth plate 420, the first end of the fourth plate 420 is close to the first end of the third plate 410, the first limiting clamping member 451 is engaged with the first limiting groove 413, and the "U"-shaped spring piece 450 is squeezed. The fourth protrusion 422 is accommodated in the second groove 415, and the fourth protrusion 422 on the fourth plate 420 abuts against the first protrusion 411 on the third plate 410, and the fifth protrusion 423 on the fourth plate 420 abuts against the second protrusion 412 of the third plate 410.
[0109] In an exemplary embodiment, when it is necessary to lock the third mounting member through the first locking assembly 40, the fifth plate body 430 is pushed to slide on the second supporting base 400 from the first end of the third plate body 410 to the second end of the third plate body 410, so that the "U"-shaped clip 440 is clamped on the third screw rod, and the "U"-shaped clip 440 abuts against the side of the third nut away from the first plate body.
[0110] Further, the first disk body 460 is rotated again, and the sixth protrusion 461 on the first disk body 460 is disengaged from the fifth protrusion 423 of the fourth plate body 420. At the same time, through the linkage action of the first rod body and the second rod body, the third plate body 410 is driven to slide on the second supporting base 400 from the second end of the third plate body 410 to the first end of the third plate body 410, and the first limit clamp 451 is disengaged from the first limit groove 413, and the first limit clamp 451 is engaged with the second limit groove 414. At this time, the "U"-shaped spring piece 450 releases elastic potential energy, driving the fourth plate body 420 to rotate around its hinge point, and the first end of the fourth plate body 420 is away from the first end of the third plate body 410, and the fourth protrusion 424 is in contact with the third limit block 470, and the first one-way ratchet 431 and the second one-way ratchet 425 are engaged to lock the third mounting member.
[0111] The stability of the connection between the fourth plate body 420 and the fifth plate body 430 is further enhanced by the snap-fitting between the one-way ratchets.
[0112] Further, the first plate 460 is driven by a first motor (not shown in the figure). The sliding of the fifth plate 430 is driven by a first cylinder (not shown in the figure). The first cylinder is fixedly mounted on the second supporting base 400, and the first telescopic rod of the first cylinder is connected to the fifth plate 430.
[0113] In an exemplary embodiment, a pressure sensor is provided on the first plate. The decorative panel system includes a control module, which is used to receive data transmitted by the pressure sensor, and the decorative panel system also includes a monitoring module, which is used to monitor the pressure value transmitted by the pressure sensor. The third screw rod passes through the first support and the second support 5, and the third nut is tightened on the third screw rod. When the third nut presses the pressure sensor, the third nut triggers the pressure sensor, and the pressure sensor collects the first pressure value applied by the third nut on the pressure sensor, and the pressure sensor transmits the collected first pressure value to the control module.
[0114] When the monitoring module monitors that the first pressure value reaches the preset pressure threshold, a first installation completion signal is generated, and the first installation completion signal is transmitted to the control module. The control module generates a first start signal and a second start signal, wherein the first start signal is used to indicate that the first cylinder is started within a preset first time period. The first cylinder is started within the preset first time period in response to the first start signal, and the first telescopic rod extends to push the fifth plate body 430 to slide on the second supporting base 400 from the first end of the third plate body 410 to the second end of the third plate body 410, so that the "U"-shaped clamp 440 is clamped on the third screw, and the "U"-shaped clamp 440 abuts against the side of the third nut away from the first plate body. The second start signal is used to indicate that the first motor is started within the preset second time period. The first motor is then started within a preset second time period, driving the first disk 460 to rotate, and through the linkage of the third plate 410, the fourth plate 420 and the "U"-shaped spring piece 450, the first one-way ratchet 431 and the second one-way ratchet 425 are engaged with each other, so as to realize automatic locking of the third mounting member.
[0115] Furthermore, a first control switch is provided on the first plate body, the first control switch is connected to the control module, and the first control switch is used to control the reverse start of the first motor and the first cylinder.
[0116] Exemplarily, when the first locking assembly 40 needs to be unlocked, the first control switch is triggered to generate and transmit a first unlocking signal, which is used to instruct the first motor and the first cylinder to start in reverse. After receiving the first unlocking signal, the control module generates a third start signal and a fourth start signal, wherein the third start signal is used to instruct the first motor to start in reverse within a preset third time period; and the fourth start signal is used to instruct the first cylinder to start in reverse within a preset fourth time period.
[0117] Specifically, the first motor starts in the reverse direction within the preset third time period, driving the first plate 460 to rotate in the reverse direction, and through the linkage of the third plate 410, the fourth plate 420 and the "U"-shaped spring sheet 450, the third plate 410 and the fourth plate 420 are separated from direct contact, and the fourth plate 420 returns to its original state. The first cylinder starts again within the preset fourth time period in response to the fourth start signal, and the first telescopic rod retracts, pulling the fifth plate 430 to slide from the second end of the third plate 410 to the first end of the third plate 410 on the second supporting base 400, and the first one-way ratchet 431 and the second one-way ratchet 425 are separated from contact.
[0118] Embodiment 4
[0119] The difference between this embodiment and the third embodiment is that the decorative panel system further includes a first cleaning component 50 (see Fig.18), the first cleaning component 50 is used to clean the surface of the panel body 1 to keep the panel body 1 clean.
[0120] In an exemplary embodiment, see Fig.17 and Fig.18 The panel body 1 is provided with a plurality of camera assemblies 500, and the plurality of camera assemblies 500 are connected to the control module. The plurality of camera assemblies 500 are used to record and monitor the outer surface of the panel body 1. Specifically, the plurality of camera assemblies 500 are evenly distributed on the outer side of the panel body 1.
[0121] In an exemplary embodiment, a sixth plate 510 is movably connected to the panel body 1. When the outer surface of the panel body 1 does not need to be cleaned, the outer surface of the sixth plate 510 is coplanar with the outer surface of the panel body 1. Specifically, the sixth plate 510 is slidably connected to the panel body 1.
[0122] In an exemplary embodiment, a third supporting base 520 is provided on the sixth plate body 510, a first cylindrical gear 521 is rotatably connected to the third supporting base 520, and a second gear 522 is movably connected to the third supporting base 520; the first cylindrical gear 521 is meshed with the second gear 522. A first annular groove 523 and a square groove 524 are provided on the third supporting base 520, the first annular groove 523 is a circular groove, and the square groove 524 includes a sixth groove, a seventh groove, an eighth groove and a ninth groove. The sixth groove is connected to the seventh groove, the seventh groove is connected to the eighth groove, the eighth groove is connected to the ninth groove, and the ninth groove is connected to the sixth groove. The distance from the rotation connection point of the first cylindrical gear 521 and the third supporting base 520 to the inner groove wall of the first annular groove 523 is greater than the distance from the rotation connection point of the first cylindrical gear 521 and the third supporting base 520 to the outer side surface of the first cylindrical gear 521. A seventh protrusion 525 and an eighth protrusion 526 are provided on the end surface of the second gear 522 . The seventh protrusion 525 and the second gear 522 are slidably connected in the first annular groove 523 and the square groove 524 .
[0123] Exemplarily, the end surface of the first cylindrical gear 521 and the end surface of the second gear 522 are both provided with a first cleaning member (not shown in the figure). The first cleaning member is a towel, a sponge, etc.
[0124] Further, the first annular groove 523 and the square groove 524 are surrounded on the third supporting support to form a plurality of sixth protrusions 527. The plurality of sixth protrusions 527 are respectively located at the first position, the second position, the third position and the fourth position on the third supporting base 520. A first baffle 528 is hinged at one end of the plurality of sixth protrusions, and the first baffle 528 is elastically connected to the sixth protrusion, one end of the first baffle 528 abuts against the first annular groove 523, and the other end of the first baffle 528 abuts against the square groove 524. The first baffle 528 is connected to the sixth protrusion through a sixth elastic member.
[0125] In an exemplary embodiment, the direction in which the second gear 522 moves from the sixth protrusion 527 at the first position to the sixth protrusion 527 at the second position, the sixth protrusion 527 at the third position, and the sixth protrusion 527 at the fourth position is determined as the first direction, and when the second gear 522 is located between the sixth protrusion at the first position and the sixth protrusion at the second position, the first cylindrical gear 521 is driven to rotate, and under the meshing action of the first cylindrical gear 521 and the second gear 522, the second gear 522 moves along the first direction, and the eighth protrusion 526 pushes the other end of the first baffle 528 at the second position along the square groove 524, the sixth elastic member is squeezed, the first baffle 528 rotates on the sixth protrusion 527 at the second position, the other end of the first baffle 528 is out of contact with the square groove 524, one end of the first baffle 528 rotates as the first baffle 528 rotates on the sixth protrusion 527, one end of the first baffle 528 is out of contact with the first annular groove 523, and one end of the first baffle 528 abuts on the square groove 524, and the seventh protrusion 525 moves along the first annular groove 523. After the second gear 522 passes the second position, under the elastic action of the sixth elastic member, the first baffle 528 returns to its original state on the sixth protrusion 527 at the second position.
[0126] When the second gear 522 moves to between the sixth protrusion at the third position and the sixth protrusion at the fourth position, the second gear 522 continues to move in the first direction. At this time, the seventh protrusion 525 pushes the other end of the first baffle 528 at the third position along the square groove 524, the sixth elastic member is squeezed, the first baffle 528 rotates on the sixth protrusion 527 at the third position, the other end of the first baffle 528 is disengaged from the square groove 524, one end of the first baffle 528 rotates as the first baffle 528 rotates on the sixth protrusion 527, one end of the first baffle 528 is disengaged from the first annular groove 523, and one end of the first baffle 528 abuts against the square groove 524, and the eighth protrusion 526 moves along the first annular groove 523. After the second gear 522 passes the third position, under the elastic action of the sixth elastic member, the first baffle 528 returns to its original state on the sixth protrusion 527 at the third position.
[0127] When the second gear 522 moves to between the sixth protrusion at the third position and the sixth protrusion at the fourth position, the second gear 522 continues to move in the first direction, the eighth protrusion 526 pushes the other end of the first baffle 528 at the fourth position along the square groove 524, the sixth elastic member is squeezed, the first baffle 528 rotates on the sixth protrusion 527 at the fourth position, the other end of the first baffle 528 is disengaged from the square groove 524, one end of the first baffle 528 rotates as the first baffle 528 rotates on the sixth protrusion 527, one end of the first baffle 528 is disengaged from the first annular groove 523, and one end of the first baffle 528 abuts against the square groove 524, and the seventh protrusion 525 moves along the first annular groove 523. After the second gear 522 passes the fourth position, under the elastic action of the sixth elastic member, the first baffle 528 returns to its original state on the sixth protrusion 527 at the second position.
[0128] When the second gear 522 moves to between the sixth protrusion at the fourth position and the sixth protrusion at the first position, the second gear 522 continues to move in the first direction. At this time, the seventh protrusion 525 pushes the other end of the first baffle 528 at the first position along the square groove 524, the sixth elastic member is squeezed, the first baffle 528 rotates on the sixth protrusion 527 at the first position, the other end of the first baffle 528 is disengaged from the square groove 524, one end of the first baffle 528 rotates as the first baffle 528 rotates on the sixth protrusion 527, one end of the first baffle 528 is disengaged from the first annular groove 523, and one end of the first baffle 528 abuts against the square groove 524, and the eighth protrusion 526 moves along the first annular groove 523. After the second gear 522 passes the first position, under the elastic action of the sixth elastic member, the first baffle 528 returns to its original state on the sixth protrusion 527 at the first position.
[0129] The second gear 522 moves along the first direction from being located between the sixth protrusion at the first position and the sixth protrusion at the second position, and when it moves to the position between the sixth protrusion at the first position and the sixth protrusion at the second position again, the first cycle of movement along the first direction is completed. Similarly, the second gear 522 continues to move along the movement path of the first cycle on the basis of the above movement along the first direction.
[0130] In an exemplary embodiment, in combination with Fig.17 and Fig.18The decorative panel system is provided with a first reciprocating screw rod 530 , a second reciprocating screw rod 540 , a third rod body 531 , a fourth rod body 541 , and a first bearing seat 532 . Among them, a seventh protrusion (not shown in the figure) is threadedly sleeved on the first reciprocating screw 530, the seventh protrusion is connected to the third supporting base 520, the first reciprocating screw 530 is rotatably connected to the seventh protrusion, the first reciprocating screw 530 is slidably connected to the panel body 1, the third rod 531 passes through the seventh protrusion, and the third rod 531 is parallel to the first reciprocating screw 530; an eighth protrusion (not shown in the figure) is threadedly sleeved on the second reciprocating screw 540, the first reciprocating screw 530 is connected to the eighth protrusion through the first bearing seat 532, the second reciprocating screw 540 is rotatably connected to the eighth protrusion, the second reciprocating screw 540 is slidably connected to the panel body 1, the fourth rod 541 passes through the eighth protrusion, and the fourth rod 541 is parallel to the second reciprocating screw 540; the second reciprocating screw 540 is perpendicular to the first reciprocating screw 530.
[0131] In an exemplary embodiment, when cleaning is required, the sixth plate 510 and the third supporting base 520 are driven to slide on the panel body 1 from the first keel 10 toward the outer surface of the panel body 1, so that the sixth plate 510 and the panel body 1 are on different planes, and the first cleaning member is coplanar with the panel body 1. The first reciprocating screw 530 and the second reciprocating screw 540 are driven as needed to drive the third supporting base 520 to move on the panel body 1, and then drive the first cleaning member to move on the panel body 1, so as to achieve the effect of cleaning the panel body 1.
[0132] Through the meshing action of the first cylindrical gear 521 and the second gear 522 , the first cleaning member can clean the panel body 1 at multiple angles, with better cleaning effect and higher cleaning efficiency.
[0133] In an exemplary embodiment, the decorative panel system is further provided with a spray assembly, which further includes a water storage portion (not shown in the figure) and a plurality of spray heads (not shown in the figure). The plurality of spray heads are provided on the third supporting base 520, and the plurality of spray heads are connected to the water storage portion. The control module controls the opening and closing of the spray heads.
[0134] Specifically, under the driving action of the first reciprocating screw 530 and the second reciprocating screw 540, the third supporting base 520 is driven to move on the panel body 1, and then the first cleaning member is driven to move on the panel body 1, and multiple nozzles are started through the control module, and the multiple nozzles spray the water in the water storage part onto the panel body 1. Under the action of water, the first cleaning member can more easily clean the dust and dirt on the outer surface of the panel body 1, and the cleaning effect is better.
[0135] In an exemplary embodiment, the decorative panel system further includes a first baffle. The first baffle is movably connected to the panel body 1. A fifth inclined plane is provided on the first baffle, and the first baffle and the panel body 1 are connected by a seventh elastic member. The first baffle is parallel to the first axis of the first reciprocating screw 530. When the sixth plate body 510 is coplanar with the panel body 1, the third supporting base 520 contacts the fifth inclined plane, the seventh elastic member is squeezed, and the first baffle is received in the third supporting base 520. When the sixth plate body 510 and the panel body 1 are in different planes, that is, the sixth plate body 510 and the third supporting base 520 slide on the panel body 1 from the first keel 10 to the outer surface of the panel body 1, the third supporting base 520 is out of contact with the fifth inclined plane, and the first baffle extends out of the panel body 1 under the elastic action of the seventh elastic member. When the sixth plate body 510 and the third supporting base 520 slide on the panel body 1 from the outer surface of the panel body 1 toward the first keel 10, the third supporting base 520 contacts the fifth inclined surface and drives the first baffle plate to slide in the same direction on the panel body 1, so that the first baffle plate and the third supporting base 520 are both received in the panel body 1, and the sixth plate body 510 and the panel body 1 are in the same plane.
[0136] The first baffle is used to receive the dirty water and dirt dropped by the first cleaning member during the process of cleaning the panel body 1 .
[0137] In an exemplary embodiment, a second cleaning member (not shown) is slidably connected to the third supporting base 520, and the second cleaning member is used to clean the outer surface of the sixth plate body 510. The second cleaning member is parallel to the first screw rod. The outer surface of the sixth plate body 510 can be cleaned by pushing the second cleaning member.
[0138] The panel body 1 is slidably connected with a seventh plate (not shown in the figure) at positions corresponding to the first reciprocating screw rod 530 and the third rod body 531, and the panel body 1 is slidably connected with an eighth plate (not shown in the figure) at positions corresponding to the second reciprocating screw rod 540 and the fourth rod body 541. A third cleaning member (not shown in the figure) is provided at the connection between the seventh plate and the panel body 1, and the third cleaning member is parallel to the first reciprocating screw rod 530. A fourth cleaning member is provided at the connection between the eighth plate and the panel body 1, and the fourth cleaning member is parallel to the second reciprocating screw rod 540. When it is necessary to clean the panel body 1, the seventh plate and the eighth plate slide on the panel body 1 to store the seventh plate and the eighth plate in the panel body 1. During the storage process of the seventh plate and the eighth plate, the third cleaning member cleans the outer surface of the seventh plate, and the fourth cleaning member (not shown in the figure) cleans the outer surface of the eighth plate.
[0139] In an exemplary embodiment, the first reciprocating screw 530 is driven by a second motor (not shown in the figure), the second reciprocating screw 540 is driven by a third motor (not shown in the figure), the third supporting base 520 is driven by a second cylinder (not shown in the figure), the second cleaning member is driven by a third cylinder (not shown in the figure), the seventh plate is driven by a fourth cylinder (not shown in the figure), and the eighth plate is driven by a fifth cylinder (not shown in the figure). The driving of the second motor, the third motor, the second cylinder, the third cylinder, the fourth cylinder, and the fifth cylinder is controlled by the control module.
[0140] Through the multi-angle and all-round cleaning of the first cleaning member, the second cleaning member, the third cleaning member and the fourth cleaning member, the cleaning effect is good, the degree of automation is high, and the outer surface of the panel body 1 at various positions is easy to clean, freeing the user's hands.
[0141] Finally, it should be noted that the above are only preferred embodiments of the present application and are not intended to limit the present application. Although the present application is described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.
Claims
1. A decorative panel system, characterized in that, it includes a plurality of panel bodies, an elastic positioning component and a connecting component. The panel body includes a first keel and a second keel. The first keel of the panel body is connected to the first keel of the adjacent panel body of the panel body through the elastic positioning component to achieve the positioning installation between adjacent panel bodies. The second keel of the panel body is connected to the second keel of the adjacent panel body of the panel body through the connecting component to achieve the fixed connection between adjacent panel bodies. Both the first keel and the second keel are connected to the wall to install the panel body on the wall; wherein, the connecting component includes a second core and a connecting piece. The second core includes a second limiting piece, and the connecting piece includes a first connecting piece and a second connecting piece; the second limiting piece is movably connected to the second core; a second groove is provided in the second keel; when the panel body and the adjacent panel body are fixedly connected, one end of the second core is clamped in one end of the second groove of the panel body, the other end of the second core is inserted into the other end of the second groove of the second keel of the adjacent panel body, the second limiting piece extends out of the second core, the second limiting piece abuts against the notch of one end of the second groove of the panel body, the first connecting piece passes through the second keel of the panel body and abuts against the second core, and the second connecting piece passes through the second keel of the adjacent panel body and abuts against the second core; the second core includes a slide rail, a first elastic clamping piece and a first limiting block. A first chute and a second chute are also provided on the second core, and the first chute is parallel to the second chute; the slide rail is arranged on the second limiting piece and the slide rail is slidably connected in the second chute, and the first elastic clamping piece is slidably connected to the second limiting piece; when the second core is used in cooperation with the second keel of the panel body, the setting of the first limiting block is used to prevent the second limiting piece from being separated from the second core; the first elastic clamping piece includes: a first elastic piece and a first clamping piece body. Among them, the first clamping piece body is slidably connected to the second limiting piece, the first elastic piece is located between the first clamping piece body and the second limiting piece, one end of the first elastic piece is connected to the first clamping piece body, and the other end of the first elastic piece is connected to the second limiting piece; a first inclined surface is provided on the first clamping piece body.
2. The decorative panel system according to claim 1, characterized in that, the elastic positioning component includes a first core and an elastic positioner. The elastic positioner is arranged at one end of the first keel, and the first core includes a first limiting piece; a first groove is provided in the first keel. When the panel body and the adjacent panel body are positioned and connected, one end of the first core is clamped in one end of the first groove of the panel body, the other end of the first core is inserted into the other end of the first groove of the adjacent panel body, and the outer side surface of the first core abuts against the elastic positioner, and the first limiting piece abuts against the notch of one end of the first groove of the panel body.
3. The decorative panel system according to claim 2, It is characterized in that the first insert core further includes a first positioning plate, a first intermediate plate and a second positioning plate. The first intermediate plate is located between the first positioning plate and the second positioning plate. One end of the first intermediate plate is connected to the first positioning plate, the other end of the first intermediate plate is connected to the second positioning plate, and the first positioning plate is parallel to the second positioning plate.
4. The decorative panel system according to claim 3, It is characterized in that the first insert core further includes: a first folding plate extending at an angle from one end of the first positioning plate away from the first intermediate plate and a second folding plate extending at an angle from one end of the second positioning plate away from the first intermediate plate. The shortest distance between the end of the first folding plate close to the first positioning plate and the end of the second folding plate close to the second positioning plate is greater than the shortest distance between the other end of the first folding plate and the top end of the second folding plate.
5. The decorative panel system according to claim 4, It is characterized in that the first insert core includes at least one of the first limiting members, and at least one of the first limiting members is arranged on the first positioning plate and / or the second positioning plate.
6. The decorative panel system according to claim 5, It is characterized in that the elastic positioner includes: a positioner main body and an elastic frustum. The positioner main body is connected to one end of the first keel. The elastic frustum includes a first bottom surface and a second bottom surface. The area of the first bottom surface is larger than the area of the second bottom surface. The first bottom surface is connected to the positioner main body. When one end of the first insert core is clamped in one end of the first groove of the panel body, the second bottom surface abuts against the first insert core.
7. The decorative panel system according to claim 6, It is characterized in that at least two elastic positioners are provided.
8. The decorative panel system according to any one of claims 1 to 7, It is characterized in that the second insert core includes a third positioning plate, a second intermediate plate and a fourth positioning plate. The second intermediate plate is located between the third positioning plate and the fourth positioning plate. One end of the second intermediate plate is connected to the third positioning plate, the other end of the second intermediate plate is connected to the fourth positioning plate, the third positioning plate is parallel to the fourth positioning plate, and the second limiting member is arranged on the second intermediate plate.
9. The decorative panel system according to claim 1, It is characterized in that the first keel and the second keel of the same panel body are connected by a cross beam.
Citation Information
Patent Citations
Quick dismantling and assembling multipurpose light decoration cabinet wall structure
CN1821505A
Decorative panel system
CN212248970U