An antistatic reusable acrylic pattern plate and its assembling process

Through the shape adaptation of the first card slot and the card block and the jacking drive component, the installation complexity and static electricity problems of the acrylic patterned plate are solved, stable connection and static electricity elimination are achieved, and the reuse of the plate is supported.

CN119572590BActive Publication Date: 2025-10-17HUIZHOU FABULOUS MATERIALS TECH CO LTD
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Patent Information

Application Number
CN202510094627.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-01-21
Publication Date
2025-10-17
Estimated Expiration
2045-01-21

AI Technical Summary

Technical Problem

Existing acrylic patterned plates are expensive to install, cumbersome to install, have unstable connections, and are prone to static electricity, which affects the feel.

Method used

The shape adaptation characteristics of the first card slot and the first card block are adopted, combined with the jacking drive component, to realize the pre-assembly and reinforcement process of the connecting part and the adjacent plate. The connection is strengthened by tightening the card slot, and the conductive strip is used to conduct electricity to achieve static elimination.

Benefits of technology

It realizes the simple installation and reuse of acrylic patterned plates, enhances the stability of the connection, eliminates the influence of static electricity, and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an anti-static reusable acrylic pattern plate and an assembling process thereof, which comprises a plurality of plate bodies and connecting pieces. Each plate body comprises a base plate, a plurality of horizontal rods and a plurality of vertical rods which are arranged in a cross staggered manner, and further comprises a cover plate. The connecting piece comprises a plurality of first horizontal grooves. Two vertical rods at the edge are symmetrically fixed with top blocks at opposite sides. Each top block and its adjacent two horizontal rods and vertical rods form a clamping area. Two clamping areas symmetrically distributed on adjacent plate bodies and their corresponding first horizontal grooves form a first clamping groove in the shape of π. The application further comprises a plurality of first clamping blocks and a jacking drive assembly arranged on the mounting plate. Through the arrangement of the first clamping groove and the first clamping block, the pre-assembly of the device is realized. Through the simple operation of the jacking drive assembly, the detachable assembly of the connecting piece and the adjacent plate body is reinforced in the way of the first clamping groove being tightened and narrowed.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of acrylic plate, in particular to an anti-static reusable acrylic pattern plate and its assembly process. BACKGROUND

[0002] Acrylic plate has a wide application in the construction industry, among which the acrylic pattern plate has a wide application in the building and home industry due to its unique surface pattern or shape, but the existing acrylic pattern plate has the following shortcomings in actual use.

[0003] Firstly, the assembly of the acrylic plate is directly fixed to the wall surface, which is not only costly but also complicated in the installation process.

[0004] Secondly, adjacent acrylic plates are often connected and assembled, which is easily affected by the environment and the connection stability.

[0005] Thirdly, static electricity is often generated on the surface of the acrylic plate, which affects the hand feeling.

[0006] Therefore, an anti-static reusable acrylic pattern plate and its assembly process are proposed. SUMMARY

[0007] The purpose of the present application is to provide an anti-static reusable acrylic pattern plate and its assembly process, which is characterized in that the first clamping groove and the first clamping block are matched in shape, the connecting piece and the adjacent plate body are pre-assembled, the top driving assembly is simple to operate, the first clamping groove is tightened and narrowed, and the connecting piece and the adjacent plate body are assembled.

[0008] To achieve the above purpose, the present application provides the following technical scheme: an anti-static reusable acrylic pattern plate, comprising: a plurality of plate bodies; a connecting piece arranged between adjacent plate bodies for plate assembly; wherein each plate body comprises a base plate, a plurality of horizontal rods fixed transversely on the base plate, and a plurality of vertical rods arranged in a cross shape with the plurality of horizontal rods, and a cover plate fixed to the side of the plurality of horizontal rods away from the base plate; the connecting piece comprises a mounting plate, a mounting block fixed on the mounting plate, and a plurality of first horizontal grooves opened on the mounting block; two vertical rods at the edge are symmetrically fixed with top blocks corresponding to the positions between adjacent horizontal rods on the opposite sides, each top block and its adjacent two horizontal rods and vertical rods form a clamping area, wherein the two clamping areas symmetrically distributed on the adjacent plate bodies and the corresponding first horizontal grooves form a first clamping groove in the shape of π; a plurality of first clamping blocks are further included, each first clamping block is matched in shape with the first clamping groove in the shape of π; and a top driving assembly is arranged on the mounting plate for driving the plurality of vertical rods to move up and down.

[0009] Preferably, the jacking drive assembly comprises a groove opened on the side wall near the top of the plurality of vertical rods and a transmission rod transversely across the groove; and a drive structure arranged on each side of the top of the base plate, each drive structure comprising a U-shaped frame fixed to the upper part of the base plate, a telescopic column arranged in the through hole opened on the top of the U-shaped frame, a transmission plate fixed to the top of the telescopic column, a stop block arranged on the bottom of the transmission plate, and a spring arranged on the outer wall of the telescopic column between the transmission plate and the U-shaped frame for resetting the telescopic column; a rotating shaft rotatably arranged on the side wall of the base plate, an operating handle arranged on the end of the rotating shaft, a transmission wheel fixed to the middle of the rotating shaft, and an eccentric plate eccentrically arranged on the transmission wheel and fixed to the inner side of the transmission wheel at one end and gradually approaching the edge of the transmission wheel at the other end, wherein the eccentric plate arranged on the transmission wheel can abut against the stop block and push the stop block upward when the rotating shaft drives the transmission wheel to rotate.

[0010] Preferably, the drive handle comprises an operating wheel fixed to the end of the rotating shaft and a ring-shaped slot opened on the operating wheel; and a mounting seat arranged on the top of the U-shaped frame, the mounting seat comprising a rotatable plug block fitted and engaged with the slot.

[0011] Preferably, a limiting slot is symmetrically opened on the opposite side of the adjacent base plate, and the mounting plate is limitingly and slidably arranged in the limiting slot for transversely assembling the adjacent base plate.

[0012] Preferably, a hook assembly is arranged on the side wall near the top of the mounting plate for improving the assembly stability of the base plate and the connecting piece; the hook assembly comprising a hook seat fixed to the mounting plate, the top of the hook seat symmetrically comprising an embedded slot; two supporting plates fixed to the opposite sides of the adjacent U-shaped frame, each supporting plate comprising a bracket arranged on the upper surface of the supporting plate, a transmission frame rotatably connected to the bracket through a pin shaft arranged on the top of the bracket, and a hook arranged on one end of the transmission frame and fitted with the embedded slot on the top of the hook seat, and a connecting block arranged on the other end of the transmission frame and connected with the transmission plate for offsetting the transmission frame when the transmission plate rises or falls.

[0013] Preferably, a transmission block is limitingly arranged on the bottom of the telescopic column, a second clamping slot is opened on the top of the transmission block, and a second transverse slot is opened on the side wall near the top of the mounting block; and a second clamping block, wherein the second clamping block is in the shape of an inverted N, the middle part of the second clamping block penetrates through the second transverse slot, and the two ends of the second clamping block are fitted and engaged with the second clamping slots symmetrically arranged on the adjacent base plate.

[0014] Preferably, an electrically conductive strip is arranged in each vertical rod, and when the base plates are longitudinally assembled, the plurality of vertical rods on which the lower base plate is arranged are inserted into the hole slots exposed on the vertical rods on which the upper base plate is arranged due to the rising.

[0015] Preferably, the mounting block is provided with a plurality of screw holes on the mounting plate, and a connecting plate is provided with a plurality of stepped portions corresponding to the plurality of screw holes; further comprising a plurality of screws, wherein each screw comprises a screw rod and a nut, and the nut is shaped to fit the screw hole and the stepped portion; and two through grooves are provided on the sidewall near the top of the connecting plate for exposing the two operating handles on the opposite sides of the adjacent plate body.

[0016] An assembly process applied to the above-mentioned anti-static reusable acrylic pattern plate:

[0017] The assembly process comprises:

[0018] S1: first, preset the screw sleeve on the wall surface, then insert the screw into the corresponding screw sleeve through the stepped portion and the screw hole to complete the installation of the connecting piece and the wall surface;

[0019] S2: then, install the base plate on which the plate body is located along the vertical direction through the limiting slot and the mounting plate, insert the first clamping block into the first clamping slot and the second clamping block into the second transverse slot, and place the hook seat under the two transmission frames to drive the operating handle, so that the first clamping slot tightens the first clamping block, the second clamping slot is inserted, the hook portion of the two transmission frames is clamped with the embedded slot on the hook seat, and the multi-stage locking process of the connecting piece and the adjacent plate body is completed;

[0020] S3: then, paste the cover plate on the surface of the plurality of horizontal rods to complete the horizontal assembly process of the connecting piece and the adjacent plate body;

[0021] S4: finally, raise the plurality of vertical rods on which the lower plate body is located and insert them into the hole slot exposed on the vertical rod on which the upper plate body is located due to the rising, complete the vertical assembly process, after assembly, turn over the whole, preset the installation hole on the ground, so that the vertical rod originally protruding from the upper plate body is inserted into the installation hole, the static electricity is guided to the ground, and the plate body originally leaking the hole slot is covered by the protective cover.

[0022] Compared with the prior art, the beneficial effects of the present application are as follows:

[0023] 1: through the shape fitting characteristics of the first clamping slot and the first clamping block, the pre-assembly process of the connecting piece and the adjacent plate body is completed, and through the simple operation of the jacking drive assembly, the assembly process of the connecting piece and the adjacent plate body is reinforced in the first clamping slot tightening mode, the operation is simple, and the characteristics of each structure assembly are realized. The process of reusing the device.

[0024] 2: as another embodiment of the present application, on the basis of the embodiment, the driving action of the driving structure is utilized, the hook portion of the transmission frame is buckled with the embedded slot on the hook seat, and the assembly stability of the adjacent plate body and the connecting piece is reinforced.

[0025] 3. As other embodiments of the present application, the driving force provided by the driving assembly is used to further reinforce the assembling stability of the adjacent plate body and the connecting piece in the way that the second clamping groove is inserted with the second clamping block.

[0026] 4. As other embodiments of the present application, when the vertical rods on the plate body are moved upwards, the hole groove is leaked below the plate body, at this time, the vertical rods extended by the lower plate body are inserted into the hole groove, so that the upper and lower assembling process of the adjacent plate body is realized. Considering the role of the conductive strip arranged in the vertical rod, after the assembling of the several plate bodies and the connecting piece is completed, the whole is turned over and installed in the ground, so that the vertical rod extended by the original upper plate body is inserted into the installation hole, and the electrostatic conduction process is realized. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 It is a structural schematic diagram of the present application;

[0028] Figure 2 It is a structural schematic diagram of the present application; Figure 1

[0029] Figure 3 It is a structural schematic diagram of the present application; Figure 2

[0030] Figure 4 It is another perspective structural schematic diagram of the present application; Figure 3

[0031] Figure 5 It is a disassembled state schematic diagram of the plate body and the connecting piece;

[0032] Figure 6 It is a front view structural schematic diagram of the present application; Figure 5

[0033] Figure 7 It is an enlarged structural schematic diagram of B;

[0034] Figure 8 It is an enlarged structural schematic diagram of A;

[0035] Figure 9 It is a local enlarged structural schematic diagram of the present application; Figure 4

[0036] It is a local enlarged structural schematic diagram of the present application; Figure 10 Figure 3

[0037] Figure 11 It is an enlarged structural schematic diagram of the driving handle.

[0038] ​​​​​​In the figure: 111, substrate; 112, horizontal rod; 113, vertical rod; 114, top block; 115, first clamping block; 116, cover plate; 117, protective cover; 211, rotating shaft; 212, transmission wheel; 213, eccentric plate; 214, operating wheel; 215, clamping groove; 216, mounting seat; 217, clamping block; 218, telescopic column; 219, transmission plate; 220, abutting block; 221, spring; 222, U-shaped frame; 311, transmission block; 312, second clamping groove; 313, second clamping block; 411, recess; 412, transmission rod; 511, support plate; 512, support; 513, transmission frame; 514, connecting block; 515, hook seat; 611, limiting groove; 612, mounting plate; 613, mounting block; 614, connecting plate; 615, screw hole; 616, stepped portion; 617, screw rod; 618, nut; 619, first horizontal groove; 620, through groove. DETAILED DESCRIPTION

[0039] In the description of the present application, it should be understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and therefore cannot be understood as indicating or implying that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as limiting the present application. The embodiments of the present application will be described in detail below with reference to the drawings.

[0040] Embodiment 1

[0041] Please refer to Figures 1 to 11 The present application preferably provides a technical solution: an anti-static reusable acrylic pattern plate, comprising: a plurality of plate bodies; a connecting piece arranged between adjacent plate bodies for assembling the plate bodies; wherein each plate body comprises a base plate 111, a plurality of horizontal rods 112 fixed transversely on the base plate 111, and a plurality of vertical rods 113 arranged in a cross staggered manner with the plurality of horizontal rods 112, further comprising a cover plate 116 fixed on the side of the plurality of horizontal rods 112 away from the base plate 111; the connecting piece comprises a mounting plate 612, the mounting plate 612 is fixed with a mounting block 613, and a plurality of first horizontal grooves 619 are formed on the mounting block 613; two vertical rods 113 at the edge are symmetrically fixed with a top block 114 at positions corresponding to the positions between adjacent horizontal rods 112 on the opposite sides, each top block 114 and its adjacent two horizontal rods 112 and vertical rods 113 form a clamping region, wherein the two clamping regions symmetrically distributed on adjacent plate bodies and the corresponding first horizontal grooves 619 form a first clamping groove in the shape of π; further comprising a plurality of first clamping blocks 115, each first clamping block 115 is shaped to fit the first clamping groove in the shape of π; and a jacking drive assembly arranged on the mounting plate 612 is used to drive the plurality of vertical rods 113 to move up and down.

[0042] In the embodiment, the plate body includes the base plate 111 and the cover plate 116, and a plurality of horizontal rods 112 and a plurality of vertical rods 113 arranged in a cross staggered manner between the base plate 111 and the cover plate 116, wherein the horizontal rods 112 are in a fixed state, and the vertical rods 113 are in a movable state, and two vertical rods 113 placed at the edge are symmetrically fixed at the opposite side, and the top block 114 and its adjacent two horizontal rods 112 and vertical rods 113 form a clamping area, and the two clamping areas on the opposite sides of the adjacent plate body and the corresponding first horizontal slot 619 form a π-shaped first clamping slot, which is combined with Figure 4 、 5 as shown, to adapt to the π-shaped first clamping block 115, and the installation state structure Figure 7 , so as to realize the transverse assembly of the connecting piece and the adjacent plate body, and the installation plate 612 where the connecting piece is located and the adjacent two base plates 111 are limited to slide and install through the limiting slot 611 opened on the side wall of the base plate 111 below, and the installation plate 612 is respectively provided with a jacking driving assembly and an installation block 613 above and below, wherein the first horizontal slot 619 opened on the installation block 613 is part of the first clamping slot, and the jacking driving assembly realizes the lifting process of the top block 114 on the vertical rod 113 by driving the vertical rod 113 to lift up as Figure 9 shown, so as to realize the clamping process of the plurality of first clamping blocks 115 in the form of the plurality of first clamping slots being reduced;

[0043] The device completes the pre-assembly process of the connecting piece and the adjacent plate body through the shape adaptation characteristics of the first clamping slot and the first clamping block 115, and through the simple operation of the jacking driving assembly, the assembly process of the connecting piece and the adjacent plate body is reinforced in the form of the first clamping slot being tightened and reduced, the design is simple to operate, and the characteristics of each structure assembly realize the repeated use process of the device.

[0044] Embodiment 2

[0045] As another embodiment of the present application, the jacking driving assembly comprises grooves 411 opened in the side walls near the top of the plurality of vertical rods 113, and a transmission rod 412 transversely penetrating the grooves 411; and further comprises driving structures respectively arranged near the top of the two sides of the base plate 111, each of the driving structures comprising a U-shaped frame 222 fixed on the upper portion of the base plate 111, and a telescopic column 218 arranged in a through hole opened in the top of the U-shaped frame 222, wherein a transmission plate 219 fixed on the top of the telescopic column 218 is fixed with the transmission rod 412, and a stopper 220 arranged on the bottom of the transmission plate 219; and a spring 221 arranged on the outer wall of the telescopic column 218 between the transmission plate 219 and the U-shaped frame 222 for resetting the telescopic column 218; and a rotating shaft 211 rotatably arranged on the side wall of the base plate 111, wherein an operating handle is arranged on the end of the rotating shaft 211, a transmission wheel 212 is fixed on the middle portion of the rotating shaft 211, and an eccentric plate 213 is eccentrically arranged on the transmission wheel 212, one end of the eccentric plate 213 is fixed on the inner side of the transmission wheel 212, and the other end gradually approaches the edge of the transmission wheel 212, when the rotating shaft 211 drives the transmission wheel 212 to rotate, the eccentric plate 213 arranged on the transmission wheel 212 can abut against the stopper 220 and push the stopper 220 to rise.

[0046] Here, in particular combination with Figure 9 , the transmission rod 412 transversely penetrates the grooves 411 opened in the plurality of vertical rods 113, and the driving assembly can serve as the driving source for lifting and lowering the transmission rod 412;

[0047] Specifically, the telescopic column 218 is telescopically arranged on the U-shaped frame 222, the transmission plate 219 fixed on one end of the telescopic column 218 is fixed with the transmission rod 412, and the stopper 220 arranged on the bottom of the transmission plate 219 abuts against the eccentric plate 213 eccentrically arranged on the transmission wheel 212, so that when the operating handle is rotated, the rotating shaft 211 fixed with the operating handle, the transmission wheel 212 fixed with the rotating shaft 211, and the eccentric plate 213 rotate, and since one end of the eccentric plate 213 is fixed on the inner side of the transmission wheel 212 and the other end gradually approaches the edge of the transmission wheel 212 upward, when the eccentric plate 213 abuts against the stopper 220 and rotates toward the direction close to the telescopic column 218, the eccentric plate 213 can gradually push the stopper 220 to rise, the transmission plate 219 and the transmission rod 412 fixed with the transmission plate 219 are lifted, and the plurality of vertical rods 113 are lifted. Figure 9

[0048] Further, the driving handle comprises an operating wheel 214 fixed on the end of the rotating shaft 211, and an insertion slot 215 annularly opened in the operating wheel 214; and further comprises a mounting seat 216 arranged on the top of the U-shaped frame 222, and a rotatable insertion block 217 arranged in the mounting seat 216, and the insertion block 217 is adaptively engaged with the insertion slot 215.

[0049] In combination with Figure 9 , 11 ​As shown, the plug 217 is rotatably mounted with the mounting base 216, so that when the plug 217 is placed inside one of the slots 215 on the outer periphery of the operating wheel 214, the position locking of the driving handle is completed.

[0050] Further, opposite sides of the adjacent substrate 111 are symmetrically provided with limiting grooves 611, and the mounting plate 612 is slidingly mounted with the adjacent limiting grooves 611, for transverse assembly of the adjacent plate bodies, in combination with Figure 7 、 9 as shown.

[0051] Embodiment 3

[0052] As another embodiment of the present application, the side wall near the top of the mounting plate 612 is further provided with a hook assembly for improving the assembly stability of the plate body and the connecting piece; the hook assembly comprises a hook seat 515 fixed on the mounting plate 612, and the top of the hook seat 515 is symmetrically provided with an embedded groove; and two supporting plates 511 are fixed on the opposite sides of the adjacent L-shaped frame 222, each supporting plate 511 is provided with a bracket 512 on the upper surface, and a transmission frame 513 is rotatably connected to the bracket 512 through a pin shaft provided on the top of the bracket 512, wherein the hook portion provided on one end of the transmission frame 513 is adapted to the embedded groove on the top of the hook seat 515, and the connecting block 514 provided on the other end is connected with the transmission plate 219, so as to offset the transmission frame 513 when the transmission plate 219 rises or falls.

[0053] In this embodiment, the power provided by the driving structure is further used to realize the connection stability between the connecting piece and the adjacent plate body through the hook assembly, as shown in Figure 7 、 8 , 9, the hook assembly is specifically installed on the two L-shaped frames 222 distributed on opposite sides of the mounting plate 612 and the adjacent plate body, wherein the hook seat 515 is fixed on the mounting plate 612, the supporting plate 511 is fixed on the side wall of each L-shaped frame 222, the transmission frame 513 is rotatably installed on the supporting plate 511 through the pin shaft thereon, and the hook portion on one end of the transmission frame 513 is adapted to the embedded groove on the hook seat 515, and the connecting block 514 on the other end is connected with the transmission plate 219, so as to offset the transmission frame 513 when the transmission plate 219 rises or falls, as shown in Figure 7 When the transmission plate 219 on which the two plate bodies are located is lifted, the two transmission frames 513 are close to each other and offset inward and downward, thereby completing the buckling connection of the plate body and the connecting piece, and when the transmission plate 219 is lowered, the two transmission frames 513 are away from each other and offset outward and upward, thereby releasing the buckling connection.

[0054] This design can be used on the basis of embodiment 1 to reinforce the assembly stability of the adjacent plate body and the connecting piece by the driving action of the driving structure and the buckling connection of the hook portion of the transmission frame 513 and the embedded groove on the hook seat 515.

[0055] Embodiment 4

[0056] As other implementation ways of the present application, the transmission block 311 is limitingly installed at the bottom of the telescopic column 218, the second clamping groove 312 is opened at the top of the transmission block 311, and the second horizontal groove is opened at the top side wall of the installation block 613; and the second clamping block 313 is further included, wherein the second clamping block 313 is inverted U-shaped, the middle part penetrates through the second horizontal groove, and the two ends are adaptively clamped with the second clamping groove 312 symmetrically arranged on the adjacent plate body.

[0057] Here, the transmission block 311 is limitingly installed on the telescopic column 218, so that when the telescopic column 218 is lifted or lowered along with the transmission plate 219, the transmission block 311 is lifted, so that the second clamping groove 312 opened on the transmission block 311 is inserted into the end of the inverted U-shaped second clamping block 313, and the middle part of the second clamping block 313 is connected with the second horizontal groove opened on the installation block 613. In this embodiment, the driving force provided by the driving assembly is further used in the form of insertion of the second clamping groove 312 and the second clamping block 313 to further reinforce the assembly stability of the adjacent plate body and the connecting piece.

[0058] Embodiment 5

[0059] As other implementation ways of the present application, the conductive strip is arranged in each vertical rod 113, when the plate body is longitudinally assembled, the several vertical rods 113 on which the lower plate body is arranged are inserted into the hole groove exposed on the vertical rod 113 on which the upper plate body is arranged due to the rising.

[0060] The above description is all about transverse assembly, and in this embodiment, the longitudinal sliding of the vertical rod 113 is ingeniously used to realize the up-down assembly process of the adjacent plate body. For details, please refer to Figure 2 、 3 When the several vertical rods 113 are moved upward, the hole groove is exposed below the plate body, at this time, the several vertical rods 113 protruding from the lower plate body are inserted into the hole groove, so that the up-down assembly process of the adjacent plate body is realized. Considering the role of the conductive strip arranged in the vertical rod 113, after the assembly of the several plate bodies and the connecting pieces is completed, the whole is turned over and installed in the pre-installed hole on the ground, so that the vertical rod 113 protruding from the original upper plate body is inserted into the installation hole, realizing the electrostatic grounding process, and the plate body originally exposed from the hole groove is covered by the protective cover 117, as shown in Figure 1 、 4

[0061] ​Further, the mounting block 613 and the mounting plate 612 are provided with a plurality of screw holes 615; and the connecting plate 614 is provided with a plurality of stepped portions 616 corresponding to the plurality of screw holes 615; further comprising a plurality of screws, wherein each screw comprises a screw rod 617 and a nut 618, and the nut 618 is shaped to fit the shape of the screw hole 615 and the stepped portion 616; and two through grooves 620 are provided near the top side wall of the connecting plate 614 for exposing the two operating handles on the opposite sides of the adjacent plate body.

[0062] When the device is assembled, as shown in Figure 6 , 7 , 10, a connecting hole is pre-set on the wall surface, and a screw sleeve is installed in each connecting hole. When the mounting plate 612 is tightly pressed against the wall surface, the screw holes 615 provided on the mounting plate 612 and the mounting block 613 are aligned with the stepped portions 616 provided on the connecting plate 614. Then the screws are inserted into the corresponding screw sleeves through the stepped portions 616 and the screw holes 615 to complete the installation of the connecting member and the wall surface, as shown in Figure 2 .

[0063] Since the connecting plate 614 is provided with the through grooves 620 for exposing the operating handles, when the substrate 111 on which the plate body is located is installed in the vertical direction through the limiting slot 611 and the mounting plate 612, as shown in Figure 7 , the first clamping blocks 115 are inserted into the first clamping slots, the second clamping blocks 313 are inserted into the second transverse slots, and the hook seats 515 are placed below the two transmission frames 513. Then the operating handles are driven to realize the tightening of the first clamping blocks 115 in the first clamping slots, the insertion of the second clamping blocks 313 into the second clamping slots, and the clamping of the hook portions of the two transmission frames 513 and the embedded slots on the hook seats 515. Thus, the multi-stage locking process of the connecting member and the adjacent plate body is completed. Then the cover plate 116 is attached to the surfaces of the plurality of horizontal rods 112, and the longitudinal assembly process of the plate body is completed under the operation of the embodiment 5.

[0064] Embodiment 6

[0065] As another embodiment of the present application, an assembly process is applied to the aforementioned anti-static reusable acrylic pattern plate:

[0066] The assembly process comprises:

[0067] S1: First, a screw sleeve is pre-set on the wall surface, and then the screws are inserted into the corresponding screw sleeves through the stepped portions 616 and the screw holes 615 to complete the installation of the connecting member and the wall surface.

[0068] S2;Subsequently, the substrate 111 on which the plate body is located is installed in the vertical direction through the limiting groove 611 and the mounting plate 612, and then a plurality of first clamping blocks 115 are inserted into the first clamping groove, and the second clamping block 313 is inserted into the second transverse groove, and the hook base 515 is placed below the two transmission frames 513, the driving handle is driven, the first clamping groove is tightened, the second clamping groove 312 is inserted into the second clamping block 313, and the hook part of the two transmission frames 513 is clamped in the embedded groove on the hook base 515, thereby completing the multi-stage locking process of the connecting piece and the adjacent plate body;

[0069] S3;After that, the cover plate 116 is attached to the surface of the plurality of horizontal rods 112, thereby completing the horizontal assembly process of the connecting piece and the adjacent plate body.

[0070] S4;Finally, the plurality of vertical rods 113 on which the lower plate body is located are raised and inserted into the hole groove exposed on the vertical rod 113 on which the upper plate body is located, thereby completing the vertical assembly process, and after the assembly is completed, the whole is turned over, the ground is pre-installed with a mounting hole, so that the vertical rod 113 originally protruding from the upper plate body is turned down and inserted into the mounting hole, thereby realizing the static grounding process, and the plate body with the hole groove exposed on the lower plate body is covered by the protective cover 117.

[0071] Further, the substrate 111 and the cover plate 116 are provided with patterns.

[0072] In the present application, unless otherwise specified and limited, the terms "mounting", "connection", "connection", "fixing" and the like should be understood in a broad sense, for example, can be fixedly connected, can be detachably connected, or can be integrated; can be mechanically connected, wherein the detachable mounting mode has various modes, for example, can be connected through the cooperation of plug-in and buckle, and for example, can be connected through the bolt connection mode.

[0073] The above embodiment is only used for further description of the present application, and cannot be understood as the limitation of the protection scope of the present application. The technical engineers in the art can make some non-essential improvements and adjustments to the present application according to the content of the above application, and all fall within the protection scope of the present application.

Claims

1. An antistatic reusable acrylic patterned plate, characterized in that: Comprising: A number of plate bodies; Connectors provided between adjacent plate bodies for assembling the plate bodies; Wherein, each of the plate bodies includes a base plate (111), a number of cross bars (112) horizontally fixed on the base plate (111), and a number of vertical bars (113) arranged in a crosswise manner with the number of cross bars (112), and further includes a cover plate (116) fixed on the side of the number of cross bars (112) away from the base plate (111); The connector includes a mounting plate (612), a mounting block (613) fixed on the mounting plate (612), and a number of first transverse grooves (619) opened on the mounting block (613); For two vertical bars (113) placed at the edge, top blocks (114) are symmetrically fixed at positions corresponding to the spaces between adjacent cross bars (112) on their opposite sides. Each of the top blocks (114) and its adjacent two cross bars (112) and vertical bars (113) form a clamping area. Among them, the two clamping areas symmetrically distributed on adjacent plate bodies and their corresponding first transverse grooves (619) integrally form a first clamping groove in the shape of π; Further includes a number of first clamping blocks (115), and each first clamping block (115) is adapted to the shape of the first clamping groove in the shape of π; And a lifting drive assembly provided on the mounting plate (612) for driving the number of vertical bars (113) to move up and down; The lifting drive assembly includes a groove (411) opened on the side wall near the top of the number of vertical bars (113), and a transmission rod (412) passing through the groove (411); Further includes drive structures respectively provided on both sides near the top of the base plate (111). Each drive structure includes a U-shaped frame (222) fixed on the upper part of the base plate (111). A telescopic column (218) is provided in a through hole opened at the top of the U-shaped frame (222). Wherein, a transmission plate (219) fixed on the top of the telescopic column (218) is fixed to the transmission rod (412), and a resisting block (220) is provided at the bottom of the transmission plate (219); And a spring (221) for resetting the telescopic column (218) installed on the outer wall of the telescopic column (218) between the transmission plate (219) and the U-shaped frame (222); Further includes a rotating shaft (211) rotatably installed on the side wall of the base plate (111). Wherein, an operating handle is provided at the end of the rotating shaft (211), a transmission wheel (212) is fixed in the middle thereof, and an eccentric plate (213) is eccentrically arranged on the transmission wheel (212). And one end of the eccentric plate (213) is fixed inside the transmission wheel (212), and the other end gradually approaches the edge of the transmission wheel (212). When the rotating shaft (211) drives the transmission wheel (212) to rotate, the eccentric plate (213) provided on the transmission wheel (212) can contact and push the resisting block (220) to rise.

2. An antistatic and reusable acrylic pattern plate according to claim 1, wherein: The operating handle includes an operating wheel (214) fixed at the end of the rotating shaft (211), and a slot (215) annularly opened on the operating wheel (214); It further includes a mounting seat (216) provided on the top of the U-shaped frame (222). A rotatable insertion block (217) is provided inside the mounting seat (216), and the insertion block (217) is adaptively engaged with the slot (215).

3. The antistatic reusable acrylic pattern board according to claim 1, wherein: Limiting grooves (611) are symmetrically opened on the opposite sides of adjacent substrates (111). The mounting plate (612) is mounted in a limiting and sliding manner with the adjacent limiting grooves (611) for the lateral assembly of adjacent plates.

4. The antistatic reusable acrylic pattern board according to claim 1, wherein: A hook assembly is further provided on the side wall near the top of the mounting plate (612) for improving the assembly stability of the plate body and the connecting member; The hook assembly includes a hook seat (515) fixed on the mounting plate (612). Embedded grooves are symmetrically opened at the top of the hook seat (515); And two support plates (511). The two support plates (511) are fixed on the opposite sides of adjacent U-shaped frames (222). A bracket (512) is mounted on the upper surface of each support plate (511), and a transmission frame (513) is rotatably connected to the bracket (512) through a pin shaft provided at the top of the bracket (512). Among them, the hook portion provided at one end of the transmission frame (513) is adapted to the embedded groove at the top of the hook seat (515), and the connecting block (514) provided at the other end thereof is connected to the transmission plate (219). When the transmission plate (219) rises or falls, it is used for the offset of the transmission frame (513).

5. The antistatic reusable acrylic pattern board according to claim 1, wherein: A transmission block (311) is installed in a limiting manner at the bottom of the telescopic column (218). A second card slot (312) is opened at the top of the transmission block (311); It further includes a second horizontal groove opened on the side wall near the top of the mounting block (613); It further includes a second card block (313). Among them, the second card block (313) is in an inverted U shape. The middle part thereof penetrates through the second horizontal groove, and both ends are adaptively engaged with the second card slots (312) symmetrically arranged on adjacent plate bodies.

6. The antistatic reusable acrylic pattern board according to claim 1, wherein: A conductive strip is provided in each vertical rod (113). When the plate bodies are longitudinally assembled, several vertical rods (113) where the lower plate body is located rise and are inserted into the hole slots exposed by the vertical rods (113) where the upper plate body is located.

7. The antistatic reusable acrylic pattern board according to claim 1, wherein: A plurality of screw holes (615) are opened on the mounting block (613) and the mounting plate (612); It further includes a connecting plate (614). A plurality of stepped portions (616) are provided on the connecting plate (614) corresponding to the plurality of screw holes (615); It further includes a plurality of screws. Among them, each screw includes a screw rod (617) and a nut (618), and the shape of the nut (618) is adapted to the shapes of the screw hole (615) and the stepped portion (616); It also includes two through slots (620) formed on the side wall near the top of the connecting plate (614), and the through slots (620) are used to expose two operating handles on opposite sides of adjacent plates.

Citation Information

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