Novel energy-saving environment-friendly rubber board
Through innovative design of rubberwood filling, wood-plastic composite, and floor mat composite parts, combined with reinforced beams, the problem of rubberwood boards being susceptible to moisture damage and external deformation has been solved, achieving energy-saving, environmentally friendly, pressure-resistant, bending-resistant, and moisture-proof effects, and extending service life.
Patent Information
- Application Number
- CN202520352627.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Rubberboard is susceptible to damage from moisture penetration and deformation from external impacts during use, affecting its performance.
The structure employs a multi-unit design consisting of rubberwood filling, wood-plastic composite, and floor mat composite components. Combined with reinforced beams, it utilizes the compressive and bending resistance of wood-plastic composite materials and forms an integrated floor structure through interlocking and bonding.
It reduces wood waste, improves the pressure resistance, bending resistance, and moisture resistance of rubber boards, extends their service life, and can be laid directly without the need for additional floor mats.
Smart Images

Figure CN223853759U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of rubber wood board, and particularly relates to a novel energy-saving and environment-friendly rubber wood board. BACKGROUND
[0002] Rubber wood is a plant for producing rubber latex, is the main stem of rubber tree, subtropical tree species, and can be used to make furniture after the tree is old. With the development of furniture market, rubber wood is more and more widely used in furniture, floor, wood core board and the like.
[0003] When the rubber wood board is used as a floor for a long time, moisture is easy to penetrate into the rubber wood board, which causes damage to the internal structure of the rubber wood board. In addition, when the rubber wood board is used as a floor for a long time, the rubber wood board is easy to be impacted by external force, so that the rubber wood board is easy to deform or even be damaged, and the use effect is affected. CONTENT OF THE UTILITY MODEL
[0004] In order to improve the problems in the above background technology, the present application provides a novel energy-saving and environment-friendly rubber wood board.
[0005] The novel energy-saving and environment-friendly rubber wood board provided by the present application adopts the following technical scheme:
[0006] The novel energy-saving and environment-friendly rubber wood board comprises multiple groups of rubber wood filling parts, a wood-plastic composite part and a floor mat composite part. The wood-plastic composite part and the floor mat composite part are fixedly bonded to each other in alignment with the outer edges. The multiple groups of rubber wood filling parts are arranged in intervals and arranged between the wood-plastic composite part and the floor mat composite part, and each group of rubber wood filling parts is fixedly bonded between the wood-plastic composite part and the floor mat composite part. The wood-plastic composite part comprises a veneer, two board end protrusions and multiple board middle protrusions. The two board end protrusions are formed at the two ends of the side of the veneer facing the floor mat composite part, and the bottoms of the two board end protrusions are inserted into the floor mat composite part in cooperation. The multiple board middle protrusions are arranged between the two board end protrusions and formed on the side of the veneer facing the floor mat composite part. The multiple board middle protrusions divide the gap between the two board end protrusions into multiple filling grooves, and each filling groove is filled with a group of rubber wood filling parts.
[0007] Further, the rubber wood filling part comprises a first board end wood block and a second board end wood block. The opposite sides of the first board end wood block and the second board end wood block are aligned with the outer edges of the wood-plastic composite part. The opposite sides of the first board end wood block and the second board end wood block are respectively formed with matching tapered protrusion areas and tapered recessed areas. The rubber wood filling part further comprises multiple board middle wood blocks. The multiple board middle wood blocks are arranged between the first board end wood block and the second board end wood block in a column. The two ends of each board middle wood block are respectively formed with matching tapered protrusion areas and tapered recessed areas.
[0008] Further, a boss is formed on one side of the floor mat composite part facing the wood-plastic composite part, the boss is inserted between the two plate end protrusions, and the boss fills the remaining gap between the two plate end protrusions, and a square hole is formed on the other side of the floor mat composite part facing away from the wood-plastic composite part.
[0009] Further, a first notch is formed at the bottom of each of the two plate end protrusions, and a second notch is formed on each of the two opposite sides of the top of the floor mat composite part, and the plate end protrusions and the floor mat composite part are inserted into each other through the first notch and the second notch.
[0010] Further, the new energy-saving and environment-friendly rubber-wood board further comprises a reinforcing beam frame, the reinforcing beam frame is filled in the square hole in a size and shape matching manner, and the reinforcing beam frame and the square hole are adhesively fixed, the reinforcing beam frame is an engineering plastic beam frame, or the reinforcing beam frame is a carbon steel beam frame with a rust-proof coating on the outer surface.
[0011] The beneficial technical effects of the present application are as follows: through the arrangement of the plurality of rubber-wood filling parts, wood-plastic composite parts and floor mat composite parts, the new energy-saving and environment-friendly rubber-wood board can utilize small pieces of rubber-wood, and can reduce the waste of wood; in addition, the new energy-saving and environment-friendly rubber-wood board can be directly laid as an integrated whole without additional laying of a floor mat; furthermore, the new energy-saving and environment-friendly rubber-wood board can have good compression resistance, bending resistance and moisture resistance, thereby improving the service life. BRIEF DESCRIPTION OF DRAWINGS
[0012] Figure 1 is a structural schematic view of the new energy-saving and environment-friendly rubber-wood board according to the embodiment of the present application;
[0013] Figure 2 is Figure 1 is a structural schematic view of the new energy-saving and environment-friendly rubber-wood board from another angle;
[0014] Figure 3 is a structural schematic view of the rubber-wood filling part in the embodiment of the present application;
[0015] Figure 4 is a structural schematic view of the wood-plastic composite part in the embodiment of the present application;
[0016] Figure 5 is a structural schematic view of the floor mat composite part in the embodiment of the present application;
[0017] Figure 6 is Figure 5 is a structural schematic view of the floor mat composite part from another angle.
[0018] 10, rubber wood filling part; 11, first plate end wood block; 12, second plate end wood block; 13, plate middle wood block; 20, wood-plastic composite part; 21, veneer layer; 22, plate end protrusion; 23, plate middle protrusion; 24, filling groove; 25, first notch; 30, floor mat composite part; 31, boss; 32, second notch; 33, T-shaped groove; 40, reinforcing beam frame. DETAILED DESCRIPTION
[0019] The technical solutions of the present application will be clearly and completely described below with reference to the drawings. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0020] The embodiments of the present application disclose a new energy-saving and environment-friendly rubber wood board. Referring to Figure 1 and Figure 2 , the new energy-saving and environment-friendly rubber wood board can include a plurality of groups of rubber wood filling parts 10, wood-plastic composite parts 20, floor mat composite parts 30, and reinforcing beam frames 40. During production and processing, the plurality of groups of rubber wood filling parts 10 can be arranged and disposed between the wood-plastic composite parts 20 and the floor mat composite parts 30 at intervals, and each group of rubber wood filling parts 10 can be adhesively fixed with the wood-plastic composite parts 20 and the floor mat composite parts 30, and the outer edges of the wood-plastic composite parts 20 and the floor mat composite parts 30 can be adhesively fixed in alignment with each other, so as to form a complete new energy-saving and environment-friendly rubber wood board.
[0021] Referring to Figure 3 , the rubber wood filling part 10 at least includes the first plate end wood block 11 and the second plate end wood block 12, and can further include a plurality of plate middle wood blocks 13, and the rubber wood filling part 10 can be processed and manufactured by using the leftover materials after cutting a large rubber wood board. The opposite sides of the first plate end wood block 11 and the second plate end wood block 12 are both trimmed into flat surfaces, and can be aligned with the outer edges of the wood-plastic composite part 20 during assembly. The opposite sides of the first plate end wood block 11 and the second plate end wood block 12 are respectively trimmed to form matching tapered protrusion regions and tapered recessed regions, and the two ends of each plate middle wood block 13 are also respectively trimmed to form matching tapered protrusion regions and tapered recessed regions, so that the rubber wood filling part 10 can process small wooden strips into the shapes of the first plate end wood block 11, the second plate end wood block 12, and the plate middle wood block 13 during processing, and a plurality of plate middle wood blocks 13 can be arranged between the first plate end wood block 11 and the second plate end wood block 12 and adhesively fixed in a row to form a group of rubber wood filling parts 10.
[0022] Referring to Figure 4, the wood-plastic composite part 20 includes a decorative layer 21, two end protrusions 22 of the board, and multiple middle protrusions 23 of the board. The two end protrusions 22 of the board are respectively formed at both ends of the decorative layer 21 on the side facing the floor mat composite part 30. A first notch 25 is formed at the bottom of each of the two end protrusions 22 of the board. Second notches 32 are formed at opposite sides of the top of the floor mat composite part 30. The first notch 25 and the second notch 32 can be used to position and cooperate with each other between the end protrusion 22 of the board and the floor mat composite part 30, so that the bottom of each of the two end protrusions 22 of the board is inserted and joined with the floor mat composite part 30 in a matching manner. The multiple middle protrusions 23 of the board are arranged between the two end protrusions 22 of the board, and the multiple middle protrusions 23 of the board are formed on the side of the decorative layer 21 facing the floor mat composite part 30. The multiple middle protrusions 23 of the board divide the gap between the two end protrusions 22 of the board into multiple filling grooves 24, and a set of rubber wood filling parts 10 can be filled and arranged in each filling groove 24.
[0023] Refer to Figure 5 and Figure 6 , a boss 31 is formed on the side of the floor mat composite part 30 facing the wood-plastic composite part 20. The boss 31 can be inserted between the two end protrusions 22 of the board and fill the remaining gap between the two end protrusions 22 of the board. A grid groove 33 with a certain depth of depression is formed on the side of the floor mat composite part 30 facing away from the wood-plastic composite part 20, so that a reinforcing beam frame 40 adapted to the size and shape of the grid groove 33 can be filled and arranged in the grid groove 33 and adhesively fixed to its inner wall.
[0024] In this embodiment, the reinforcing beam frame 40 can be integrally formed by engineering plastic injection molding in a "grid" - shaped beam frame structure, or the reinforcing beam frame 40 can also be made into a "grid" - shaped beam frame structure by carbon steel welding or die - casting, and then an anti - rust coating is sprayed on its outer surface. The reinforcing beam frame 40 can provide internal reinforcement support for the floor mat composite part 30 and reduce the torsional deformation of the floor mat composite part 30.
[0025] In this embodiment, the wood - plastic composite material used for the wood - plastic composite part 20 can use polyethylene, polypropylene, polyvinyl chloride, etc., instead of the usual resin adhesives, and be mixed with more than 35% - 70% of waste plant fibers such as wood powder, rice husk, straw, etc. to form a new woody material, and then made by plastic processing techniques such as extrusion, compression molding, injection molding, etc. The wood - plastic composite material contains plastic, so it has a good elastic modulus. In addition, because it contains fibers and is fully mixed with plastic, it has physical and mechanical properties such as compression resistance and bending resistance equivalent to those of hardwood. In addition, it can make the surface hardness of the wood - plastic composite part 20 high and reduce the wear when the new energy - saving and environmental - protection rubber wood board is used as a floor as a whole. Moreover, it can recycle waste plant fibers such as wood powder, rice husk, straw, etc., making the production of the rubber wood board more environmentally friendly.
[0026] In the embodiment, the floor mat composite part 30 can be made of polyethylene material, foamed and formed, and then cut according to the required specifications and shapes. It can have more closed pores, so it has better moisture-proof and sound insulation capacity. It can be understood that other moisture-proof mats of the same material in the prior art can also be used.
[0027] The above are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, so: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.
Claims
1. A new energy-saving and environment-friendly rubber wood board, characterized in that, The application relates to a rubber-wood filling part (10), a wood-plastic composite part (20) and a floor mat composite part (30), the wood-plastic composite part (20) and the floor mat composite part (30) are fixedly connected with each other in alignment with the outer edges, the rubber-wood filling part (10) is arranged between the wood-plastic composite part (20) and the floor mat composite part (30) in a spaced distribution mode, and each rubber-wood filling part (10) is fixedly connected with the wood-plastic composite part (20) and the floor mat composite part (30), The wood-plastic composite part (20) comprises a veneer layer (21), two plate-end protrusions (22) and a plurality of plate-middle protrusions (23), the two plate-end protrusions (22) are formed at the two ends of the veneer layer (21) on the side facing the floor mat composite part (30), the bottoms of the two plate-end protrusions (22) are inserted into the floor mat composite part (30) in cooperation, the plurality of plate-middle protrusions (23) are arranged between the two plate-end protrusions (22), the plurality of plate-middle protrusions (23) are formed on the side of the veneer layer (21) facing the floor mat composite part (30), the plurality of plate-middle protrusions (23) divide the gap between the two plate-end protrusions (22) into a plurality of filling grooves (24), and each filling groove (24) is filled with a rubber-wood filling part (10).
2. A new energy-saving and environment-friendly rubber-wood board according to claim 1, characterized in that, The rubber-wood filling part (10) comprises a first plate-end wood block (11) and a second plate-end wood block (12), the opposite sides of the first plate-end wood block (11) and the second plate-end wood block (12) are aligned with the outer edges of the wood-plastic composite part (20), and the opposite sides of the first plate-end wood block (11) and the second plate-end wood block (12) are respectively provided with matching tapered protrusion areas and tapered recessed areas.
3. The novel energy-saving and environment-friendly rubber-wood board according to claim 2, characterized in that, The rubber-wood filling part (10) further comprises a plurality of plate-middle wood blocks (13), the plurality of plate-middle wood blocks (13) are arranged between the first plate-end wood block (11) and the second plate-end wood block (12) in a columnar arrangement, and the two ends of each plate-middle wood block (13) are respectively provided with matching tapered protrusion areas and tapered recessed areas.
4. The novel energy-saving environment-friendly rubber-wood board according to claim 1, characterized in that, The floor mat composite part (30) is provided with a boss (31) on the side facing the wood-plastic composite part (20), the boss (31) is inserted between the two plate-end protrusions (22), and the boss (31) fills the remaining gap between the two plate-end protrusions (22).
5. The novel energy-saving and environment-friendly rubber-wood board according to claim 4, characterized in that, The bottoms of the two plate-end protrusions (22) are respectively provided with first notches (25), the top of the floor mat composite part (30) is provided with second notches (32) on the opposite sides, and the plate-end protrusions (22) and the floor mat composite part (30) are inserted into each other through the first notches (25) and the second notches (32).
6. The novel energy-saving and environment-friendly rubber-wood board according to claim 4 or 5, characterized in that, The floor mat composite part (30) is provided with a field-shaped groove (33) recessed upward on the side away from the wood-plastic composite part (20).
7. The novel energy-saving and environment-friendly rubber-wood board according to claim 6, characterized in that, The application further relates to a reinforcing beam frame (40), the reinforcing beam frame (40) is arranged in the field-shaped groove (33) in a size and shape matched mode, and the reinforcing beam frame (40) is fixedly connected with the field-shaped groove (33).
8. The novel energy-saving environment-friendly rubber-wood board according to claim 7, characterized in that, The reinforcing beam frame (40) is provided as an engineering plastic beam frame, or the reinforcing beam frame (40) is provided as a carbon steel beam frame with a rust-proof coating on the outer surface.