Processing technology and processing equipment of environment-friendly floor

By using clamping and adhesive coating technology in environmentally friendly flooring processing equipment, the problem of easily damaged cut surfaces of wood composite flooring has been solved, thus improving the stability and aesthetics of the flooring.

CN117225641BActive Publication Date: 2026-07-21ZHEJIANG DELIAN HOME FURNISHING CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ZHEJIANG DELIAN HOME FURNISHING CO LTD
Filing Date
2023-08-14
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing engineered wood flooring is prone to damage on all four exposed cut surfaces after cutting, which can absorb moisture, causing expansion and deformation. Additionally, the edge banding is prone to cracking, affecting the floor's appearance and stability.

Method used

An environmentally friendly flooring processing equipment is used, which uses a support mechanism, a double-layer processing box mechanism and a foam adjustment mechanism to clamp the flooring, apply glue and air dry it, forming a fixed glue layer to prevent moisture from seeping in and reduce expansion and deformation.

Benefits of technology

It effectively prevents moisture from seeping in, reduces floor expansion and deformation, and ensures the overall aesthetics and stability of the floor.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a processing technology and processing equipment of an environment-friendly floor, and particularly relates to the field of floor processing, and comprises a supporting mechanism, a double-layer processing box mechanism is installed on the top of the supporting mechanism, a bubble glue longitudinal adjusting mechanism is installed on the side of the supporting mechanism, a bubble glue transverse adjusting mechanism is installed on the side of the bubble glue longitudinal adjusting mechanism away from the side of the supporting mechanism, when working, the bubble glue transverse adjusting mechanism is driven to move to the inner lower box body, and the side of the floor is soaked with the fixed glue, meanwhile, the glue is swung in multiple directions through the cooperation of the micro motor and the U-shaped connecting plate, the clamping mechanism is controlled to move to the inner upper box body, the cooler cooperates with the fan to generate low-temperature airflow, the solidification of the glue on the surface of the floor is accelerated, a fixed glue layer is formed on the edge of the floor, water infiltration is effectively prevented, the risks of expansion and deformation are reduced, the edge covering operation is further performed, additional protection is provided, the floor is not prone to being damaged when being used, and thus the overall appearance and stability of the floor are ensured.
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Description

Technical Field

[0001] This invention relates to the field of flooring processing technology, and more specifically, to a processing technology and equipment for environmentally friendly flooring. Background Technology

[0002] Flooring, or the surface layer of a house's ground or floor, is made of wood or other materials. Classified by structure, it includes: solid wood flooring, engineered wood flooring, three-layer engineered wood flooring, bamboo flooring, anti-corrosion flooring, cork flooring, and the currently most popular multi-layer engineered wood flooring, etc.

[0003] In existing technologies, after wood composite flooring is cut, the exposed cut surfaces on all four sides often become weak points that are susceptible to damage and deformation. These exposed cut surfaces easily absorb moisture, causing the flooring to swell, deform, and even develop mold and corrosion problems. Although edge banding is a common solution, the edge banding is also prone to cracking due to floor deformation over a long period of use, leading to loosening and detachment of the flooring edges, which seriously affects the overall aesthetics and stability of the flooring.

[0004] Therefore, we propose a processing technology and equipment for environmentally friendly flooring to solve the above problems. Summary of the Invention

[0005] In order to overcome the above-mentioned defects of the prior art, embodiments of the present invention provide a processing technology and processing equipment for environmentally friendly flooring, so as to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a processing equipment for environmentally friendly flooring, comprising...

[0007] The support mechanism has a double-layer processing box mechanism installed on its top, a foam longitudinal adjustment mechanism installed on its side, and a foam transverse adjustment mechanism installed on the side of the foam longitudinal adjustment mechanism away from the side of the support mechanism.

[0008] The double-layer processing box mechanism is internally equipped with a double-sided clamping foam mechanism and a foam swing mechanism. The foam swing mechanism is mounted on the double-sided clamping foam mechanism, and the upper part of the double-sided clamping foam mechanism is mounted on the lower part of one side of the foam lateral adjustment mechanism.

[0009] Two surface drying mechanisms are symmetrically installed on the upper sides of the double-layer processing box mechanism.

[0010] In a preferred embodiment, the double-layer processing box mechanism includes an outer box, a box door, an inner lower box, and an inner upper box;

[0011] The bottom of the lower inner box is fixedly installed on the inner bottom wall of the outer box, the outer wall of the upper inner box is fixedly installed on the inner side wall of the outer box, one side of the box door is hinged to the outer side of the outer box, and the adjacent sides of the outer box and the upper inner box are provided with connecting through slots. The top and bottom of the upper inner box are both open, and the top side of the lower inner box is provided with the same opening as the upper inner box.

[0012] In a preferred embodiment, the double-sided clamping foam mechanism includes two clamping mechanisms, two clamping drive mechanisms, and a fixing column; each of the two clamping mechanisms includes a fixing cover plate, a closed inner frame, a closed outer cover, four corner electromagnets, a central electromagnet, and a pressure plate; the bottom end of the fixing column is U-shaped and connected to the top of the fixing cover plate by bolts through a foam swing mechanism; the top of the closed inner frame is integrally formed and installed at the bottom of the fixing cover plate; the closed outer cover is L-shaped and fixedly seals and covers the sides of the closed inner frame; the four corner electromagnets are symmetrically installed at the four corners of the fixing cover plate located within the closed inner frame; the central electromagnet is installed in the middle of the fixing cover plate located within the closed inner frame; and the pressure plate is fixedly connected to one side of the closed outer cover and the closed inner frame; the two clamping mechanisms are symmetrically arranged in the upper and lower parts.

[0013] In a preferred embodiment, both clamping drive mechanisms include a small lifting screw module, an extension rod, a bent rotary joint, and a U-shaped rod; the small lifting screw module is bolted to the outer wall of the fixed column, the sliding seat of the small lifting screw module is fixedly connected to one end of the extension rod, the other end of the extension rod is installed to the top of the U-shaped rod through the bent rotary joint, and the bottom end of the U-shaped rod is fixedly connected to the bottom of the fixed cover plate in the lower clamping mechanism.

[0014] In a preferred embodiment, the foam swing mechanism includes a positioning plate, a first micro-adjustment motor, a transverse U-shaped connecting plate, a second micro-adjustment motor, and a longitudinal U-shaped connecting plate. One side of the positioning plate is fixedly connected to the bottom end of the fixed column. The first micro-adjustment motor is screwed to one side of the positioning plate. The output shaft of the first micro-adjustment motor is fixedly connected to one side of the transverse U-shaped connecting plate. The other side of the transverse U-shaped connecting plate is screwed to one side of the second micro-adjustment motor. The output shaft of the second micro-adjustment motor is fixedly connected to the upper side of the longitudinal U-shaped connecting plate. The lower part of the longitudinal U-shaped connecting plate is bolted to the top of the fixed cover plate in the upper clamping mechanism.

[0015] In a preferred embodiment, both of the surface drying mechanisms include a fan, a support plate, and a cooler; the air outlet side of the fan is fixed to one side of the support plate, and the other side of the support plate is screwed to the adjacent side of the cooler; the surface drying mechanism is bolted to the support plate and connected to the through slots opened in the outer casing and the inner upper casing.

[0016] In a preferred embodiment, the support mechanism includes a bottom support bracket and a side support bracket; the bottom of the outer casing is mounted on the top of the bottom support bracket;

[0017] The foam longitudinal adjustment mechanism includes a side slide rail, a slider, and a large lifting screw module; the side slide rail is screwed to one side of the side support frame, the slider is embedded and slidably connected to the outer wall of the side slide rail, the two sides of the large lifting screw module are bolted to the outer wall of the side support frame, and one side of the slider is bolted to the adjacent side of the sliding seat of the large lifting screw module.

[0018] In a preferred embodiment, the foam lateral adjustment mechanism includes an L-shaped fixed plate, a mounting plate, a dual-axis cylinder, a push connecting plate, and two push connecting blocks;

[0019] One side of the L-shaped fixing plate is bolted to the sliding seat side of the large lifting screw module. Two limiting slide grooves are opened inside and at the bottom of the L-shaped fixing plate. Extending slide plates are slidably connected inside the two limiting slide grooves. One side of the mounting plate is fixedly connected to the adjacent side of the two extending slide plates. The dual-axis cylinder is installed on the bottom side of the L-shaped fixing plate. One side of the pushing connecting plate is installed on the output shaft end of the dual-axis cylinder. The bottom of the two pushing connecting blocks is fixedly connected to the top of the pushing connecting plate. The top of the two pushing connecting blocks is fixedly connected to the bottom of the two extending slide plates and slides inside the limiting slide grooves. The bottom of the mounting plate is fixedly connected to the top of the fixing column.

[0020] In addition, the present invention also provides a processing technology for environmentally friendly flooring, including the following processing steps:

[0021] S1. Horizontal adjustment and double-sided clamping of foam: The large lifting screw module is activated, and the sliding seat drives the horizontal adjustment mechanism of foam to move up and down, which in turn drives the double-sided clamping foam mechanism to move up and down inside the outer box. At the beginning, the double-sided clamping foam mechanism is located at the upper part of the outer box.

[0022] S2. Clamping preparation and floor placement: By controlling two small lifting screw modules, the bent rotary joint and U-shaped rod are moved synchronously to make the clamping mechanism move downward, separate the two clamping mechanisms, place the floor between the two clamping mechanisms, and adjust the distance between the closed outer cover and the side of the floor.

[0023] S3, Fixing the Side of the Floor: Reverse activation of the small lifting screw module, which fixes the floor with two clamping mechanisms. At the same time, the corner electromagnets and the middle electromagnets attract each other through the floor.

[0024] S4. Foam Lateral Adjustment and Downward Movement: By controlling the large lifting screw module, the foam lateral adjustment mechanism moves downward, driving the clamping mechanism and clamping drive mechanism to move synchronously to the inner lower box, so that the glue only wets the floor.

[0025] S5. Glue application oscillation: Individually control micro-adjustment motor one and micro-adjustment motor two to make the horizontal U-shaped connecting plate and the vertical U-shaped connecting plate oscillate, optimizing the glue application on the side of the floor.

[0026] S6. Foam Lateral Adjustment and Upward Movement: By controlling the large lifting screw module, the foam lateral adjustment mechanism moves upward, driving the clamping mechanism and clamping drive mechanism to move synchronously to the inner upper box. At the same time, the cooler and fan accelerate the drying of the glue, completing the flooring processing process.

[0027] The technical effects and advantages of this invention are as follows:

[0028] This invention adjusts the position of the double-sided clamping foam mechanism within the outer casing by activating a large lifting screw module. By controlling the separation of the two clamping mechanisms, the floorboard is correctly placed between them. The distance between the enclosed outer cover and the floorboard's edge is adjusted. Multiple electromagnets work together to reinforce the floorboard through adsorption. The foam lateral adjustment mechanism is then driven to move to the lower inner casing, allowing the adhesive to soak the sides of the floorboard. Simultaneously, the synergistic action of the micro-motor and U-shaped connecting plate enables multi-directional oscillation of the adhesive, optimizing the coating effect. The clamping mechanism is then moved to the upper inner casing, where a cooler and fan generate a low-temperature airflow, accelerating the curing of the adhesive on the floorboard surface and forming a fixed adhesive layer at the floorboard edges. This effectively prevents moisture penetration, reducing the risk of expansion and deformation. Further edge wrapping provides additional protection, making the floorboard less susceptible to damage during use, thus ensuring the overall aesthetics and stability of the floorboard. Attached Figure Description

[0029] Figure 1 This is a schematic diagram of the overall structure of the processing equipment for the environmentally friendly flooring of the present invention.

[0030] Figure 2 This is a schematic diagram of the overall processing equipment for the environmentally friendly flooring in this invention from another perspective.

[0031] Figure 3 This is a schematic diagram of the assembly structure of the foam longitudinal adjustment mechanism and the foam transverse adjustment mechanism of the present invention.

[0032] Figure 4 This is a schematic diagram of the overall structure of the double-sided clamping foam mechanism of the present invention.

[0033] Figure 5 This is a schematic diagram of the split structure of the double-sided clamping foam mechanism of the present invention.

[0034] Figure 6 This is a schematic diagram of the internal structure of the outer casing of the present invention.

[0035] Figure 7 This is a schematic diagram of the positional structure of the lower inner box and the upper inner box of the present invention.

[0036] Figure 8 This is a schematic diagram of the foam lateral adjustment mechanism of the present invention.

[0037] The attached figures are labeled as follows: 10. Support mechanism; 11. Bottom support bracket; 12. Side support frame; 20. Double-layer processing box mechanism; 21. Outer box; 22. Box door; 23. Inner lower box; 24. Inner upper box; 25. Through groove; 30. Foam longitudinal adjustment mechanism; 31. Side slide rail; 32. Slider; 33. Large lifting screw module; 40. Foam lateral adjustment mechanism; 41. L-fixed plate; 42. Extension slide plate; 43. Mounting plate; 44. Dual-axis cylinder; 45. Push connecting plate; 46. Push connecting block; 47. Limiting slide groove; 50. Double-sided clamping foam mechanism; 501. Clamping 502. Clamping drive mechanism; 51. Fixed column; 52. Fixed cover plate; 53. Enclosed inner frame; 54. Enclosed outer cover; 55. Corner electromagnet; 56. Central electromagnet; 57. Pressing plate; 58. Small lifting screw module; 59. Extension rod; 511. Bent rotary joint; 512. U-shaped rod; 60. Foam swing mechanism; 61. Positioning plate; 62. Micro-adjusting motor one; 63. Transverse U-shaped connecting plate; 64. Micro-adjusting motor two; 65. Longitudinal U-shaped connecting plate; 70. Surface drying mechanism; 71. Fan; 72. Support plate; 73. Cooler. Detailed Implementation

[0038] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0039] Refer to the instruction manual appendix Figure 1-8 An embodiment of the present invention provides an environmentally friendly flooring processing device, comprising a support mechanism 10, a double-layer processing box mechanism 20 mounted on the top of the support mechanism 10, a foam longitudinal adjustment mechanism 30 mounted on the side of the support mechanism 10, and a foam transverse adjustment mechanism 40 mounted on the side of the foam longitudinal adjustment mechanism 30 away from the side of the support mechanism 10; the double-layer processing box mechanism 20 is provided with a double-sided foam clamping mechanism 50 and a foam swinging mechanism 60, the foam swinging mechanism 60 is mounted on the double-sided foam clamping mechanism 50, and the upper part of the double-sided foam clamping mechanism 50 is mounted on the lower part of one side of the foam transverse adjustment mechanism 40; two surface drying mechanisms 70 are symmetrically mounted on the upper parts of both sides of the double-layer processing box mechanism 20.

[0040] like Figure 3As shown, the double-layer processing box mechanism 20 includes an outer box 21, a box door 22, an inner lower box 23, and an inner upper box 24. The bottom of the inner lower box 23 is fixedly installed on the inner bottom wall of the outer box 21, and the outer wall of the inner upper box 24 is fixedly installed on the inner side wall of the outer box 21. One side of the box door 22 is hinged to the outer side of the outer box 21. The adjacent sides of the outer box 21 and the inner upper box 24 are provided with interconnecting through slots 25. The top and bottom of the inner upper box 24 are open. The top side of the inner lower box 23 is provided with the same opening as the inner upper box 24.

[0041] like Figure 4-5 As shown, the double-sided clamping foam mechanism 50 includes two clamping mechanisms 501, two clamping drive mechanisms 502, and a fixing post 51. Each clamping mechanism 501 includes a fixing cover plate 52, an enclosed inner frame 53, an enclosed outer cover 54, four corner electromagnets 55, a central electromagnet 56, and a pressure plate 57. The bottom end of the fixing post 51 is U-shaped and bolted to the top of the fixing cover plate 52 via a foam swing mechanism 60. The top of the enclosed inner frame 53 is integrally formed and installed at the bottom of the fixing cover plate 52. The enclosed outer cover 54 is L-shaped and securely seals the sides of the enclosed inner frame 53. The four corner electromagnets 55 are symmetrically installed on the fixing cover plate 52 within the enclosed inner frame 53. The four corners and the middle electromagnet 56 are installed in the middle of the fixed cover plate 52 located in the closed inner frame 53. The clamping plate 57 is fixedly connected to the closed outer cover 54 and one side of the closed inner frame 53. The two clamping mechanisms 501 are arranged symmetrically at the top and bottom. The floor is placed between the two clamping mechanisms 501. By adjusting the distance between the closed outer cover 54 and the side of the floor, the small lifting screw module 58 is controlled to start in reverse, so that the two clamping mechanisms 501 fix the floor. Then, the corner electromagnets 55 and the middle electromagnets 56 in the two clamping mechanisms 501 are controlled to attract each other through the floor, so that the closed inner frame 53 and the clamping plate 57 can further improve the fixing and sealing effect of the floor.

[0042] like Figure 5 As shown, both clamping drive mechanisms 502 include a small lifting screw module 58, an extension rod 59, a bent rotary joint 511, and a U-shaped rod 512. The small lifting screw module 58 is bolted to the outer wall of the fixed column 51. The sliding seat of the small lifting screw module 58 is fixedly connected to one end of the extension rod 59. The other end of the extension rod 59 is installed at the top of the U-shaped rod 512 through the bent rotary joint 511. The bottom end of the U-shaped rod 512 is fixedly connected to the bottom of the fixed cover plate 52 in the lower clamping mechanism 501. By controlling the two small lifting screw modules 58, their sliding seats drive the bent rotary joint 511 and the U-shaped rod 512 to move synchronously through the extension rod 59. Then, the U-shaped rod 512 drives the lower clamping mechanism 501 to move downward, separating the two clamping mechanisms 501 to prepare for the placement of the floor.

[0043] like Figure 4 As shown, the foam oscillation mechanism 60 includes a positioning plate 61, a micro-adjustment motor 62, a transverse U-shaped connecting plate 63, a micro-adjustment motor 64, and a longitudinal U-shaped connecting plate 65. One side of the positioning plate 61 is fixedly connected to the bottom end of the fixed column 51. The micro-adjustment motor 62 is screwed to one side of the positioning plate 61. The output shaft of the micro-adjustment motor 62 is fixedly connected to one side of the transverse U-shaped connecting plate 63. The other side of the transverse U-shaped connecting plate 63 is screwed to one side of the micro-adjustment motor 64. The output shaft of the micro-adjustment motor 64 is fixedly connected to the upper side of the longitudinal U-shaped connecting plate 65. The lower part of the longitudinal U-shaped connecting plate 65 is bolted to the top of the fixed cover plate 52 in the upper clamping mechanism 501. The forward and reverse reciprocating rotation of the micro-adjustment motor 62 and the micro-adjustment motor 64 are controlled independently, causing the transverse U-shaped connecting plate 63 and the longitudinal U-shaped connecting plate 65 to oscillate, thereby allowing the glue to be better applied to the edges of the floor.

[0044] like Figure 6 As shown, both surface drying mechanisms 70 include a fan 71, a support plate 72, and a cooler 73. The air outlet side of the fan 71 is fixed to one side of the support plate 72, and the other side of the support plate 72 is screwed to the adjacent side of the cooler 73. The surface drying mechanism 70 is bolted to the through slot 25 opened in the outer housing 21 and the inner upper housing 24 through the support plate 72. The cooler 73 is activated to reduce the temperature of the inner upper housing 24, and the fan 71 increases the airflow, thereby curing the glue on the floor surface more quickly.

[0045] like Figure 1 As shown, the support mechanism 10 includes a bottom support bracket 11 and a side support bracket 12;

[0046] The bottom of the outer casing 21 is mounted on the top of the bottom support bracket 11; the foam longitudinal adjustment mechanism 30 includes a side slide rail 31, a slider 32 and a large lifting screw module 33; the side slide rail 31 is screwed to one side of the side support frame 12, the slider 32 is embedded and slidably connected to the outer wall of the side slide rail 31, the two sides of the large lifting screw module 33 are bolted to the outer wall of the side support frame 12, and one side of the slider 32 is bolted to the adjacent side of the sliding seat of the large lifting screw module 33.

[0047] like Figure 8As shown, the foam lateral adjustment mechanism 40 includes an L-fixed plate 41, a mounting plate 43, a dual-axis cylinder 44, a push connecting plate 45, and two push connecting blocks 46. One side of the L-fixed plate 41 is bolted to one side of the sliding seat of the large lifting screw module 33. Two limiting slide grooves 47 are provided inside and at the bottom of the L-fixed plate 41. Extending slide plates 42 are slidably connected inside the two limiting slide grooves 47. One side of the mounting plate 43 is fixedly connected to the adjacent side of the two extending slide plates 42. The dual-axis cylinder 44 is installed on one side of the bottom of the L-fixed plate 41, and one side of the push connecting plate 45 is installed on the input of the dual-axis cylinder 44. At the output shaft end, the bottom of the two push connecting blocks 46 is fixedly connected to the top of the push connecting plate 45, and the top of the two push connecting blocks 46 is fixedly connected to the bottom of the two extension slide plates 42 and slides inside the limiting slide groove 47; the bottom of the mounting plate 43 is fixedly connected to the top of the fixing column 51, and the push connecting plate 45 is pushed out by the dual-axis cylinder 44. The push connecting plate 45 causes the push connecting blocks 46 to slide in the limiting slide groove 47, and drives the extension slide plate 42 to push the mounting plate 43 to extend to one side, thereby moving the double-sided clamping foam mechanism 50 out of the front side of the outer box 21. This position makes it easy to remove the floor.

[0048] In addition, the present invention also provides a processing technology for environmentally friendly flooring, including the following processing steps:

[0049] S1. Foam lateral adjustment and double-sided clamping: The large lifting screw module 33 is started, and the sliding seat drives the foam lateral adjustment mechanism 40 to move up and down, which in turn drives the double-sided clamping foam mechanism 50 to move up and down inside the outer box 21. At the beginning, the double-sided clamping foam mechanism 50 is located at the upper part of the outer box 21.

[0050] S2. Clamping preparation and floor placement: By controlling two small lifting screw modules 58, the bent rotary joint 511 and U-shaped rod 512 are moved synchronously, so that the clamping mechanism 501 moves downward, the two clamping mechanisms 501 are separated, the floor is placed between the two clamping mechanisms 501, and the distance between the closed outer cover 54 and the side of the floor is adjusted.

[0051] S3, Fixing the side of the floor: Reverse start of the small lifting screw module 58, so that the two clamping mechanisms 501 fix the floor. At the same time, the corner electromagnet 55 and the middle electromagnet 56 attract each other through the floor.

[0052] S4. Foam lateral adjustment downward movement: By controlling the large lifting screw module 33, the foam lateral adjustment mechanism 40 moves downward, driving the clamping mechanism 501 and the clamping drive mechanism 502 to move synchronously to the inner lower box 23, so that the glue only wets the floor.

[0053] S5. Glue application oscillation: Individually control micro-adjustment motor 1 62 and micro-adjustment motor 2 64 to make the transverse U-shaped connecting plate 63 and the longitudinal U-shaped connecting plate 65 oscillate, optimizing the glue application on the sides of the floor.

[0054] S6. Foam Lateral Adjustment and Upward Movement: By controlling the large lifting screw module 33, the foam lateral adjustment mechanism 40 moves upward, driving the clamping mechanism 501 and the clamping drive mechanism 502 to move synchronously to the inner upper box 24. At the same time, the cooler 73 and the fan 71 accelerate the drying of the glue, completing the flooring processing process.

[0055] The working principle of this invention is as follows: the bottom of the outer box 21 is installed on the top of the bottom support bracket 11 to ensure stable support for the double-layer processing box mechanism 20. The inner lower box 23 inside the double-layer processing box mechanism 20 is a storage area for adhesive, which can be used in the floor processing process to store the fixing adhesive for sealing the side of the floor. The inner upper box 24 provides airflow and accelerates the drying of adhesive by cooperating with the surface drying mechanism 70, which helps to ensure that the adhesive dries quickly during the processing and improves efficiency.

[0056] By activating the large lifting screw module 33, the sliding seat drives the foam lateral adjustment mechanism 40 to move up and down for adjustment. One side of the sliding seat drives the slider 32 to slide on the outer wall of the side slide rail 31, maintaining the stability of the foam lateral adjustment mechanism 40. Through the movement of the foam lateral adjustment mechanism 40, the double-sided clamping foam mechanism 50 can be moved up and down within the outer housing 21 to adjust its position. At the start of operation, the double-sided clamping foam mechanism 50 is located at the upper part of the outer housing 21. By controlling the two small lifting screw modules 58, their sliding seats drive the bent rotary joint 511 and U-shaped rod 512 to move synchronously through the extension rod 59. Then, the U-shaped rod 512 drives the lower clamping mechanism 501 to move downward, separating the two clamping mechanisms. The clamping mechanism 501 prepares for placing the floorboard. The floorboard is placed between two clamping mechanisms 501. By adjusting the distance between the enclosed outer cover 54 and the edge of the floorboard, the small lifting screw module 58 is controlled to reverse, fixing the floorboard to the two clamping mechanisms 501. Then, the corner electromagnets 55 and the central electromagnet 56 in the two clamping mechanisms 501 are controlled to attract each other through the floorboard, further enhancing the fixing and sealing effect of the enclosed inner frame 53 and the pressure plate 57. The large lifting screw module 33 is controlled to move the foam lateral adjustment mechanism 40 downwards, causing the clamping mechanisms 501 and clamping drive mechanism 502 to move synchronously to the inner lower housing 23, ensuring only the fixing adhesive wets the floorboard. A micro-adjustment motor is individually controlled. The reciprocating rotation of motors 62 and 64 causes the transverse U-shaped connecting plate 63 and the longitudinal U-shaped connecting plate 65 to swing, thereby allowing the adhesive to be better applied to the edges of the floor. The curved rotary joint 511 prevents movement obstruction between the extension rod 59 and the U-shaped rod 512. Then, the micro-adjusting motor is controlled to keep the clamping mechanism 501 horizontal. Next, the large lifting screw module 33 is controlled to move its sliding seat, causing the foam transverse adjusting mechanism 40 to move upwards. This causes the foam transverse adjusting mechanism 40, via the fixed column 51, to synchronously move the entire clamping mechanism 501 and the clamping drive mechanism 502 into the inner upper box 24 inside the outer box 21. At this time, the cooler 73 is activated to lower the temperature of the inner upper box 24. The fan 71 increases airflow, and the resulting airflow is delivered to the adhesive area on the floor surface. The airflow covers the surface of the adhesive and carries away the moisture and volatile components, thus curing the adhesive on the floor surface more quickly. After the adhesive on the side of the floor dries, the dual-axis cylinder 44 pushes out the push plate 45. The push plate 45 causes the push block 46 to slide in the limiting slide groove 47, and drives the extension slide plate 42 to push the mounting plate 43 to extend to one side, thereby moving the double-sided clamping foam mechanism 50 out of the front of the outer box 21. This position makes it easy to remove the floor. The lower control clamping mechanism 501 removes the floor from the two clamping mechanisms 501. At this time, the side of the bottom plate is sealed by the fixing adhesive and dried.

[0057] Finally, the following points should be noted: First, in the description of this application, it should be noted that, unless otherwise specified and limited, the terms "installation", "connection", and "linkage" should be interpreted broadly, and can be mechanical or electrical connections, or internal connections between two components, or direct connections. "Up", "down", "left", "right", etc. are only used to indicate relative positional relationships. When the absolute position of the described object changes, the relative positional relationship may change.

[0058] Secondly: The accompanying drawings of the embodiments disclosed in this invention only involve the structures involved in the embodiments disclosed in this invention. Other structures can refer to the general design. In the absence of conflict, the same embodiment and different embodiments of this invention can be combined with each other.

[0059] In conclusion, the above are merely preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A processing equipment for environmentally friendly flooring, characterized in that, include: Support mechanism (10), a double-layer processing box mechanism (20) is installed on the top of the support mechanism (10), a foam longitudinal adjustment mechanism (30) is installed on the side of the support mechanism (10), and a foam transverse adjustment mechanism (40) is installed on the side of the foam longitudinal adjustment mechanism (30) away from the side of the support mechanism (10). The double-layer processing box mechanism (20) is internally provided with a double-sided clamping foam mechanism (50) and a foam swing mechanism (60). The foam swing mechanism (60) is installed on the double-sided clamping foam mechanism (50). The upper part of the double-sided clamping foam mechanism (50) is installed on the lower part of one side of the foam lateral adjustment mechanism (40). Two surface drying mechanisms (70) are symmetrically installed on the upper parts of both sides of the double-layer processing box mechanism (20). The double-sided clamping foam mechanism (50) includes two clamping mechanisms (501), two clamping drive mechanisms (502), and a fixing column (51); Both clamping mechanisms (501) include a fixed cover plate (52), a closed inner frame (53), a closed outer cover (54), four corner electromagnets (55), a central electromagnet (56), and a pressure plate (57); The bottom end of the fixed column (51) is U-shaped and connected to the top of the fixed cover plate (52) by a foam swing mechanism (60) with bolts. The top of the closed inner frame (53) is integrally formed and installed at the bottom of the fixed cover plate (52). The closed outer cover (54) is L-shaped and fixedly seals and covers the side of the closed inner frame (53). The four corner electromagnets (55) are symmetrically installed at the four corners of the fixed cover plate (52) located in the closed inner frame (53). The middle electromagnet (56) is installed in the middle of the fixed cover plate (52) located in the closed inner frame (53). The clamping plate (57) is fixedly connected to the closed outer cover (54) and the closed inner frame (53) on one side. The two clamping mechanisms (501) are arranged symmetrically at the top and bottom; Both clamping drive mechanisms (502) include a small lifting screw module (58), an extension rod (59), a bent rotary joint (511), and a U-shaped rod (512); The small lifting screw module (58) is bolted to the outer wall of the fixed column (51). The sliding seat of the small lifting screw module (58) is fixedly connected to one end of the extension rod (59). The other end of the extension rod (59) is installed on the top of the U-shaped rod (512) through the bent rotary joint (511). The bottom end of the U-shaped rod (512) is fixedly connected to the bottom of the fixed cover plate (52) in the lower clamping mechanism (501).

2. The processing equipment for environmentally friendly flooring according to claim 1, characterized in that: The double-layer processing box mechanism (20) includes an outer box (21), a box door (22), an inner lower box (23), and an inner upper box (24); The bottom of the inner lower box (23) is fixedly installed on the inner bottom wall of the outer box (21), the outer wall of the inner upper box (24) is fixedly installed on the inner side wall of the outer box (21), one side of the box door (22) is hinged to the outer side of the outer box (21), and the adjacent sides of the outer box (21) and the inner upper box (24) are provided with interconnected through slots (25).

3. The processing equipment for environmentally friendly flooring according to claim 2, characterized in that: The top and bottom of the upper inner box (24) are both open, and the top side of the lower inner box (23) has the same opening as the upper inner box (24).

4. The processing equipment for environmentally friendly flooring according to claim 3, characterized in that: The foam swing mechanism (60) includes a positioning plate (61), a micro-adjustment motor one (62), a transverse U-shaped connecting plate (63), a micro-adjustment motor two (64), and a longitudinal U-shaped connecting plate (65); One side of the positioning plate (61) is fixedly connected to the bottom end of the fixing column (51). The micro-adjustment motor one (62) is screwed to one side of the positioning plate (61). The output shaft of the micro-adjustment motor one (62) is fixedly connected to one side of the transverse U-shaped connecting plate (63). The other side of the transverse U-shaped connecting plate (63) is screwed to one side of the micro-adjustment motor two (64). The output shaft of the micro-adjustment motor two (64) is fixedly connected to the upper side of the longitudinal U-shaped connecting plate (65). The lower part of the longitudinal U-shaped connecting plate (65) is bolted to the top of the fixing cover plate (52) in the upper clamping mechanism (501).

5. The processing equipment for environmentally friendly flooring according to claim 4, characterized in that: Both of the aforementioned surface drying mechanisms (70) include a fan (71), a support plate (72), and a cooler (73); The air outlet side of the fan (71) is fixed to one side of the support plate (72), and the other side of the support plate (72) is screwed to the adjacent side of the cooler (73). The surface drying mechanism (70) is bolted to the through slot (25) opened in the outer box (21) and the inner upper box (24) through the support plate (72).

6. The processing equipment for environmentally friendly flooring according to claim 5, characterized in that: The support mechanism (10) includes a bottom support bracket (11) and a side support bracket (12); The bottom of the outer casing (21) is mounted on the top of the bottom support bracket (11); The foam longitudinal adjustment mechanism (30) includes a side slide rail (31), a slider (32), and a large lifting screw module (33); The side slide rail (31) is screwed to one side of the side support frame (12), the slider (32) is embedded and slidably connected to the outer wall of the side slide rail (31), the two sides of the large lifting screw module (33) are bolted to the outer wall of the side support frame (12), and one side of the slider (32) is bolted to the adjacent side of the sliding seat of the large lifting screw module (33).

7. The processing equipment for environmentally friendly flooring according to claim 6, characterized in that: The foam lateral adjustment mechanism (40) includes an L-fixed plate (41), a mounting plate (43), a dual-axis cylinder (44), a push connecting plate (45), and two push connecting blocks (46); One side of the L-fixed plate (41) is bolted to the sliding seat side of the large lifting screw module (33). Two limiting slide grooves (47) are opened inside and at the bottom of the L-fixed plate (41). An extension slide plate (42) is slidably connected inside the two limiting slide grooves (47). One side of the mounting plate (43) is fixedly connected to the adjacent side of the two extension slide plates (42). The dual-axis cylinder (44) is installed on the bottom side of the L-fixed plate (41). One side of the push connecting plate (45) is installed on the output shaft end of the dual-axis cylinder (44). The bottom of the two push connecting blocks (46) is fixedly connected to the top of the push connecting plate (45). The top of the two push connecting blocks (46) is fixedly connected to the bottom of the two extension slide plates (42) and slides inside the limiting slide grooves (47). The bottom of the mounting plate (43) is fixedly connected to the top of the fixing post (51).

8. A processing method for environmentally friendly flooring processing using the processing equipment according to any one of claims 1-7, characterized in that, The following processing steps are included: S1. Horizontal adjustment and double-sided clamping of foam: The large lifting screw module (33) is started, and the sliding seat drives the horizontal adjustment mechanism (40) to move up and down, which in turn drives the double-sided clamping foam mechanism (50) to move up and down inside the outer box (21). At the beginning, the double-sided clamping foam mechanism (50) is located at the upper part of the outer box (21). S2, Clamping preparation and floor placement: By controlling two small lifting screw modules (58), the bent rotary joint (511) and U-shaped rod (512) are moved synchronously to make the clamping mechanism (501) move downward, separate the two clamping mechanisms (501), place the floor between the two clamping mechanisms (501), and adjust the distance between the closed outer cover (54) and the side of the floor. S3, Fixing the side of the floor: Reverse start of the small lifting screw module (58) to fix the floor with the two clamping mechanisms (501). At the same time, the corner electromagnet (55) and the middle electromagnet (56) attract each other through the floor. S4, Foam lateral adjustment downward movement: By controlling the large lifting screw module (33), the foam lateral adjustment mechanism (40) moves downward, driving the clamping mechanism (501) and clamping drive mechanism (502) to move synchronously to the inner lower box (23), so that the glue only wets the floor; S5, Glue application swing: individually control micro-adjustment motor one (62) and micro-adjustment motor two (64) to swing the transverse U-shaped connecting plate (63) and the longitudinal U-shaped connecting plate (65) to optimize the glue application on the side of the floor. S6. Foam lateral adjustment upward movement: By controlling the large lifting screw module (33), the foam lateral adjustment mechanism (40) moves upward, driving the clamping mechanism (501) and clamping drive mechanism (502) to move synchronously to the inner upper box (24). At the same time, the cooler (73) and fan (71) accelerate the drying of the glue, completing the floor processing process.