Ceramic plate assembly structure

Through the engagement structure of the installation frame and the fixing components, the problem of stress concentration and inconvenient replacement of the ceramic plate during installation is solved, and the effect of stable installation and simplified disassembly is achieved.

CN116876775BActive Publication Date: 2025-08-26SHENZHEN QIANLIMA DECORATION GRP CO LTD
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Patent Information

Application Number
CN202311001890.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-09
Publication Date
2025-08-26
Estimated Expiration
2043-08-09

AI Technical Summary

Technical Problem

The existing ceramic plates are easily damaged due to stress concentration during installation and are inconvenient to replace.

Method used

The combined structure of the installation frame and the fixing assembly is adopted to achieve a stable installation of the ceramic plate by engaging the engaging parts and the engaging slots, and the disassembly and installation process is simplified by rotating parts and elastic parts.

Benefits of technology

Improves the installation stability and reliability of ceramic plates, simplifies the replacement and maintenance process, and avoids damage caused by stress concentration.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to an assembly structure for a ceramic plate. First, a mounting frame is installed at a predetermined position, and then the ceramic plate is placed in the mounting cavity. Then, the fixing assembly is rotated so that the engaging member is fixed in the mounting cavity and the engaging member is engaged with the slot, so that the ceramic plate is firmly fixed in the mounting cavity. The fixing assembly can simplify the disassembly and installation process when the ceramic plate needs to be replaced or repaired. Since the engaging member can be engaged with the slot, the stability of the fixation can be further improved and the risks caused by improper fixation can be reduced. This can avoid the problem that the ceramic plate is difficult to replace during use or the subsequent stress concentration caused by the installation process.
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Description

Technical Field

[0001] The present invention relates to the field of building technology, in particular to an assembly structure of ceramic plates. Background Art

[0002] A ceramic plate is a flat plate made of ceramic material. Ceramic materials have excellent heat resistance, corrosion resistance, insulation, and hardness, so ceramic plates are widely used in various applications.

[0003] In the construction sector, ceramic panels are used for interior and exterior decoration, wall finishing and building facades, and come in a variety of colors, textures and surface treatments.

[0004] One method of installing ceramic panels is to use a keel frame, which is equipped with a slide groove. The ceramic panels are then installed one by one through the slide groove onto the keel frame. During use, if a ceramic panel fails, the entire row or column of ceramic panels must be removed from the groove of the keel frame and replaced with a new one, a time-consuming process.

[0005] Another way to install ceramic tiles is to drill holes in the tiles and then secure them to the wall with screws or bolts. These holes are usually made at the corners of the tiles, which can cause stress concentration during use and easily damage the tiles.

[0006] Therefore, there is an urgent need for an assembly structure for ceramic plates to avoid the problem that the ceramic plates are difficult to replace during use or that subsequent stress concentration is caused by the installation process. Summary of the Invention

[0007] The object of the present invention is to provide an assembly structure for a ceramic plate, so as to avoid the problem that the ceramic plate is difficult to replace during use or that subsequent stress concentration is caused by the installation process.

[0008] According to one aspect of the present invention, there is provided a ceramic plate assembly structure, comprising:

[0009] The mounting frame is formed with a mounting cavity for mounting the ceramic plate, and is provided with a card slot and a screw hole for fixing to the outside, wherein the card slot is located in the mounting cavity;

[0010] A fixing assembly is rotatably connected to the installation frame, and the fixing assembly further includes a clamping member capable of being engaged with the clamping slot;

[0011] The fixing assembly is rotated to fix the fixing assembly in the installation cavity through the engaging member, so that the fixing assembly fixes the ceramic plate in the installation cavity.

[0012] In at least one embodiment of the present application, the mounting cavity has a fitting wall;

[0013] The fixing assembly includes:

[0014] a rotating member rotatably connected to the mounting frame, wherein the engaging member is located at an end of the rotating member and is slidably connected to the rotating member;

[0015] The rotating member is rotated to engage the engaging member with the engaging groove, and two sides of the ceramic plate are respectively engaged with the rotating member and the engaging wall to fix the ceramic plate.

[0016] In at least one embodiment of the present application, the rotating member is provided with a sliding groove and a movable groove communicating with the sliding groove;

[0017] The engaging member includes an engaging portion and a moving portion provided on the engaging portion;

[0018] The moving portion passes through the movable slot and extends to the outside. The engaging portion is arranged in the sliding slot and can pass through the sliding slot and extend to the outside.

[0019] In at least one embodiment of the present application, there are two engaging members, and the two engaging members are respectively located at two ends of the rotating member;

[0020] The assembly structure of the ceramic plate further includes an elastic member, which is arranged in the sliding groove and abuts against the two engaging members respectively.

[0021] In at least one embodiment of the present application, the assembly structure of the ceramic plate has a first direction and a second direction;

[0022] The first direction is set along the length direction of the rotating member, and the second direction is set along a direction perpendicular to the fitting wall;

[0023] The fixing assembly can be accommodated in the installation cavity, and the projection of the fixing assembly in the second direction partially blocks the ceramic plate accommodated in the installation cavity;

[0024] The engaging member can be engaged with the engaging slot when moved along the first direction.

[0025] In at least one embodiment of the present application, a receiving groove is provided on a side of the rotating member close to the fitting wall;

[0026] The fixing assembly further comprises:

[0027] A supporting member rotatably disposed in the receiving groove;

[0028] A rotating gear is provided at one end of the supporting member;

[0029] a gear set, meshingly connected with the rotating gear, wherein the gear set is partially located in the accommodating groove;

[0030] The abutting member moves so that the abutting member partially extends out of the accommodating groove and abuts against the ceramic plate in the installation cavity.

[0031] In at least one embodiment of the present application, the abutting member includes:

[0032] A supporting member is rotatably disposed in the accommodating groove, and the supporting member is provided with a rotating gear;

[0033] a gear set, meshingly connected with the rotating gear, wherein the gear set is partially located in the accommodating groove;

[0034] Wherein, adjusting the gear set can make the abutting member abut against the ceramic plate in the mounting cavity.

[0035] In at least one embodiment of the present application, the abutting member has an abutting end and a rotating end;

[0036] The abutting end is fixedly connected to the rotating end, and an outwardly convex arc surface is formed between the abutting end and the rotating end;

[0037] The radius of the abutting end is denoted as a;

[0038] The radius of the rotating end is denoted as b;

[0039] The radius of the arc surface is denoted as c, and satisfies the relationship: a<b<c.

[0040] In at least one embodiment of the present application, the gear set includes:

[0041] a connecting gear meshing with the rotating gear, wherein the connecting gear is provided with a first bevel gear portion;

[0042] The second bevel gear is meshed and connected with the first bevel gear portion.

[0043] In at least one embodiment of the present application, the second bevel gear is provided with a rotating knob, and one end of the rotating knob extends into the accommodating groove.

[0044] The implementation of the present invention will have the following beneficial effects:

[0045] The assembly structure of the ceramic plate in this embodiment is as follows: first, the mounting frame is installed at a predetermined position, and then the ceramic plate is placed in the mounting cavity. Then, the fixing assembly is rotated so that the engaging member is fixed in the mounting cavity and the engaging member is engaged with the slot, so that the ceramic plate is firmly fixed in the mounting cavity. The fixing assembly can simplify the disassembly and installation process when the ceramic plate needs to be replaced or repaired. Since the engaging member can be engaged with the slot, the stability of the fixation can be further improved and the risks caused by improper fixation can be reduced. This can avoid the problem that the ceramic plate is difficult to replace during use or the subsequent stress concentration caused by the installation process. BRIEF DESCRIPTION OF THE DRAWINGS

[0046] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0047] Figure 1 This is an exploded view of the assembly structure of the ceramic plate according to one embodiment of the present invention;

[0048] Figure 2 for Figure 1 A schematic structural diagram of the assembly structure of the ceramic plate;

[0049] Figure 3 for Figure 1 Exploded view of the fixed components in the;

[0050] Figure 4 for Figure 1 Cross-sectional view of the assembly structure of the ceramic plate in use.

[0051] Wherein: 100, assembly structure of ceramic plate;

[0052] 110, mounting frame; 110a, mounting cavity; 110b, slot; 110c, screw hole; 100d, fitting wall;

[0053] 120, fixed assembly; 121, engaging member; 1211, engaging portion; 1212, moving portion; 122, rotating member; 122a, slide groove; 122b, movable groove; 122c, accommodating groove; 123, abutting member; 124, abutting member; 1241, abutting end; 1242, rotating end; 1243, arcuate surface; 125, rotating gear; 126, gear set; 127, connecting gear; 1271, first bevel gear portion; 128, second bevel gear;

[0054] 130. Elastic parts;

[0055] A, first direction; B, second direction;

[0056] 140. Turn the knob;

[0057] 150. Ceramic plate. DETAILED DESCRIPTION

[0058] To facilitate understanding of the present invention, the present invention will be described more fully below with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the accompanying drawings. However, the present invention may be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and comprehensive understanding of the present disclosure.

[0059] It should be noted that when an element is referred to as being "fixed to" another element, it may be directly attached to the other element or there may be an intermediate element. When an element is referred to as being "connected to" another element, it may be directly connected to the other element or there may be an intermediate element. The terms "vertical," "horizontal," "left," "right," and similar expressions used herein are for illustrative purposes only.

[0060] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by those skilled in the art to which this invention pertains. The terms used in this specification of the present invention are for the purpose of describing specific embodiments only and are not intended to limit the present invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0061] Please refer to Figures 1-4 An embodiment of the present invention provides an assembly structure of a ceramic plate. The assembly structure 100 of the ceramic plate in this embodiment includes:

[0062] The mounting frame 110 is formed with a mounting cavity 110a for mounting the ceramic plate 150, and is provided with a slot 110b and a screw hole 110c for fixing to the outside, wherein the slot 110b is located in the mounting cavity 110a;

[0063] The fixing assembly 120 is rotatably connected to the installation frame 110, and the fixing assembly 120 further includes a locking member 121, and the locking member 121 can be engaged with the locking slot 110b;

[0064] The fixing assembly 120 is rotated to fix the fixing assembly 120 in the installation cavity 110 a through the engaging member 121 , so that the fixing assembly 120 fixes the ceramic plate 150 in the installation cavity 110 a .

[0065] In this embodiment, first, the mounting frame 110 is installed at a predetermined position, and then the ceramic plate 150 is placed in the mounting cavity 110a. Then, the fixing assembly 120 is rotated so that the engaging member 121 is fixed in the mounting cavity 110a, and the engaging member 121 is engaged with the slot 110b, so that the ceramic plate 150 is firmly fixed in the mounting cavity 110a.

[0066] The shape of the mounting cavity 110a is roughly a "convex" shape.

[0067] The fixing assembly 120 can simplify the disassembly and installation process when it is necessary to replace or repair the ceramic plate 150. Since the engaging member 121 can be engaged with the slot 110b, the stability of the fixing can be further improved and the risk caused by improper fixing can be reduced.

[0068] This is to avoid the ceramic plate 150 being difficult to replace during use or causing subsequent stress concentration due to the installation process.

[0069] The ceramic board 150 can be stably installed at a predetermined position by using the slots 110 b and the screw holes 110 c , which helps to improve the stability and reliability of the installation.

[0070] Fixing the mounting frame 110 to the wall with screws can avoid drilling holes or grooves on the ceramic plate 150, thereby preventing the ceramic plate 150 from being damaged due to stress concentration.

[0071] It should be noted that the presence of the fixing assembly 120 can simplify the disassembly and installation process when it is necessary to replace or repair the ceramic plate 150. Since the engaging member 121 can be engaged with the slot 110b, this can further improve the stability of the fixation and reduce the risk caused by improper fixation.

[0072] By rotating the fixing assembly 120, the fixing assembly 120 can be fixed in the installation cavity 110a through the engaging member 121, so that the fixing assembly 120 fixes the ceramic plate 150 in the installation cavity 110a. Fixing can be achieved by simply rotating the fixing assembly 120, which is convenient and fast to operate, saving time and effort.

[0073] It should be further explained that the installation frame 110 is in a square shape; the slot 110b is a circular groove; and the screw hole 110c is a through-type threaded hole.

[0074] The engaging member 121 is in the shape of a cylindrical rod.

[0075] In at least one embodiment of the present application, the mounting cavity 110a has a fitting wall 100d therein;

[0076] The fixing assembly 120 includes:

[0077] The rotating member 122 is rotatably connected to the installation frame 110. The engaging member 121 is located at the end of the rotating member 122. The engaging member 121 is slidably connected to the rotating member 122.

[0078] The rotating member 122 is rotated to engage the engaging member 121 with the engaging groove 110 b , and two sides of the ceramic plate 150 are respectively attached to the rotating member 122 and the attaching wall 100 d to fix the ceramic plate 150 .

[0079] It should be noted that the rotating member 122 is roughly in the shape of a rectangular box, with a cylindrical rotating rod provided on one side for rotating relative to the mounting frame 110 .

[0080] Please refer to Figures 1-4 In at least one embodiment of the present application, the rotating member 122 is provided with a sliding groove 122a and a movable groove 122b communicating with the sliding groove 122a;

[0081] The engaging member 121 includes an engaging portion 1211 and a moving portion 1212 provided on the engaging portion 1211;

[0082] The moving portion 1212 passes through the movable slot 122 b and extends to the outside. The engaging portion 1211 is disposed in the sliding slot 122 a and can pass through the sliding slot 122 a and extend to the outside.

[0083] It should be noted that the sliding groove 122a is a cylindrical through groove; the movable groove 122b is a rectangular groove.

[0084] The engaging portion 1211 is a round rod, and the moving portion 1212 is a columnar shape disposed perpendicular to the engaging portion 1211 .

[0085] The moving portion 1212 is pushed to enable the engaging portion 1211 to engage with or disengage from the engaging slot 110 b along the axis of the engaging portion 1211 .

[0086] In at least one embodiment of the present application, there are two engaging members 121 , and the two engaging members 121 are respectively located at two ends of the rotating member 122 .

[0087] The ceramic plate assembly structure 100 further includes an elastic member 130 . The elastic member 130 is disposed in the sliding groove 122 a . The elastic member 130 abuts against the two engaging members 121 , respectively.

[0088] It should be noted that the elastic member 130 is a spring. When the engaging member 121 is engaged with the engaging slot 110 b , the elastic member 130 prevents the engaging member 121 from being disengaged from the engaging slot 110 b .

[0089] In at least one embodiment of the present application, the ceramic board assembly structure 100 has a first direction A and a second direction B;

[0090] The first direction A is set along the length direction of the rotating member 122, and the second direction B is set along a direction perpendicular to the fitting wall 100d;

[0091] The fixing assembly 120 can be accommodated in the installation cavity 110a, and the projection of the fixing assembly 120 in the second direction B partially blocks the ceramic plate 150 accommodated in the installation cavity 110a;

[0092] The engaging member 121 moves along the first direction A to engage with the engaging slot 110 b.

[0093] In this embodiment, at the beginning of assembly, ceramic plate 150 is first placed within mounting cavity 110a, with one side of ceramic plate 150 tightly aligned with engagement wall 100d. Next, rotating member 122 is rotated, causing engaging members 121 at both ends of rotating member 122 to engage with engagement slots 110b. This allows the other side of ceramic plate 150 to tightly engage with rotating member 122. Thus, both sides of ceramic plate 150 are secured by rotating member 122 and engagement wall 100d, ensuring a stable fit within mounting cavity 110a.

[0094] The elastic member 130 can also provide feedback force to reset the engaging member 121 when the engaging member 121 is released from the engaging slot 110 b , thereby making the assembly and disassembly process easier.

[0095] It should be noted that the mounting cavity 110a has a fitting wall 100d therein, which can provide a stable plane so that the ceramic plate 150 can fit closely therewith during assembly, thereby enhancing the stability of the assembly structure.

[0096] The rotating member 122 is rotatably connected to the mounting frame 110. The engaging member 121 is located at the end of the rotating member 122 and is slidably connected to the rotating member 122. During assembly, the engaging member 121 can be used to abut the rotating member 122 against the ceramic plate 150, thereby fixing the ceramic plate 150 in the mounting cavity 110a.

[0097] By rotating the rotating member 122 , the engaging member 121 can be engaged with the engaging groove 110 b , and two sides of the ceramic plate 150 are respectively engaged with the rotating member 122 and the engaging wall 100 d to fix the ceramic plate 150 .

[0098] The ceramic plate 150 can be securely and stably fixed during the installation process, reducing the risk of damage to the ceramic plate 150 due to unstable installation.

[0099] The two engaging members 121 are respectively located at the two ends of the rotating member 122. The stable support on both sides of the ceramic plate 150 further increases the fixing stability of the ceramic plate 150.

[0100] The elastic member 130 is in contact with the two engaging members 121. The elastic member 130 can provide a feedback force to keep the engaging members 121 stable when the rotating member 122 moves, and can easily reset the engaging members 121 when unloading or adjusting the ceramic plate 150.

[0101] The fixing assembly 120 can be received in the installation cavity 110 a , and a projection of the fixing assembly 120 in the second direction B partially blocks the ceramic board 150 received in the installation cavity 110 a .

[0102] The fixing assembly 120 can be hidden in the installation cavity 110 a when in use, which not only improves the aesthetics of the assembly structure but also protects the fixing assembly 120 from being affected by the external environment.

[0103] Please refer to Figures 1-4 In at least one embodiment of the present application, a receiving groove 122c is formed on a side of the rotating member 122 close to the fitting wall 100d;

[0104] The fixing assembly 120 further includes:

[0105] The supporting member 123 is disposed in the receiving groove 122c and is rotatably connected to the rotating member 122;

[0106] The abutting member 123 moves so that a portion of the abutting member 123 extends out of the accommodating groove 122 c and abuts against the ceramic plate 150 in the installation cavity 110 a .

[0107] It should be noted that the accommodating groove 122c is a rectangular groove.

[0108] Please refer to Figures 1-4 In at least one embodiment of the present application, the abutting member 123 includes:

[0109] The supporting member 124 is rotatably disposed in the receiving groove 122c;

[0110] A rotating gear 125 is provided at one end of the supporting member 124;

[0111] A gear set 126 is meshed with the rotating gear 125, and the gear set 126 is partially located in the accommodating groove 122c;

[0112] The gear set 126 is adjusted to enable the abutting member 124 to abut against the ceramic plate 150 in the mounting cavity 110 a .

[0113] In at least one embodiment of the present application, the abutting member 124 has an abutting end 1241 and a rotating end 1242 ;

[0114] The abutting end 1241 is fixedly connected to the rotating end 1242 , and an outwardly convex arc surface 1243 is formed between the abutting end 1241 and the rotating end 1242 ;

[0115] The radius of the abutting end 1241 is denoted as a;

[0116] The radius of the rotating end 1242 is denoted as b;

[0117] The radius of the arc surface 1243 is denoted as c, and satisfies the relationship: a<b<c.

[0118] It should be noted that the cross section of the abutting member is roughly egg-shaped; the rotating gear 125 is provided at one end of the abutting member 124 , and the rotating gear 125 is a spur gear.

[0119] Please refer to Figures 1-4 In at least one embodiment of the present application, the gear set 126 includes:

[0120] A connecting gear 127 meshes with the rotating gear 125 , and the connecting gear 127 includes a first bevel gear portion 1271 ;

[0121] The second bevel gear 128 is meshed and connected with the first bevel gear portion 1271 .

[0122] The connecting gear 127 is a spur gear; the first bevel gear portion 1271 and the second bevel gear 128 are both bevel gears.

[0123] In at least one embodiment of the present application, the second bevel gear 128 is provided with a rotation knob 140 , and one end of the rotation knob 140 extends into the accommodating groove 122 c .

[0124] The rotation knob 140 is used to rotate to drive the second bevel gear 128 to rotate.

[0125] During use, the rotating knob 140 is rotated to drive the second bevel gear 128 to rotate. Since the second bevel gear 128 is meshed and connected with the first bevel gear part 1271, and the first bevel gear part 1271 is provided on the connecting gear 127, the connecting gear 127 is driven to rotate. Since the connecting gear 127 is meshed with the rotating gear 125, the rotating gear 125 is driven to rotate. Since the rotating gear 125 is provided on the supporting member 124, the rotating gear 125 is driven to rotate, so that one of the supporting end 1241, the rotating end 1242 or the arc surface 1243 is in contact with the ceramic plate 150 to further fix the ceramic plate 150 to match ceramic plates 150 of different thicknesses.

[0126] In this embodiment, a receiving groove 122c is formed on one side of the rotating member 122 close to the fitting wall 100d, making the entire assembly structure more compact and improving the flexibility and convenience of installation.

[0127] The abutting member 123 is disposed in the receiving groove 122c and is rotatably connected to the rotating member 122. The abutting member 123 moves so that a portion of the abutting member 123 extends out of the receiving groove 122c and abuts against the ceramic plate 150 in the mounting cavity 110a.

[0128] By its rotatable nature, the ceramic plate 150 contacts and abuts against the ceramic plate 150, making the ceramic plate 150 more stable in the installation cavity 110a. This makes the entire assembly structure more adaptable and can accommodate ceramic plates 150 of different thicknesses and sizes.

[0129] Gear set 126 is meshed with the rotating gear 125 and is partially located within the accommodating groove 122c. Adjusting the gear set 126 enables the abutting member 124 to abut against the ceramic plate 150 within the mounting cavity 110a. Adjusting the gear set 126 to adjust the contact between the abutting member 123 and the ceramic plate 150 provides a flexible and precise adjustment method, providing extremely high operational convenience and accuracy.

[0130] The radius of the arc surface 1243 is c, which satisfies the relationship: a<b<c. This ensures the correct installation and operation of the abutting member 123 to accommodate ceramic plates 150 of different thicknesses, and avoids installation errors and inconvenience in use.

[0131] The second bevel gear 128 is provided with a rotation knob 140, one end of which extends into the receiving groove 122c. By rotating the knob 140, the user can accurately adjust the gear set 126 so that the abutting member 123 contacts the ceramic plate 150. This operation is both convenient and accurate.

[0132] Thus, a ceramic plate assembly structure 100 is provided, comprising:

[0133] The mounting frame 110 is formed with a mounting cavity 110a for mounting the ceramic plate 150, and is provided with a slot 110b and a screw hole 110c for fixing to the outside, wherein the slot 110b is located in the mounting cavity 110a;

[0134] The fixing assembly 120 is rotatably connected to the installation frame 110, and the fixing assembly 120 further includes a locking member 121, and the locking member 121 can be engaged with the locking slot 110b;

[0135] The fixing assembly 120 is rotated to fix the fixing assembly 120 in the installation cavity 110 a through the engaging member 121 , so that the fixing assembly 120 fixes the ceramic plate 150 in the installation cavity 110 a .

[0136] In this embodiment, first, the mounting frame 110 is installed at a predetermined position, and then the ceramic plate 150 is placed in the mounting cavity 110a. Then, the fixing assembly 120 is rotated so that the engaging member 121 is fixed in the mounting cavity 110a, and the engaging member 121 is engaged with the slot 110b, so that the ceramic plate 150 is firmly fixed in the mounting cavity 110a.

[0137] The fixing assembly 120 can simplify the disassembly and installation process when it is necessary to replace or repair the ceramic plate 150. Since the engaging member 121 can be engaged with the slot 110b, the stability of the fixing can be further improved and the risk caused by improper fixing can be reduced.

[0138] This is to avoid the ceramic plate 150 being difficult to replace during use or causing subsequent stress concentration due to the installation process.

[0139] The above-described embodiments merely represent several implementation methods of the present invention. While the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that a person skilled in the art would be able to make various modifications and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.

Claims

1. A ceramic plate assembly structure, characterized in that: include: The mounting frame is formed with a mounting cavity for mounting the ceramic plate, and is provided with a card slot and a screw hole for fixing to the outside, wherein the card slot is located in the mounting cavity; A fixing assembly is rotatably connected to the installation frame, and the fixing assembly further includes a clamping member capable of being engaged with the clamping slot; Wherein, by rotating the fixing assembly, the fixing assembly can be fixed in the installation cavity through the engaging member, so that the fixing assembly fixes the ceramic plate in the installation cavity; The installation cavity has a fitting wall; The fixing assembly includes: a rotating member rotatably connected to the mounting frame, wherein the engaging member is located at an end of the rotating member and is slidably connected to the rotating member; The rotating member is rotated to engage the engaging member with the engaging groove, and two sides of the ceramic plate are respectively engaged with the rotating member and the engaging wall to fix the ceramic plate; The rotating member is provided with a sliding groove and a movable groove connected with the sliding groove; The engaging member includes an engaging portion and a moving portion provided on the engaging portion; The movable portion passes through the movable slot and extends to the outside, and the engaging portion is provided in the slide slot and can pass through the slide slot and extend to the outside; There are two engaging members, and the two engaging members are respectively located at two ends of the rotating member; The assembly structure of the ceramic plate further includes an elastic member, which is arranged in the slide groove and abuts against the two engaging members respectively; The assembly structure of the ceramic plate has a first direction and a second direction; The first direction is set along the length direction of the rotating member, and the second direction is set along a direction perpendicular to the fitting wall; the fixing component can be received in the installation cavity, and the projection of the fixing component in the second direction partially blocks the ceramic plate received in the installation cavity; The engaging member can be engaged with the engaging slot when moved along the first direction.

2. The ceramic plate assembly structure according to claim 1, characterized in that: A receiving groove is provided on a side of the rotating member close to the fitting wall; The fixing assembly further comprises: A supporting member is provided in the receiving groove and is rotatably connected to the rotating member; wherein the supporting member moves so that the supporting member partially extends out of the receiving groove and contacts the ceramic plate in the installation cavity.

3. The ceramic plate assembly structure according to claim 2, characterized in that: The abutting member comprises: A supporting member rotatably disposed in the receiving groove; A rotating gear is provided at one end of the supporting member; a gear set, meshingly connected with the rotating gear, wherein the gear set is partially located in the accommodating groove; Wherein, adjusting the gear set can make the abutting member abut against the ceramic plate in the mounting cavity.

4. The ceramic plate assembly structure according to claim 3, characterized in that: The abutting member has an abutting end and a rotating end; The abutting end is fixedly connected to the rotating end, and an outwardly convex arc surface is formed between the abutting end and the rotating end; the radius of the abutting end is denoted as a; The radius of the rotating end is denoted as b; The radius of the arc surface is denoted as c, and satisfies the relationship: a<b<c.

5. The ceramic plate assembly structure according to claim 3, characterized in that: The gear set includes: a connecting gear meshing with the rotating gear, wherein the connecting gear is provided with a first bevel gear portion; The second bevel gear is meshed and connected with the first bevel gear portion.

6. The ceramic plate assembly structure according to claim 5, characterized in that: The second bevel gear is provided with a rotating knob, and one end of the rotating knob extends into the accommodating groove.

Citation Information

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