A carpet textile processing flat machine
By designing an automated cylinder-driven scraping machine and support device, the problem of low efficiency in cleaning broken yarn and loose fibers in carpet textile processing has been solved, achieving efficient automated cleaning and reducing labor costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- FOSHAN NANHAI YONG LUN CARPETS&TEXTILE CO LTD
- Filing Date
- 2023-01-17
- Publication Date
- 2026-05-08
AI Technical Summary
Existing carpet textile processing and leveling machines are inefficient and costly in cleaning broken and loose carpet fibers, especially in large-area carpets such as those used in stadiums or exhibition halls.
Design a carpet textile processing and flattening machine. The machine uses a cylinder to drive the scraping body to move along the width and length of the carpet, and changes the scraping direction by rotating a motor. Combined with a support device and clamping components, it realizes automated scraping operation.
It improves the efficiency of removing yarn breakage and loose fibers, reduces labor costs, and increases production and processing efficiency.
Smart Images

Figure CN117265857B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of carpet flattening machines, and in particular to a carpet textile processing flattening machine. Background Technology
[0002] Carpets are floor coverings made from natural fibers such as cotton, linen, wool, silk, and grass, or chemically synthesized fibers, through hand or machine processes of weaving, tufting, or spinning. Carpets cover the floors of residences, hotels, stadiums, exhibition halls, vehicles, ships, airplanes, etc., and have the effects of noise reduction, heat insulation, and decoration.
[0003] The current carpet textile processing and leveling machine, as disclosed in the invention patent with authorization announcement number CN103741426B, is a carpet combing and scraping machine, including: a motor, a motor bracket, a support plate, and a base plate. The motor is fixed to the motor bracket by a ring clamp. The support plate is connected to the base plate by a pair of adjusting rods. A spindle box is fixed to the bottom of the support plate with screws. The motor is connected to the spindle in the spindle box through pulleys, a first transmission belt, a tension pulley, a second transmission belt, and a spindle pulley. The spindle has four shafts arranged perpendicularly to each other, and each shaft is fixed to a scraping blade by a set screw. The motor includes a high-strength plastic molded housing with a handle, and the handle contains a motor switch. When the scraping machine is needed, the handle is held, and the motor switch is turned on. The motor eventually drives the scraping blades to rotate. At this time, the scraping blades squeeze and rotate to remove broken and loose fibers from the carpet, combing the carpet pile in one direction, resulting in a uniform luster, a neat carpet surface, and solving the problem of carpet shedding.
[0004] In the process of developing this application, the inventors discovered that the technology has at least the following problems: since carpets used in stadiums or exhibition halls occupy a large area, cleaning the broken yarn and loose fibers on the carpet by hand is not only inefficient but also labor-intensive. Summary of the Invention
[0005] To improve the efficiency of removing broken yarn and loose fibers from carpets, this application provides a carpet textile processing and flattening machine.
[0006] This application provides a carpet textile processing and leveling machine, which adopts the following technical solution:
[0007] A carpet weaving and flattening machine includes a machine base with a carpet laid on its top surface. Two first rodless cylinders are respectively installed on both sides of the machine base. Support rods are respectively installed on the sliding ends of the two first rodless cylinders. A crossbar is connected to the top ends of the two support rods. A sliding frame is slidably installed on one side of the crossbar. A second rodless cylinder is installed on one side of the sliding frame. A fixed platform is installed at the sliding end of the second rodless cylinder. A scraping machine body is rotatably installed below the fixed platform. The crossbar is equipped with a sliding component for driving the sliding frame to slide along the crossbar. A rotary motor is installed on the top surface of the fixed platform. The drive shaft of the rotary motor passes through the fixed platform and is fixedly connected to the scraping machine body.
[0008] By adopting the above technical solution, when it is necessary to remove broken yarn and loose fibers from a carpet, the carpet is first laid on the machine platform. At this time, the first rodless cylinder can be activated to move the scraping machine along the width of the carpet, the sliding component can be used to move the scraping machine along the length of the carpet, the second rodless cylinder can be used to move the scraping machine closer to the carpet, and the motor can be rotated to change the scraping direction. When the scraping machine is activated, it can automatically scrape the carpet instead of manually, thereby improving the efficiency of removing broken yarn and loose fibers from the carpet, reducing labor costs, and improving production efficiency.
[0009] Optionally, the machine is equipped with a support device for supporting the carpet. The support device includes multiple support belts. A well-shaped groove is opened on the top surface of the machine. The multiple support belts are laid in the well-shaped groove. A wire fixing seat is provided on one of the adjacent sides of the machine. One end of the multiple support belts is fixedly connected to the wire fixing seat. A tensioning mechanism for tightening the support belts is provided on the other adjacent sides of the machine.
[0010] By adopting the above technical solution, since the carpet area is large and the span of the machine is also large, the central surface of the machine is prone to unevenness, which can easily lead to uneven scraping when the scraping machine is used. Therefore, with the help of the support device, multiple support belts work together to support the carpet, reducing the load on the central part of the machine and helping to ensure the flatness of the carpet when it is laid on the machine.
[0011] Optionally, the tensioning mechanism includes a take-up wheel that rotates on the side wall of the machine base. The end of the support belt away from the wire fixing seat is wound into the take-up wheel. A control gear is coaxially rotatably arranged on one side of the take-up wheel. The machine base is provided with a control component for controlling the rotation direction of the control gear.
[0012] By adopting the above technical solution, when it is necessary to tighten the support belt, the take-up wheel is first rotated in the direction away from the machine. At this time, the take-up wheel will take the support belt inward and tighten the support belt through the wire fixing seat. Under the action of the control component, when the take-up wheel is released, the control component restricts the control gear from rotating in the opposite direction, so the take-up wheel stops at the current position, which helps to improve the stability of the support belt tension.
[0013] Optionally, the control component includes a wedge block, and a moving rod is movably provided on the side wall of the machine tool. The wedge block is fixed to one end of the moving rod facing the control gear, and the wedge block and the control gear cooperate with each other. The side wall fixing ring of the moving rod is provided with an abutment ring, and a spring is sleeved on the moving rod. One end of the spring is fixedly connected to the abutment ring, and the other end of the spring is fixedly connected to the side wall of the machine tool.
[0014] By adopting the above technical solution, when the moving rod moves towards the machine platform, the moving rod presses the spring through the abutment ring, and the moving rod drives the wedge block to move towards the machine platform. At this time, the wedge block disengages from the control gear, and the control gear can rotate freely. When the moving rod is released, the spring releases its elastic force and drives the moving rod away from the machine platform through the abutment ring. The moving rod drives the wedge block to move away from the machine platform. At this time, the wedge block engages with the control gear, and the control gear can only move along the direction of the winding support belt, which helps to improve the stability of the control gear in controlling the rotation direction of the winding wheel.
[0015] Optionally, the shaving machine body is provided with a buffer assembly for adapting to the uneven surface of the carpet. The buffer assembly includes a buffer frame, which is disposed on the output shaft of the rotating motor. The top surface of the shaving machine body is symmetrically provided with a lug, and the side wall of the lug is provided with a buffer hole. The lug is fitted onto the buffer frame through the buffer hole. The buffer frame is provided with a limiting component for restricting the left and right movement of the shaving machine body.
[0016] By adopting the above technical solution, when the scraping machine body comes into contact with the uneven carpet surface, the lugs move on the buffer frame through the buffer holes, which helps to improve the stability of the scraping machine body in adapting to the carpet surface. At the same time, under the action of the limiting component, it helps to minimize the movement of the scraping machine body on the buffer frame through the lugs.
[0017] Optionally, the limiting component includes a limiting rod, one end of which is hinged to the shaving machine body, a limiting hole is provided through the side of the buffer frame away from the lug, the other end of the limiting rod is inserted into the limiting hole, and two limiting pieces are provided on the side wall of the limiting rod, the two limiting pieces surrounding both sides of the limiting hole.
[0018] By adopting the above technical solution, when the shaving machine body encounters a protrusion and moves upward, the shaving machine body drives one end of the limiting rod to move upward, and the other end of the limiting rod swings in the limiting hole. Under the action of the two limiting plates, the limiting rod always swings in the limiting hole, and the shaving machine body cannot move left or right, which helps to improve the stability of the shaving machine body.
[0019] Optionally, the end corners of the machine tool are respectively provided with clamping components for clamping the carpet. The clamping components include pressing blocks. The end corners of the machine tool are provided with fixing holes. Fixing frames are provided in the fixing holes. A screw is threaded through the fixing frames. The pressing blocks rotate at one end of the screw. A guide rod is provided on the side of the pressing blocks facing the fixing frames. The guide rod is slidably connected to the fixing frames.
[0020] By adopting the above technical solution, when it is necessary to clamp the carpet on the machine, the end corner of the carpet is first folded into the fixing hole, and then the screw is rotated. Under the action of the guide rod, the screw drives the clamping block to move towards the carpet. At this time, the clamping block presses the folded end corner of the carpet, and the folded end corner helps to increase the friction between the carpet and the machine, thereby improving the stability of the carpet clamped on the machine.
[0021] Optionally, a winding mechanism for winding up carpet is provided on one side of the machine base. The winding mechanism includes a winding roller and a drive assembly for driving the winding roller to rotate. Connecting plates are symmetrically arranged on one side of the machine base. A first slot is opened on the inner side of the connecting plate. Insert blocks are respectively provided at both ends of the winding roller. The insert blocks are inserted into the first slot. The drive assembly is located on one of the connecting plates on the side away from the winding roller.
[0022] By adopting the above technical solution, when the carpet removal is completed and the carpet needs to be rolled up, first align the inserts at both ends of the roll-up roller and insert them into the first slot, and then start the drive assembly. At this time, the drive assembly drives the roll-up roller to rotate, and the roll-up roller rolls up the carpet inside. When the roll-up roller needs to be removed, the inserts are removed from the first slot, which helps to improve the convenience of disassembling the roll-up roller.
[0023] Optionally, the drive assembly includes a drive motor and a circular block. A rotating groove is provided on the inner side of the connecting plate, and the circular block rotates within the rotating groove. A second slot is correspondingly provided on the inner side of the circular block, and the second slot communicates with the first slot. The insert block is inserted into the second slot. The drive motor is located on the side of the connecting plate away from the take-up roller. The output shaft of the drive motor passes through the connecting plate and is fixedly connected to the circular block.
[0024] By adopting the above technical solution, when the drive motor is started, the output shaft of the drive motor drives the circular block to rotate, and the circular block drives the take-up roller to rotate through the insert block, which helps to improve the stability of the take-up roller rotation.
[0025] Optionally, the side wall of the take-up roller is provided with a take-up groove.
[0026] By adopting the above technical solution, when it is necessary to roll up the carpet, one end of the carpet can be pre-inserted into the winding groove, and when the winding roller rotates, the winding roller stably rolls the carpet around its side wall, which helps to improve the stability of the winding roller in rolling up the carpet.
[0027] In summary, this application includes the following beneficial technical effects:
[0028] When it is necessary to remove broken or loose fibers from a carpet, the carpet is first laid on the machine platform and then clamped and fixed by the clamping assembly. At this time, the first rodless cylinder can be activated to move the scraping machine along the width of the carpet, the sliding assembly can be activated to move the scraping machine along the length of the carpet, the second rodless cylinder can be activated to move the scraping machine closer to the carpet, and the motor can be rotated to change the scraping direction. When the scraping machine is activated, it can automatically scrape the carpet instead of manually, which helps to improve the efficiency of removing broken or loose fibers from the carpet, reduce labor costs, and improve production efficiency. Attached Figure Description
[0029] Figure 1 This is a schematic diagram of the overall structure of the carpet textile processing and leveling machine of this application;
[0030] Figure 2 This is a schematic diagram of the overall structure of the shaving machine body of this application;
[0031] Figure 3 yes Figure 1 An enlarged view of part A;
[0032] Figure 4 yes Figure 1 An enlarged view of part B;
[0033] Figure 5 This is a schematic diagram of the overall structure of the winding mechanism in this application.
[0034] Explanation of reference numerals in the attached drawings: 1. Machine base; 11. First rodless cylinder; 12. Well-shaped groove; 13. Fixing hole; 2. Support rod; 21. Crossbar; 22. Sliding motor; 23. Rack; 24. Moving gear; 25. Control host; 3. Sliding frame; 31. Second rodless cylinder; 32. Fixing platform; 33. Scraping machine body; 331. Lug; 332. Buffer hole; 34. Rotating motor; 4. Buffer frame; 41. Limit rod; 42. Limit. 43. Hole; 5. Limiting plate; 6. Support belt; 7. Wire fixing seat; 8. Take-up roller; 9. Wedge block; 10. Moving rod; 11. Control gear; 12. Abutment ring; 13. Spring; 14. Fixing frame; 15. Pressing block; 16. Screw; 17. Guide rod; 18. Take-up roller; 19. Insert block; 10. Take-up groove; 11. Connecting plate; 12. First slot; 13. Rotating groove; 14. Drive motor; 15. Round block; 16. Second slot. Detailed Implementation
[0035] The following is in conjunction with the appendix Figure 1-5 This application will be described in further detail.
[0036] Example:
[0037] See Figure 1 and Figure 2 A carpet weaving and flattening machine includes a machine base 1, which is placed on the ground and has a carpet covering its top surface. Two first rodless cylinders 11 are fixed to both sides of the machine base 1, with the length of both cylinders being the same as the length of the machine base 1. Support rods 2 are fixed to the sliding ends of the two cylinders 11. The two support rods 2 are vertically arranged, and a crossbar 21 is fixedly connected to the top of each support rod 2. A sliding frame 3 slides along one side of the crossbar 21. The crossbar 3 has an L-shaped cross-section, and the crossbar 21 has a sliding assembly for driving the sliding frame 3 to slide along the length of the crossbar 21. A second rodless cylinder 31 is fixed to the outer wall of the sliding frame 3. The second rodless cylinder 31 is vertically arranged, and a fixed platform 32 is fixed to the sliding end of the second rodless cylinder 31. A scraping machine body 33 rotates below the fixed platform 32 and is used to remove broken yarn and loose fibers from the carpet. A rotating motor 34 is fixed on the top surface of the fixed platform 32. The output shaft of the rotating motor 34 passes through the fixed platform 32 and extends to the bottom of the fixed platform 32. The output shaft of the rotating motor 34 is fixedly connected to the hair removal machine body 33.
[0038] For details, see Figure 1 and Figure 2The sliding assembly includes a sliding motor 22, a rack 23 fixed on the top surface of the crossbar 21, the sliding motor 22 fixed on the top surface of the sliding frame 3, the output shaft of the sliding motor 22 passing through the sliding frame 3 and extending to the top surface of the crossbar 21, and a moving gear 24 coaxially fixed on the output shaft of the sliding motor 22, the moving gear 24 meshing with the rack 23.
[0039] It is worth mentioning that, see Figure 1 and Figure 2 To facilitate the control of the opening and closing of the first rodless cylinder 11, the second rodless cylinder 31, the sliding motor 22, the rotating motor 34, and the shaving machine body 33, a control host 25 is fixedly installed at one end of the crossbar 21, and the control host 25 is electrically connected to the first rodless cylinder 11, the second rodless cylinder 31, the sliding motor 22, the rotating motor 34, and the shaving machine body 33 respectively.
[0040] When the first rodless cylinder 11 is activated via the control host 25, it ultimately moves the scraping machine body 33 along the length of the carpet. When the sliding motor 22 is activated via the control host 25, it ultimately moves the scraping machine body 33 along the width of the carpet. When the second rodless cylinder 31 is activated via the control host 25, it ultimately moves the scraping machine body 33 closer to the carpet. When the rotary motor 34 is activated via the control host 25, it ultimately rotates the scraping machine body 33, changing the scraping angle. When the scraping machine body 33 is activated via the control host 25, it begins to remove lint from the carpet.
[0041] See Figure 2 To improve the adaptability of the napping machine body 33 to carpets with uneven surfaces, the napping machine body 33 is equipped with a cushioning assembly, which includes a cushioning frame 4. The cushioning frame 4 is shaped like a "7" and is fixed to the output shaft of the rotating motor 34. Symmetrically fixed lugs 331 are fixed to the top surface of the napping machine body 33. A cushioning hole 332 passes through one side of each lug 331, and the lugs 331 are fitted onto the cushioning frame 4 through the cushioning hole 332.
[0042] See Figure 2 To minimize the sliding of the two lugs 331 on the buffer frame 4, the buffer frame 4 is equipped with a limiting component, which includes a limiting rod 41. The limiting rod 41 is positioned on one side of the shaving machine body 33, and one end of the limiting rod 41 is hinged to the shaving machine body 33. The end of the buffer frame 4 away from the rotating motor 34 passes through a limiting hole 42, and the other end of the limiting rod 41 is inserted into the limiting hole 42. Two limiting pieces 43 are fixed to the side wall of the limiting rod 41, and the two limiting pieces 43 surround the two sides of the limiting hole 42.
[0043] When the scraping machine 33 scrapes the carpet and encounters a raised area, the carpet pulls the scraping machine 33 upwards. The scraping machine 33 then moves the two lugs 331 through the buffer holes 332 onto the buffer frame 4. The scraping machine 33 also causes the limiting rod 41 to swing within the limiting hole 42. However, under the action of the two limiting plates 43, the scraping machine 33 stably performs hair removal and cleaning on the buffer frame 4.
[0044] See Figure 1 Because the carpet area is large, the span of the machine 1 is also large. Therefore, to minimize the risk of collapse due to the large span in the middle of the machine 1, which would cause uneven carpet removal by the scraping machine 33, the machine 1 is equipped with a support device for the carpet, including support belts 5. Multiple support belts 5 are provided; in this embodiment, three are arranged horizontally and four vertically. A groove 12 is correspondingly formed on the top surface of the machine 1, and the three horizontal and three vertical support belts 5 are laid within the groove 12. A wire fixing seat 51 is fixed to one of the adjacent two sides of the machine 1, the number of wire fixing seats 51 corresponding to the number of support belts 5, and one end of each support belt 5 is fixedly connected to the wire fixing seat 51.
[0045] See Figure 1 and Figure 3 To facilitate tensioning of the support belt 5, a tensioning mechanism is provided on the other adjacent sides of the machine base 1. The tensioning mechanism includes a take-up wheel 52. The number of take-up wheels 52 is consistent with the number of support belts 5. The take-up wheels 52 rotate on the other adjacent sides of the machine base 1, and the end of the support belt 5 away from the fixed wire seat 51 is wound into the take-up wheel 52.
[0046] See Figure 3 To facilitate control of the rotation direction of the take-up reel 52 and ensure that it maintains tension on the support belt 5, the machine base 1 is equipped with a control assembly, which includes a wedge block 53. Additionally, two adjacent movable rods 54 are mounted on the machine base 1. The movable rods 54 are horizontally positioned, and the wedge block 53 is fixed to the end of the movable rod 54 facing away from the machine base 1. A control gear 55 is coaxially fixed to one side of the take-up reel 52, and the wedge block 53 cooperates with the control gear 55. A retaining ring 56 is provided on the side wall of the movable rod 54, and a spring 57 is fitted onto the side wall of the movable rod 54. One end of the spring 57 is fixedly connected to the side of the retaining ring 56 facing the machine base 1, and the other end of the spring 57 is fixedly connected to the side wall of the machine base 1.
[0047] When tensioning of the support belt 5 is required, the take-up wheel 52 rotates in the direction of taking up the support belt 5. At this time, the take-up wheel 52 drives the control gear 55 to rotate, and the take-up wheel 52 winds up the support belt 5 inside, thus tensioning the support belt 5 on the machine base 1. In the natural state of the spring 57, the spring 57 drives the moving rod 54 to move closer to the control gear 55 through the abutment ring 56. The moving rod 54 drives the wedge block 53 to move closer to the control gear 55. At this time, the wedge block 53 is always engaged with the root of the control gear 55, and the control gear 55 can only rotate in the direction of taking up the support belt 5.
[0048] See Figure 1 and Figure 4 To facilitate the clamping and flattening of the carpet on the machine base 1, clamping components are provided at the corners of the machine base 1, each including a clamping block 61. A fixing hole 13 passes through each corner of the machine base 1, the projection of which is triangular. A fixing frame 6 is fixed within the fixing hole 13, forming a clamping space with the fixing hole 13. A screw 62 is threaded through the fixing frame 6. The clamping block 61 moves within the clamping space, and the end of the screw 62 facing the clamping space is rotatably connected to the clamping block 61. Two guide rods 63 are fixed to the side of the clamping block 61 facing the fixing frame 6, passing through the fixing frame 6 and slidably connected to it.
[0049] When it is necessary to fix and clamp the carpet and lay it flat, fold the corner of the carpet into the clamping space, and then rotate the screw 62. Under the guidance of the two guide rods 63, the screw 62 drives the clamping block 61 to move towards the carpet. At this time, the clamping block 61 presses against the corner of the carpet.
[0050] It is worth noting that, as the corners of the carpet are folded into the clamping space, the friction between the carpet and the machine 1 increases, which helps to minimize the risk of the carpet shifting during the removal process.
[0051] See Figure 1 and Figure 5 A winding mechanism is provided on one side of the machine base 1 near the fixed base 51. The winding mechanism is used to wind up the carpet that has been depilated or is about to be depilated. The winding mechanism includes a winding roller 7 and a drive assembly for driving the winding roller 7 to rotate. Connecting plates 8 are symmetrically fixed on one side of the machine base 1 near the fixed base 51. The winding roller 7 rotates between the two connecting plates 8. Insert blocks 71 are fixed at both ends of the winding roller 7. A first slot 81 is opened on the opposite side of the two connecting plates 8, and the insert blocks 71 are inserted into the first slot 81.
[0052] For details, see Figure 5The drive assembly includes a drive motor 9 and a circular block 91. A rotating groove 82 is formed on one side of each of the two connecting plates 8, and the rotating groove 82 is connected to a first slot 81, within which the circular block 91 rotates. A second slot 92 is formed on the side of the circular block 91 facing the take-up roller 7, and the second slot 92 is connected to the first slot 81, with an insert 71 inserted into it. The drive motor 9 is fixed to one of the connecting plates 8 on the side opposite to the take-up roller 7, and the output shaft of the drive motor 9 passes through the connecting plate 8 and is coaxially and fixedly connected to the circular block 91.
[0053] When the drive motor 9 starts, the output shaft of the drive motor 9 drives the circular block 91 to rotate. The circular block 91 drives the take-up roller 7 to rotate through the insert block 71. At this time, the take-up roller 7 rolls up the carpet. When it is necessary to remove the take-up roller 7, align the first slot 81 with the second slot 92, and then slide the insert block 71 out to remove it, thereby realizing the disassembly of the take-up roller 7.
[0054] It is worth noting that, as shown in the figure, in order to facilitate the winding of the carpet by the winding roller 7, the side wall of the winding roller 7 has a winding groove 72.
[0055] When it is necessary to roll up the carpet, insert one side of the carpet into the take-up groove 72, and then rotate the take-up roller 7. At this time, the take-up roller 7 will stably roll up the carpet.
[0056] Working principle of a carpet textile processing and flattening machine:
[0057] When removing loose or broken fibers from a carpet, first lay the carpet on the machine platform 1, then fold the corners of the carpet into the clamping space. Next, rotate the tightening screw 62. Under the action of the guide rod 63, the screw 62 drives the clamping block 61 to move closer to the carpet. At this time, the clamping block 61 presses against the carpet, and the carpet is fixed and laid flat on the machine platform 1. Then, the support belts 5 are tensioned sequentially, and the winding wheel 52 is rotated to allow multiple support belts 5 to simultaneously assist the machine platform 1 in supporting the carpet. Next, start the control host 25. The first rodless cylinder 11 ultimately drives the scraping machine body 33 to move along the width of the carpet, the sliding motor 22 ultimately drives the scraping machine body 33 to move along the length of the carpet, the second rodless cylinder 31 ultimately drives the scraping machine body 33 to move closer to the carpet, and the rotating motor 34 ultimately drives the scraping machine body 33 to change the direction of hair removal. Finally, start the scraping machine body 33 again. At this time, the scraping machine body 33 can automatically perform hair removal on the carpet instead of handheld operation.
[0058] In summary, the scraping machine 33 can automatically scrape carpets instead of handheld methods, thereby improving the efficiency of removing broken and loose fibers from the carpet, reducing labor costs, and increasing production efficiency.
[0059] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.
Claims
1. A carpet weaving and flattening machine, comprising a machine base (1) with a carpet laid on its top surface, characterized in that: The machine base (1) is provided with first rodless cylinders (11) on both sides respectively. Support rods (2) are provided on the sliding ends of the two first rodless cylinders (11). The top ends of the two support rods (2) are connected to a crossbar (21). A sliding frame (3) is slidably provided on one side of the crossbar (21). A second rodless cylinder (31) is provided on one side of the sliding frame (3). A fixed platform (32) is provided on the sliding end of the second rodless cylinder (31). A shaving machine body (33) is rotatably provided below the fixed platform (32). A sliding component for driving the sliding frame (3) to slide along the crossbar (21) is provided on the crossbar (21). A rotating motor (34) is provided on the top surface of the fixed platform (32). The drive shaft of the rotating motor (34) passes through the fixed platform (32) and is fixedly connected to the shaving machine body (33). The shaving machine body (33) is provided with a buffer assembly for adapting to the uneven surface of the carpet. The buffer assembly includes a buffer frame (4), which is located on the output shaft of the rotating motor (34). The top surface of the shaving machine body (33) is symmetrically provided with a lug (331). The side wall of the lug (331) is provided with a buffer hole (332). The lug (331) is fitted onto the buffer frame (4) through the buffer hole (332). The buffer frame (4) is provided with a limiting component for restricting the left and right movement of the shaving machine body (33). The limiting component includes a limiting rod (41), one end of which is hinged to the shaving machine body (33). A limiting hole (42) is provided through the side of the buffer frame (4) away from the lug (331). The other end of the limiting rod (41) is inserted into the limiting hole (42). Two limiting pieces (43) are provided on the side wall of the limiting rod (41), and the two limiting pieces (43) surround the two sides of the limiting hole (42).
2. The carpet weaving and flattening machine according to claim 1, characterized in that: The machine (1) is equipped with a support device for supporting the carpet. The support device includes multiple support belts (5). A well-shaped groove (12) is opened on the top surface of the machine (1). The multiple support belts (5) are laid in the well-shaped groove (12). A wire fixing seat (51) is provided on one of the adjacent sides of the machine (1). One end of the multiple support belts (5) is fixedly connected to the wire fixing seat (51). A tensioning mechanism for tightening the support belts (5) is provided on the other adjacent sides of the machine (1).
3. The carpet weaving and flattening machine according to claim 2, characterized in that: The tensioning mechanism includes a take-up wheel (52), which rotates on the side wall of the machine base (1). The end of the support belt (5) away from the wire fixing seat (51) is wound into the take-up wheel (52). A control gear (55) is coaxially rotatably provided on one side of the take-up wheel (52). The machine base (1) is provided with a control component for controlling the rotation direction of the control gear (55).
4. A carpet weaving and flattening machine according to claim 3, characterized in that: The control component includes a wedge block (53), and a moving rod (54) is movably provided on the side wall of the machine base (1). The wedge block (53) is fixed to one end of the moving rod (54) facing the control gear (55). The wedge block (53) and the control gear (55) cooperate with each other. The side wall fixing ring of the moving rod (54) is provided with an abutment ring (56). The moving rod (54) is sleeved with a spring (57). One end of the spring (57) is fixedly connected to the abutment ring (56), and the other end of the spring (57) is fixedly connected to the side wall of the machine base (1).
5. A carpet textile processing leveling machine according to claim 1, characterized in that: The end corners of the machine (1) are respectively provided with clamping components for clamping carpets. The clamping components include a pressing block (61). The end corners of the machine (1) are provided with a fixing hole (13). A fixing frame (6) is provided in the fixing hole (13). A screw (62) is threaded through the fixing frame (6). The pressing block (61) rotates at one end of the screw (62). A guide rod (63) is provided on the side of the pressing block (61) facing the fixing frame (6). The guide rod (63) is slidably connected to the fixing frame (6).
6. A carpet textile processing leveling machine according to claim 1, characterized in that: A winding mechanism for winding carpet is provided on one side of the machine base (1). The winding mechanism includes a winding roller (7) and a drive assembly for driving the winding roller (7) to rotate. A connecting plate (8) is symmetrically arranged on one side of the machine base (1). A first slot (81) is opened on the inner side of the connecting plate (8). A plug (71) is provided at both ends of the winding roller (7). The plug (71) is inserted into the first slot (81). The drive assembly is located on one of the connecting plates (8) on the side away from the winding roller (7).
7. A carpet textile processing leveling machine according to claim 6, wherein: The drive assembly includes a drive motor (9) and a circular block (91). The inner side of the connecting plate (8) is provided with a rotating groove (82). The circular block (91) rotates in the rotating groove (82). The inner side of the circular block (91) is provided with a second slot (92). The second slot (92) is connected to the first slot (81). The insert (71) is inserted into the second slot (92). The drive motor (9) is located on the side of the connecting plate (8) away from the take-up roller (7). The output shaft of the drive motor (9) passes through the connecting plate (8) and is fixedly connected to the circular block (91).
8. A carpet weaving and flattening machine according to claim 6, characterized in that: The take-up roller (7) has a take-up groove (72) on its side wall.
Citation Information
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