A kind of assembling structure applied to parquet

CN224605928UActive Publication Date: 2026-08-07DEQING SHENGFEI WOOD IND CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DEQING SHENGFEI WOOD IND CO LTD
Filing Date
2025-09-16
Publication Date
2026-08-07

AI Technical Summary

Technical Problem

[0003]目前应用于拼花地板的拼花板材绝大部分是一个整块木料切割而成,采用此种拼花板材存在以下几点不足:第一、利用整块木料切割而成的拼花板材价格昂贵,生产成本较高;第二、基于板材的固有特性,即沿木纹方向上的伸缩率低、抗折强度大,沿木纹垂直方向上的伸缩率高、抗折强度小,因此,利用整块木料切割而成的拼花地板的木纹方向一致,极易出现板材变形情况,严重影响了拼花板材的平整度,不但影响了拼花板材的美观性,并且还降低了拼花板材的使用寿命,给拼花板材的使用者带来了较大的不便

Benefits of technology

[0019]与现有技术相比,本实用新型采用此种结构整体设计合理、结构简单、操作方便,利用第一板材、第二板材、第三板材和第四板材有效的结合,避免木纹方向一致,且能够使板材之间产生的力相关抵消,能够有效的降低板材变形率,有效的提高了拼花板材的平整度,不但提高了拼花板材的美观性,并且还能够有效的提高拼花板材的使用寿命,给拼花板材的使用者带来了较大的便利。

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a kind of applied to the assembling structure of parquet board, including a first board material for effectively improving the overall flatness of parquet board;A second board material for effectively improving the overall flatness of parquet board, a third board material for effectively improving the overall flatness of parquet board, a fourth board material for effectively improving the overall flatness of parquet board.The utility model effectively combines using first board material, second board material, third board material and fourth board material, avoid wood grain direction consistent, and can make the force related offset between board, can effectively reduce the deformation rate of board, effectively improve the flatness of parquet board, not only improve the aesthetic property of parquet board, and can also effectively improve the service life of parquet board, bring greater convenience to the user of parquet board.
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Description

Technical Field

[0001] This utility model relates to the field of mosaic panel assembly technology, and in particular to an assembly structure for mosaic panels. Background Technology

[0002] Parquet flooring, a type of wood flooring made by splicing together different colors and tree species of wood veneers to present concrete or abstract patterns on the wood, has become the mainstream of the wood flooring market due to its highly decorative appeal. Relying on its ever-changing and colorful patterns, exquisite craftsmanship, and personalized and fashionable designs, it has quietly changed the dull and indifferent impression that flooring once left people with, and is now blooming in a brand new way on the fashion runway.

[0003] Currently, most parquet flooring panels used are cut from a single piece of wood. However, this method has several drawbacks: First, parquet panels made from a single piece of wood are expensive, resulting in high production costs. Second, due to the inherent characteristics of the wood—low shrinkage and high flexural strength along the grain, and high shrinkage and low flexural strength along the direction perpendicular to the grain—parquet flooring made from a single piece of wood, with its uniform grain direction, is highly susceptible to warping. This severely affects the flatness of the parquet flooring, impacting its aesthetics and reducing its lifespan, causing significant inconvenience to users. Utility Model Content

[0004] To address the problems existing in the prior art, this utility model aims to provide an assembly structure and method for inlaid panels. The assembly structure is rationally designed, simple in structure, and easy to operate. By effectively combining the first, second, third, and fourth panels, it avoids uniform wood grain direction and allows the forces generated between the panels to be offset, effectively reducing the panel deformation rate and improving the flatness of the inlaid panels. This not only enhances the aesthetics of the inlaid panels but also effectively extends their service life, bringing significant convenience to users.

[0005] To solve the above technical problems, this utility model adopts the following technical solution:

[0006] An assembly structure for mosaic panels, characterized in that it includes:

[0007] A primary material for effectively improving the overall flatness of mosaic panels;

[0008] A second board for effectively improving the overall flatness of the parquet board, wherein the wood grain direction of the second board is perpendicular to that of the first board, and the first side of the second board is assembled onto the first side of the first board.

[0009] A third board for effectively improving the overall flatness of parquet panels, wherein the wood grain direction of the third board is perpendicular to that of the second board, and the first side of the third board is assembled onto the second side of the second board.

[0010] A fourth board for effectively improving the overall flatness of parquet boards, wherein the wood grain direction of the fourth board is perpendicular to that of the third board, the first side of the fourth board is assembled on the second side of the third board, and the second side of the fourth board is assembled on the second side of the first board.

[0011] In a preferred embodiment of the present invention, the first plate includes at least two first plates arranged side by side, and adjacent first plates are connected by a plurality of first U-shaped nails, which are spaced apart along the length of the first plates.

[0012] In a preferred embodiment of the present invention, the second plate includes at least two second plates arranged side by side, and adjacent second plates are connected by a plurality of second U-shaped nails, which are spaced apart along the length of the second plates.

[0013] In a preferred embodiment of the present invention, the third plate includes at least two third plates arranged side by side, and adjacent third plates are connected by a plurality of third U-shaped nails, which are spaced apart along the length of the third plates.

[0014] In a preferred embodiment of the present invention, the fourth plate includes at least two fourth plates arranged side by side, and adjacent fourth plates are connected by a plurality of fourth U-shaped nails, which are spaced apart along the length of the fourth plates.

[0015] In a preferred embodiment of the present invention, the first side of the second plate is assembled onto the first side of the first plate by a plurality of first U-shaped assemblies, and the plurality of first U-shaped assemblies are spaced apart along the length direction of the second plate.

[0016] In a preferred embodiment of the present invention, the first side of the third plate is assembled onto the second side of the second plate by a plurality of second U-shaped assemblies, the plurality of second U-shaped assemblies being spaced apart along the length of the third plate.

[0017] In a preferred embodiment of the present invention, the first side of the fourth plate is assembled onto the second side of the third plate by a plurality of third U-shaped assembly nails, the plurality of third U-shaped assembly nails being spaced apart along the length direction of the fourth plate; the second side of the fourth plate is assembled onto the second side of the first plate by a plurality of third U-shaped assembly nails, the plurality of fourth U-shaped assembly nails being spaced apart along the length direction of the first plate.

[0018] In a preferred embodiment of this utility model, a mesh cloth is laid on the assembled panel body formed by the first plate, the second plate, the third plate and the fourth plate, and the mesh cloth is bonded to the upper surface of the assembled panel body by an adhesive layer.

[0019] Compared with existing technologies, this utility model adopts a reasonable overall design, simple structure, and convenient operation. By effectively combining the first, second, third, and fourth boards, it avoids the wood grain direction being consistent and enables the forces generated between the boards to be offset, which can effectively reduce the deformation rate of the boards and effectively improve the flatness of the parquet board. This not only improves the aesthetics of the parquet board but also effectively extends its service life, bringing great convenience to the users of the parquet board. Attached Figure Description

[0020] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0021] Figure 1 This is a schematic diagram of the structure of this utility model.

[0022] Figure 2 This is a structural schematic diagram of the first plate material of this utility model.

[0023] Figure 3 This is a cross-sectional view of the present invention. Detailed Implementation

[0024] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the following description, in conjunction with specific illustrations, further elaborates on this utility model.

[0025] Reference Figures 1-3 As shown in the figure, an assembly structure for mosaic panels is provided, including a first panel 100, a second panel 200, a third panel 300, and a fourth panel 400.

[0026] The first board 100 is used to effectively improve the overall flatness of the parquet board, and the second board 200 is used to effectively improve the overall flatness of the parquet board. The wood grain direction of the second board 200 is perpendicular to that of the first board 100, and the first side of the second board 200 is assembled on the first side of the first board 100.

[0027] The third board 300 is used to effectively improve the overall flatness of the parquet board. The wood grain direction of the third board 300 is perpendicular to that of the second board 200. The first side of the third board 300 is assembled on the second side of the second board 200.

[0028] The fourth board 400 is used to effectively improve the overall flatness of the parquet board. The wood grain direction of the fourth board 400 is perpendicular to that of the third board 300. The first side of the fourth board 400 is assembled on the second side of the third board 300, and the second side of the fourth board 400 is assembled on the second side of the first board 100.

[0029] By effectively combining the first board 100, the second board 200, the third board 300, and the fourth board 400, the wood grain direction is avoided to ensure that the forces generated between the boards are offset, which can effectively reduce the board deformation rate and improve the flatness of the parquet board.

[0030] The first plate 100 includes at least two first plates 110 arranged side by side. The adjacent first plates 110 are connected by a plurality of first U-shaped nails 120. The plurality of first U-shaped nails 120 are spaced apart along the length direction of the first plates 110. The first U-shaped nails 120 effectively fix the adjacent first plates 110 together, thereby further improving the stability between the first plates 110.

[0031] The second plate 200 includes at least two second plates 210 arranged side by side. The adjacent second plates 210 are connected by a plurality of second U-shaped nails 220. The plurality of second U-shaped nails 220 are spaced apart along the length direction of the second plates 210. The adjacent second plates 210 are effectively fixed and connected by the second U-shaped nails 220, which further improves the stability between the second plates 210.

[0032] The third plate 300 includes at least two third plates 310 arranged side by side. The adjacent third plates 310 are connected by a plurality of third U-shaped nails 320. The plurality of third U-shaped nails 320 are spaced apart along the length direction of the third plates 310. The adjacent third plates 310 are effectively fixed and connected by the third U-shaped nails 320, which further improves the stability between the third plates 310.

[0033] The fourth plate 400 includes at least two fourth plate bodies 410 arranged side by side. The adjacent fourth plate bodies 410 are connected by a plurality of fourth U-shaped nails 420. The plurality of fourth U-shaped nails 420 are spaced apart along the length direction of the fourth plate body 410. The adjacent fourth plate bodies 410 are effectively fixed and connected by the fourth U-shaped nails 420, which further improves the stability between the fourth plate bodies 410.

[0034] The first side of the second plate 200 is assembled onto the first side of the first plate 100 by a plurality of first U-shaped assembly nails 500. The plurality of first U-shaped assembly nails 500 are spaced apart along the length of the second plate 200. The first U-shaped assembly nails 500 can effectively and stably assemble the second plate 200 onto the first plate 100, further improving the stability between the first plate 100 and the second plate 200.

[0035] The first side of the third plate 300 is assembled onto the second side of the second plate 200 by a plurality of second U-shaped assembly nails 600. The plurality of second U-shaped assembly nails 600 are spaced apart along the length of the third plate 300. The second U-shaped assembly nails 600 can effectively and stably assemble the third plate 300 onto the second plate 200, further improving the stability between the second plate 200 and the third plate 300.

[0036] The first side of the fourth plate 400 is assembled onto the second side of the third plate 300 by a plurality of third U-shaped assembly nails 700. The plurality of third U-shaped assembly nails 300 are spaced apart along the length of the fourth plate 400. The third U-shaped assembly nails 700 can effectively and stably assemble the fourth plate 400 onto the third plate 300, further improving the stability between the third plate 300 and the fourth plate 400.

[0037] The second side of the fourth plate 400 is assembled onto the second side of the first plate 100 by a plurality of third U-shaped assembly nails 700. A plurality of fourth U-shaped assembly nails 800 are distributed at intervals along the length of the first plate 100. The fourth U-shaped assembly nails 800 can effectively and stably assemble the first plate 100 onto the fourth plate 400, further improving the stability between the first plate 100 and the fourth plate 400.

[0038] A mesh fabric 900 is laid on the assembled panel 1100, which is composed of the first panel 100, the second panel 200, the third panel 300 and the fourth panel 400. The mesh fabric 900 is bonded to the upper surface of the assembled panel 1100 through the adhesive layer 1000. The mesh fabric 900 effectively improves the stability of the connection between the first panel 100, the second panel 200, the third panel 300 and the fourth panel 400.

[0039] The splicing method of this utility model includes the following steps:

[0040] The first step: material cutting. The operator uses a cutting tool to cut the board into multiple first, second, third and fourth boards of the corresponding size.

[0041] The second step: trimming. The operator trims the edges of the first, second, third and fourth plates obtained in the first step to remove the rough edges.

[0042] The third step: plate making. The operator effectively fixes the multiple first plates that have undergone the second step with the first U-shaped nails to obtain the first plate. The second, third and fourth plates can be obtained in the same way.

[0043] Fourth step: Assembling the boards. The operator assembles the first, second, third, and fourth boards obtained in the third step using the first, second, third, and fourth U-shaped assembly nails, respectively, to obtain an assembled board with adjacent wood grain directions perpendicular to each other.

[0044] Step 5: Reinforcement. Operators attach mesh fabric to the upper surface of the assembled panels obtained in Step 4.

[0045] In summary, this utility model adopts a reasonable overall design, simple structure, and convenient operation. By effectively combining the first, second, third, and fourth boards, it avoids the wood grain direction being consistent and enables the forces generated between the boards to be offset, effectively reducing the board deformation rate and improving the flatness of the parquet board. This not only enhances the aesthetics of the parquet board but also effectively extends its service life, bringing great convenience to users of the parquet board.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. An assembly structure for use in mosaic panels, characterized in that, include A primary material for effectively improving the overall flatness of mosaic panels; A second board for effectively improving the overall flatness of the parquet board, wherein the wood grain direction of the second board is perpendicular to that of the first board, and the first side of the second board is assembled onto the first side of the first board. A third board for effectively improving the overall flatness of parquet boards, wherein the wood grain direction of the third board is perpendicular to that of the second board, and the first side of the third board is assembled onto the second side of the second board. A fourth board for effectively improving the overall flatness of parquet boards, wherein the wood grain direction of the fourth board is perpendicular to that of the third board, the first side of the fourth board is assembled on the second side of the third board, and the second side of the fourth board is assembled on the second side of the first board.

2. The assembly structure for mosaic panels as described in claim 1, characterized in that: The first board includes at least two first boards arranged side by side, and adjacent first boards are connected by a plurality of first U-shaped nails, which are spaced apart along the length of the first board.

3. The assembly structure for mosaic panels as described in claim 1, characterized in that: The second board includes at least two second boards arranged side by side, and adjacent second boards are connected by a plurality of second U-shaped nails, which are spaced apart along the length of the second board.

4. The assembly structure for mosaic panels as described in claim 1, characterized in that: The third plate includes at least two third plates arranged side by side, and adjacent third plates are connected by a plurality of third U-shaped nails, which are spaced apart along the length of the third plates.

5. The assembly structure for mosaic panels as described in claim 1, characterized in that: The fourth plate includes at least two fourth plates arranged side by side, and adjacent fourth plates are connected by a plurality of fourth U-shaped nails, which are spaced apart along the length of the fourth plates.

6. The assembly structure for mosaic panels as described in claim 1, characterized in that: The first side of the second plate is assembled onto the first side of the first plate by a plurality of first U-shaped assembly nails, which are spaced apart along the length of the second plate.

7. The assembly structure for mosaic panels as described in claim 6, characterized in that: The first side of the third plate is assembled onto the second side of the second plate by a plurality of second U-shaped assembly nails, which are spaced apart along the length of the third plate.

8. The assembly structure for mosaic panels as described in claim 7, characterized in that: The first side of the fourth plate is assembled onto the second side of the third plate by a plurality of third U-shaped assembly nails, the plurality of third U-shaped assembly nails being spaced apart along the length of the fourth plate; the second side of the fourth plate is assembled onto the second side of the first plate by a plurality of third U-shaped assembly nails, the plurality of fourth U-shaped assembly nails being spaced apart along the length of the first plate.

9. The assembly structure for mosaic panels as described in claim 1, characterized in that: A mesh fabric is laid on the assembled panel body composed of the first, second, third, and fourth plates, and the mesh fabric is bonded to the upper surface of the assembled panel body by an adhesive layer.