A quickly installed socket panel
Patent Information
- Application Number
- CN202522102641.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0004]本实用新型是为了克服现有技术中对于缺少预留安装框的孔洞不易安装的不足,提供了一种可以通过插座自身的结构进行固定的快速安装的插座面板
[0016]本实用新型的有益效果是:可以通过插座自身的结构进行固定,可以快速固定安装座,可以减少安装难度,可以固定导电条,可以限制接地条的位置,可以快速安装接地条,可以固定后盖,可以加固导电组件,可以连接导线,可以安装扣压面板。
Smart Images

Figure CN224790008U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of wall sockets, and in particular to a quick-installation socket panel. Background Technology
[0002] Wall sockets are common electrical components, typically installed inside walls for power supply. Current socket installation methods usually involve pre-drilling a mounting frame within the mounting hole, pressing the socket into the hole, and then securing it with screws. This installation method largely requires pre-drilling the mounting frame and securing it; it's difficult to install a socket in a mounting hole without a pre-drilled frame.
[0003] Chinese Patent Publication No. CN218070481U, published on December 16, 2022, discloses an installation structure and wall socket for a wall socket, comprising: a housing and a metal component. The housing has a mounting groove, and the metal component is fixedly installed in the mounting groove. The mounting groove has a first mounting hole for installation with a junction box in the wall, and the metal component has a second mounting hole corresponding to the first mounting hole and also for installation with the junction box in the wall. The drawback of this invention is that the socket requires a pre-reserved fixing frame within the installation hole to mate with the mounting hole, and then it is fixed with screws. Utility Model Content
[0004] This invention aims to overcome the shortcomings of existing technologies where installation is difficult due to the lack of pre-reserved mounting frames, and provides a socket panel that can be quickly installed by being fixed using the socket's own structure.
[0005] To achieve the above objectives, the present invention adopts the following technical solution: A quick-installation socket panel, comprising: The mounting base has a mounting groove at its rear end and an insertion hole at its front end. A conductive component is installed in a mounting groove, and the conductive component corresponds to a socket. The rear cover is detachably connected to the rear end of the mounting base. A fastening assembly, wherein the fastening assembly is mounted on a mounting base; A snap-fit panel, wherein the snap-fit panel is detachably connected to the mounting base.
[0006] The mounting slot inside the mounting base is used to install conductive components. A socket is installed at the front end of the mounting base, through which the corresponding plug of the conductive component is connected for electrical conduction. After connecting the wire to the conductive component, the back cover is pressed onto the opening of the mounting slot of the mounting base to close the opening. Then, the socket body is pressed into the hole, and the installation is fixed by the cooperation of the fastening components with the hole. After fixing the mounting base, a snap-fit panel is installed at the front end of the mounting base. The snap-fit panel fits snugly against the mounting base, ensuring aesthetics while concealing the fastening components. The snap-fit panel and the mounting base are detachably connected, achieving the purpose of fixing through the socket's own structure.
[0007] Preferably, a limiting frame is installed at the front end of the mounting base, and the fastening assembly includes a fastening screw and a fastening block. Fastening assemblies are installed on both sides of the mounting base. One end of the fastening screw passes through the limiting frame and is placed on one side of the limiting frame. A threaded tube is installed at one end of the fastening block. The end of the fastening screw that passes through the limiting frame is threadedly connected to the threaded tube. The cross-sectional shape of the fastening block is stepped. A reinforcing rib is installed on the fastening block. One side of the reinforcing rib is connected to the fastening block, and the other side of the reinforcing rib is connected to the threaded tube. A limiting frame is installed at the front end of the mounting base to limit the insertion depth of the mounting base. Then, fastening components are installed at opposite ends of the mounting base. The threaded tube of the fastening component is placed on one side of the mounting base insertion hole. The threaded tube is connected by a fastening screw that passes through the limiting frame. The threaded tube is connected to the fastening block. The fastening block contacts the inner wall of the hole, which can restrict the rotation of the threaded tube. When the fastening screw is rotated, the threaded tube rises on the fastening screw until it contacts the outlet protrusion of the hole. The mounting base is fixed by the contact between the fastening block and the protrusion in the hole. Especially when installing sockets on plate structures, the fastening block can press the side of the plate for fixation, making the installation process faster. Disassembly only requires unscrewing the fastening screw to separate the fastening block. To improve the strength of the fastening block, reinforcing ribs are installed on the fastening block to increase strength. This design can quickly fix the mounting base.
[0008] Preferably, the mounting base has insertion holes on both sides, which are connected to the mounting groove. The insertion holes include a live wire hole, a neutral wire hole, and a ground wire hole. The conductive component includes a conductive strip, which has two sections placed on both sides of the mounting groove, corresponding to the live wire hole and the neutral wire hole respectively. The conductive strip includes a limiting strip and a contact strip. The mounting groove has a limiting groove, and the limiting strip has a U-shaped cross-section. The mounting groove matches the limiting strip. Contact strips are provided on both sides of the limiting strip. One end of the contact strip is connected to the conductive strip, and the other end of the contact strip corresponds to the insertion hole. The mounting base has sockets on both sides for plugging in the connector. The conductive strips of the conductive components correspond to the live wire or neutral wire holes. One conductive strip corresponds to the sockets on both sides, facilitating the installation of the conductive components. The conductive strips are divided into limit strips and contact strips. The limit strips restrict the position of the conductive strips, and the contact strips correspond to the sockets and contact the plug. The limit strips are U-shaped, with both ends connected to the contact strips. The conductive strips are integrally formed, and limit grooves are provided in the mounting groove. By pressing the limit strips into the limit grooves, the position of the conductive strips is limited. The end of the contact strip away from the limit strip corresponds to the socket. The conductive strips on both sides of the mounting groove correspond to the live wire hole and the neutral wire hole, respectively. This design reduces the difficulty of installation.
[0009] Preferably, the end of the contact strip corresponding to the socket is bent, a guide plate is installed on the contact strip, the guide plate corresponds to the socket, a fitting ring is installed in the mounting groove, the fitting ring matches the bent end of the contact strip, a protrusion is installed on one side of the limiting strip, a limiting hole is provided on the side of the mounting base, the protrusion is placed in the limiting hole, and a lifting plate is provided in the mounting groove, the lifting plate being in contact with the bottom surface of the conductive strip. The end of the conductive strip corresponding to the socket is bent. The bent contact strip can better clamp and ensure stable connection. A guide plate is pressed onto the contact strip. The guide plate is flared and can guide the plug to be inserted into the bent end of the contact strip. A protrusion is installed on the bottom edge of the limiting strip. When the conductive strip and the limiting strip are pushed into the limiting groove, the protrusion is inserted into the limiting hole on the side of the mounting base. The conductive strip is fixed by the protrusion inserted into the limiting hole. A lifting plate is installed in the mounting groove to lift the conductive strip and prevent it from contacting the bottom surface of the mounting groove. At the same time, a fitting ring is installed in the mounting groove. The fitting ring limits the bending end of the conductive strip. This design can fix the conductive strip.
[0010] Preferably, two partition plates are installed in the mounting groove, and the two partition plates are respectively attached to the conductive strips on both sides. The conductive component also includes a grounding strip, which includes a positioning strip and a plug strip. Plug strips are installed on both the left and right sides of the positioning strip. The positioning strip has a U-shaped cross-section, and the plug strip has an L-shaped cross-section. One side of the plug strip is connected to the positioning strip, and an elastic sheet is installed on the other side of the plug strip. The elastic sheet corresponds to the grounding hole. The front and rear sides of the positioning strip are in contact with the two partition plates respectively. Several evenly distributed serrations are provided on the side of the plug strip that contacts the positioning strip. Two partition plates are installed inside the mounting slot. The conductive strip is limited by the partition plates on both sides being attached to it. Then, a grounding strip is installed between the two partition plates. The grounding strip consists of a positioning strip and a plug strip. The grounding strip is integrally formed. The positioning strip can position the grounding strip. The positioning strip has a U-shaped open end facing the partition plate and can be snapped between the two partition plates. Then, plug strips are installed on both sides of the positioning strip. The plug strip aligns with the ground wire hole of the plug hole, and the L-shaped end aligns with the plug hole. An elastic piece is installed on this end to contact the plug. The elastic piece can improve the stability of the contact. The serrations on the side of the plug strip that contacts the positioning strip contact the partition plate to limit the lateral movement of the plug strip between the partition plates. This design can limit the position of the grounding strip.
[0011] Preferably, an extrusion granule is installed on the side of the positioning strip that contacts the partition plate. The partition plate has a guide groove, and the extrusion granule is placed in the guide groove and contacts the partition plate. Several lifting plates are installed in the installation groove, and the lifting plates contact the bottom surface of the grounding strip. When installing the grounding strip, the positioning strip is pressed into the partition plate. The extrusion granule is installed on the side of the positioning strip that contacts the partition plate. When the positioning strip is pushed in, the extrusion granule is pushed into the guide groove. The guide groove restricts the position of the grounding strip, and the extrusion granule can also reinforce the partition plate by pressing it. The lifting plates are installed between the two partition plates to limit the insertion depth of the grounding strip. This design allows for quick installation of the grounding strip.
[0012] Preferably, the back cover is equipped with clamping frames on both sides, and the mounting base is equipped with clamping blocks on both sides. The clamping blocks have a triangular cross-sectional shape. The back cover is detachably connected to the mounting base through the cooperation of the clamping frames and clamping blocks. The inner side of the clamping frame is provided with an insertion groove, which corresponds to the clamping block. The back cover is provided with a positioning block, and the mounting base is provided with a positioning groove. The positioning block matches the positioning groove. Insert blocks are installed on both sides of the positioning block. The insert blocks have a triangular cross-sectional shape. Slots are provided on both sides of the positioning groove, and the insert blocks match the slots. After the conductive components are installed, the back cover is installed on the mounting base to close the opening end of the mounting groove. The back cover is then pressed onto the mounting base, and the clamping frames on both sides of the back cover fit against the two sides of the mounting base. During the pressing of the back cover, the positioning blocks on the side of the mounting base enter the clamping frames along the positioning grooves and engage with the clamping frames, fixing the back cover onto the mounting base. During the installation of the back cover, the positioning blocks on the back cover are inserted into the positioning grooves of the mounting base, and the triangular inserts on both sides of the positioning blocks are inserted into the slots. The cooperation between the inserts and the slots restricts the left and right displacement of the back cover. This design can fix the back cover.
[0013] Preferably, a plurality of first-layer adhesive plates are installed on the side of the back cover facing the mounting base, and the first-layer adhesive plates are in contact with the side of the conductive strip. A plurality of second-layer adhesive plates are installed on the side of the back cover facing the mounting base, and the second-layer adhesive plates are in contact with the left and right sides of the positioning strip. The positioning strip is provided with a reinforcing groove, and a reinforcing strip is installed on the second-layer adhesive plate. The reinforcing strip is placed in the reinforcing groove. An extrusion plate is installed on the back cover, and the extrusion plate is in contact with the grounding strip. A first adhesive plate is installed on the side of the back cover facing the mounting base. The first adhesive plate contacts the side of the conductive strip and further fixes the position of the conductive strip by cooperating with the limiting groove in the mounting base, ensuring the position of the conductive strip. At the same time, a second adhesive plate is installed on the back cover and adheres to the positioning strip of the grounding strip to further reinforce the grounding strip. The two second adhesive plates are placed on both sides of the positioning strip to restrict the position of the grounding strip. Meanwhile, a reinforcing strip is installed on the second adhesive plate and inserted into the reinforcing groove of the reinforcing strip to further restrict the positioning strip. At the same time, a pressing plate is installed on the back cover. The end of the pressing plate is pressed against the insertion strip of the grounding strip to fix the grounding strip on the second lifting plate in the mounting groove. This design can reinforce the conductive components.
[0014] Preferably, the conductive strip has a wiring groove on its limiting strip, the mounting base has a wiring hole on one side, and branching rods are installed on both sides of the rear cover. When connecting the conductive component to the wire, the wire does not need to be stripped; it is placed directly on the wiring groove of the conductive strip, and then the rear cover is pressed to squeeze the wire down. The copper part pierces the wire to achieve the wiring function. The wire is placed in the reinforcing groove on the positioning strip and connected to the grounding strip to supply power to the wire assembly. Branching rods are opened on the rear cover, and the wire enters the mounting groove from the wiring hole. The branching rods divide the wire into three strands, which are connected to the conductive strips on both sides and the grounding plate between the partition plates respectively. Unlike the existing technology that uses screws to fix the wire ends, this connection method is more convenient, and this design can connect wires.
[0015] Preferably, the clamping panel has fitting holes that correspond to the insertion holes on the mounting base. The limiting frame has connecting holes on both sides, and two connecting rods are installed on each side of the clamping panel in a figure-eight shape. The connecting rods match the connecting holes, and the lower ends of the connecting rods are chamfered. After the mounting base is installed, the clamping panel is installed on it. The fitting holes on the clamping panel correspond to the insertion holes. When installing the clamping panel, the two connecting rods are inserted into the connecting holes on one side of the mounting hole. The figure-eight shaped connecting rods, after being inserted into the connecting holes, can tighten within the connecting holes to limit the clamping panel. To facilitate the insertion of the connecting rods into the connecting holes, chamfers are provided on the connecting rods. This design allows for the installation of the clamping panel.
[0016] The beneficial effects of this utility model are: it can be fixed by the structure of the socket itself, can quickly fix the mounting base, can reduce the difficulty of installation, can fix the conductive strip, can limit the position of the grounding strip, can quickly install the grounding strip, can fix the back cover, can reinforce the conductive components, can connect wires, and can install the snap-on panel. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 yes Figure 1 Exploded view; Figure 3 yes Figure 2 Schematic diagram of the central fastening assembly; Figure 4 yes Figure 2 Schematic diagram of the middle mounting base; Figure 5 yes Figure 2 Schematic diagram of the structure of the conductive component; Figure 6 yes Figure 2 Schematic diagram of the middle and rear cover structure; Figure 7 yes Figure 2 A schematic diagram of the structure of the middle snap-fit panel.
[0018] In the diagram: 1. Mounting base; 11. Mounting groove; 112. Limiting groove; 113. Fitting ring; 114. Wiring hole; 12. Socket; 121. Live wire hole; 122. Neutral wire hole; 123. Ground wire hole; 13. Limiting frame; 131. Connecting hole; 14. Limiting hole; 15. Lifting plate one; 16. Divider plate; 161. Guide groove; 17. Lifting plate two; 18. Clamping block; 19. Positioning groove; 191. Slot; 2. Conductive component; 21. Conductive strip; 211. Wiring groove one; 22. Limiting strip; 23. Contact strip; 24. Guide plate; 25. Protrusion; 26. Grounding strip; 27. Positioning strip; 271. Reinforcing groove; 28. Insert strip; 281. Elastic sheet; 282. Serrated edge; 283. Extrusion granule; 3. Back cover; 31. Crimping frame; 32. Insert groove; 33. Positioning block; 331. Insert block; 34. Adhesive plate one; 35. Adhesive plate two; 36. Reinforcing strip; 37. Extrusion plate; 38. Divider rod; 4. Fastening assembly; 41. Fastening screw; 42. Fastening block; 43. Threaded tube; 44. Reinforcing rib; 5. Crimping panel; 51. Adhesion hole; 52. Connecting rod; 53. Chamfer. Detailed Implementation
[0019] The present invention will be further described below with reference to the accompanying drawings and specific embodiments.
[0020] like Figure 1 , Figure 2 In the illustrated embodiment, a quick-installation socket panel includes: Mounting base 1, the rear end of mounting base 1 is provided with mounting groove 11, and the front end of mounting base 1 is provided with insertion hole 12; Conductive component 2 is installed in mounting groove 11 and corresponds to socket 12. Rear cover 3, the rear end unit of the mounting base 1 is detachably connected to the mounting base 1; Fastening component 4 is mounted on mounting base 1; The snap-fit panel 5 is detachably connected to the mounting base 1.
[0021] like Figure 3As shown, a limiting frame 13 is installed at the front end of the mounting base 1. The fastening assembly 4 includes a fastening screw 41 and a fastening block 42. Fastening assemblies 4 are installed on both sides of the mounting base 1. One end of the fastening screw 41 passes through the limiting frame 13 and is placed on one side of the limiting frame 13. One end of the fastening block 42 is equipped with a threaded tube 43. The end of the fastening screw 41 that passes through the limiting frame 13 is threadedly connected to the threaded tube 43. The cross-sectional shape of the fastening block 42 is stepped. A reinforcing rib 44 is installed on the fastening block 42. One side of the reinforcing rib 44 is connected to the fastening block 42, and the other side of the reinforcing rib 44 is connected to the threaded tube 43.
[0022] like Figure 4 , Figure 5 As shown, the mounting base 1 has insertion holes 12 on both sides, which are connected to the mounting groove 11. The insertion holes 12 include a live wire hole 121, a neutral wire hole 122, and a ground wire hole 123. The conductive component 2 includes a conductive strip 21. The conductive strip 21 has two sections, which are respectively placed on both sides of the mounting groove 11 and correspond to the live wire hole 121 and the neutral wire hole 122. The conductive strip 21 includes a limiting strip 22 and a contact strip 23. The mounting groove 11 has a limiting groove 112. The limiting strip 22 has a U-shaped cross-section. The mounting groove 11 matches the limiting strip 22. The limiting strip 22 has contact strips 23 on both sides. One end of the contact strip 23 is connected to the conductive strip 21, and the other end of the contact strip 23 corresponds to the insertion hole 12.
[0023] The end of the contact strip 23 corresponding to the socket 12 is bent. A guide plate 24 is installed on the contact strip 23, and the guide plate 24 corresponds to the socket 12. A fitting ring 113 is installed in the mounting groove 11, and the fitting ring 113 matches the bent end of the contact strip 23. A protrusion 25 is installed on one side of the limiting strip 22. A limiting hole 14 is provided on the side of the mounting base 1, and the protrusion 25 is placed in the limiting hole 14. A lifting plate 15 is provided in the mounting groove 11, and the lifting plate 15 contacts the bottom surface of the conductive strip 21.
[0024] Two partition plates 16 are installed in the mounting slot 11. The two partition plates 16 are respectively attached to the conductive strips 21 on both sides. The conductive component 2 also includes a grounding strip 26. The grounding strip 26 includes a positioning strip 27 and a plug strip 28. Plug strips 28 are installed on both the left and right sides of the positioning strip 27. The cross-sectional shape of the positioning strip 27 is U-shaped, and the cross-sectional shape of the plug strip 28 is L-shaped. One side of the plug strip 28 is connected to the positioning strip 27, and an elastic piece 281 is installed on the other side of the plug strip 28. The elastic piece 281 corresponds to the ground wire hole 123. The front and rear sides of the positioning strip 27 are in contact with the two partition plates 16 respectively. Several evenly distributed serrations 282 are provided on the side of the plug strip 28 that contacts the positioning strip 27.
[0025] An extrusion granule 283 is installed on the side of the positioning strip 27 that contacts the partition plate 16. The partition plate 16 is provided with a guide groove 161. The extrusion granule 283 is placed in the guide groove 161 and contacts the partition plate 16. Several lifting plates 17 are installed in the mounting groove 11. The lifting plates 17 are in contact with the bottom surface of the grounding strip 26.
[0026] like Figure 6 As shown, a snap-fit frame 31 is installed on both sides of the back cover 3, and a snap-fit block 18 is installed on both sides of the mounting base 1. The snap-fit block 18 has a triangular cross-sectional shape. The back cover 3 is detachably connected to the mounting base 1 through the cooperation of the snap-fit frame 31 and the snap-fit block 18. The inner side of the snap-fit frame 31 is provided with a insertion groove 32, which corresponds to the snap-fit block 18. The back cover 3 is provided with a positioning block 33, and the mounting base 1 is provided with a positioning groove 19. The positioning block 33 matches the positioning groove 19. Insert blocks 331 are installed on both sides of the positioning block 33. The insert blocks 331 have a triangular cross-sectional shape. Slots 191 are provided on both sides of the positioning groove 19, and the insert blocks 331 match the slots 191.
[0027] Several bonding plates 34 are installed on the side of the back cover 3 facing the mounting base 1. The bonding plates 34 are in contact with the side of the conductive strip 21. Several bonding plates 35 are installed on the side of the back cover 3 facing the mounting base 1. The bonding plates 35 are in contact with the left and right sides of the positioning strip 27. The positioning strip 27 is provided with a reinforcing groove 271. A reinforcing strip 36 is installed on the bonding plate 35. The reinforcing strip 36 is placed in the reinforcing groove 271. An extrusion plate 37 is installed on the back cover 3. The extrusion plate 37 is in contact with the grounding strip 26.
[0028] The limiting strip 22 of the conductive strip 21 is provided with a wiring groove 211, the positioning strip 27 of the grounding strip 26 is provided with a wiring groove 272, the mounting base 1 is provided with a wiring hole 114 on one side, and the back cover 3 is provided with a branch rod 38 on both sides.
[0029] like Figure 7 As shown, the snap-fit panel 5 is provided with a fitting hole 51, which corresponds to the insertion hole 12 on the mounting base 1. Both sides of the limiting frame 13 are provided with connecting holes 131. Two connecting rods 52 are installed on both sides of the snap-fit panel 5. The two connecting rods 52 are distributed in a figure-eight shape. The connecting rods 52 match the connecting holes 131. The lower end of the connecting rods 52 is provided with a chamfer 53.
[0030] When installing the socket, first, install the conductive component 2 in the mounting groove 11 of the mounting base 1. Install the limiting strips 22 of the two conductive strips 21 in the limiting grooves 112 on both sides respectively. The side of the conductive strip 21 is attached to the lifting plate 15 to limit the installation depth. Then, align the end of the conductive strip 21 with the fitting ring 113 to limit the conductive strip 21. Align the bent end of the contact strip 23 with the socket. During the installation of the conductive strip 21, the protrusion 25 on one side of the limiting strip 22 is inserted into the limiting hole 14 of the mounting base 1 to fix the conductive strip 212, thus completing the installation of the conductive strip 21. Then, insert the grounding strip 16 between the partition plates 16. The positioning strip 27 enters between the partition plates 16 through the cooperation of the extrusion granules 283 and the guide groove 161 on the partition plate 16. Then, place the grounding piece 26 on the lifting plate 17 to limit the installation depth. After installation, the connector strip 28 corresponds to the socket 12 via the elastic sheet 281, and the serrations 282 on the connector strip 28 contact the partition plate 16 for limiting, thus completing the installation of the grounding piece 26.
[0031] After the conductive component 2 is installed, the wires are inserted into the mounting groove 11 through the wiring hole 114. The wires are then split by the branch rod 38, and the separated wires are connected to the conductive strips 21 and the grounding strip 26 on both sides to supply power to the socket. After connecting the wires, the back cover 3 is pressed directly onto the mounting base 1. The clamping blocks 28 on both sides of the mounting base 1 enter the clamping frame 31 along the insertion groove 32 to connect the back cover 3 to the mounting base 1. During the installation of the back cover 3, the positioning block 33 is inserted into the positioning groove 19. The insertion block 331 on the positioning block 27 cooperates with the slot 191 to limit the position of the back cover 3.
[0032] After the back cover 3 is installed, press the mounting base 1 into the hole. The installation depth is limited by the limiting frame 13. For mounting surfaces such as sheet metal, the fastening block 42 of the fastening component 4 is placed on the other side of the mounting surface to restrict the rotation of the fastening block 42. Rotating the fastening screw 41 causes the fastening block and threaded tube 43 to rise. After the fastening block 42 rises, it presses against the back of the sheet metal, thus fixing the mounting base 1 onto the sheet metal. For mounting holes such as wall countersunk holes, the fastening block 42 is placed inside the mounting hole. Rotating the fastening screw 41 causes the fastening block 42 to rotate and fit against the side of the hole. The rotation of the fastening block 42 is limited by the hole. Then, the fastening block 42 rises and presses against the protrusion at the hole outlet, thus fixing the mounting base 1 inside the hole. After installation, the snap-fit panel 5 is installed on the surface of the mounting base 1. The connecting rod 52 of the snap-fit panel 5 is inserted into the connecting hole 131 of the limiting frame 13 through the chamfer 53, and is fixed in the connecting hole 131 by the expansion of the figure-eight connecting rod 52.
Claims
1. A quick-installation socket panel, characterized in that, include: Mounting base (1), the rear end of the mounting base (1) is provided with a mounting groove (11), and the front end of the mounting base (1) is provided with a socket (12). A conductive component (2) is installed in a mounting groove (11) and corresponds to a socket (12); The rear cover (3) is mounted on the rear end of the mounting base (1) and is detachably connected to the mounting base (1); Fastening assembly (4), said fastening assembly (4) is mounted on mounting base (1); The snap-fit panel (5) is detachably connected to the mounting base (1).
2. The quick-installation socket panel according to claim 1, characterized in that, The mounting base (1) has a limiting frame (13) installed at its front end. The fastening assembly (4) includes a fastening screw (41) and a fastening block (42). The mounting base (1) has fastening assemblies (4) installed on both sides. One end of the fastening screw (41) passes through the limiting frame (13) and is placed on one side of the limiting frame (13). One end of the fastening block (42) is fitted with a threaded tube (43). The end of the fastening screw (41) that passes through the limiting frame (13) is threadedly connected to the threaded tube (43). The cross-sectional shape of the fastening block (42) is stepped. The fastening block (42) is fitted with a reinforcing rib (44). One side of the reinforcing rib (44) is connected to the fastening block (42), and the other side of the reinforcing rib (44) is connected to the threaded tube (43).
3. A quick-installation socket panel according to claim 1, characterized in that, The mounting base (1) has sockets (12) on both sides, which are connected to the mounting groove (11). The sockets (12) include a live wire hole (121), a neutral wire hole (122) and a ground wire hole (123). The conductive component (2) includes a conductive strip (21). The conductive strip (21) has two parts, which are respectively placed on both sides of the mounting groove (11) and correspond to the live wire hole (121) and the neutral wire hole (122). The conductive strip (21) includes a limiting strip (22) and a contact strip (23). The mounting groove (11) has a limiting groove (112). The limiting strip (22) has a U-shaped cross-section. The mounting groove (11) matches the limiting strip (22). The limiting strip (22) has contact strips (23) on both sides. One end of the contact strip (23) is connected to the conductive strip (21), and the other end of the contact strip (23) corresponds to the socket (12).
4. A quick-installation socket panel according to claim 3, characterized in that, The contact strip (23) is bent at one end corresponding to the socket (12). A guide plate (24) is installed on the contact strip (23). The guide plate (24) corresponds to the socket (12). A fitting ring (113) is installed in the mounting groove (11). The fitting ring (113) matches the bent end of the contact strip (23). A protrusion (25) is installed on one side of the limiting strip (22). A limiting hole (14) is provided on the side of the mounting base (1). The protrusion (25) is placed in the limiting hole (14). A lifting plate (15) is provided in the mounting groove (11). The lifting plate (15) contacts the bottom surface of the conductive strip (21).
5. A quick-installation socket panel according to claim 3, characterized in that, Two partition plates (16) are installed in the mounting groove (11). The two partition plates (16) are respectively attached to the conductive strips (21) on both sides. The conductive component (2) also includes a grounding strip (26). The grounding strip (26) includes a positioning strip (27) and a plug strip (28). Plug strips (28) are installed on both the left and right sides of the positioning strip (27). The cross-sectional shape of the positioning strip (27) is U-shaped, and the cross-sectional shape of the plug strip (28) is L-shaped. One side of the plug strip (28) is connected to the positioning strip (27). An elastic sheet (281) is installed on the other side of the plug strip (28). The elastic sheet (281) corresponds to the ground wire hole (123). The front and rear sides of the positioning strip (27) are in contact with the two partition plates (16) respectively. Several evenly distributed serrations (282) are provided on the side of the plug strip (28) connected to the positioning strip (27).
6. A quick-installation socket panel according to claim 5, characterized in that, On the side of the positioning strip (27) that contacts the partition plate (16), there is an extrusion pellet (283). The partition plate (16) is provided with a guide groove (161). The extrusion pellet (283) is placed in the guide groove (161) and contacts the partition plate (16). Several lifting plates (17) are installed in the mounting groove (11). The lifting plates (17) are in contact with the bottom surface of the grounding strip (26).
7. A quick-installation socket panel according to claim 5, characterized in that, Both sides of the back cover (3) are equipped with snap-fit frames (31), and both sides of the mounting base (1) are equipped with snap-fit blocks (18). The cross-sectional shape of the snap-fit blocks (18) is triangular. The back cover (3) is detachably connected to the mounting base (1) through the cooperation of the snap-fit frames (31) and the snap-fit blocks (18). The inner side of the snap-fit frames (31) is provided with insertion grooves (32). The insertion grooves (32) correspond to the snap-fit blocks (18). The back cover (3) is provided with positioning blocks (33), and the mounting base (1) is provided with positioning grooves (19). The positioning blocks (33) match the positioning grooves (19). Both sides of the positioning blocks (33) are equipped with inserts (331). The cross-sectional shape of the inserts (331) is triangular. Both sides of the positioning grooves (19) are provided with slots (191). The inserts (331) match the slots (191).
8. A quick-installation socket panel according to claim 7, characterized in that, The back cover (3) has several first-layer adhesive plates (34) installed on the side facing the mounting base (1). The first-layer adhesive plates (34) are in contact with the side of the conductive strip (21). The back cover (3) has several second-layer adhesive plates (35) installed on the side facing the mounting base (1). The second-layer adhesive plates (35) are attached to the left and right sides of the positioning strip (27). The positioning strip (27) is provided with a reinforcing groove (271). The second-layer adhesive plates (35) are provided with a reinforcing strip (36). The reinforcing strip (36) is placed in the reinforcing groove (271). The back cover (3) is provided with an extrusion plate (37). The extrusion plate (37) is in contact with the grounding strip (26).
9. A quick-installation socket panel according to claim 5, characterized in that, The limiting strip (22) of the conductive strip (21) is provided with a wiring groove (211), the mounting base (1) is provided with a wiring hole (114) on one side, and the back cover (3) is provided with a branch rod (38) on both sides.
10. A quick-installation socket panel according to claim 2, characterized in that, The snap-fit panel (5) is provided with fitting holes (51), which correspond to the insertion holes (12) on the mounting base (1). The limiting frame (13) is provided with connecting holes (131) on both sides. Two connecting rods (52) are installed on both sides of the snap-fit panel (5). The two connecting rods (52) are distributed in a figure-eight shape. The connecting rods (52) match the connecting holes (131). The lower end of the connecting rods (52) is provided with a chamfer (53).
Citation Information
Patent Citations
Mounting structure for wall socket and wall socket
CN218070481U