Anti-aging wood-plastic floor
Patent Information
- Application Number
- CN202522199767.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-17
- Publication Date
- 2026-09-08
- Estimated Expiration
- 2035-10-17
AI Technical Summary
基于上述传统木塑地板存在的排水不畅、抗紫外线老化能力弱、安装维护不便及结构强度不足等问题,本抗老化木塑地板应运而生
[0015] The UV-cured, wear-resistant, and UV-resistant coating on the upper support board effectively blocks UV rays from eroding the flooring substrate through the synergistic effect of UV absorbers and hindered amine light stabilizers. This significantly reduces the probability of cracking and fading due to prolonged sun exposure, and substantially extends the flooring's appearance retention period. Meanwhile, the glass fiber reinforcement added to the middle support board possesses high strength, corrosion resistance, and anti-aging properties, enhancing the overall structural stability of the flooring and enabling it to withstand long-term external erosion in complex outdoor environments.
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Figure CN224729275U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wood-plastic flooring technology, and in particular to an anti-aging wood-plastic flooring. Background Technology
[0002] Wood-plastic composite flooring, a new type of environmentally friendly building material made from wood powder and plastic, is widely used in outdoor courtyards, balconies, park walkways, and other settings due to its combination of the texture of wood and the corrosion resistance of plastic. However, traditional wood-plastic composite flooring faces many problems that urgently need to be addressed during long-term use.
[0003] On the one hand, frequent rain and dew in outdoor environments can cause water to accumulate on the surface of the floor. If drainage is not timely, the moisture will gradually seep into the floor, causing the material to swell, deform, and even grow mold, seriously affecting the structural stability and service life of the floor. On the other hand, long-term exposure to sunlight will cause ultraviolet rays to accelerate the degradation of the polymer components in wood-plastic composites, leading to aging phenomena such as cracking, fading, and loss of luster on the floor surface. This not only reduces the aesthetics of the floor but also weakens its mechanical properties.
[0004] Furthermore, traditional wood-plastic composite (WPC) flooring relies heavily on bolts and glue for installation, making the process cumbersome. Subsequent repairs or replacements of individual planks require disruption of the entire structure, resulting in high maintenance costs. Additionally, some flooring types suffer from insufficient structural strength, easily bending and deforming under loads from pedestrians and furniture, further shortening their lifespan. Addressing these issues of poor drainage, weak resistance to UV aging, inconvenient installation and maintenance, and insufficient structural strength in traditional WPC flooring, this anti-aging WPC flooring was developed. Utility Model Content
[0005] This utility model provides an anti-aging wood-plastic flooring. The upper support board uses a UV-cured wear-resistant and UV-resistant coating, which significantly extends the appearance maintenance period of the flooring. The glass fiber reinforcing ribs added to the middle support board have high strength, corrosion resistance, and anti-aging properties, which enhance the overall structural stability of the flooring and enable it to resist external erosion for a long time in complex outdoor environments.
[0006] The technical solution adopted by this utility model to solve its technical problem is an anti-aging wood-plastic flooring, including an upper support plate, a middle support plate and a lower support plate. The upper support plate, the middle support plate and the lower support plate are arranged in order from top to bottom. The upper support plate fixes the middle support plate, the middle support plate fixes the lower support plate, and a water guiding module is provided on the upper support plate.
[0007] Furthermore, the water guiding module includes an upper water guiding channel, and a set of evenly arranged upper water guiding channels are provided on the upper support plate. A set of evenly arranged water outlet channels are provided at both ends of the upper support plate. The upper water guiding channel is connected to the water outlet channel, and one end of the upper water guiding channel connected to the water outlet channel is a sloping surface.
[0008] Furthermore, a set of evenly arranged water guide holes are provided at both ends of the middle layer support plate, and the water guide holes correspond one-to-one with the water outlet channels. Water guide protrusions are provided in the water guide holes, and the water guide protrusions fix the middle layer support plate on the inner wall of the water guide holes. The water guide protrusions are spiral protrusions.
[0009] Furthermore, a set of evenly arranged reinforcing ribs are fixed inside the middle support plate.
[0010] Furthermore, the reinforcing rib is made of glass fiber.
[0011] Furthermore, a slot is provided on one side of the lower support plate, and a locking rod is fixedly provided on the other side of the lower support plate, the locking rod being able to engage with the slot.
[0012] Furthermore, a set of evenly arranged drainage channels are provided on the lower support plate, and the drainage channels correspond one-to-one with the upper water guiding channels.
[0013] Furthermore, a set of evenly arranged gaskets are fixedly installed on the lower side of the lower support plate, and the grooves between the gaskets form a lower water guide channel.
[0014] The beneficial effects of this utility model on anti-aging wood-plastic flooring are as follows:
[0015] The UV-cured, wear-resistant, and UV-resistant coating on the upper support board effectively blocks UV rays from eroding the flooring substrate through the synergistic effect of UV absorbers and hindered amine light stabilizers. This significantly reduces the probability of cracking and fading due to prolonged sun exposure, and substantially extends the flooring's appearance retention period. Meanwhile, the glass fiber reinforcement added to the middle support board possesses high strength, corrosion resistance, and anti-aging properties, enhancing the overall structural stability of the flooring and enabling it to withstand long-term external erosion in complex outdoor environments.
[0016] The floor features a complete drainage path from top to bottom. The upper support board has evenly distributed upper water channels that quickly collect surface water. The sloping design allows the water to flow naturally to the outlet channel under gravity. The middle support board has corresponding water channels with its drainage holes. Internal spiral protrusions not only guide the water flow into a stable spiral path, improving drainage efficiency, but also reduce water impact and prevent clogging. The lower support board has drainage channels that correspond to the upper channels, further guiding the water out. The grooves between the pads form the lower drainage channel, which promptly drains water that has seeped into the bottom of the floor. This multi-layered drainage design completely solves the problem of water accumulation in traditional flooring and effectively prevents water damage to the floor.
[0017] The stable structure formed by three layers of support boards fixed sequentially from top to bottom, combined with evenly distributed reinforcing ribs within the middle support board, greatly improves the strength and rigidity of the flooring. The addition of fiberglass reinforcing ribs allows the flooring to withstand greater loads, effectively preventing deformation caused by excessive stress and ensuring the structural integrity and safety of the flooring during long-term use. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 1 ;
[0019] Figure 2 This is an exploded view of the present invention;
[0020] Figure 3 This is a schematic diagram of the three-dimensional structure of the present invention. Figure 2 .
[0021] The above figures are labeled as follows: 1. Upper support plate; 101. Upper water guide channel; 102. Water outlet channel; 103. Sloping surface; 2. Middle support plate; 201. Reinforcing rib; 202. Water guide hole; 203. Water guide protrusion; 3. Lower support plate; 301. Slot; 302. Locking rod; 303. Leakage channel; 304. Gasket; 304. Lower water guide channel. Detailed Implementation
[0022] The present invention will be further described below with reference to the accompanying drawings and embodiments, but these specific embodiments do not limit the scope of protection of the present invention in any way.
[0023] See Figures 1-3 An anti-aging wood-plastic flooring includes an upper support plate 1, a middle support plate 2, and a lower support plate 3, which are arranged from top to bottom. The upper support plate 1 fixes the middle support plate 2, and the middle support plate 2 fixes the lower support plate 3. A water guiding module is provided on the upper support plate 1.
[0024] In this embodiment, by arranging and fixing the upper support plate 1, the middle support plate 2 and the lower support plate 3 from top to bottom, a stable three-layer structure is formed. The water guiding module on the upper support plate 1 can guide the water flow and effectively prevent the floor from aging due to water accumulation.
[0025] Preferably, the upper side of the upper support plate 1 is a UV-cured wear-resistant and UV-resistant coating. This coating has the functions of wear resistance and UV resistance, and is resistant to sun exposure and wear. It is not easy to crack or fade after prolonged exposure to the sun.
[0026] The water guiding module includes an upper water guiding channel 101. A set of evenly arranged upper water guiding channels 101 is provided on the upper support plate 1. A set of evenly arranged water outlet channels 102 are provided at both ends of the upper support plate 1. The upper water guiding channel 101 is connected to the water outlet channel 102. One end of the upper water guiding channel 101 that is connected to the water outlet channel 102 is a slope surface 103.
[0027] In this embodiment, the design of the slope surface 103 allows the water in the upper water guide channel 101 to flow naturally to the water outlet channel 102 under the action of gravity, thereby guiding and discharging the water flow. This effectively collects and disperses the water flow. The slope surface 103 and the water outlet channel 102 can quickly drain the water from the floor surface, preventing water accumulation from damaging the floor and improving the anti-aging performance and service life of the floor.
[0028] The middle layer support plate 2 has a set of evenly arranged water guide holes 202 at both ends. The water guide holes 202 correspond one-to-one with the water outlet channel 102. Water guide protrusions 203 are provided in the water guide holes 202. The water guide protrusions 203 fix the middle layer support plate 2 to the inner wall of the water guide holes 202. The water guide protrusions 203 are spiral protrusions.
[0029] In this embodiment, the water guide hole 202 corresponds to the water outlet channel 102. Water can enter the water guide hole 202 through the water outlet channel 102. The spiral protrusion inside the water guide hole 202 causes the water to form a spiral path when passing through. It may use centrifugal force or extend the water flow path to improve drainage efficiency or prevent blockage. The spiral water guide protrusion 203 helps to further guide the water flow, increase the flow stability of the water flow, reduce the impact of the water flow on the middle support plate 2, and may also have a certain anti-blocking function to ensure the smooth operation of the drainage system.
[0030] A set of evenly arranged reinforcing ribs 201 are fixed inside the middle support plate 2.
[0031] The reinforcing rib 201 is made of glass fiber.
[0032] The reinforcing rib 201 enhances the strength and rigidity of the middle support board 2, making it less prone to deformation under pressure and external forces. This improves the overall structural strength and stability of the floor, enabling it to withstand greater loads and preventing deformation of the middle support board 2 from affecting the floor's performance and lifespan. Fiberglass, with its high strength, corrosion resistance, and anti-aging properties, further enhances the performance of the middle support board 2, improving the overall quality and durability of the floor. It is particularly outstanding in anti-aging, effectively resisting the erosion of the floor by the external environment.
[0033] A slot 301 is provided on one side of the lower support plate 3, and a locking rod 302 is fixedly provided on the other side of the lower support plate 3. The locking rod 302 can engage with the slot 301.
[0034] In this embodiment, the cooperation of the slot 301 and the lever 302 enables the interlocking connection between the floorboards. The interlocking of the mechanical structure is used to fix the floorboards, which facilitates the installation and removal of the floorboards, makes the connection between the floorboards more secure, and also facilitates later maintenance and replacement.
[0035] A set of evenly arranged drainage channels 303 are provided on the lower support plate 3, and the drainage channels 303 correspond one-to-one with the upper water guide channels 101. The drainage channels 303 correspond one-to-one with the upper water guide channels 101. Water can flow through the upper water guide channels 101, the water outlet channel 102, and the water guide hole 202, and then be discharged from the floor through the drainage channels 303, forming a complete drainage path. This ensures that the water can be smoothly discharged from the floor surface to the outside, further improving the drainage performance of the floor and preventing water accumulation from damaging the floor.
[0036] A set of evenly arranged pads 304 are fixedly installed on the lower side of the lower support plate 3. The grooves between the pads 304 form the lower water guide channel 305. Water can flow in the groove and be discharged by gravity, which increases the drainage channels under the floor and helps to drain water that may seep into the bottom of the floor in a timely manner.
[0037] The working process of this utility model is as follows: Clean the installation site to ensure that the ground is flat, solid, and free of obvious protrusions, depressions, or debris. If the ground is uneven, it needs to be leveled to ensure the stability of the floor after installation. Place the first floorboard in the starting position, with the locking rod 302 of the lower support plate 3 facing the installation direction. Then, take the second floorboard and align the locking groove 301 of its lower support plate 3 with the locking rod 302 of the first floorboard. Gently push the second floorboard to make the locking rod 302 fully engage in the locking groove 301, ensuring that the two floorboards are firmly connected without gaps. Lay the subsequent floorboards in sequence according to the above method. During the installation process, pay attention to keeping the floorboards neatly arranged to avoid skewing. Use a broom or vacuum cleaner to clean the dust and debris on the floor surface daily. If the floor surface is stained, wipe it gently with a damp cloth dipped in neutral detergent, and then wipe it clean with water. Avoid using corrosive cleaners such as strong acids and alkalis to prevent damage to the UV coating.
[0038] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Although the present utility model has been disclosed above with reference to a preferred embodiment, it is not intended to limit the present utility model. Any person skilled in the art can make some modifications or alterations to the above-disclosed technical content to create equivalent embodiments without departing from the scope of the present utility model. Any simple modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the scope of the present invention shall still fall within the scope of the present utility model.
Claims
1. An anti-aging wood-plastic composite flooring, characterized in that: It includes an upper support plate (1), a middle support plate (2) and a lower support plate (3), which are arranged from top to bottom. The upper support plate (1) fixes the middle support plate (2), and the middle support plate (2) fixes the lower support plate (3). A water guiding module is provided on the upper support plate (1).
2. The anti-aging wood-plastic flooring according to claim 1, characterized in that: The water guiding module includes an upper water guiding channel (101). A set of evenly arranged upper water guiding channels (101) is provided on the upper support plate (1). A set of evenly arranged water outlet channels (102) is provided at both ends of the upper support plate (1). The upper water guiding channel (101) is connected to the water outlet channel (102). One end of the upper water guiding channel (101) connected to the water outlet channel (102) is a slope surface (103).
3. The anti-aging wood-plastic flooring according to claim 2, characterized in that: The middle layer support plate (2) has a set of evenly arranged water guide holes (202) at both ends. The water guide holes (202) and the water outlet channel (102) correspond one-to-one. The water guide holes (202) are respectively provided with water guide protrusions (203). The water guide protrusions (203) fix the middle layer support plate (2) on the inner wall of the water guide holes (202). The water guide protrusions (203) are spiral protrusions.
4. The anti-aging wood-plastic flooring according to claim 2, characterized in that: The middle support plate (2) is fixed with a set of evenly arranged reinforcing ribs (201).
5. The anti-aging wood-plastic flooring according to claim 4, characterized in that: The reinforcing rib (201) is made of glass fiber.
6. The anti-aging wood-plastic flooring according to claim 3, characterized in that: A slot (301) is provided on one side of the lower support plate (3), and a lever (302) is fixedly provided on the other side of the lower support plate (3). The lever (302) can engage with the slot (301).
7. The anti-aging wood-plastic flooring according to claim 6, characterized in that: The lower support plate (3) is provided with a set of evenly arranged drainage channels (303), and the drainage channels (303) correspond one-to-one with the upper water guide channels (101).
8. The anti-aging wood-plastic flooring according to claim 3, characterized in that: A set of evenly arranged gaskets (304) are fixedly installed on the lower side of the lower support plate (3), and the grooves between the gaskets (304) form the lower water guide channel (305).