Anti-ultraviolet aging wood floor and processing device thereof

By opening refraction grooves and triangular refraction parts on the top of the base layer of the wood floor and spraying UV-resistant coatings on the surface of the wear-resistant layer and the refraction groove, the problem of aging of traditional wood floors under ultraviolet rays is solved, significantly extending the service life of wood floors and improving its performance.

CN120193642APending Publication Date: 2025-06-24SCHOLAR HOME SHANGHAI NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202510459511.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

Traditional wooden floors are prone to aging under long-term ultraviolet irradiation, the surface coating fades and powders, and the strength of the wood substrate decreases and cracks, which shortens the service life.

Method used

A kind of anti-ultraviolet aging wooden floor is designed, with multiple refractive grooves on the top of the base layer, and the two sides of the bottom gradually tilt toward the middle to form a refractive portion of a triangular structure. The skeleton and the refractive groove are distributed vertically. The surface of the wear-resistant layer and the refractive groove are sprayed with UV coating, and the outer wall of the base layer is sprayed with moisture-proof paint.

Benefits of technology

Through the design of refractive grooves and refractive parts, the light propagation path is effectively changed, the ultraviolet rays are reduced directly on the wood substrate and surface, the light degradation effect is reduced, the service life of the wood floor is extended, and the beauty and performance are improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an anti-ultraviolet aging wood floor and a processing device thereof, relates to the technical field of wood floors, and aims to solve the problem that the service life of a traditional wood floor is greatly shortened under long-term ultraviolet irradiation, the anti-ultraviolet aging wood floor comprises a base layer and a wear-resistant layer at the top of the base layer, and a plurality of uniformly arranged frameworks are arranged between the base layer and the wear-resistant layer; a plurality of refraction grooves are evenly formed in the top of the base layer, the two sides of the bottom of each refraction groove gradually incline and extend towards the middle of the refraction groove to form a refraction part, each refraction part is of a triangular structure, the framework and the refraction grooves are perpendicularly distributed in a staggered mode, and the surface of the abrasion-resistant layer and the interiors of the refraction grooves are both sprayed with anti-ultraviolet paint. And the outer wall of the base layer is uniformly sprayed with moisture-proof paint. The invention has the advantages that the structure is stable, and the anti-ultraviolet aging effect is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of wooden floors, and more specifically, to an anti-ultraviolet aging wooden floor and its processing device. Background Art

[0002] As a common floor decoration material, wooden floors are deeply loved by consumers for their natural beauty, comfortable foot feeling, etc. However, in the actual use process, especially in some environments with strong light, such as rooms directly irradiated by sunlight, outdoor terraces, etc., wooden floors are easily irradiated by ultraviolet rays and undergo aging phenomena.

[0003] Under long-term ultraviolet irradiation, the surface coating of traditional wooden floors is prone to fading and powdering, and the wood matrix will also cause problems such as strength decline and cracking due to photodegradation, greatly shortening the service life of wooden floors, affecting their beauty and service performance. In view of this, we propose an anti-ultraviolet aging wooden floor and its processing device. Summary of the Invention

[0004] The purpose of the present invention is to provide an anti-ultraviolet aging wooden floor and its processing device, aiming to solve the problem that the service life of traditional wooden floors is greatly shortened under long-term ultraviolet irradiation.

[0005] To solve the above technical problems, the present invention provides the following technical solution: an anti-ultraviolet aging wooden floor, including a base layer and a wear-resistant layer on its top. A plurality of uniformly arranged skeletons are provided between the base layer and the wear-resistant layer. A plurality of refraction grooves are uniformly formed on the top of the base layer. The two sides of the bottom of the refraction groove gradually incline and extend towards the middle to form a refraction part. The refraction part is a triangular structure, and the skeletons and the refraction grooves are vertically and staggeredly distributed. Anti-ultraviolet coatings are sprayed on the surface of the wear-resistant layer and in the refraction grooves, and a moisture-proof paint is uniformly sprayed on the outer wall of the base layer.

[0006] Preferably, the anti-ultraviolet coating is composed of an ultraviolet absorber, a light stabilizer, a film-forming resin, and an auxiliary agent, and the mass ratio of the ultraviolet absorber, the light stabilizer, the film-forming resin, and the auxiliary agent is 15-25: 8-12: 55-65: 8-12 in sequence.

[0007] Preferably, the ultraviolet absorber is a benzophenone-based or benzotriazole-based compound, the light stabilizer is a hindered amine-based compound, the film-forming resin is one of acrylic resin or polyurethane resin, and the thickness of the anti-ultraviolet coating after spraying is 0.1-0.5 mm.

[0008] A processing device for an anti-ultraviolet aging wooden floor, which is used to process any one of the above-mentioned anti-ultraviolet aging wooden floors, includes a machine body. A pair of upper driving rollers are rotatably connected to the inner wall of the machine body, and the upper driving rollers are synchronously rotationally connected by a belt. A pair of lower driving rollers are rotatably connected to the inner wall of the machine body, and the lower driving rollers are synchronously rotationally connected by a belt. A first motor is fixedly connected to the outer wall of the machine body, and the main shaft of the first motor is synchronously rotationally connected to the upper driving roller. A cutting roller is arranged inside the machine body, and a plurality of cutting rings are arranged on the outer wall of the cutting roller. The outer edge of the cutting ring gradually sinks towards the middle to form a profiling part. A second motor is arranged outside the machine body, and the main shaft of the second motor is synchronously rotationally connected to the cutting roller. An adjusting mechanism for adjusting the positions of the cutting roller and the cutting ring is arranged inside the machine body.

[0009] Preferably, the adjusting mechanism includes electric telescopic rods symmetrically arranged on the inner wall of the machine body. A connecting plate is fixedly connected to the bottom of the electric telescopic rod. The end of the cutting roller is rotationally connected to the outer wall of the connecting plate. The second motor is fixedly connected to the outer wall of the connecting plate. A plurality of roller grooves are evenly formed on the outer wall of the cutting roller. A plurality of engaging parts corresponding to the roller grooves are formed on the inner wall of the cutting ring, and the engaging parts are located in the roller grooves. A plurality of adjusting parts are sleeved on the outer wall of the cutting roller, and the cutting roller is sleeved inside the adjusting parts. The inner wall of the adjusting parts is attached to the outer wall of the cutting ring. A limiting roller is fixedly connected to the opposite side between the connecting plates. An activity groove penetrating the limiting roller is formed on the outer wall of the limiting roller. A freely telescopic activity rod is fixedly connected to the top of the adjusting part. The other end of the activity rod passes through the activity groove and is fixedly connected to a pulling plate.

[0010] Preferably, a plurality of engaging protrusions are evenly extended from the bottom of the pulling plate. A plurality of engaging grooves are evenly formed on the outer wall of the limiting roller. The engaging protrusions are snapped into the engaging grooves under the gravity of the pulling plate.

[0011] Preferably, a bracket is arranged outside the machine body. A plurality of universal wheels are fixedly connected to the bottom of the bracket. An inclined storage plate is fixedly connected to the top of the bracket.

[0012] Preferably, a transfer plate is fixedly connected to the inner wall of the machine body. The transfer plate is located between the upper driving rollers. Transfer rollers are arranged on both sides of the transfer plate. The two ends of the transfer rollers are respectively rotationally connected to the inner wall of the machine body.

[0013] Compared with the prior art, the beneficial effects of the present invention are: In the present invention, by providing a plurality of refraction grooves at the top of the base layer, and the two sides of its bottom gradually incline and extend towards the middle to form a refraction part with a triangular structure, the light propagation path can be effectively changed. When ultraviolet rays irradiate the wooden floor, the refraction grooves and the refraction part can cause the ultraviolet rays to be refracted and scattered multiple times in the grooves, reducing the intensity of the ultraviolet rays directly irradiating the wood substrate and the surface anti-ultraviolet coating. Thus, the risk of strength decline and cracking of the wood substrate caused by photo-degradation is greatly reduced. At the same time, the fading and powdering phenomena of the surface coating are slowed down, the service life of the wooden floor in a strongly lit environment is significantly extended, and its aesthetics and usability are improved.

[0014] In the present invention, an anti-ultraviolet coating composed of an ultraviolet absorber, a light stabilizer, a film-forming resin, and an auxiliary agent in a specific mass ratio of 15 - 25:8 - 12:55 - 65:8 - 12 is sprayed on the surface of the wear-resistant layer and in the refraction grooves, further enhancing the absorption and shielding ability of ultraviolet rays and strengthening the anti-ultraviolet aging effect.

[0015] In the present invention, the outer wall of the cutting roller is provided with roller grooves, and the engaging part on the inner wall of the cutting ring corresponds to them to ensure their stable connection. An adjusting member is sleeved outside the cutting roller, and the adjusting member also fits against the outer wall of the cutting ring. A limiting roller is provided between the connecting plates. The movable rod at the top of the adjusting member passes through the movable groove on the limiting roller and is connected to the pulling plate. The engaging protrusion at the bottom of the pulling plate can be inserted into the engaging groove on the limiting roller, enabling the operator to finely adjust the position of the cutting ring by pulling the pulling plate, meeting the diverse processing requirements for the depth and position distribution during the cutting of the refraction grooves, and ensuring the processing quality and performance of the wooden floor. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a schematic structural diagram of the wooden floor in the present invention; Figure 2 is a schematic disassembly structural diagram of the wear-resistant layer in the present invention; Figure 3 is Figure 2 a partial enlarged view of part A in Figure 4 is a schematic structural diagram of the processing device in the present invention; Figure 5 is a schematic disassembly structural diagram of the cutting roller in the present invention; Figure 6 is a schematic disassembly structural diagram of the cutting ring in the present invention; Figure 7 is Figure 6 a partial enlarged view of part B in

[0017] Explanation of the reference numerals in the figures: 1. Base layer; 2. Wear-resistant layer; 3. Skeleton; 4. Refraction groove; 5. Refraction part; 6. Machine body; 7. Upper driving roller; 8. Lower driving roller; 9. First motor; 10. Cutting roller; 11. Cutting ring; 12. Profiling part; 13. Second motor; 14. Electric telescopic rod; 15. Connecting plate; 16. Roller groove; 17. Engaging part; 18. Adjusting part; 19. Limiting roller; 20. Activity groove; 21. Activity rod; 22. Pulling plate; 23. Engaging protrusion; 24. Engaging groove; 25. Bracket; 26. Universal wheel; 27. Stock plate; 28. Transfer plate; 29. Transfer roller. Detailed implementation mode

[0018] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Embodiment

[0019] As Figure 1-3 shown, an anti-ultraviolet aging wooden floor includes a base layer 1 and a wear-resistant layer 2 on its top. A plurality of uniformly arranged skeletons 3 are provided between the base layer 1 and the wear-resistant layer 2. A plurality of refraction grooves 4 are uniformly formed on the top of the base layer 1. Both sides of the bottom of the refraction groove 4 gradually incline and extend towards the middle to form a refraction part 5. The refraction part 5 is a triangular structure, and the skeletons 3 and the refraction grooves 4 are vertically and staggeredly distributed. Anti-ultraviolet coatings are sprayed on the surface of the wear-resistant layer 2 and inside the refraction grooves 4, and moisture-proof paint is uniformly sprayed on the outer wall of the base layer 1.

[0020] The anti-ultraviolet coating is composed of an ultraviolet absorber, a light stabilizer, a film-forming resin, and an auxiliary agent. The mass ratio of the ultraviolet absorber, the light stabilizer, the film-forming resin, and the auxiliary agent is 15-25: 8-12: 55-65: 8-12 in sequence.

[0021] The ultraviolet absorber is a benzophenone-based or benzotriazole-based compound, the light stabilizer is a hindered amine-based compound, the film-forming resin is one of acrylic resin or polyurethane resin, and the thickness of the anti-ultraviolet coating after spraying is 0.1-0.5 mm.

[0022] Specifically, the base layer 1 serves as the basic structure of the wooden floor, providing the main supporting force. The uniformly arranged skeletons 3 are distributed between the base layer 1 and the wear-resistant layer 2. On the one hand, it enhances the overall structural strength of the wooden floor. On the other hand, under the layout vertically staggered with the refraction grooves 4, it helps to disperse the external pressure, ensuring the stability of the base layer 1, so that the wooden floor can withstand daily use scenarios such as trampling. A plurality of refraction grooves 4 are formed at the top of the base layer 1, and the two sides of the bottom gradually incline and extend towards the middle to form a refraction part 5 with a triangular structure. When light such as ultraviolet rays irradiates the wooden floor, the refraction grooves 4 and the refraction part 5 can cause the ultraviolet rays to be refracted and scattered multiple times in the grooves, reducing the intensity of the ultraviolet rays directly irradiating the wood substrate and the surface anti-ultraviolet coating, thereby reducing the damage of the ultraviolet rays to the internal structure of the wooden floor and enhancing the anti-ultraviolet aging ability.

[0023] As Figure 4-7 shown, a processing device for an anti-ultraviolet aging wooden floor is used to process any one of the anti-ultraviolet aging wooden floors described above. The processing device includes a machine body 6. A pair of upper transmission rollers 7 are rotatably connected to the inner wall of the machine body 6. The upper transmission rollers 7 are synchronously rotationally connected by a belt. A pair of lower transmission rollers 8 are rotatably connected to the inner wall of the machine body 6. The lower transmission rollers 8 are synchronously rotationally connected by a belt. A first motor 9 is fixedly connected to the outer wall of the machine body 6. The main shaft of the first motor 9 is synchronously rotationally connected to the upper transmission roller 7. A cutting roller 10 is arranged inside the machine body 6. A plurality of cutting rings 11 are arranged on the outer wall of the cutting roller 10. The outer edge of the cutting ring 11 gradually depresses towards the middle to form a profiling part 12. A second motor 13 is arranged outside the machine body 6. The main shaft of the second motor 13 is synchronously rotationally connected to the cutting roller 10. An adjusting mechanism for adjusting the positions of the cutting roller 10 and the cutting ring 11 is arranged inside the machine body 6.

[0024] The adjusting mechanism includes electric telescopic rods 14 symmetrically arranged on the inner wall of the machine body 6. The bottom of the electric telescopic rod 14 is fixedly connected with a connecting plate 15. The end of the cutting roller 10 is rotationally connected to the outer wall of the connecting plate 15. The second motor 13 is fixedly connected to the outer wall of the connecting plate 15. A plurality of roller grooves 16 are evenly formed on the outer wall of the cutting roller 10. A plurality of engaging parts 17 corresponding to the roller grooves 16 are formed on the inner wall of the cutting ring 11, and the engaging parts 17 are located in the roller grooves 16. A plurality of adjusting parts 18 are sleeved on the outer wall of the cutting roller 10. The cutting roller 10 is sleeved inside the adjusting parts 18, and the inner wall of the adjusting parts 18 is attached to the outer wall of the cutting ring 11. A limiting roller 19 is fixedly connected to the opposite side between the connecting plates 15. An activity groove 20 penetrating through the limiting roller 19 is formed on the outer wall of the limiting roller 19. A freely telescopic activity rod 21 is fixedly connected to the top of the adjusting part 18. The other end of the activity rod 21 passes through the activity groove 20 and is fixedly connected with a pulling plate 22.

[0025] Specifically, the base layer 1, the skeleton 3, and the wear-resistant layer 2 are stacked together in sequence and hot-pressed to form a wooden floor. The wooden floor is inserted between the upper driving roller 7 and the lower driving roller 8. Subsequently, the first motor 9 is started. The operation of the first motor 9 drives the upper driving roller 7 to rotate. The rotation of the upper driving roller 7 cooperates with the lower driving roller 8 to convey the wooden floor. When the electric telescopic rod 14 descends, it will drive the connecting plate 15 to descend. As the connecting plate 15 descends, the second motor 13 fixed to the outer wall of the connecting plate 15 and the cutting roller 10 synchronously connected thereto also descend. When the cutting roller 10 descends to a suitable position, the second motor 13 is started, and its main shaft drives the cutting roller 10 to rotate at a high speed. Since the outer edge of the cutting ring 11 on the outer wall of the cutting roller 10 gradually depresses from the outside to the middle to form a profiling portion 12, during the rotation process, the cutting ring 11 can accurately cut the base layer 1 of the wooden floor being conveyed between the upper driving roller 7 and the lower driving roller 8 according to the preset shape and size. Meanwhile, the operator can adjust the position of the adjusting member 18 by pulling the pull plate 22 according to the specific processing requirements of the refraction groove 4 on the wooden floor. The movement of the pull plate 22 drives the movable rod 21 to move in the movable groove 20 of the limiting roller 19, thereby changing the position of the adjusting member 18 on the cutting roller 10. Since the inner wall of the adjusting member 18 fits with the outer wall of the cutting ring 11, the relative position of the cutting ring 11 on the cutting roller 10 will also change accordingly, so as to meet the cutting requirements for refraction grooves 4 of different specifications.

[0026] After the wooden floor is cut, an anti-ultraviolet coating can be sprayed on its surface to complete the processing of the wooden floor.

[0027] Further, a plurality of engaging protrusions 23 are uniformly formed at the bottom of the pull plate 22, and a plurality of engaging grooves 24 are uniformly formed on the outer wall of the limiting roller 19. The engaging protrusions 23 are engaged in the engaging grooves 24 under the gravity of the pull plate 22.

[0028] Specifically, when the operator pulls the pull plate 22 according to the processing requirements of the refraction groove 4 on the wooden floor, drives the movable rod 21 to move in the movable groove 20 of the limiting roller 19, and completes the adjustment of the positions of the adjusting member 18 and the cutting ring 11, the pull plate 22 drives the engaging protrusions 23 at its bottom to be engaged in the corresponding engaging grooves 24 on the outer wall of the limiting roller 19 under its own gravity, thereby effectively preventing the positions of the adjusting member 18 and the cutting ring 11 from shifting due to equipment vibration or other external force factors during the cutting process, ensuring that the cutting ring 11 is always in an accurate working position, and guaranteeing the stability and consistency of the cutting dimensions and shapes of the refraction grooves 4 of the wooden floor, so as to meet the high-precision processing requirements.

[0029] Further, a bracket 25 is arranged outside the machine body 6. A plurality of universal wheels 26 are fixedly connected to the bottom of the bracket 25, and an inclined storage plate 27 is fixedly connected to the top of the bracket 25.

[0030] Specifically, after the wooden floor is cut, it will fall on the stock plate 27. By pushing the bracket 25, the bracket 25 drives the stock plate 27 to move under the action of the universal wheels 26, thus facilitating the transportation and transfer of the wooden floor.

[0031] Furthermore, a transfer plate 28 is fixedly connected to the inner wall of the machine body 6. The transfer plate 28 is located between the upper driving rollers 7, and transfer rollers 29 are arranged on both sides of the transfer plate 28. Both ends of the transfer rollers 29 are rotatably connected to the inner wall of the machine body 6.

[0032] Specifically, when the wooden floor is conveyed forward by the cooperation of the upper driving rollers 7 and the lower driving rollers 8, the transfer plate 28 and the transfer rollers 29 can provide a stable support platform for the wooden floor, enabling the wooden floor to move more smoothly and increasing its stability during movement and cutting.

[0033] Working principle: This embodiment provides a processing device for anti-ultraviolet aging wooden floors. The base layer 1, the skeleton 3, and the wear-resistant layer 2 are stacked together in sequence and hot-pressed to form a wooden floor. Then the wooden floor is inserted between the upper driving rollers 7 and the lower driving rollers 8. Subsequently, the first motor 9 is started. The operation of the first motor 9 drives the upper driving rollers 7 to rotate. The rotation of the upper driving rollers 7 cooperates with the lower driving rollers 8 to convey the wooden floor. When the electric telescopic rod 14 descends, it drives the connecting plate 15 to descend. As the connecting plate 15 descends, the second motor 13 fixed to the outer wall of the connecting plate 15 and the cutting roller 10 synchronously connected thereto also descend. When the cutting roller 10 descends to a suitable position, the second motor 13 is started, and its main shaft drives the cutting roller 10 to rotate at a high speed. Since the outer edge of the cutting ring 11 on the outer wall of the cutting roller 10 gradually depresses from the outside to the middle to form a profiling part 12, during the rotation process, the cutting ring 11 can accurately cut the wooden floor base layer 1 being conveyed between the upper driving rollers 7 and the lower driving rollers 8 according to the preset shape and size. Meanwhile, the operator can adjust the position of the adjusting part 18 by pulling the pull plate 22 according to the specific processing requirements of the refraction groove 4 on the wooden floor. The movement of the pull plate 22 drives the movable rod 21 to move in the movable groove 20 of the limiting roller 19, thereby changing the position of the adjusting part 18 on the cutting roller 10. Because the inner wall of the adjusting part 18 fits with the outer wall of the cutting ring 11, the relative position of the cutting ring 11 on the cutting roller 10 will also change accordingly, so as to meet the cutting requirements for different specifications of the refraction groove 4.

[0034] After the wooden floor is cut, an anti-ultraviolet coating can be sprayed on its surface, thus completing the processing of the wooden floor.

[0035] The embodiments disclosed in the present invention are preferred embodiments, but not limited thereto. Those of ordinary skill in the art can easily understand the spirit of the present invention based on the above embodiments and make different extensions and changes. However, as long as they do not depart from the spirit of the present invention, they are within the protection scope of the present invention.

Claims

1. An anti-ultraviolet aging wooden floor, characterized in that: The invention comprises a base layer (1) and a wear-resistant layer (2) on the top thereof, a plurality of evenly arranged skeletons (3) are arranged between the base layer (1) and the wear-resistant layer (2), a plurality of evenly arranged refractive grooves (4) are evenly arranged on the top of the base layer (1), both sides of the bottom of the refractive grooves (4) gradually extend in an inclined manner toward the middle thereof to form a refractive portion (5), the refractive portion (5) is a triangular structure, and the skeletons (3) and the refractive grooves (4) are vertically staggered, the surface of the wear-resistant layer (2) and the inside of the refractive grooves (4) are sprayed with anti-ultraviolet paint, and the outer wall of the base layer (1) is evenly sprayed with moisture-proof paint.

2. The anti-ultraviolet aging wooden floor according to claim 1, characterized in that: The anti-ultraviolet coating is composed of an ultraviolet absorber, a light stabilizer, a film-forming resin and an auxiliary agent, wherein the mass ratios of the ultraviolet absorber, the light stabilizer, the film-forming resin and the auxiliary agent are 15-25:8-12:55-65:8-12 respectively.

3. The anti-ultraviolet aging wooden floor according to claim 1, characterized in that: The ultraviolet absorber is a benzophenone or benzotriazole compound, the light stabilizer is a hindered amine compound, the film-forming resin is an acrylic resin or a polyurethane resin, and the thickness of the anti-ultraviolet coating after spraying is 0.1-0.5 mm.

4. A processing device for anti-ultraviolet aging wooden floor, the processing device is used to process the anti-ultraviolet aging wooden floor as claimed in any one of claims 1 to 3, characterized in that: The invention comprises a machine body (6), wherein the inner wall of the machine body (6) is rotatably connected to a pair of upper transmission rollers (7), and the upper transmission rollers (7) are synchronously rotatably connected to each other via belts; the inner wall of the machine body (6) is rotatably connected to a pair of lower transmission rollers (8), and the lower transmission rollers (8) are synchronously rotatably connected to each other via belts; the outer wall of the machine body (6) is fixedly connected to a first motor (9), and the main shaft of the first motor (9) is synchronously rotatably connected to the upper transmission rollers (7); a cutting roller (10) is arranged inside the machine body (6), and a plurality of cutting rings (11) are arranged on the outer wall of the cutting roller (10), and the outer edge of the cutting ring (11) is gradually recessed toward the middle thereof to form a profiling portion (12); a second motor (13) is arranged outside the machine body (6), and the main shaft of the second motor (13) is synchronously rotatably connected to the cutting roller (10); and an adjustment mechanism for adjusting the positions of the cutting roller (10) and the cutting ring (11) is arranged inside the machine body (6).

5. The processing device for anti-ultraviolet aging wooden floor according to claim 4, characterized in that: The adjustment mechanism comprises an electric telescopic rod (14) symmetrically arranged on the inner wall of the body (6); a connecting plate (15) is fixedly connected to the bottom of the electric telescopic rod (14); an end of the cutting roller (10) is rotatably connected to the outer wall of the connecting plate (15); the second motor (13) is fixedly connected to the outer wall of the connecting plate (15); a plurality of roller grooves (16) are evenly formed on the outer wall of the cutting roller (10); a plurality of engaging portions (17) corresponding to the roller grooves (16) are formed on the inner wall of the cutting ring (11); and the engaging portions (17) are located in the roller grooves (16). The outer wall of the cutting roller (10) is sleeved with a plurality of adjusting members (18), the adjusting members (18) sleeve the cutting roller (10) therein, and the inner wall of the adjusting member (18) is in contact with the outer wall of the cutting ring (11), a limiting roller (19) is fixedly connected to the opposite side of the connecting plates (15), the outer wall of the limiting roller (19) is provided with a movable groove (20) passing through the limiting roller (19), the top of the adjusting member (18) is fixedly connected with a freely retractable movable rod (21), the other end of the movable rod (21) passes through the movable groove (20) and is fixedly connected with a pull plate (22).

6. The processing device for anti-ultraviolet aging wooden floor according to claim 5, characterized in that: The bottom of the pull plate (22) is uniformly extended to form a plurality of engaging protrusions (23), and the outer wall of the limiting roller (19) is uniformly provided with a plurality of engaging grooves (24), and the engaging protrusions (23) are engaged in the engaging grooves (24) under the gravity of the pull plate (22).

7. The processing device for anti-ultraviolet aging wooden floor according to claim 4, characterized in that: A bracket (25) is disposed outside the machine body (6); a plurality of universal wheels (26) are fixedly connected to the bottom of the bracket (25); and an inclined material storage plate (27) is fixedly connected to the top of the bracket (25).

8. The processing device for anti-ultraviolet aging wooden floor according to claim 4, characterized in that: A transfer plate (28) is fixedly connected to the inner wall of the machine body (6), the transfer plate (28) is located between the upper transmission rollers (7), and transfer rollers (29) are provided on both sides of the transfer plate (28), and both ends of the transfer rollers (29) are respectively rotatably connected to the inner wall of the machine body (6).