Processing equipment for formed customized resin tile and use method of processing equipment

By designing a dust collecting mechanism that is easy to disassemble and install, the problem of filter plate blockage in resin tile processing equipment is solved, efficient debris collection and ventilation is achieved, and the operation stability and processing efficiency of the equipment are improved.

CN119928235APending Publication Date: 2025-05-06CHANGGE XUYANG COMPOSITE MATERIALS CO LTD
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Patent Information

Application Number
CN202411979003.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-20
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

The existing resin tile processing equipment is not convenient for disassembly and installing the filter plate in the collection box, resulting in clogging of the filter holes on the filter plate, affecting the ventilation effect and the working efficiency of the negative pressure fan.

Method used

A custom resin tile molding processing equipment is designed, including dust collecting mechanisms, moving mechanisms and processing mechanisms. The dust collecting mechanism drives the dust collecting cover to work through a negative pressure fan and a connecting pipe, and facilitates the disassembly and installation of the filter plate through a knob, positioning pin and spring mechanism.

Benefits of technology

The rapid disassembly and installation of the filter plate is realized, which avoids filter hole blockage, ensures smooth ventilation and stable and efficient debris collection, while reducing equipment downtime and improving the continuity and adaptability of the overall processing process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of resin tile processing, and discloses customized resin tile post-molding processing equipment and a use method thereof.The customized resin tile post-molding processing equipment comprises a dust collecting mechanism, the dust collecting mechanism comprises a processing box arranged at the top of a bottom supporting frame, and the left side of the processing box is fixedly connected with a collecting box. The filter plate in the collecting box is convenient to disassemble and assemble through the dust collecting mechanism, so that when the filter plate is blocked or damaged by resin tile scraps, the filter plate can be quickly disassembled and taken out from the collecting box, accumulated scraps can be conveniently cleaned or replaced, the good filtering efficiency of the filter plate is effectively maintained, and the service life of the filter plate is prolonged. Smooth ventilation and stable and efficient chipping collection work are guaranteed, meanwhile, the situation that chippings enter a negative pressure fan to damage equipment due to the problem of the filter plate can be prevented, meanwhile, when the filter plate breaks down suddenly, disassembly and new filter screen installation work can be completed timely and efficiently, the downtime of the equipment is shortened, and the working efficiency is improved. And the continuity and adaptability of the whole machining and scrap collecting process are improved.
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Description

Technical Field

[0001] The invention relates to the technical field of resin tile processing equipment, and in particular to a processing equipment for customized resin tiles after molding and a use method thereof. Background Art

[0002] Resin tiles are a new type of environmentally friendly building material. During the production process, resin tiles usually need to be processed after molding, and debris will be generated during the processing of resin tiles. Therefore, some existing processing equipment is usually equipped with a collection device to collect the debris generated during the processing of resin tiles. The collection device usually uses a negative pressure fan to reduce the pressure in the collection box, thereby driving the chip collection cover to collect the debris. During use, a filter plate is usually installed in the collection box to prevent the debris in the collection box from entering the negative pressure fan without affecting the operation of the negative pressure fan.

[0003] However, some existing processing equipment is not convenient for disassembling and installing the filter plate in the collection box, so that the filter plate comes into contact with debris during long-term use, which may cause the debris to accumulate on the filter plate, thereby clogging the filter holes on the filter plate, thereby affecting the ventilation effect, thereby reducing the working efficiency of the negative pressure fan, and thus affecting the collection of debris. Summary of the invention

[0004] The object of the present invention is to provide a processing device for customized resin tiles after molding and a method of using the same to solve the problems raised in the above-mentioned background technology.

[0005] In order to solve the above technical problems, the present invention is achieved through the following technical solutions:

[0006] The present invention is a processing device for customized resin tiles after molding, comprising a bottom support frame, on which a dust collecting mechanism, a moving mechanism and a processing mechanism are arranged.

[0007] Furthermore, the dust collecting mechanism includes a disassembly assembly and a collection assembly, the disassembly assembly includes a processing box arranged on the top of the bottom supporting frame, the left side of the processing box is fixedly connected to the collection box, the inner wall of the collection box is slidably connected to the filter plate, the left side of the filter plate extends to the outside of the collection box, the top of the collection box is fixedly connected to an extension block, the top of the extension block is provided with a slide groove, the inner wall of the slide groove is slidably connected to a positioning pin, the top of the positioning pin extends to the outside of the extension block, the bottom end of the positioning pin extends to the interior of the filter plate and is slidably connected to the filter plate, the positioning pin is fixedly connected to a limiting plate, a spring is wound on the positioning pin, and the top of the positioning pin is fixedly connected to a knob.

[0008] Furthermore, the collecting assembly includes a negative pressure fan fixedly connected to the left side of the processing box, a connecting pipe 1 is fixedly connected between the negative pressure fan and the collecting box, a dust collecting hood is fixedly connected to the top of the processing box, and a connecting pipe 2 is fixedly connected between the dust collecting hood and the collecting box.

[0009] Furthermore, a pull plate is fixedly connected to the left side of the filter plate, a sealing strip is fixedly connected to the right side of the pull plate, an inner wall of the sealing strip is fixedly connected to the filter plate, and a sealing strip is provided on the left side of the collection box.

[0010] Furthermore, the moving mechanism includes a first moving component and a second moving component, the first moving component includes a motor 1 fixedly connected to the rear side of the processing box, the output shaft of the connecting plate 2 is fixedly connected to a reciprocating screw through a coupling, the upper thread of the reciprocating screw is connected to an internal thread block 1, the inner wall of the processing box is fixedly connected to a sliding rod 1, the sliding rod 1 is slidably connected to a sliding block 1, and the internal thread block 1 and the sliding block 1 are both fixedly connected to a connecting plate 1.

[0011] Furthermore, the second moving component includes a motor 2 fixedly connected to the left side of a support plate 1 located at the top of an internal thread block 1, the output shaft of the motor 2 is fixedly connected to a threaded rod through a coupling, the right end of the threaded rod passes through two support plates 1 and is rotatably connected to the two support plates 1, and two internal thread blocks 2 are threadedly connected to the threaded rod.

[0012] Furthermore, a sliding rod 2 is fixedly connected between the two support plates 1, a sliding block 2 is slidably connected to the sliding rod 2, a connecting plate 2 is fixedly connected between the two internal thread blocks 2 and the corresponding sliding blocks 2, a connecting plate 3 is hinged on the top of the two internal thread blocks 2 and the two sliding blocks 2, and a plurality of the connecting plates 3 are hinged on the side away from the corresponding internal thread blocks 2 and the sliding blocks 2 to support the plate 2.

[0013] Furthermore, the processing mechanism includes a cutting component and a fixing component, the cutting component includes an L-shaped plate fixedly connected to the top of the support plate 2, the top of the L-shaped plate is fixedly connected to a motor 3, the output shaft of the motor 3 is fixedly connected to a rotating shaft 1 through a coupling, a rotating shaft 2 passes through the L-shaped plate, the rotating shaft 2 is rotatably connected to the L-shaped plate, gears are fixedly connected to the rotating shaft 1 and the rotating shaft 2, the two gears are meshed, the left end of the rotating shaft 2 is fixedly connected to a cutting knife, and a cutting groove is provided on the top of the processing box.

[0014] Furthermore, the fixing assembly includes two support frames fixedly connected to the top of the processing box, the tops of the two support frames are fixedly connected with hydraulic cylinders, and the output shafts of the two support frames extend to the interior of the corresponding support frames and are slidably connected to the corresponding support frames.

[0015] Furthermore, a limiting frame is fixedly connected between the two support frames, the inner walls of the two support frames are slidably connected with a connecting seat, the connecting seat is slidably connected to the inner wall of the limiting frame, the output shafts of the two hydraulic cylinders are slidably connected to the connecting seat, and the bottom of the connecting seat is fixedly connected with a fixing plate.

[0016] The present invention has the following beneficial effects:

[0017] (1) The present invention starts the negative pressure fan through the dust collection mechanism. The negative pressure fan forms a pressure difference between the internal environment of the collection box and the external environment through the connecting pipe 1, so that the connecting pipe 2 has suction force, and then drives the dust collecting hood to work through the connecting pipe 2. When the filter plate needs to be disassembled, the knob is first pulled. When the knob is pulled, the positioning pin moves upward. When the positioning pin moves upward, it separates from the filter plate and drives the limit plate to move. One end of the spring is fixedly connected to the limit plate, and the other end is fixedly connected to the inner wall of the slide groove. When the limit plate moves, the spring is contracted, and then the pull plate is pulled, so that the pull plate drives the filter plate to move. The dust collection mechanism facilitates the removal and installation of the filter plate in the collection box. When the filter plate is blocked or damaged by resin tile debris, it can be quickly removed from the collection box to conveniently clean up the accumulated debris or replace it, effectively maintaining the good filtering efficiency of the filter plate, ensuring smooth ventilation and stable and efficient debris collection. It can also prevent debris from entering the negative pressure fan and damaging the equipment due to filter plate problems. At the same time, when the filter plate encounters a sudden failure, the removal and installation of the new filter can be completed in a timely and efficient manner, reducing equipment downtime and improving the continuity and adaptability of the overall processing and debris collection process.

[0018] (2) The present invention starts motor 1 through a moving mechanism, and motor 1 drives the reciprocating screw to rotate. When the reciprocating screw rotates, it drives the internal thread block 1 to move. When the internal thread block 1 moves, it drives the connecting plate 1 to move. When the connecting plate 1 moves, it drives the slider 1 to slide on the slide rod 1. When the internal thread block 1 and the slider 1 move, they drive the support plate 1 to move. Motor 2 is started, and motor 2 drives the threaded rod to rotate. When the threaded rod rotates, it drives the internal thread block 2 to move. When the internal thread block 2 moves, it drives the slider 2 to move on the slide rod 2 through the connecting plate 2. When the slider 2 and the internal thread block 2 move, they drive the connecting plate 3 to move. When the connecting plate 3 moves, it drives the support plate 1 to move. The second plate moves, and the moving mechanism allows the cutting knife to maintain a stable movement process during movement, which significantly improves the accuracy and quality of resin tile cutting, and effectively reduces problems such as rough cutting surface, dimensional deviation and uneven edges caused by tool shaking or offset. At the same time, it can greatly reduce the abnormal wear of the tool due to unstable movement, extend the service life of the cutting knife, and help maintain the stable operation of the entire processing equipment, avoiding equipment vibration caused by the instability of the cutting knife and uneven force on other components, thereby improving the reliability and durability of the equipment and ensuring the efficient, continuous and precise processing and production of resin tiles.

[0019] (3) The present invention starts the hydraulic cylinder through the processing mechanism, and the hydraulic cylinder drives the connecting seat to move. The connecting seat is limited by the limiting frame when moving. When the connecting seat moves, it drives the fixed plate to move, and then starts the motor three. The motor three drives the rotating shaft one to rotate. When the rotating shaft one rotates, it drives the rotating shaft two to rotate through the gear. When the rotating shaft two rotates, it drives the cutting knife to rotate. The processing mechanism can fix the resin tile to be processed when the resin tile is processed in and out, and can effectively prevent the resin tile from being displaced due to force during the cutting process, thereby accurately ensuring the position accuracy and dimensional accuracy of the cutting, ensuring that the cutting surface is flat and smooth with neat edges, greatly improving the cutting quality, reducing material waste and rework caused by cutting errors, and at the same time reducing the impact and additional wear of the cutting knife due to the unstable movement of the resin tile, extending the service life of the cutting knife, ensuring the efficient and orderly progress of the cutting operation, and improving the overall production efficiency and product quality of the resin tile processing.

[0020] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0021] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the accompanying drawings required for describing the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other accompanying drawings can be obtained based on these accompanying drawings without paying creative work.

[0022] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0023] Figure 2 This is a schematic diagram of the processing box structure of the present invention;

[0024] Figure 3 This is a schematic diagram of the structure of the collection box of the present invention;

[0025] Figure 4 This is a schematic diagram of the structure of the generator;

[0026] Figure 5 It is a schematic diagram of the structure of the hydraulic cylinder of the present invention;

[0027] Figure 6 It is a schematic diagram of the filter plate structure of the present invention;

[0028] Figure 7 It is a schematic diagram of the structure of the bidirectional threaded rod of the present invention;

[0029] Figure 8 This is a structural schematic diagram of the second motor of the present invention;

[0030] Fig. 9It is a schematic diagram of the third structure of the motor of the present invention;

[0031] Fig.10 For the present invention Figure 6 Schematic diagram of the enlarged structure of A.

[0032] In the accompanying drawings, the components represented by the reference numerals are listed as follows:

[0033] In the figure: 1. bottom support frame; 2. dust collecting mechanism; 3. moving mechanism; 4. processing mechanism; 21. processing box; 22. collecting box; 23. filter plate; 24. extension block; 25. slideway; 26. positioning pin; 27. limit plate; 28. spring; 29. ​​knob; 210. negative pressure fan; 211. connecting pipe 1; 212. dust collecting cover; 213. connecting pipe 2; 214. pull plate; 215. sealing strip; 216. cleaning door; 31. motor 1; 32. reciprocating screw rod; 33. internal thread block 1; 34. slide rod 1; 35, slider 1; 36, connecting plate 1; 37, support plate 1; 38, motor 2; 39, threaded rod; 310, internal thread block 2; 311, slide bar 2; 312, slider 2; 313, connecting plate 2; 314, connecting plate 3; 315, support plate 2; 41, L-shaped plate; 42, motor 3; 43, rotating shaft 1; 44, rotating shaft 2; 45, gear; 46, cutting knife; 47, support frame; 48, hydraulic cylinder; 49, limit frame; 410, connecting seat; 411, fixing plate; 412, cutting groove. DETAILED DESCRIPTION

[0034] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0035] See also Figure 1-Figure 10As shown, the present invention is a processing device for customized resin tiles after molding, including a bottom support frame 1, on which a dust collecting mechanism 2, a moving mechanism 3 and a processing mechanism 4 are arranged, the dust collecting mechanism 2 includes a disassembly component and a collection component, the disassembly component includes a processing box 21 arranged on the top of the bottom support frame 1, the left side of the processing box 21 is fixedly connected to a collection box 22, the inner wall of the collection box 22 is slidably connected to a filter plate 23, the left side of the filter plate 23 extends to the outside of the collection box 22, and the top of the collection box 22 is fixedly connected to an extension The top of the extension block 24 is provided with a slide groove 25, the inner wall of the slide groove 25 is slidably connected with a positioning pin 26, the top of the positioning pin 26 extends to the outside of the extension block 24, the bottom of the positioning pin 26 extends to the inside of the filter plate 23 and is slidably connected to the filter plate 23, the positioning pin 26 is fixedly connected with a limit plate 27, the positioning pin 26 is wound with a spring 28, the top of the positioning pin 26 is fixedly connected with a knob 29, the collection assembly includes a negative pressure fan 210 fixedly connected to the left side of the processing box 21, the negative pressure fan 210 and the collection box A connecting pipe 1 211 is fixedly connected between the processing box 21 and the collecting box 22, a dust collecting cover 212 is fixedly connected to the top of the processing box 21, a connecting pipe 213 is fixedly connected between the dust collecting cover 212 and the collecting box 22, a pull plate 214 is fixedly connected to the left side of the filter plate 23, a sealing strip 215 is fixedly connected to the right side of the pull plate 214, the inner wall of the sealing strip 215 is fixedly connected to the filter plate 23, and a sealing strip 215 is provided on the left side of the collecting box 22. The dust collecting mechanism 2 facilitates the removal and installation of the filter plate 23 in the collecting box 22, so that when the filter plate 23 is covered with resin When the tile debris is blocked or damaged, it can be quickly removed from the collection box 22, and the accumulated debris can be easily cleaned or replaced, effectively maintaining the good filtering efficiency of the filter plate 23, ensuring smooth ventilation and stable and efficient debris collection. At the same time, it can also prevent debris from entering the negative pressure fan due to problems with the filter plate 23 and damaging the equipment. At the same time, when the filter plate 23 encounters a sudden failure, the disassembly and installation of the new filter can be completed in a timely and efficient manner, reducing equipment downtime and improving the continuity and adaptability of the overall processing and debris collection process.

[0036] The moving mechanism 3 includes a first moving assembly and a second moving assembly, the first moving assembly includes a motor 31 fixedly connected to the rear side of the processing box 21, the output shaft of the connecting plate 313 is fixedly connected to the reciprocating screw 32 through a shaft coupling, the upper thread of the reciprocating screw 32 is connected to the internal thread block 33, the inner wall of the processing box 21 is fixedly connected to a sliding bar 34, the sliding bar 34 is slidably connected to a sliding block 35, and the sliding blocks 35 on the internal thread block 33 are fixedly connected to a connecting plate 36, the second moving assembly includes a motor 38 fixedly connected to the left side of a supporting plate 37 located at the top of the internal thread block 33, the output shaft of the motor 38 is fixedly connected to a threaded rod 39 through a shaft coupling, the right end of the threaded rod 39 passes through two supporting plates 37 and is rotatably connected to the two supporting plates 37, the threaded rod 39 is threadedly connected to two internal thread blocks 310, a sliding bar 311 is fixedly connected between the two supporting plates 37, and a sliding bar 311 is slidably connected to a sliding block 3 12. A connecting plate 2 313 is fixedly connected between the two internal thread blocks 2 310 and the corresponding sliders 2 312. A connecting plate 3 314 is hinged on the top of the two internal thread blocks 2 310 and the two sliders 2 312. A plurality of connecting plates 314 are hinged on one side away from the corresponding internal thread blocks 2 310 and the sliders 2 312 with supporting plates 2 315. The moving mechanism 3 allows the cutting knife 46 to maintain a stable movement process during movement, significantly improving the accuracy and quality of resin tile cutting, effectively reducing problems such as rough cutting surface, dimensional deviation and uneven edges caused by tool shaking or offset, and greatly reducing abnormal wear of the tool caused by unstable movement, extending the service life of the cutting knife 46, and helping to maintain the stable operation of the entire processing equipment, avoiding equipment vibration and uneven force on other components caused by the instability of the cutting knife 46, thereby improving the reliability and durability of the equipment and ensuring efficient, continuous and precise processing of resin tiles.

[0037] The processing mechanism 4 includes a cutting component and a fixing component. The cutting component includes an L-shaped plate 41 fixedly connected to the top of the support plate 2 315. The top of the L-shaped plate 41 is fixedly connected to a motor 3 42. The output shaft of the motor 3 42 is fixedly connected to a rotating shaft 1 43 through a shaft coupling. A rotating shaft 2 44 runs through the L-shaped plate 41. The rotating shaft 2 44 is rotatably connected to the L-shaped plate 41. Gears 45 are fixedly connected to the rotating shaft 1 43 and the rotating shaft 2 44. The two gears 45 are meshed with each other. A cutting knife 46 is fixedly connected to the left end of the rotating shaft 2 44. A cutting groove 412 is provided on the top of the processing box 21. The fixing component includes two supporting frames 47 fixedly connected to the top of the processing box 21. The tops of the two supporting frames 47 are fixedly connected to hydraulic cylinders 48. The output shafts of the two supporting frames 47 extend to the inside of the corresponding supporting frames 47 and are slidably connected to the corresponding supporting frames 47. The two supporting frames 47 are fixedly connected to each other. A limiting frame 49 and the inner walls of the two support frames 47 are slidably connected with a connecting seat 410, the connecting seat 410 is slidably connected to the inner wall of the limiting frame 49, the output shafts of the two hydraulic cylinders 48 are slidably connected to the connecting seat 410, and the bottom of the connecting seat 410 is fixedly connected with a fixing plate 411. The processing mechanism 4 allows the resin tiles to be fixed when they are processed in and out, which can effectively prevent the resin tiles from being displaced due to force during the cutting process, thereby accurately ensuring the position accuracy and dimensional accuracy of the cutting, ensuring that the cutting surface is flat and smooth with neat edges, greatly improving the cutting quality, reducing material waste and rework caused by cutting errors, and at the same time reducing the impact and additional wear of the cutting knife due to the unstable movement of the resin tile, extending the service life of the cutting knife, ensuring the efficient and orderly progress of the cutting operation, and improving the overall production efficiency and product quality of the resin tile processing.

[0038] Working principle:

[0039] When in use, the negative pressure fan 210 is started, and the negative pressure fan 210 forms a pressure difference between the internal environment and the external environment of the collection box 22 through the connecting pipe 1 211, so that the connecting pipe 213 has suction, and then the dust hood 212 is driven to work through the connecting pipe 213, so that the debris generated when processing the resin tile is collected through the dust hood, reducing the splashing and diffusion of the debris in the work station and the surrounding working environment, which may cause harm to the equipment and the staff. When the filter plate 23 needs to be disassembled First, pull the knob 29. When the knob 29 is pulled, the positioning pin 26 moves upward. When the positioning pin 26 moves upward, it disengages from the filter plate 23 and drives the limit plate 27 to move. One end of the spring 28 is fixedly connected to the limit plate 27, and the other end is fixedly connected to the inner wall of the slide groove 25. As a result, when the limit plate 27 moves, the spring 28 contracts. Then, pull the pull plate 214, so that the pull plate 214 drives the filter plate 23 to move, and the filter plate 23 can be disassembled, thereby cleaning the filter plate 23 to avoid the filter plate 23 being in the filter plate 23. During long-term use, the debris in the collection box 22 adheres to the surface of the filter plate 23, thereby clogging the filter holes on the filter plate 23, thereby affecting the operation of the negative pressure fan 210, thereby affecting the collection effect of the debris. When installing the filter plate 23, the filter plate 23 is inserted into the collection box 22 under the condition of pulling the knob 29. The collection box 22 should be equipped with a limit plate to limit the position of the filter plate 23. When the right side of the filter plate 23 contacts the right inner wall of the collection box 22, loosen the knob 29, and the spring 28 is reset and stretched under its own elastic action, so that the spring 28 drives the limit plate 27 to move, and when the limit plate 27 moves, it drives the positioning pin 26 to move, so that the positioning pin 26 slides into the filter plate 23 to position the filter plate 23, thereby facilitating the installation of the filter plate 23. At the same time, the outlet of the filter plate 23 is sealed by the sealing strip 215. After the collected debris enters the collection box 22, when the debris needs to be processed, the cleaning door 216 is opened to centrally process the debris in the collection box 22.

[0040] Start the motor 31, the motor 31 drives the reciprocating screw rod 32 to rotate, the reciprocating screw rod 32 drives the internal thread block 33 to move when rotating, the internal thread block 33 drives the connecting plate 36 to move when moving, the connecting plate 36 drives the slider 35 to slide on the slide bar 34 when moving, the internal thread block 33 is limited by the slide bar 34 and the slider 35, so that the rotational motion of the internal thread block 33 is converted into linear motion, the internal thread block 33 and the slider 35 move when moving, so that the cutting knife 46 is driven to reciprocate along the Z axis by the reciprocating screw rod 32, the internal thread block 33 and the slider 35 are connected by the connecting plate 36, so that the sliding Block 1 35 can also have a power source, so that the movement of slider 1 35 is more stable, and motor 2 38 is started, and motor 2 38 drives the threaded rod 39 to rotate. When the threaded rod 39 rotates, it drives the internal thread block 2 310 to move. When the internal thread block 2 310 moves, it drives the slider 2 312 to move on the slide rod 2 311 through the connecting plate 2 313. When the slider 2 312 and the internal thread block 2 310 move, they drive the connecting plate 3 314 to move. When the connecting plate 314 moves, it drives the support plate 2 315 to move, so that while being able to drive the cutting knife 46 to move up and down, the movement process of the cutting knife 46 is made more stable, and the cutting range of the cutting knife 46 is also expanded.

[0041] Start motor three 42, motor three 42 drives shaft one 43 to rotate, when shaft one 43 rotates, it drives shaft two 44 to rotate through gear 45, when shaft two 44 rotates, it drives cutting knife 46 to rotate, thereby cutting resin tile through cutting knife 46, before cutting resin tile, the formed resin tile is between the top of processing box 21 and fixed plate 411, start hydraulic cylinder 48, hydraulic cylinder 48 drives connecting seat 410 to move, when connecting seat 410 moves, it is limited by limiting frame 49, when connecting seat 410 moves, it drives fixed plate 411 to move, thereby fixing resin tile through fixed plate 411, to avoid resin tile moving during cutting, thereby affecting cutting accuracy.

[0042] The preferred embodiments of the present invention disclosed above are only used to help illustrate the present invention. The preferred embodiments do not describe all the details in detail, nor do they limit the invention to the specific implementation methods described. Obviously, many modifications and changes can be made according to the content of this specification. This specification selects and specifically describes these embodiments in order to better explain the principles and practical applications of the present invention, so that those skilled in the art can understand and use the present invention well. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A processing device for customized resin tiles after molding, comprising a bottom support frame (1), on which a dust collecting mechanism (2), a moving mechanism (3) and a processing mechanism (4) are arranged, characterized in that: The dust collecting mechanism (2) comprises a disassembly component and a collection component, the disassembly component comprises a processing box (21) arranged on the top of the bottom support frame (1), the left side of the processing box (21) is fixedly connected to a collection box (22), the inner wall of the collection box (22) is slidably connected to a filter plate (23), the left side of the filter plate (23) extends to the outside of the collection box (22), the top of the collection box (22) is fixedly connected to an extension block (24), and the top of the extension block (24) is opened. A slide groove (25) is provided, and a positioning pin (26) is slidably connected to the inner wall of the slide groove (25), the top end of the positioning pin (26) extends to the outside of the extension block (24), the bottom end of the positioning pin (26) extends to the inside of the filter plate (23) and is slidably connected to the filter plate (23), a limiting plate (27) is fixedly connected to the positioning pin (26), a spring (28) is wound around the positioning pin (26), and a knob (29) is fixedly connected to the top end of the positioning pin (26).

2. The processing equipment for customized resin tiles after molding according to claim 1 is characterized in that: The collecting assembly comprises a negative pressure fan (210) fixedly connected to the left side of the processing box (21), a connecting pipe (211) fixedly connected between the negative pressure fan (210) and the collecting box (22), a dust collecting hood (212) fixedly connected to the top of the processing box (21), and a connecting pipe (213) fixedly connected between the dust collecting hood (212) and the collecting box (22).

3. The processing equipment for customized resin tiles after molding according to claim 2 is characterized in that: A pull plate (214) is fixedly connected to the left side of the filter plate (23), a sealing strip (215) is fixedly connected to the right side of the pull plate (214), an inner wall of the sealing strip (215) is fixedly connected to the filter plate (23), and a sealing strip (215) is provided on the left side of the collection box (22).

4. The processing equipment for customized resin tiles after molding according to claim 3 is characterized in that: The moving mechanism (3) comprises a first moving assembly and a second moving assembly, wherein the first moving assembly comprises a motor (31) fixedly connected to the rear side of the processing box (21), the output shaft of the connecting plate (313) being fixedly connected to a reciprocating screw (32) via a shaft coupling, the upper thread of the reciprocating screw (32) being connected to an internal thread block (33), a sliding rod (34) being fixedly connected to the inner wall of the processing box (21), a sliding block (35) being slidably connected to the sliding rod (34), and a connecting plate (36) being fixedly connected to the sliding block (33) and the upper sliding block (35).

5. The processing equipment for customized resin tiles after molding according to claim 4 is characterized in that: The second moving assembly comprises a second motor (38) fixedly connected to the left side of a support plate (37) located at the top of the first internal thread block (33); the output shaft of the second motor (38) is fixedly connected to a threaded rod (39) via a shaft coupling; the right end of the threaded rod (39) passes through the two support plates (37) and is rotatably connected to the two support plates (37); and two second internal thread blocks (310) are threadedly connected to the threaded rod (39).

6. The processing equipment for customized resin tiles after molding according to claim 5 is characterized in that: A sliding rod 2 (311) is fixedly connected between the two support plates 1 (37), a sliding block 2 (312) is slidably connected to the sliding rod 2 (311), a connecting plate 2 (313) is fixedly connected between the two internal thread blocks 2 (310) and the corresponding sliding blocks 2 (312), a connecting plate 3 (314) is hinged at the top of the two internal thread blocks 2 (310) and the two sliding blocks 2 (312), and a plurality of the connecting plates 3 (314) are hinged to a support plate 2 (315) on one side away from the corresponding internal thread blocks 2 (310) and the sliding blocks 2 (312).

7. The processing equipment for customized resin tiles after molding according to claim 6 is characterized in that: The processing mechanism (4) comprises a cutting assembly and a fixing assembly, wherein the cutting assembly comprises an L-shaped plate (41) fixedly connected to the top of the second supporting plate (315), the top of the L-shaped plate (41) is fixedly connected to a third motor (42), the output shaft of the third motor (42) is fixedly connected to a first rotating shaft (43) via a shaft coupling, a second rotating shaft (44) passes through the L-shaped plate (41), the second rotating shaft (44) is rotatably connected to the L-shaped plate (41), the first rotating shaft (43) and the second rotating shaft (44) are both fixedly connected to a gear (45), the two gears (45) are meshed with each other, the left end of the second rotating shaft (44) is fixedly connected to a cutting knife (46), and a cutting groove (412) is provided on the top of the processing box (21).

8. The processing equipment for customized resin tiles after molding according to claim 7 is characterized in that: The fixing assembly comprises two support frames (47) fixedly connected to the top of the processing box (21), the tops of the two support frames (47) are fixedly connected to hydraulic cylinders (48), and the output shafts of the two support frames (47) extend into the interior of the corresponding support frames (47) and are slidably connected to the corresponding support frames (47).

9. The processing equipment for customized resin tiles after molding according to claim 8, characterized in that: A limiting frame (49) is fixedly connected between the two support frames (47), the inner walls of the two support frames (47) are slidably connected with a connecting seat (410), the connecting seat (410) is slidably connected to the inner wall of the limiting frame (49), the output shafts of the two hydraulic cylinders (48) are slidably connected to the connecting seat (410), and the bottom of the connecting seat (410) is fixedly connected with a fixing plate (411).

10. A method for using a cable terminal head disassembly device, using the cable terminal head disassembly device according to claim 9, characterized in that: It includes the following steps: S1. Start the negative pressure fan (210). The negative pressure fan (210) forms a pressure difference between the internal environment and the external environment of the collection box (22) through the connecting pipe 1 (211), so that the connecting pipe 2 (213) has suction force, and then drives the dust hood (212) to work through the connecting pipe 2 (213). First, pull the knob (29). When the knob (29) is pulled, the positioning pin (26) moves upward. When the positioning pin (26) moves upward, it drives the limit plate (27) to move, so that the spring (28) contracts. Then pull the pull plate (214), so that the pull plate (214) drives the filter plate (23) to move. S2. Start the motor 1 (31), the motor 1 (31) drives the reciprocating screw (32) to rotate, the reciprocating screw (32) drives the internal thread block 1 (33) to move, the internal thread block 1 (33) drives the connecting plate 1 (36) to move, the connecting plate 1 (36) drives the slide bar 1 (34) to move, the slide bar 1 (35) and the internal thread block 1 (33) move, and the support plate 1 (37) moves, and then start the motor 2 (38), the motor 2 ( 38) drives the threaded rod (39) to rotate, and when the threaded rod (39) rotates, it drives the second internal thread block (310) to move, and when the second internal thread block (310) moves, it drives the second connecting plate (313) to move, and when the second connecting plate (313) moves, it drives the second sliding block (312) to move, and when the second internal thread block (310) and the second sliding block (312) move, they drive the third connecting plate (314) to move, and when the third connecting plate (314) moves, it drives the second supporting plate (315) to move. S3. Start the motor three (42), the motor three (42) drives the rotating shaft one (43) to rotate, when the rotating shaft one (43) rotates, it drives the rotating shaft two (44) to rotate through the gear (45), when the rotating shaft two (44) rotates, it drives the cutting knife (46) to rotate, start the hydraulic cylinder (48), the hydraulic cylinder (48) drives the connecting seat (410) to move, when the connecting seat (410) moves, it drives the fixing plate (411) to move.