Protective cutting machine for textile rubber roller processing
By designing a protective cutting machine with automatic feeding, precise conveying, flexible cutting length control, and efficient dust removal, the problems of low efficiency, inaccurate conveying, inconvenient cutting length adjustment, and dust pollution in textile rubber roller processing have been solved, achieving efficient and safe textile rubber roller processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2026-02-06
- Publication Date
- 2026-03-31
AI Technical Summary
Traditional textile roller processing suffers from problems such as low efficiency of manual feeding, inaccurate conveying, inconvenient adjustment of cutting length, lack of universality of fixing methods, and environmental pollution caused by dust and debris during the cutting process that is difficult to handle.
A protective cutting machine was designed, which includes automatic feeding, precise conveying, flexible cutting length control, adaptability to different shapes and sizes, and efficient dust removal. It adopts components such as electric push rods, conveyor motors, limit components, and dust removal components to achieve automation and precise control.
It improved production efficiency, enhanced the working environment, ensured cutting accuracy and quality, and strengthened the versatility and safety of the equipment.
Smart Images

Figure CN121756409A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of textile rubber roller processing technology, specifically a protective cutting machine for textile rubber roller processing. Background Technology
[0002] In the traditional textile roller processing and cutting process, feeding relies heavily on manual labor, which is inefficient and makes it difficult to accurately control the feeding rhythm and quantity. The conveying process lacks precise control, making it difficult to meet the conveying speed requirements of different cutting processes. The cutting length is inconvenient to adjust and cannot flexibly adapt to different needs. For textile rollers of different shapes and sizes, there is a lack of effective fixing methods, resulting in poor versatility. The dust and debris generated during the cutting process not only affect the working environment but also pose a threat to the health of operators. Moreover, existing equipment is unable to efficiently collect and process this dust and debris, making it difficult to guarantee the overall cutting accuracy and quality, and the product qualification rate needs to be improved. Summary of the Invention
[0003] The purpose of this invention is to provide a protective cutting machine for processing textile rubber rollers, so as to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a protective cutting machine for textile rubber roller processing, comprising an equipment box, a feeding assembly and a conveying assembly arranged on the top of the equipment box, a mounting box, an electric push rod three and two extrusion blocks two fixed at the end of the equipment box, a cutting assembly arranged on the top of the mounting box, the cutting assembly comprising four columns, all four columns fixed on the top of the mounting box, a base plate fixed on the top of the four columns, a mounting block fixed on the top of the base plate, a rotating plate rotatably arranged on the top of the mounting block, an adjusting motor fixed on the side of the mounting block, the output shaft of the adjusting motor fixedly connected to the rotating plate, and a rotating shaft rotatably arranged at the end of the rotating plate. A cutting blade is fixed on the shaft, and a cutting motor is fixed on the side of the rotating plate. A pulley pair is provided on the output shaft of the cutting motor and the rotating shaft. A protective shell is provided on the side of the rotating plate, and the protective shell is located above the cutting blade. An electric push rod three is fixed at the bottom of the mounting box. A movable plate two is fixed at the end of the electric push rod three. The movable plate two is slidably mounted on the mounting box. Two extrusion blocks one are fixed above the movable plate two. The ends of the two extrusion blocks one are set as inclined surfaces. Two extrusion blocks two are fixed on the mounting box. The two extrusion blocks two are located at the ends of the extrusion blocks one in the corresponding positions. A limiting component and a pressing component are provided on the top of the mounting box. A dust removal component is provided on the side of the mounting box.
[0005] Both the mounting box and the equipment box are fixed with several legs at the bottom. The top of the base plate is provided with a moving groove, a limiting groove and a material dropping hole. A dust cover is installed on the top of the base plate, and a material feeding hole is provided on the side of the dust cover.
[0006] With the above structure, several support legs are fixed at the bottom of both the mounting box and the equipment box. These support legs play a crucial supporting role, firmly erecting the mounting box and equipment box at a certain height above the base plate. By rationally designing the number and layout of the support legs, it can be ensured that the mounting box and equipment box remain stable when bearing their own weight and various external forces generated during operation, avoiding shaking or tilting. The base plate has a moving groove and a limiting groove. The limiting groove provides a sliding track for the textile roller. The dust cover can prevent dust generated during cutting, and the feed hole facilitates the textile roller to enter the interior of the dust cover.
[0007] The feeding assembly includes several brackets, all of which are fixed above the equipment box. Crossbars are fixed on the brackets, a frame plate is fixed on the top of the brackets, a fixing plate is fixed on the side of the brackets, an L-shaped plate is fixed on the top of the fixing plate, an electric push rod is fixed on the top of the L-shaped plate, and a stop block is fixed at the end of the electric push rod.
[0008] With the above structure, several brackets are fixed above the equipment box. Crossbars and shelves are fixed on the brackets to provide a platform for placing the textile rollers. An electric push rod is fixed to an L-shaped plate on the fixed plate, and a stop block is fixed to the end of the electric push rod. The extension and retraction of the electric push rod can move the stop block, controlling the feeding rhythm and quantity of the textile rollers, realizing automatic feeding of the textile rollers, improving production efficiency. By precisely controlling the position of the stop block through the electric push rod, the number of textile rollers fed each time can be accurately controlled, avoiding excessive or insufficient feeding that would affect the cutting effect.
[0009] The conveying assembly includes a trough plate, which is fixed above the equipment box. A lead screw is rotatably installed inside the trough plate, and a moving block is threaded onto the lead screw. A push bar is fixed above the moving block. A conveying motor is fixed at the end of the trough plate, and the output shaft of the conveying motor is fixedly connected to the lead screw. Two symmetrical L-shaped support rods are provided at both ends of the trough plate. A fixed shaft is fixed on the two L-shaped support rods on the same side, and several rings are fixed on the fixed shaft.
[0010] With the above structure, the trough plate is fixed above the equipment box, and a lead screw is rotatably installed inside. The output shaft of the conveyor motor is fixedly connected to the lead screw, and the moving block is threadedly connected to the lead screw. When the conveyor motor rotates, the lead screw drives the moving block to move, and the push bar above the moving block moves accordingly, pushing the textile roller forward. Fixed shafts are fixed on the L-shaped support rods at both ends of the trough plate. Several rings on the fixed shafts serve to assist in supporting and guiding the textile roller. The conveyor motor drives the lead screw to rotate, realizing the precise conveying of the textile roller. The conveying speed can be adjusted by controlling the speed of the conveyor motor to meet the requirements of different cutting processes. The design of the rings reduces the friction between the textile roller and the equipment, making the conveying process smoother, and at the same time, it plays a certain guiding role for the textile roller, ensuring the accuracy of its conveying direction.
[0011] The limiting assembly includes two mounting brackets, both of which are fixed above the mounting box. Two electric push rods are fixed on the two mounting brackets, and a limiting plate is fixed to the end of the electric push rod.
[0012] With the above structure, two mounting brackets are fixed above the mounting box, and the second electric push rod is fixed on the mounting bracket. A limiting plate is fixed to its end. The extension and retraction of the second electric push rod can drive the limiting plate to move and block the end of the textile rubber roller, thereby controlling the cutting length of the textile rubber roller. By precisely controlling the position of the limiting plate through the second electric push rod, the cutting length of the textile rubber roller can be flexibly adjusted according to the requirements to ensure that the size of the cut textile rubber roller meets the requirements.
[0013] The pressing assembly includes two upright plates, both fixed above the mounting box. A limit shaft is fixed between the two upright plates, and a lead screw 2 is rotatably mounted between them. A movable motor is fixed to one of the upright plates, and the output shaft of the movable motor is fixedly connected to the lead screw 2. A sliding block is threaded onto the lead screw 2 and is slidably mounted on the limit shaft. An electric push rod 5 is fixed to the sliding block, and a connecting plate is fixed to the end of the electric push rod 5. The connecting plate is slidably mounted inside the moving groove. A top plate is fixed above the connecting plate, and an electric push rod 4 is fixed above the top plate. A moving plate 1 is fixed to the end of the electric push rod 4, and two adjustable blocks are detachably mounted below the moving plate 1.
[0014] With the above structure, two upright plates are fixed above the mounting box. The limiting shaft and lead screw 2 are rotatably set between the two upright plates. The output shaft of the moving motor is fixedly connected to lead screw 2. When the moving motor rotates, lead screw 2 drives the sliding block to slide on the limiting shaft. The electric push rod 5 on the sliding block drives the connecting plate to move in the moving groove. The electric push rod 4 on the top plate above the connecting plate drives the moving plate 1 to move up and down. Two adjustable blocks are detachably set below the moving plate 1. Different shaped adjustable blocks can be replaced according to the shape and size of the textile rubber roller to press down and fix the textile rubber roller. The coordinated action of the moving motor, electric push rod 4, and electric push rod 5 realizes the precise movement of the adjustable blocks in the horizontal and vertical directions, which can adapt to the pressing and fixing requirements of textile rubber rollers of different shapes and sizes. The detachable adjustable block design increases the versatility of the equipment and reduces the operating cost of the equipment.
[0015] The dust removal assembly includes a support frame located on the side of the mounting box. Several fixing rods are installed on the support frame. A mounting plate is fixed on the top of the support frame. A second cone is fixed on the top of the mounting plate. A collection bag is installed below the second cone. An exhaust fan is connected to the side of the second cone. An exhaust pipe is connected to the air inlet of the exhaust fan and is connected to the dust cover.
[0016] With the above structure, the support frame is located on the side of the mounting box and fixed by several fixing rods. A collection bag is installed below the second cone on the mounting plate, and an exhaust fan is connected to its side. The air inlet of the exhaust fan is connected to an exhaust pipe, which is connected to a dust cover. When the exhaust fan is working, it draws dust-laden air out of the dust cover and into the second cone through the exhaust pipe. The dust falls into the collection bag under gravity, achieving the dust removal function. This effectively collects dust and debris generated during the cutting process, improves the working environment, and protects the health of operators. The collection bag can be easily replaced and cleaned to ensure the dust removal effect.
[0017] The dust removal assembly also includes an air outlet duct, which is fixed on the cone II. The lower end of the air outlet duct is located inside the cone II. A baffle II is fixed inside the air outlet duct, which divides the interior of the air outlet duct into an air inlet chamber and an air outlet chamber. An installation cylinder is fixed on the air outlet duct. Several cone I are fixed above the installation cylinder. A connecting pipe is fixed inside the several cone I. A bend is connected to the connecting pipe and is connected to the air outlet duct. The bend is connected to the air outlet chamber. The sides of the several cone I are connected to the air inlet chamber through pipes. A collection box is provided on the installation cylinder. The several cone I are connected to the interior of the installation cylinder.
[0018] With the above structure, the exhaust duct is fixed to cone two, with its lower end located inside cone two. A baffle two is fixed inside the exhaust duct, dividing the interior into an inlet chamber and an outlet chamber. Several cone one units are fixed above the mounting cylinder on the exhaust duct. Connecting pipes inside cone one units connect to bends, which are connected to the outlet chambers. Dust-laden air enters cone one units from the inlet chamber, where dust settles. The dust is then discharged through the bends and outlet chambers, further improving the dust removal effect. A collection box is installed on the mounting cylinder to collect the dust settled in cone one units. The design of baffle two and cone one units increases the airflow path and settling area of the dust-laden air, improving dust settling efficiency and further reducing the dust content in the exhaust air, making the dust removal effect more significant. The collection box facilitates the cleaning of the settled dust, maintaining the normal operation of the equipment.
[0019] Compared with the prior art, the beneficial effects of the present invention are: This protective cutting machine for textile rubber roller processing realizes functions such as automatic feeding, precise conveying, flexible cutting length control, pressure fixing to adapt to different shapes and sizes, and efficient dust removal, which improves production efficiency and versatility, improves the working environment, and ensures cutting accuracy and quality. Attached Figure Description
[0020] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a front view structural diagram of the present invention; Figure 3 for Figure 1Enlarged structural diagram at point A; Figure 4 for Figure 2 Enlarged structural diagram at point B; Figure 5 This is a three-dimensional structural diagram of some components of the feeding assembly in this invention; Figure 6 This is a schematic diagram of the front three-dimensional structure of the cutting component in this invention; Figure 7 This is a schematic diagram of the rear three-dimensional structure of the cutting component in this invention; Figure 8 This is a side view of the cutting component in this invention. Figure 9 for Figure 6 Enlarged structural diagram at point C; Figure 10 for Figure 7 Enlarged structural diagram at point D; Figure 11 This is a three-dimensional structural diagram of the dust removal component in this invention; Figure 12 This is a cross-sectional structural diagram of the dust removal component in this invention.
[0021] In the diagram: 1. Mounting cylinder; 2. Dust cover; 3. Mounting box; 4. Support leg; 5. Slot plate; 6. Conveyor motor; 7. L-shaped support rod; 8. Bracket; 9. Ring; 10. Frame plate; 11. Crossbar; 12. Base plate; 13. Column; 14. Moving motor; 15. Vertical plate; 16. L-shaped plate; 17. Equipment box; 18. Connecting pipe; 19. Lead screw one; 20. Moving block; 21. Fixed shaft; 22. Push bar; 23. Limiting shaft; 24. Sliding block; 25. Lead screw two; 26. Fixed plate; 27. Electric push rod one; 28. Stop block one; 29. Cutting motor; 30. Moving slot; 31. Limiting slot; 32. 33. Moving plate 1; 34. Adjusting motor; 35. Mounting bracket; 36. Electric push rod 2; 37. Mounting block; 38. Protective shell; 39. Electric push rod 3; 40. Pulley pair; 41. Electric push rod 4; 42. Top plate; 43. Connecting plate; 44. Adjusting block; 45. Cutting blade; 46. Extrusion block 1; 47. Moving plate 2; 48. Limiting plate; 49. Extrusion block 2; 50. Bend; 51. Cone 1; 52. Collection box; 53. Exhaust pipe; 54. Mounting plate; 55. Support frame; 56. Fixing rod; 57. Cone 2; 58. Exhaust fan; 59. Exhaust pipe; 60. Stop block 2; 61. Collection bag. Detailed Implementation
[0022] 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.
[0023] like Figures 1-12 As shown, the present invention provides a technical solution: a protective cutting machine for textile rubber roller processing, including an equipment box 17. A feeding assembly and a conveying assembly are arranged above the equipment box 17. An installation box 3, an electric push rod 38, and two extrusion blocks 48 are fixed to the end of the equipment box 17. A cutting assembly is arranged above the installation box 3. The cutting assembly includes four columns 13, all fixed above the installation box 3. A base plate 12 is fixed above the four columns 13. An installation block 36 is fixed above the base plate 12. A rotating plate is rotatably arranged above the installation block 36. An adjusting motor 33 is fixed to the side of the installation block 36. The output shaft of the adjusting motor 33 is fixedly connected to the rotating plate. A rotating shaft is rotatably arranged at the end of the rotating plate, and a cutting tool is fixed on the rotating shaft. The cutting blade 44 is mounted on the side of the rotating plate. A cutting motor 29 is fixed to the side of the rotating plate. A pulley pair 39 is provided on the output shaft and the rotating shaft of the cutting motor 29. A protective shell 37 is provided on the side of the rotating plate and is located above the cutting blade 44. An electric push rod 38 is fixed to the bottom of the mounting box 3. A movable plate 46 is fixed to the end of the electric push rod 38. The movable plate 46 is slidably mounted on the mounting box 3. Two extrusion blocks 45 are fixed above the movable plate 46. The ends of the two extrusion blocks 45 are set as inclined surfaces. Two extrusion blocks 48 are fixed on the mounting box 3 and are located at the ends of the extrusion blocks 45 in corresponding positions. A limiting component and a pressing component are provided on the top of the mounting box 3. A dust removal component is provided on the side of the mounting box 3.
[0024] Both the mounting box 3 and the equipment box 17 are fixed with several support legs 4 at their bottom. The bottom plate 12 has a moving groove 30, a limiting groove 31, and a material drop hole on its top. A dust cover 2 is installed on the top of the bottom plate 12, and a material inlet hole is opened on the side of the dust cover 2. Both the mounting box 3 and the equipment box 17 are fixed with several support legs 4 at their bottom. These support legs 4 play a key supporting role, firmly supporting the mounting box 3 and the equipment box 17 at a certain height above the bottom plate 12. By reasonably designing the number and layout of the support legs 4, it can be ensured that the mounting box 3 and the equipment box 17 remain stable when bearing their own weight and various external forces generated during operation, avoiding shaking or tilting. The bottom plate 12 has a moving groove 30 and a limiting groove 31. The limiting groove 31 provides a sliding track for the textile roller. The dust cover 2 can prevent dust generated during cutting. The material inlet hole facilitates the textile roller to enter the interior of the dust cover 2.
[0025] The feeding assembly includes several brackets 8, all fixed above the equipment box 17. A crossbar 11 is fixed to each bracket 8, a shelf plate 10 is fixed above each bracket 8, a fixing plate 26 is fixed to the side of each bracket 8, an L-shaped plate 16 is fixed above the fixing plate 26, and an electric push rod 27 is fixed above the L-shaped plate 16. A stop block 28 is fixed to the end of the electric push rod 27. The brackets 8, fixed above the equipment box 17, with the crossbar 11 and shelf plate 10, provide a platform for placing the textile rollers. The electric push rod 27 is fixed to the L-shaped plate 16 on the fixing plate 26, and the stop block 28 is fixed to the end of the electric push rod 27. The extension and retraction of the electric push rod 27 can move the stop block 28, controlling the feeding rhythm and quantity of the textile rollers, achieving automatic feeding of the textile rollers, and improving production efficiency. By precisely controlling the position of the stop block 28 through the electric push rod 27, the number of textile rollers fed each time can be accurately controlled, avoiding excessive or insufficient feeding that would affect the cutting effect.
[0026] The conveying assembly includes a trough plate 5, which is fixed above the equipment box 17. A lead screw 19 is rotatably mounted inside the trough plate 5, and a moving block 20 is threadedly connected to the lead screw 19. A pusher bar 22 is fixed above the moving block 20. A conveying motor 6 is fixed to the end of the trough plate 5, and the output shaft of the conveying motor 6 is fixedly connected to the lead screw 19. Two symmetrical L-shaped support rods 7 are provided at both ends of the trough plate 5. A fixed shaft 21 is fixed to the two L-shaped support rods 7 on the same side, and several rings 9 are fixed to the fixed shaft 21. The trough plate 5 is fixed above the equipment box 17, and a lead screw 19 is rotatably mounted inside the trough plate 5. The output shaft of the conveying motor 6 is fixedly connected to the lead screw 19, and the moving block 20 is threadedly connected to the lead screw 19. On screw 19, when the conveyor motor 6 rotates, the screw 19 drives the moving block 20 to move, and the push bar 22 above the moving block 20 moves accordingly, pushing the textile roller forward. The L-shaped support rods 7 at both ends of the trough plate 5 are fixed with fixed shafts 21. Several rings 9 on the fixed shafts 21 play a role in auxiliary support and guidance of the textile roller. The conveyor motor 6 drives the screw 19 to rotate, realizing the precise conveying of the textile roller. The conveying speed can be adjusted by controlling the speed of the conveyor motor 6 to meet the requirements of different cutting processes. The design of the rings 9 reduces the friction between the textile roller and the equipment, making the conveying process smoother. At the same time, it plays a certain guiding role for the textile roller, ensuring the accuracy of its conveying direction.
[0027] The limiting assembly includes two mounting brackets 34, both of which are fixed above the mounting box 3. Two electric push rods 35 are fixed to the two mounting brackets 34, and a limiting plate 47 is fixed to the end of each electric push rod 35. The extension and retraction of the electric push rods 35 can move the limiting plate 47, blocking the end of the textile roller and thus controlling the cutting length of the textile roller. By precisely controlling the position of the limiting plate 47 through the electric push rods 35, the cutting length of the textile roller can be flexibly adjusted according to requirements, ensuring that the dimensions of the cut textile roller meet the requirements.
[0028] The pressing assembly includes two upright plates 15, both fixed above the mounting box 3. A limit shaft 23 is fixed between the two upright plates 15, and a lead screw 25 is rotatably mounted between them. A moving motor 14 is fixed on one of the upright plates 15, and the output shaft of the moving motor 14 is fixedly connected to the lead screw 25. A sliding block 24 is threaded onto the lead screw 25, and the sliding block 24 is slidably mounted on the limit shaft 23. An electric push rod 5 is fixed on the sliding block 24, and a connecting plate 42 is fixed to the end of the electric push rod 5. The connecting plate 42 is slidably mounted inside the moving groove 30. A top plate 41 is fixed above the connecting plate 42, and an electric push rod 40 is fixed above the top plate 41. A moving plate 32 is fixed to the end of the electric push rod 40, and two adjusting blocks 43 are detachably mounted below the moving plate 32. The two upright plates 15 are fixed above the mounting box 3, and the limit shaft 23 and the lead screw 25 are rotatably mounted between them. The rotating part is located between two vertical plates 15. The output shaft of the moving motor 14 is fixedly connected to the lead screw 25. When the moving motor 14 rotates, the lead screw 25 drives the sliding block 24 to slide on the limit shaft 23. The electric push rod 5 on the sliding block 24 drives the connecting plate 42 to move in the moving groove 30. The electric push rod 40 on the top plate 41 above the connecting plate 42 drives the moving plate 32 to move up and down. Two adjustable blocks 43 are detachably installed below the moving plate 32. Different shapes of adjustable blocks 43 can be replaced according to the shape and size of the textile rubber roller to press down and fix the textile rubber roller. The coordinated action of the moving motor 14, the electric push rod 40 and the electric push rod 5 realizes the precise movement of the adjustable blocks 43 in the horizontal and vertical directions, which can adapt to the pressing and fixing requirements of textile rubber rollers of different shapes and sizes. The design of the detachable adjustable blocks 43 increases the versatility of the equipment and reduces the operating cost of the equipment.
[0029] The dust removal assembly includes a support frame 54 located on the side of the mounting box 3. Several fixing rods 55 are mounted on the support frame 54. A mounting plate 53 is fixed above the support frame 54, and a second cone 56 is fixed above the mounting plate 53. A collection bag 60 is located below the second cone 56. An exhaust fan 57 is connected to the side of the second cone 56, and an exhaust pipe 52 is connected to the air inlet of the exhaust fan 57. The exhaust pipe 52 is connected to the dust cover 2. The support frame 54 is located on the side of the mounting box 3 and is fixed by several fixing rods 55. The collection bag 60 is located below the second cone 56 on the mounting plate 53, and the exhaust fan 57 is connected to its side. The air inlet of the exhaust fan 57 is connected to the exhaust pipe 52, which is connected to the dust cover 2. When the exhaust fan 57 is working, it draws out the dust-laden air from the dust cover 2 and into the cone 56 through the exhaust pipe 52. The dust falls into the collection bag 60 under gravity, thus achieving the dust removal function. This effectively collects the dust and debris generated during the cutting process, improves the working environment, and protects the health of the operators. The collection bag 60 can be easily replaced and cleaned to ensure the dust removal effect.
[0030] The dust removal assembly also includes an exhaust duct 58, which is fixed to the second cone 56. The lower end of the exhaust duct 58 is located inside the second cone 56. A second baffle 59 is fixed inside the exhaust duct 58, dividing the interior of the exhaust duct 58 into an inlet chamber and an outlet chamber. An installation cylinder 1 is fixed to the exhaust duct 58. Several first cones 50 are fixed above the installation cylinder 1. A connecting pipe 18 is fixed inside the several first cones 50. A bend 49 is connected to the connecting pipe 18 and is connected to the exhaust duct 58, and the bend 49 is connected to the outlet chamber. The sides of the several first cones 50 are connected to the inlet chamber through pipes. A collection box 51 is provided on the installation cylinder 1, and the several first cones 50 are connected to the interior of the installation cylinder 1. The exhaust duct 58 is fixed to the second cone 56, with its lower end located inside the second cone 56. A fixed baffle 59 divides the interior of the air outlet duct 58 into an air inlet chamber and an air outlet chamber. Several cones 50 are fixed above the mounting cylinder 1 on the air outlet duct 58. The connecting pipe 18 inside the cone 50 is connected to the bend 49, which is connected to the air outlet chamber. Dust-laden air enters the cone 50 from the air inlet chamber, where dust settles and is then discharged through the bend 49 and the air outlet chamber, further improving the dust removal effect. A collection box 51 is installed on the mounting cylinder 1 to collect the dust that settles in the cone 50. The design of the baffle 59 and the cone 50 increases the flow path and settling area of the dust-laden air, improves the dust settling efficiency, further reduces the dust content in the exhaust air, and makes the dust removal effect more significant. The collection box 51 facilitates the cleaning of the settled dust, maintaining the normal operation of the equipment.
[0031] Working principle: The electric push rod 27 drives the stop block 28 to move, precisely controlling the feeding rhythm and quantity of the textile rollers and achieving automatic feeding. The conveyor motor 6 drives the lead screw 19 to rotate, moving the moving block 20 and the pusher bar 22 to advance the textile rollers. Simultaneously, the ring 9 provides auxiliary support and guidance, achieving precise conveying. The electric push rod 35 drives the limit plate 47 to move, blocking the end of the textile rollers and controlling the cutting length. The moving motor 14, electric push rod 40, and electric push rod 5 work together to precisely move the adjusting block 43 in the horizontal and vertical directions, pressing down and fixing textile rollers of different shapes and sizes. The adjusting motor 33 drives the rotating plate to rotate and adjust the cutting angle. The cutting motor 29 drives the cutting blade 44 to rotate via the pulley pair 39 for cutting. The dust removal component's exhaust fan 57 operates, removing dust-laden air from the dust cover 2. The dust is extracted and enters the second cone 56 through the exhaust pipe 52, where it falls into the collection bag 60. Simultaneously, the dust-removed air enters the interior of the first cone 50 through the air inlet chamber, where the dust in the air is further settled. The settled dust then falls from the first cone 50 into the collection box 51 for secondary collection, improving production efficiency. The conveying speed can be adjusted according to different cutting processes, ensuring accurate feeding and conveying. The cutting length can be flexibly adjusted to adapt to the fixing requirements of textile rollers of different shapes and sizes, offering strong versatility and reducing operating costs. The protective design, with the dust cover 2, prevents dust from being generated during cutting, protecting the health of operators. It efficiently collects dust and debris, improving the working environment; the collection bag 60 and collection box 51 are easy to clean. The overall structure is stable, with all components working together to ensure cutting accuracy and quality, improving product qualification rate.
[0032] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended embodiments and their equivalents.
Claims
1. A protective cutting machine for processing textile rubber rollers, comprising an equipment box (17), a feeding assembly and a conveying assembly being arranged above the equipment box (17), a mounting box (3), an electric push rod three (38) and two extrusion blocks two (48) being fixed at the end of the equipment box (17), and a cutting assembly being arranged above the mounting box (3), characterized in that: The cutting assembly comprises four stand columns (13), the four stand columns (13) are fixed above the mounting box (3), a bottom plate (12) is fixed above the four stand columns (13), a mounting block (36) is fixed above the bottom plate (12), a rotating plate is rotatably arranged above the mounting block (36), an adjusting motor (33) is fixed to the side of the mounting block (36), the output shaft of the adjusting motor (33) is fixedly connected with the rotating plate, a rotating shaft is rotatably arranged at the end of the rotating plate, a cutting blade (44) is fixed to the rotating shaft, a cutting motor (29) is fixed to the side of the rotating plate, a belt pulley pair (39) is arranged on the output shaft of the cutting motor (29) and the rotating shaft, a protective shell (37) is arranged on the side of the rotating plate and located above the cutting blade (44), an electric push rod three (38) is fixed below the mounting box (3), a moving plate two (46) is fixed to the end of the electric push rod three (38), the moving plate two (46) is slidably arranged on the mounting box (3), two extrusion blocks one (45) are fixed above the moving plate two (46), the ends of the two extrusion blocks one (45) are beveled, two extrusion blocks two (48) are fixed on the mounting box (3), the two extrusion blocks two (48) are located at the ends of the corresponding extrusion blocks one (45), a limiting assembly and a pressing assembly are arranged above the mounting box (3), and a dust removal assembly is arranged on the side of the mounting box (3).
2. A protective cutting machine for textile rubber roller processing according to claim 1, characterized in that: The mounting box (3) and the equipment box (17) are fixed with a plurality of supporting legs (4) below, the top of the bottom plate (12) is provided with a moving groove (30), a limiting groove (31) and a blanking hole, and a dust cover (2) is arranged above the bottom plate (12), and the dust cover (2) is provided with a feeding hole in the side.
3. The protective cutting machine for textile rubber roller processing according to claim 1, characterized in that: The feeding assembly comprises a plurality of supports (8), the plurality of supports (8) are fixed above the equipment box (17), a horizontal rod (11) is fixed to the plurality of supports (8), a shelf plate (10) is fixed above the support (8), a fixed plate (26) is fixed to the side of the support (8), an L-shaped plate (16) is fixed above the fixed plate (26), an electric push rod one (27) is fixed to the L-shaped plate (16), and a stop block one (28) is fixed to the end of the electric push rod one (27).
4. The protective cutting machine for textile rubber roller processing according to claim 1, characterized in that: The conveying assembly comprises a groove plate (5), the groove plate (5) is fixed above the equipment box (17), a lead screw one (19) is rotatably arranged in the groove plate (5), a moving block (20) is threadedly connected to the lead screw one (19), a pushing strip (22) is fixed above the moving block (20), a conveying motor (6) is fixed to the ends of the groove plate (5), the output shaft of the conveying motor (6) is fixedly connected with the lead screw one (19), two symmetrical L-shaped supporting rods (7) are arranged at the two ends of the groove plate (5), a fixed shaft (21) is fixed to the two L-shaped supporting rods (7) on the same side, and a plurality of annular rings (9) are fixed to the fixed shaft (21).
5. The protective cutting machine for textile rubber roller processing according to claim 1, characterized in that: The limiting assembly comprises two mounting racks (34) fixed above the mounting box (3), and an electric push rod two (35) fixed on each mounting rack (34).
6. A protective cutting machine for textile rubber roll processing according to claim 1, characterized in that: The pressing-down assembly comprises two vertical plates (15) fixed above the mounting box (3), a limiting shaft (23) fixed between the two vertical plates (15), a screw rod two (25) rotatably arranged between the two vertical plates (15), a moving motor (14) fixed on one vertical plate (15), an output shaft of the moving motor (14) fixedly connected with the screw rod two (25), a sliding block (24) threadedly connected with the screw rod two (25) and slidably arranged on the limiting shaft (23), an electric push rod five fixed on the sliding block (24), a connecting plate (42) fixed at an end of the electric push rod five and slidably arranged in a moving groove (30), a top plate (41) fixed above the connecting plate (42), an electric push rod four (40) fixed above the top plate (41), a moving plate one (32) fixed at an end of the electric push rod four (40), and two adjusting blocks (43) detachably arranged below the moving plate one (32).
7. A protective cutting machine for textile rubber roll processing according to claim 1, characterized in that: The dust removal assembly comprises a supporting frame (54) arranged on the side of the mounting box (3), a plurality of fixing rods (55) arranged on the supporting frame (54), an installation plate (53) fixed above the supporting frame (54), a conical cylinder two (56) fixed above the installation plate (53), a collecting bag (60) arranged below the conical cylinder two (56), an air suction machine (57) connected with the conical cylinder two (56), and an air suction pipe (52) connected with the air suction machine (57) and in communication with the dust cover (2).
8. A protective cutting machine for textile rubber roller processing according to claim 7, characterized in that: The dust removal assembly further comprises an air outlet pipe (58) fixed on the conical cylinder two (56), wherein the lower end of the air outlet pipe (58) is located in the conical cylinder two (56), a blocking block two (59) is fixed in the air outlet pipe (58), the blocking block two (59) divides the air outlet pipe (58) into an air inlet compartment and an air outlet compartment, an installation cylinder (1) is fixed on the air outlet pipe (58), a plurality of conical cylinders one (50) are fixed above the installation cylinder (1), a connecting pipe (18) is fixed in each conical cylinder one (50), a bent pipe (49) is connected with the connecting pipe (18) and the air outlet pipe (58) and in communication with the air outlet compartment, the side of each conical cylinder one (50) is connected with the air inlet compartment through a pipeline, and a collecting box (51) is arranged on the installation cylinder (1) and in communication with the installation cylinder (1).