Wiping cloth quantitative cutting device
By using a lifting structure and a laterally moving cutting module, combined with negative pressure air holes and an adjustable spacing structure, the problems of non-adjustable cutting length and fabric slippage in existing technologies have been solved, achieving automated cutting and material stability, and reducing material scrap rate.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU SUNAKE SANITARY PRODUCTS CO LTD
- Filing Date
- 2025-04-16
- Publication Date
- 2026-05-26
AI Technical Summary
Existing fabric cutting devices cannot adapt to changes in cutting length, resulting in an inability to automatically adjust the cutting length, and the fabric is prone to slipping during the cutting process, leading to material scrap.
The device employs a lifting structure and a laterally moving cutting module, combined with negative pressure air holes and an adjustable structure. By using pressure blocks and deformation springs to keep the wiping cloth stable, it achieves automated cutting length adjustment and prevents the fabric from slipping.
It enables automated adjustment of cutting length, reduces material waste, and improves the stability and efficiency of the cutting process.
Smart Images

Figure CN224280850U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of fiber equipment, and in particular relates to a quantitative cutting device for wiping cloth. Background Technology
[0002] Cleanroom wipes possess strong absorbency, abrasion resistance, softness, acid and alkali resistance, and dust removal capabilities. Because they effectively remove dust, liquids, and oil from surfaces without damaging or scratching them, they are widely used in cleanrooms to remove spills, excess processing chemicals, debris, and dust particles from sensitive devices. Currently, cleanroom wipes are widely used in precision electronics manufacturing, medical, bioengineering, optics, and petrochemical industries.
[0003] A fabric cutting device is a processing equipment specifically used for cutting fabric. Existing fabric cutting devices include a worktable, a pressure plate, a cutting groove, and a cutting machine. During operation, the fabric to be cut is placed on the worktable, the pressure plate presses the fabric, and then the cutting machine cuts the fabric. However, the cutting length is fixed and cannot be adjusted, making it unsuitable for situations where the cutting length varies.
[0004] For example, Chinese patent literature discloses a fabric cutting device for a cutting machine [patent application number: CN202022970228.7], which includes a worktable with a through hole penetrating the worktable body. A support platform is fixedly connected to the upper side of the worktable. During operation, the fabric is placed on the worktable, and then the first cylinder operates to press the fabric with a fixing block. The second cylinder operates to extend the cutting blade to a suitable height. Then, the motor operates to drive the nut to rotate, thereby driving the movement of the second cylinder, which in turn drives the movement of the cutting blade to achieve the cutting of the fabric. In this utility model, when cutting the fabric, the fabric is located on the upper side of the worktable. The fabric is pressed by using a fixing frame, the first cylinder, and the fixing block. The cutting blade located on the lower side of the worktable cuts the fabric. Utility Model Content
[0005] The purpose of this invention is to address the above-mentioned problems by providing a quantitative cutting device for wiping cloths.
[0006] To achieve the above objectives, the present invention adopts the following technical solution:
[0007] A quantitative cutting device for wiping cloth includes a cutting table, a cutting device above the cutting table, the cutting device being mounted on the cutting table or frame via a lifting structure, the cutting device being movable vertically, and a plurality of cutting modules being mounted on the cutting device being movable laterally. A plurality of desktop modules corresponding one-to-one with the cutting modules are slidably connected to the cutting table, and the desktop modules and the cutting modules are connected to a horizontal linear actuator.
[0008] In the above-mentioned wiping cloth quantitative cutting device, the desktop module is provided with a cutting groove, and the desktop module is also provided with several negative pressure air holes, which are connected to a negative pressure device. Each end of the cutting table is provided with a stop block, and the upper surface of the stop block is flush with the upper surface of the desktop module.
[0009] In the above-mentioned wiping cloth quantitative cutting device, the cutting device includes two support blocks, one of which is equipped with a rotating motor. The output shaft of the rotating motor is connected to a rotating shaft, which is rotatably connected to the other support block. A sliding rod is also provided between the two support blocks. The cutting module is slidably connected to the sliding rod. The cutting module is equipped with a cutting blade, which is connected to the rotating shaft.
[0010] In the above-mentioned wiping cloth quantitative cutting device, the cutting module further includes a sleeve shaft and a cutting support box. The cutting support box is slidably connected to the slide rod. The cutting blade is sleeved on the outside of the sleeve shaft. The outer surface of the rotating shaft is provided with several connecting strips, which pass through the sleeve shaft and are slidably connected to it.
[0011] In the above-mentioned wiping cloth quantitative cutting device, the cutting module further includes pressing blocks located at both ends of the cutting support box. The pressing blocks and the cutting support box are provided with an adjustable distance structure. The pressing blocks can move along the vertical direction and can abut against the desktop module.
[0012] In the above-mentioned wiping cloth quantitative cutting device, the pressing block is slidably connected to the cutting support box, and the adjusting structure includes a deformable spring located between the pressing block and the cutting support box.
[0013] In the aforementioned wiping cloth quantitative cutting device, the lower end of the support block is provided with an adjustment structure and a pressing block.
[0014] In the above-mentioned wiping cloth quantitative cutting device, the lower surface of the pressing block is provided with an anti-slip pad.
[0015] In the aforementioned wiping cloth quantitative cutting device, the desktop module and the cutting module are connected by a connecting rod or sense each other's positions through sensors.
[0016] Compared with existing technologies, the advantages of this utility model are:
[0017] 1. The cutting process is automated and can be adjusted to different cutting lengths as required, eliminating the need for manual adjustment and cutting.
[0018] 2. When the wiping cloth is placed on the desktop module, the negative pressure device works to keep the negative pressure vent under negative pressure, which can effectively prevent the wiping cloth from sliding during the cutting process and reduce the material scrap rate.
[0019] 3. As the cutting module continues to move downward, the adjusting structure causes the pressure block to move upward relative to the cutting support box, so that the pressure block always presses the wiping cloth on the desktop module and prevents the wiping cloth from moving during the cutting process.
[0020] 4. The deformable spring provides downward pressure, causing the pressure block to press the wiping cloth firmly onto the desktop module, further preventing the wiping cloth from moving.
[0021] 5. The lower surface of the pressure block is equipped with an anti-slip pad to further prevent the wiping cloth from moving. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the overall structure;
[0023] Figure 2 This is a structural diagram of the cutting module;
[0024] Figure 3 yes Figure 2 A diagram from another direction;
[0025] Figure 4 This is a diagram showing another direction of the desktop module.
[0026] In the diagram: cutting table 10, cutting module 11, desktop module 12, cutting groove 13, negative pressure air hole 14, abutment block 15, support block 16, rotating motor 17, rotating shaft 18, slide rod 19, cutting blade disc 20, sleeve shaft 21, connecting strip 22, abutment block 23, deformation spring 24, cutting support box 25. Detailed Implementation
[0027] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.
[0028] This utility model provides a quantitative cutting device for wiping cloths, combined with... Figure 1-4As shown, the device includes a cutting table 10, with a cutting device mounted above the cutting table 10. The cutting device is mounted on the cutting table 10 or a frame via a lifting structure and can move vertically. The cutting device has several cutting modules 11 that can move horizontally. Several desktop modules 12 corresponding to the cutting modules 11 are slidably connected to the cutting table 10. The desktop modules 12 and the cutting modules 11 are connected to a horizontal linear actuator.
[0029] In this embodiment, the wiping cloth is placed on the cutting table 10 and rests against the desktop module 12. According to the cutting length, several cutting modules 11 and desktop modules 12 are moved to a designated position so that the cutting module 11 corresponds to the position of the corresponding desktop module 12. Then, under the action of the lifting structure, the cutting module 11 moves downward, and the blade inside the cutting module 11 rotates to complete the cutting work. The cutting process is automated and different cutting lengths can be adjusted according to requirements, without the need for manual adjustment and cutting.
[0030] The desktop module 12 is provided with a cutting groove 13, and a number of negative pressure air holes 14 are also provided through the desktop module 12. The negative pressure air holes 14 are connected to a negative pressure device. A stop block 15 is provided at each end of the cutting table 10. The upper surface of the stop block 15 is flush with the upper surface of the desktop module 12.
[0031] In this embodiment, when the wiping cloth is placed on the desktop module 12, the negative pressure device works to keep the negative pressure vent 14 under negative pressure, thereby effectively preventing the wiping cloth from sliding during the cutting process and reducing the material scrap rate.
[0032] The cutting device includes two support blocks 16, one of which is equipped with a rotating motor 17. The output shaft of the rotating motor 17 is connected to a rotating shaft 18, which is rotatably connected to the other support block 16. A sliding rod 19 is also provided between the two support blocks 16. The cutting module 11 is slidably connected to the sliding rod 19. The cutting module 11 is equipped with a cutting blade 20, which is connected to the rotating shaft 18.
[0033] The cutting module 11 also includes a sleeve shaft 21 and a cutting support box 25. The cutting support box 25 is slidably connected to the slide rod 19. The cutting blade disc 20 is sleeved on the outside of the sleeve shaft 21. The outer surface of the rotating shaft 18 is provided with several connecting strips 22, which pass through the sleeve shaft 21 and are slidably connected to it.
[0034] The cutting module 11 also includes pressing blocks 23 located at both ends of the cutting support box 25. The pressing blocks 23 and the cutting support box 25 are provided with an adjustable distance structure. The pressing blocks 23 can move along the vertical direction and can abut against the desktop module 12.
[0035] In this embodiment, as the cutting module 11 moves downward, the pressing block 23 first comes into contact with the wiping cloth. As the cutting module 11 continues to move downward, the adjusting structure causes the pressing block 23 to move upward relative to the cutting support box 25, so that the pressing block 23 always presses the wiping cloth on the desktop module 12 and prevents the wiping cloth from moving during the cutting process.
[0036] The pressing block 23 is slidably connected to the cutting support box 25, and the adjusting structure includes a deformable spring 24 located between the pressing block 23 and the cutting support box 25.
[0037] In this embodiment, as the cutting module 11 moves downward, the pressing block 23 first comes into contact with the wiping cloth. As the cutting module 11 continues to move downward, the deformable spring 24 provides downward pressure to press the pressing block 23 firmly onto the desktop module 12, further preventing the wiping cloth from moving.
[0038] The lower end of the support block 16 is provided with an adjustable distance structure and a pressing block 23.
[0039] In this embodiment, the wiping cloth is further prevented from moving.
[0040] The lower surface of the pressing block 23 is provided with an anti-slip pad.
[0041] In this embodiment, the wiping cloth is further prevented from moving.
[0042] The desktop module 12 and the cutting module 11 are connected by a connecting rod or sense each other's positions through sensors.
[0043] In this embodiment, the desktop module 12 and the cutting module 11 are aligned.
[0044] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.
[0045] Although this article frequently uses terms such as cutting table 10, cutting module 11, desktop module 12, cutting groove 13, negative pressure air hole 14, abutment block 15, support block 16, rotating motor 17, rotating shaft 18, slide rod 19, cutting blade disc 20, sleeve shaft 21, connecting strip 22, pressing block 23, deformation spring 24, and cutting support box 25, these terms are used merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any kind of additional limitation would be contrary to the spirit of this utility model.
Claims
1. A device for quantitatively cutting wiping cloths, characterized in that, The device includes a cutting table (10), and a cutting device is provided above the cutting table (10). The cutting device is set on the cutting table (10) or the frame through a lifting structure. The cutting device can move in the vertical direction. The cutting device is provided with several cutting modules (11) that can move horizontally. Several desktop modules (12) corresponding to the cutting modules (11) are slidably connected on the cutting table (10). The desktop modules (12) and the cutting modules (11) are connected to a horizontal linear drive.
2. The wiping cloth quantitative cutting device according to claim 1, characterized in that, The desktop module (12) is provided with a cutting groove (13), and the desktop module (12) is also provided with several negative pressure air holes (14). The negative pressure air holes (14) are connected to a negative pressure device. The cutting table (10) is provided with a stop block (15) at both ends. The upper surface of the stop block (15) is flush with the upper surface of the desktop module (12).
3. The wiping cloth quantitative cutting device according to claim 2, characterized in that, The cutting device includes two support blocks (16), one of which is equipped with a rotating motor (17). The output shaft of the rotating motor (17) is connected to a rotating shaft (18). The rotating shaft (18) is rotatably connected to the other support block (16). A sliding rod (19) is also provided between the two support blocks (16). The cutting module (11) is slidably connected to the sliding rod (19). The cutting module (11) is equipped with a cutting blade disc (20), which is connected to the rotating shaft (18).
4. The wiping cloth quantitative cutting device according to claim 3, characterized in that, The cutting module (11) further includes a sleeve shaft (21) and a cutting support box (25). The cutting support box (25) is slidably connected to the slide rod (19). The cutting blade disc (20) is sleeved on the outside of the sleeve shaft (21). The outer surface of the rotating shaft (18) is provided with several connecting strips (22). Several connecting strips (22) pass through the sleeve shaft (21) and are slidably connected to it.
5. The wiping cloth quantitative cutting device according to claim 4, characterized in that, The cutting module (11) also includes pressing blocks (23) located at both ends of the cutting support box (25). The pressing blocks (23) and the cutting support box (25) are provided with an adjustable distance structure. The pressing blocks (23) can move in the vertical direction and can abut against the desktop module (12).
6. The wiping cloth quantitative cutting device according to claim 5, characterized in that, The pressing block (23) is slidably connected to the cutting support box (25), and the adjusting structure includes a deformable spring (24) located between the pressing block (23) and the cutting support box (25).
7. The wiping cloth quantitative cutting device according to claim 6, characterized in that, The lower end of the support block (16) is provided with an adjustable distance structure and a pressing block (23).
8. The wiping cloth quantitative cutting device according to claim 6, characterized in that, The lower surface of the pressing block (23) is provided with an anti-slip pad.
9. The wiping cloth quantitative cutting device according to claim 1, characterized in that, The desktop module (12) and the cutting module (11) are connected by a connecting rod or sense each other's positions through sensors.