Assembling structure applied to parquet plate and assembling method thereof
By using a panel combination structure with vertically distributed wood grain and U-shaped nails for fixing in parquet panels, combined with mesh cloth to enhance the connection, the problems of deformation and aesthetics of parquet panels are solved, achieving high efficiency in flatness and extended service life.
Patent Information
- Application Number
- CN202511317312.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-16
- Publication Date
- 2025-11-04
AI Technical Summary
Existing parquet boards suffer from severe warping due to the consistent wood grain direction, affecting flatness and aesthetics, and also incurring high production costs.
It adopts a combination assembly structure of first, second, third and fourth boards, with the wood grain direction distributed perpendicular to each other and fixed by U-shaped nails and assembly nails, combined with mesh cloth to enhance the connection stability.
It effectively reduces the deformation rate of boards, improves the flatness and aesthetics of mosaic boards, extends service life, and reduces production costs.
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Figure CN120889385A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of parquet board assembly, in particular to a parquet board assembly structure and a parquet board assembly method. BACKGROUND
[0002] Parquet floor is a kind of parquet floor with different colors and tree species of wood veneer, which presents specific or abstract patterns on wood and has a strong decorative sense. Parquet floor has become the mainstream of the wood floor market. It quietly changes the impression of being dull and cold left by the floor in the past by relying on the colorful patterns, exquisite craftsmanship and personalized and fashionable design, and blooms with a new attitude on the popular catwalk.
[0003] At present, most of the parquet boards used in parquet floor are cut from a whole piece of wood. The parquet boards cut from a whole piece of wood have the following disadvantages: first, the parquet boards cut from a whole piece of wood are expensive and have high production cost; second, based on the inherent characteristics of the boards, the expansion rate along the wood grain direction is low and the bending strength is large, and the expansion rate along the direction perpendicular to the wood grain is high and the bending strength is small. Therefore, the parquet boards cut from a whole piece of wood have consistent wood grain direction, which is prone to deformation of the boards, seriously affecting the flatness of the parquet boards, not only affecting the aesthetic appearance of the parquet boards, but also reducing the service life of the parquet boards, bringing great inconvenience to the users of the parquet boards. SUMMARY
[0004] To solve the problems in the prior art, the present application provides a parquet board assembly structure and a parquet board assembly method. The parquet board assembly structure has reasonable overall design, simple structure and convenient operation. The first board, the second board, the third board and the fourth board are effectively combined to avoid consistent wood grain direction, and the force generated between the boards can be relatedly offset to effectively reduce the deformation rate of the boards, effectively improve the flatness of the parquet boards, not only improve the aesthetic appearance of the parquet boards, but also effectively improve the service life of the parquet boards, bringing great convenience to the users of the parquet boards.
[0005] To solve the above technical problems, the present application adopts the following technical solutions:
[0006] A parquet board assembly structure, characterized in that it comprises
[0007] a first board for effectively improving the overall flatness of the parquet boards;
[0008] a second board for effectively improving the overall flatness of the parquet boards, the wood grain direction of the second board being perpendicular to the wood grain direction of the first board, and the first side of the second board being assembled on the first side of the first board;
[0009] A third board for effectively improving the overall flatness of the parquet board, the third board being distributed perpendicularly to the wood grain direction of the second board, the first side of the third board being assembled on the second side of the second board;
[0010] A fourth board for effectively improving the overall flatness of the parquet board, the fourth board being distributed perpendicularly to the wood grain direction of the third board, the first side of the fourth board being assembled on the second side of the third board, and the second side of the fourth board being assembled on the second side of the first board.
[0011] In a preferred embodiment of the present application, the first board comprises at least two first board bodies arranged side by side, and the adjacent first board bodies are connected by a plurality of first U-shaped nails, the plurality of first U-shaped nails being distributed along the length direction of the first board body.
[0012] In a preferred embodiment of the present application, the second board comprises at least two second board bodies arranged side by side, and the adjacent second board bodies are connected by a plurality of second U-shaped nails, the plurality of second U-shaped nails being distributed along the length direction of the second board body.
[0013] In a preferred embodiment of the present application, the third board comprises at least two third board bodies arranged side by side, and the adjacent third board bodies are connected by a plurality of third U-shaped nails, the plurality of third U-shaped nails being distributed along the length direction of the third board body.
[0014] In a preferred embodiment of the present application, the fourth board comprises at least two fourth board bodies arranged side by side, and the adjacent fourth board bodies are connected by a plurality of fourth U-shaped nails, the plurality of fourth U-shaped nails being distributed along the length direction of the fourth board body.
[0015] In a preferred embodiment of the present application, the first side of the second board is assembled on the first side of the first board by a plurality of first U-shaped assembly nails, the plurality of first U-shaped assembly nails being distributed along the length direction of the second board.
[0016] In a preferred embodiment of the present application, the first side of the third board is assembled on the second side of the second board by a plurality of second U-shaped assembly nails, the plurality of second U-shaped assembly nails being distributed along the length direction of the third board.
[0017] In a preferred embodiment of the present application, the first side of the fourth board is assembled on the second side of the third board by a plurality of third U-shaped assembly nails, the plurality of third U-shaped assembly nails being distributed along the length direction of the fourth board, and the second side of the fourth board is assembled on the second side of the first board by a plurality of fourth U-shaped assembly nails, the plurality of fourth U-shaped assembly nails being distributed along the length direction of the first board.
[0018] In a preferred embodiment of the present application, a mesh cloth is laid on the assembled panel body assembled by the first panel, the second panel, the third panel and the fourth panel, and the mesh cloth is adhered to the upper surface of the assembled panel body by an adhesive layer.
[0019] The present application also discloses a splicing method applied to the assembled structure of the parquet panel, and the splicing method comprises the following steps.
[0020] The first step is blanking, in which an operator cuts and blanks the panel according to the set size by a cutting tool, and cuts a plurality of first panels, second panels, third panels and fourth panels with corresponding sizes.
[0021] The second step is edge trimming, in which an operator trims the edges of the first panels, the second panels, the third panels and the fourth panels obtained in the first step to remove the burrs.
[0022] The third step is panel making, in which an operator effectively fixes the plurality of first panels obtained in the second step by the first U-shaped nails, and obtains the first panel, and the second panel, the third panel and the fourth panel can be obtained in the same way.
[0023] The fourth step is panel assembling, in which an operator assembles the first panel, the second panel, the third panel and the fourth panel obtained in the third step by the first U-shaped assembling nails, the second U-shaped assembling nails, the third U-shaped assembling nails and the fourth U-shaped assembling nails, respectively, to obtain the assembled panel body with adjacent wood grain directions perpendicular to each other.
[0024] The fifth step is reinforcing, in which an operator adheres a mesh cloth to the upper surface of the assembled panel body obtained in the fourth step.
[0025] Compared with the prior art, the present application has the advantages of reasonable overall design, simple structure and convenient operation, effectively combines the first panel, the second panel, the third panel and the fourth panel, avoids the same wood grain direction, and can effectively reduce the deformation rate of the panel, effectively improve the flatness of the parquet panel, improve the appearance of the parquet panel, effectively improve the service life of the parquet panel, and bring great convenience to the user of the parquet panel. BRIEF DESCRIPTION OF DRAWINGS
[0026] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0027] Fig. 1 It is a structural schematic diagram of the present application.
[0028] Fig. 2 It is a structural schematic diagram of the first plate of the present application.
[0029] Fig. 3 It is a sectional view of the present application. DETAILED DESCRIPTION
[0030] In order to make the technical means, creative features, purposes and effects of the present application easy to understand, the present application is further described below in combination with specific drawings.
[0031] Referring to Figs. 1-3 As shown in the figure, a kind of assembling structure applied to parquet is given, including first plate 100, second plate 200, third plate 300 and fourth plate 400.
[0032] The first plate 100 is used to effectively improve the overall flatness of parquet, and the second plate 200 is used to effectively improve the overall flatness of parquet, and the wood grain direction of the second plate 200 is perpendicular to the wood grain direction of the first plate 100, and the first side of the second plate 200 is assembled on the first side of the first plate 100.
[0033] The third plate 300 is used to effectively improve the overall flatness of parquet, and the wood grain direction of the third plate 300 is perpendicular to the wood grain direction of the second plate 200, and the first side of the third plate 300 is assembled on the second side of the second plate 200.
[0034] The fourth plate 400 is used to effectively improve the overall flatness of parquet, and the wood grain direction of the fourth plate 400 is perpendicular to the wood grain direction of the third plate 300, and the first side of the fourth plate 400 is assembled on the second side of the third plate 300, and the second side of the fourth plate 400 is assembled on the second side of the first plate 100.
[0035] The effective combination of the first plate 100, the second plate 200, the third plate 300 and the fourth plate 400 avoids the consistency of the wood grain direction, and the force generated between the plates can be relatedly offset, which can effectively reduce the deformation rate of the plate and effectively improve the flatness of the parquet.
[0036] The first plate 100 includes at least two first plate bodies 110 arranged side by side, and the adjacent first plate bodies 110 are connected by a plurality of first U-shaped nails 120, and the plurality of first U-shaped nails 120 are distributed along the length direction of the first plate body 110, and the adjacent first plate bodies 110 are effectively fixed and connected by the first U-shaped nails 120, which further improves the stability between the first plate bodies 110.
[0037] The second plate 200 comprises at least two second plate bodies 210 arranged side by side, and the adjacent second plate bodies 210 are connected by a plurality of second U-shaped nails 220. The plurality of second U-shaped nails 220 are distributed along the length direction of the second plate body 210. The adjacent second plate bodies 210 are effectively fixed and connected by the second U-shaped nails 220, and the stability between the second plate bodies 210 is further improved.
[0038] The third plate 300 comprises at least two third plate bodies 310 arranged side by side, and the adjacent third plate bodies 310 are connected by a plurality of third U-shaped nails 320. The plurality of third U-shaped nails 320 are distributed along the length direction of the third plate body 310. The adjacent third plate bodies 310 are effectively fixed and connected by the third U-shaped nails 320, and the stability between the third plate bodies 310 is further improved.
[0039] The fourth plate 400 comprises at least two fourth plate bodies 410 arranged side by side, and 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 distributed 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, and the stability between the fourth plate bodies 410 is further improved.
[0040] The first side of the second plate 200 is assembled on 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 distributed along the length direction of the second plate 200. The second plate 200 can be effectively and stably assembled on the first plate 100 by the first U-shaped assembly nails 500, and the stability between the first plate 100 and the second plate 200 is further improved.
[0041] The first side of the third plate 300 is assembled on 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 distributed along the length direction of the third plate 300. The third plate 300 can be effectively and stably assembled on the second plate 200 by the second U-shaped assembly nails 600, and the stability between the second plate 200 and the third plate 300 is further improved.
[0042] The first side of the fourth plate 400 is assembled on 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 700 are distributed along the length direction of the fourth plate 400. The fourth plate 400 can be effectively and stably assembled on the third plate 300 by the third U-shaped assembly nails 700, and the stability between the third plate 300 and the fourth plate 400 is further improved.
[0043] The second side of the fourth plate 400 is assembled on the second side of the first plate 100 by a plurality of third U-shaped assembling nails 700, and a plurality of fourth U-shaped assembling nails 800 are distributed along the length direction of the first plate 100, so that the first plate 100 can be effectively and stably assembled on the fourth plate 400 by the fourth U-shaped assembling nails 800, and the stability between the first plate 100 and the fourth plate 400 is further improved.
[0044] The grid cloth 900 is arranged on the assembled plate body 1100 assembled by the first plate 100, the second plate 200, the third plate 300 and the fourth plate 400, and is bonded to the upper surface of the assembled plate body 1100 by the bonding layer 1000, so that the stability of the connection between the first plate 100, the second plate 200, the third plate 300 and the fourth plate 400 is effectively improved.
[0045] The application further discloses a splicing method applied to the assembling structure of the parquet plate.
[0046] The first step is blanking, in which an operator cuts and blanks the plate according to the set size by a cutting tool, and cuts a plurality of first plate bodies, second plate bodies, third plate bodies and fourth plate bodies with corresponding sizes;
[0047] The second step is edge trimming, in which an operator trims the edges of the first plate bodies, the second plate bodies, the third plate bodies and the fourth plate bodies obtained through the first step to remove the burrs;
[0048] The third step is plate making, in which an operator effectively fixes the first plate bodies obtained through the second step by the first U-shaped nails, and obtains the first plate, and the second plate bodies, the third plate bodies and the fourth plate bodies can be obtained in this way;
[0049] The fourth step is plate assembling, in which an operator assembles the first plate bodies, the second plate bodies, the third plate bodies and the fourth plate bodies obtained through the third step by the first U-shaped assembling nails, the second U-shaped assembling nails, the third U-shaped assembling nails and the fourth U-shaped assembling nails respectively, and obtains the assembled plate body in which the adjacent wood grain directions are perpendicular to each other;
[0050] The fifth step is reinforcing, in which an operator bonds the grid cloth to the upper surface of the assembled plate body obtained through the fourth step.
[0051] In conclusion, the application adopts the structure, which is reasonable in overall design, simple in structure and convenient in operation, effectively combines the first plate, the second plate, the third plate and the fourth plate, avoids the wood grain direction being consistent, can make the force generated between the plates be relatedly offset, can effectively reduce the deformation rate of the plate, effectively improves the flatness of the parquet plate, improves the appearance of the parquet plate, and effectively improves the service life of the parquet plate, which brings great convenience to the user of the parquet plate.
[0052] The basic principle, main features and advantages of the application are shown and described above. Those skilled in the art should understand that the application is not limited by the above examples, and the above examples and descriptions in the specification are only to illustrate the principle of the application. Without departing from the spirit and scope of the application, various changes and improvements can be made to the application, and these changes and improvements all fall within the scope of the claimed application. The scope of protection of the application 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.
10. A splicing method for an assembly structure applied to parquet panels, the splicing method being based on an assembly structure for parquet panels as described in any one of claims 1-9, characterized in that, The splicing method includes the following steps: 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. 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. 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. 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. Step 5: Reinforcement. Operators attach mesh fabric to the upper surface of the assembled panels obtained in Step 4.