Embedded aluminum honeycomb type anti-deformation cabinet door
By designing the sandwich structure of outer plate, inner plate and plywood on aluminum honeycomb boards, the problem of aluminum honeycomb boards is solved, and better fixation stability and deformation resistance are achieved.
Patent Information
- Application Number
- CN202421997979.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The aluminum honeycomb board lacks a flat mounting surface and sufficient fitting surface in actual use, which leads to troublesome fixing process and is prone to deformation from the sides or fall off from other boards.
An embedded aluminum honeycomb anti-deformation cabinet door is designed to form a sandwich structure through the combination of outer plates, inner plates and plywoods. The aluminum honeycomb plates are embedded in it, increasing the friction between them and other plates, and providing a bottom support in the vertical direction to avoid separation.
It effectively avoids the problems of aluminum honeycomb boards causing deformation from the sides and falling off from other boards, and improves its fixing stability and deformation resistance.
Smart Images

Figure CN222909849U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a deformation-resistant cabinet door, and more specifically, to an embedded aluminum honeycomb type deformation-resistant cabinet door. Background Technique
[0002] The aluminum honeycomb panel adopts a composite honeycomb structure, which is thermally pressed and formed by a preformed box-shaped front panel and back panel and an aluminum alloy honeycomb core material. The aluminum honeycomb panel is widely used in furniture and has the characteristics of moisture-proof, moth-proof, fire-proof, etc. Especially, it has good deformation resistance and is the preferred material for furniture with movable parts such as cabinet doors. However, it is found in actual use that the aluminum honeycomb panel itself does not have a flat installation surface, and there is not enough fitting surface for the installation of the panel, resulting in a more troublesome fixing process. Moreover, the aluminum honeycomb panel after fixing is prone to deformation from the side, or the aluminum honeycomb panel is prone to falling off from other plates. Therefore, an embedded aluminum honeycomb type deformation-resistant cabinet door is needed, which can embed the aluminum honeycomb panel to avoid deformation from the side and falling off from other plates.
[0003] Combined with the above reasons, how to prevent falling off from other plates is exactly the problem considered in this application. Content of the Utility Model
[0004] Aiming at the deficiencies of the existing technology, an embedded aluminum honeycomb type deformation-resistant cabinet door is provided, which can embed the aluminum honeycomb panel to avoid deformation from the side and falling off from other plates.
[0005] To achieve the above object, the following technical solutions are provided: The embedded aluminum honeycomb type deformation-resistant cabinet door includes an outer layer plate, the outer layer plate is fixedly connected with an aluminum honeycomb panel, one end of the aluminum honeycomb panel far away from the outer layer plate is fixedly connected with an inner layer plate, both the upper and lower ends of the aluminum honeycomb panel are connected with a first clamping plate fixedly connected with the outer layer plate, the first clamping plate is fixedly connected with a second clamping plate connected with the aluminum honeycomb panel, the second clamping plate is fixedly connected with a third clamping plate fixedly connected with the inner layer plate and connected with the aluminum honeycomb panel. The thickness of the outer layer plate is greater than the thickness of the first clamping plate, the thicknesses of the first clamping plate, the second clamping plate and the third clamping plate are the same, and the thickness of the inner layer plate is less than the thickness of the first clamping plate.
[0006] In summary, the above technical solutions have the following beneficial effects: The outer layer board, the inner layer board, and the first clamping board, the second clamping board, and the third clamping board arranged up and down can substantially form a special sandwich layer, thereby embedding the aluminum honeycomb board. The outer layer board and the inner layer board can clamp the aluminum honeycomb board in the horizontal direction. During actual use, the friction between the aluminum honeycomb board and the other boards can be increased by clamping, which can better fix the position of the aluminum honeycomb board compared with the method of directly using glue for fixation. The first clamping board, the second clamping board, and the third clamping board arranged up and down can clamp the aluminum honeycomb board in the vertical direction, which can be used as a bottom support to prevent the aluminum honeycomb board from separating under the action of gravity.
[0007] Considering the anti-striking and anti-deformation capabilities, both the outer layer board and the inner layer board are made of solid wood. The outer layer board is in direct contact with the outside and has the largest thickness, while the inner layer board is the opposite. Considering cost, it has the smallest thickness. However, the density of solid wood is relatively large and the cost is relatively high. Therefore, the first clamping board, the second clamping board, and the third clamping board are made of composite wood. Since the texture of composite wood is relatively loose, it needs to be divided into multiple thinner layers. And due to the relatively loose texture, the anti-deformation ability is insufficient, so the aluminum honeycomb board is used to enhance the anti-deformation ability.
[0008] In the left and right directions, the aluminum honeycomb board is not wrapped by other boards. On the one hand, it is to facilitate subsequent splicing of multiple boards. On the other hand, it leaves a space for the gas inside the board to flow freely.
[0009] In the present utility model, by arranging the outer layer board, the inner layer board, and the first clamping board, the second clamping board, and the third clamping board arranged up and down, a special sandwich layer can be substantially formed, thereby embedding the aluminum honeycomb board, achieving the purpose of inlaying the aluminum honeycomb board and preventing the aluminum honeycomb board from deforming from the side and falling off other boards. BRIEF DESCRIPTION OF THE DRAWINGS
[0010] Figure 1 It is a side sectional view of the first clamping board in the present utility model;
[0011] Figure 2 It is a side sectional view of the aluminum honeycomb board in the present utility model;
[0012] Figure 3 It is a front sectional view of the aluminum honeycomb board in the present utility model.
[0013] Reference numerals: 1. Outer layer board; 2. Aluminum honeycomb board; 3. Inner layer board; 4. First clamping board; 5. Second clamping board; 6. Third clamping board; 7. Accommodation cavity; 8. Support shaft;
[0014] 71. Support column; 72. Spring; 73. First connecting piece; 74. Second connecting piece;
[0015] 81. First insert; 82. Sliding cavity; 83. Opening; 84. Insertion slot; 85. Second insert; 86. Hook Detailed implementation mode
[0016] The present utility model will be further described in detail below in conjunction with the drawings and embodiments. The same components are denoted by the same reference numerals. It should be noted that the terms "front", "rear", "left", "right", "upper" and "lower" used in the following description refer to the directions in the drawings, and the terms "bottom surface" and "top surface", "inner" and "outer" respectively refer to the directions facing or away from the geometric center of a specific component.
[0017] Refer to Figures 1 - 3 As shown, the embedded aluminum honeycomb anti-deformation cabinet door includes an outer layer board 1, the outer layer board 1 is fixedly connected with an aluminum honeycomb board 2, one end of the aluminum honeycomb board 2 away from the outer layer board 1 is fixedly connected with an inner layer board 3, both the upper and lower ends of the aluminum honeycomb board 2 are connected with a first clamping board 4 fixedly connected with the outer layer board 1, the first clamping board 4 is fixedly connected with a second clamping board 5 connected with the aluminum honeycomb board 2, the second clamping board 5 is fixedly connected with a third clamping board 6 fixedly connected with the inner layer board 3 and connected with the aluminum honeycomb board 2. The thickness of the outer layer board 1 is greater than that of the first clamping board 4, the thicknesses of the first clamping board 4, the second clamping board 5 and the third clamping board 6 are the same, and the thickness of the inner layer board 3 is less than that of the first clamping board 4;
[0018] The outer layer board 1, the inner layer board 3 and the first clamping board 4, the second clamping board 5 and the third clamping board 6 arranged up and down in cooperation can substantially form a special sandwich layer, so as to embed the aluminum honeycomb board 2. The outer layer board 1 and the inner layer board 3 can clamp the aluminum honeycomb board 2 in the horizontal direction. During actual use, the friction force between the aluminum honeycomb board 2 and the other boards can be increased by the clamping method, which can better fix the position of the aluminum honeycomb board 2 compared with the method of directly using glue for fixation. And the first clamping board 4, the second clamping board 5 and the third clamping board 6 arranged up and down can clamp the aluminum honeycomb board 2 in the vertical direction, which can be used as a bottom support to prevent the aluminum honeycomb board 2 from separating under the action of gravity;
[0019] For the consideration of anti-striking and anti-deformation capabilities, both the outer layer board 1 and the inner layer board 3 are made of solid wood. And the outer layer board 1 is in direct contact with the outside and has the largest thickness, while the inner layer board 3 is opposite. For cost consideration, the thickness is the smallest. However, the density of the solid wood material is relatively large and the cost is relatively high. Therefore, the first clamping board 4, the second clamping board 5 and the third clamping board 6 are made of composite wood material. Since the composite wood material itself has a relatively loose texture, it needs to be divided into multiple thinner layers. And due to the relatively loose texture, the anti-deformation ability is insufficient. Therefore, the aluminum honeycomb board 2 is used to enhance the anti-deformation ability;
[0020] In the left and right directions, the aluminum honeycomb panel 2 is not wrapped by other panels. On the one hand, it is to facilitate the subsequent splicing of multiple panels, and on the other hand, it is to leave space for the aluminum honeycomb panel 2 for the gas to flow freely.
[0021] The utility model can form a special sandwich by arranging an outer layer plate 1, an inner layer plate 3 and cooperating with a first clamping plate 4, a second clamping plate 5 and a third clamping plate 6 arranged up and down, thereby embedding the aluminum honeycomb plate 2, and achieving the purpose of embedding the aluminum honeycomb plate 2 to prevent the aluminum honeycomb plate 2 from deforming from the side and falling off from other plates.
[0022] Furthermore, the first clamping plate 4 is provided with a receiving cavity 7 which penetrates the second clamping plate 5 and the third clamping plate 6 and contacts the aluminum honeycomb plate 2, and the outer layer plate 1 is fixedly connected with a plurality of support columns 71 which are fixedly connected with the inner layer plate 3 and arranged in the receiving cavity 7, and the side surface of the support column 71 is arranged toward the center of the inner concave part of the side surface of the aluminum honeycomb plate 2;
[0023] The first clamping plate 4 is fixedly connected with a plurality of springs 72 which are fixedly connected with the second clamping plate 5 and the third clamping plate 6 and are arranged in the accommodating cavity 7. The spring 72 is fixedly connected with a first connecting member 73. The first connecting member 73 is fixedly connected with a second connecting member 74 which is arranged at the center of the inner concave part of the side surface of the aluminum honeycomb plate 2 and abuts against the side surface of the aluminum honeycomb plate 2. The support column 71 is arranged between two adjacent springs 72.
[0024] Since the expansion coefficient of the aluminum honeycomb panel 2 at high temperature is usually higher than that of wood, a receiving cavity 7 is provided for the thermal expansion of the aluminum honeycomb panel 2. Due to the special structure of the aluminum honeycomb panel 2, when the side of the integral cabinet door is encapsulated, the aluminum honeycomb panel 2 will tilt and deform toward one side, and usually deform toward the bottom under the action of gravity. Therefore, the receiving cavity 7 is provided to leave space for the expansion of the aluminum honeycomb panel 2. When the aluminum honeycomb panel 2 expands and deforms at high temperature, the convex part of the side may collide with the first plywood 4, the second plywood 5 and the third plywood 6. Since the structures of the first plywood 4, the second plywood 5 and the third plywood 6 are relatively loose, the first plywood 4, the second plywood 5 and the third plywood 6 may be separated. Therefore, a support column 71 is provided to limit the maximum deformation degree of the aluminum honeycomb panel 2 to prevent the part of the honeycomb panel that was not originally in contact with the first plywood 4, the second plywood 5 and the third plywood 6 from making direct contact after expansion;
[0025] In order to prevent the aluminum honeycomb plate 2 from sagging as a whole after expansion and recovery, a spring 72, a first connecting member 73 and a second connecting member 74 are provided to assist in recovery, and the second connecting member 74 can fill the concave part of the side surface of the aluminum honeycomb plate 2 to better play a supporting role;
[0026] In addition, a support column 71 is arranged between two adjacent springs 72, which can evenly distribute the support column 71 and the springs 72, and prevent the aluminum honeycomb board 2 from tilting significantly after expansion or restoration.
[0027] Furthermore, a support shaft 8 that penetrates through the aluminum honeycomb board 2 and the inner layer board 3 and extends to the outside of the inner layer board 3 is slidably connected to the outer layer board 1. The support shaft 8 is fixedly connected with a first insertion member 81 for inserting into the outer layer board 1. The outer layer board 1 is provided with a sliding cavity 82 for the first insertion member 81 to slide, and the sliding cavity 82 is provided with an opening 83 for the first insertion member 81 to enter. A plug-in groove 84 is arranged on the side of the support shaft 8 away from the outer layer board 1, and the support shaft 8 is detachably connected with a second plug-in member 85 that is inserted into the plug-in groove 84 and abuts against the outer layer board 1.
[0028] The opening 83 is arranged in the horizontal direction, the plug-in groove 84 is arranged vertically upward, and the second plug-in member 85 is fixedly connected with a hook 86.
[0029] The first plug-in member and the second plug-in member 85 can cooperate with each other to form a sandwich layer, clamping the outer layer board 1, the aluminum honeycomb board 2 and the inner layer board 3, so as to achieve the clamping effect. And in the installed state, the first plug-in member remains vertically downward and maintains stability under the action of gravity, and the second plug-in member 85 remains vertically upward. On the one hand, the center of gravity formed by the center of gravity of the first plug-in member and the center of gravity of the second plug-in member 85 offsets the overall center of gravity of the support shaft 8, preventing the support shaft 8 from detaching under the impact in the vertical direction. On the other hand, the hook 86 installed on the second plug-in member 85 can be used to place other items, which can not only increase the actual accommodation space, but also maintain the plug-in state of the second plug-in member 85 by the gravity of the accommodated object, thereby maintaining the overall connection stability of the support shaft 8.
[0030] The above is only the preferred embodiment of the present invention, and the protection scope of the present invention is not limited to the above embodiments. All technical solutions falling within the idea of the present invention belong to the protection scope of the present invention. It should be noted that for those of ordinary skill in the art, without departing from the principle of the present invention, several improvements and refinements should also be regarded as the protection scope of the present invention.
Claims
1. Embedded aluminum honeycomb anti-deformation cabinet door, characterized by: The invention comprises an outer layer plate, wherein the outer layer plate is fixedly connected to an aluminum honeycomb plate, wherein one end of the aluminum honeycomb plate away from the outer layer plate is fixedly connected to an inner layer plate, wherein both upper and lower ends of the aluminum honeycomb plate are connected to a first clamping plate fixedly connected to the outer layer plate, wherein the first clamping plate is fixedly connected to a second clamping plate connected to the aluminum honeycomb plate, and the second clamping plate is fixedly connected to a third clamping plate fixedly connected to the inner layer plate and connected to the aluminum honeycomb plate.
2. The embedded aluminum honeycomb anti-deformation cabinet door according to claim 1 is characterized in that: The thickness of the outer layer plate is greater than that of the first plywood, the thicknesses of the first plywood, the second plywood and the third plywood are all the same, and the thickness of the inner layer plate is less than that of the first plywood.
3. The embedded aluminum honeycomb anti-deformation cabinet door according to claim 1 is characterized in that: The first clamping plate is provided with a receiving cavity which penetrates the second clamping plate and the third clamping plate and contacts the aluminum honeycomb plate. The outer plate is fixedly connected with a plurality of supporting columns which are fixedly connected with the inner plate and arranged in the receiving cavity. The side of the supporting column is arranged toward the center of the inner recess of the side of the aluminum honeycomb plate.
4. The embedded aluminum honeycomb anti-deformation cabinet door according to claim 3 is characterized in that: The first clamping plate is fixedly connected to a plurality of springs which are fixedly connected to the second clamping plate and the third clamping plate and are arranged in the accommodating cavity. The spring is fixedly connected to a first connecting member. The first connecting member is fixedly connected to a second connecting member which is arranged at the center of the inner recess on the side of the aluminum honeycomb plate and abuts against the side of the aluminum honeycomb plate. The support column is arranged between two adjacent springs.
5. The embedded aluminum honeycomb anti-deformation cabinet door according to claim 1 is characterized in that: The outer layer plate is slidably connected to a support shaft that penetrates the aluminum honeycomb plate and the inner layer plate and extends to the outside of the inner layer plate. The support shaft is fixedly connected to a first insert for inserting the outer layer plate. The outer layer plate is provided with a sliding cavity for the first insert to slide. The sliding cavity is provided with an opening for the first insert to enter. The support shaft is provided with a plug-in groove on the side away from the outer layer plate. The support shaft is detachably connected to a second plug-in piece that is inserted into the plug-in groove and abuts against the outer layer plate.
6. The embedded aluminum honeycomb anti-deformation cabinet door according to claim 5 is characterized in that: The opening is arranged in a horizontal direction, the plug-in slot is arranged vertically upward, and the second plug-in component is fixedly connected with a hook.