A gauze surface cleaning device

By combining a suction and adhesive mechanism in the gauze surface cleaning device, the problem of poor cleaning effect of traditional gauze dust removal equipment is solved, achieving more efficient removal of impurities from the gauze surface and more stable gauze conveying.

CN118547485BActive Publication Date: 2026-03-03WUJIANG MINGZHU TEXTILE
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202410647129.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-23
Publication Date
2026-03-03
Estimated Expiration
2044-05-23

AI Technical Summary

Technical Problem

Traditional gauze dust removal equipment has insufficient suction power, resulting in poor removal of impurities such as lint adhering to the gauze surface.

Method used

A gauze surface cleaning device was designed, which adopts a double-sided suction mechanism and an adhesive mechanism. By combining the support conveyor roller and the adhesive roller, the gauze can be cleaned on both sides. The effective replacement of the adhesive roller and the tension of the gauze are ensured by the drive component and the adjustment mechanism.

Benefits of technology

It improves the removal of impurities from the gauze surface, reduces the phenomenon of impurities adhering to the adhesive roller, and ensures the stability and cleaning efficiency during the gauze conveying process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118547485B_ABST
    Figure CN118547485B_ABST
Patent Text Reader

Abstract

The application relates to the technical field of gauze processing, in particular to a gauze surface cleaning device which comprises a main body, first supporting blocks, supporting conveying rollers and air suction mechanisms, the first supporting blocks are provided in plurality, the first supporting blocks are arranged on the main body in plurality, the supporting conveying rollers are arranged on each of the first supporting blocks, the air suction mechanisms are provided in two, the air suction mechanisms are arranged on the main body in two, the gauze surface cleaning device further comprises sticking mechanisms, the sticking mechanisms are provided in two, the sticking mechanisms comprise second supporting blocks, rotating discs, sticking rollers and driving assemblies, the second supporting blocks are arranged on the main body, the rotating discs are rotationally arranged on the second supporting blocks through the driving assemblies, the rotating discs in the two sticking mechanisms are respectively located on two sides of gauze, the sticking rollers are provided in at least two, all the sticking rollers are arranged on the rotating discs, and one of the sticking rollers abuts against the gauze. The application has the effect of improving the processing effect of gauze.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the technical field of gauze treatment, and in particular to a gauze surface cleaning device. Background Technology

[0002] Gauze is a loosely woven cotton fabric, belonging to the textile raw materials. Ordinary gauze can be used for mosquito nets, and some gauze is also used for medical supplies, such as bandages and masks. Usually, gauze needs to undergo dust removal treatment after weaving to improve its quality.

[0003] Currently, traditional gauze dust removal equipment uses a suction method, placing the suction port close to the surface of the gauze to extract impurities from the gauze surface.

[0004] However, in order to reduce damage to the gauze when the exhaust pipe is used, the suction force is generally not very large. Therefore, the exhaust can only remove some impurities on the surface of the gauze, and it is not very effective at removing lint and other debris stuck to the surface of the gauze. Summary of the Invention

[0005] To improve the treatment effect of gauze, this application provides a gauze surface cleaning device.

[0006] This application provides a gauze surface cleaning device, which adopts the following technical solution:

[0007] A gauze surface cleaning device includes a main body, a first support block, a support conveying roller, and a suction mechanism. Multiple first support blocks are provided, all mounted on the main body, and each first support block has a support conveying roller. Two suction mechanisms are provided, both mounted on the main body, and each suction mechanism cleans both sides of the gauze. The device also includes two adhesive mechanisms, each comprising a second support block, a turntable, an adhesive roller, and a drive assembly. The second support block is mounted on the main body, and the turntable is rotatably mounted on the second support block via the drive assembly. Two of the turntables in the adhesive mechanisms are located on both sides of the gauze. At least two adhesive rollers are provided, all mounted on the turntable, with one adhesive roller contacting the gauze.

[0008] By adopting the above technical solution, the fabric bypasses the support conveying rollers on multiple first support blocks. Then, two suction mechanisms process both sides of the fabric. Next, the adhesive rollers in the two adhesive mechanisms come into contact with the fabric. As the fabric moves, it drives the adhesive rollers to rotate. When the cleaning effect of the adhesive rollers that were in contact with the fabric weakens, the drive assembly is activated. The drive assembly drives the turntable to rotate, so that the adhesive rollers that were previously in contact with the fabric no longer come into contact with the fabric, and one of the adhesive rollers that were not previously in contact with the fabric comes into contact with the fabric. Therefore, the adhesive mechanism can better clean impurities on the fabric, thereby improving the processing effect of the fabric.

[0009] Optionally, the adhesive roller includes a rotating roller and an adhesive layer. Multiple layers of the adhesive layer are disposed on the rotating roller, and adjacent adhesive layers are adhered to the adhesive layer. An adjustment mechanism is disposed on the turntable. The adjustment mechanism includes an adjustment block and an adjustment component. Multiple sliding holes are formed on the turntable, and each sliding hole corresponds to one of the adhesive rollers. The adjustment block is slidably disposed in the sliding hole, and the rotating roller is rotatably disposed on the adjustment block. The adjustment component is disposed on the turntable and connected to the adjustment block.

[0010] By adopting the above technical solution, when the adhesive layer away from the rotating roller weakens its ability to adhere to impurities, the drive assembly is activated first. The drive assembly drives the turntable to rotate, so that the adhesive layer that was originally in contact with the gauze no longer contacts the gauze, and the adhesive layer on the adhesive roller that was not originally in contact with the gauze contacts the gauze. Then, the operator peels off the adhesive layer that is away from the rotating roller and has a poor adhesion effect from the rotating roller. After the adhesive layer with a poor adhesion effect is peeled off, the position of the adhesive rollers will change. Therefore, when the turntable rotates, the turntable drives the adjusting block to move in the sliding hole through the adjusting assembly, so that the position of the adjusting block drives the rotating roller to change. When the adhesive roller that has peeled off the layer with a poor adhesion effect contacts the gauze again, the adhesive layer that is away from the rotating roller and close to the peeled adhesive layer will not change the position of the gauze relative to the main body when it contacts the gauze, thus ensuring the tension of the gauze during conveying.

[0011] Optionally, the adjustment assembly includes an adjustment screw, an adjustment shaft, a first bevel gear, a second bevel gear, a second gear, a fixing sleeve, and a first gear. Multiple adjustment screws are provided, each corresponding to one of the adjustment blocks. The adjustment screw passes through the adjustment block and is threadedly connected to it. Multiple adjustment shafts are rotatably mounted on the turntable, each corresponding to one of the adjustment screws. One end of the adjustment shaft is keyed to the first bevel gear, and a second bevel gear meshing with the first bevel gear is keyed to the adjustment screw. The end of the adjustment shaft away from the first bevel gear is keyed to the second gear. A fixing sleeve is provided on the turntable, and the first gear is keyed to the fixing sleeve. All the second gears on the adjustment shafts mesh with the first gear.

[0012] By adopting the above technical solution, when the drive component drives the turntable to rotate, the position of the adjustment shaft on the turntable will change. Because the second gear on the adjustment shaft meshes with the fixed first gear, when the position of the second gear relative to the first gear changes, the second gear will rotate relative to the first gear. The second gear drives the adjustment shaft to rotate, and the first bevel gear on the adjustment shaft will drive the second bevel gear to rotate. The second bevel gear drives the adjustment screw to rotate, and the adjustment screw will drive the adjustment block to move away from the center of the turntable in the sliding hole. Thus, when the adhesive layer with poor adhesion is torn off, and the adhesive layer near the torn adhesive layer is in contact with the gauze, the position of the gauze relative to the main body remains unchanged, thereby ensuring the tension of the gauze.

[0013] Optionally, the adjusting block is provided with a rotating connecting mechanism connected to the rotating roller. The rotating connecting mechanism includes a limiting block, a first fixing bolt, a connecting block, a moving block, a second fixing bolt, a first drive motor, and a drive block. The adjusting block has a limiting hole, and the end of the rotating roller is located in the limiting hole. The limiting block abuts against the rotating roller located in the limiting hole. The first fixing bolt passes through the limiting block and is threadedly connected to the adjusting block. The connecting block is disposed on the adjusting block, and the moving block is slidably disposed on the connecting block. The second fixing bolt passes through the connecting block and is threadedly connected to the moving block. The first drive motor is disposed on the moving block, and the drive block is disposed on the output shaft of the first drive motor. The rotating roller has a drive groove that engages with the drive block.

[0014] By adopting the above technical solution, the rotating roller is first placed in the limiting hole of the adjusting block, and then the limiting block abuts against the rotating block located in the limiting hole. Next, the first fixing bolt passes through the limiting block and is threadedly connected to the adjusting block to limit the rotating roller on the adjusting block. Then, the moving block moves towards the rotating roller, and the first drive motor on the moving block drives the drive block to move. When the drive block engages with the drive groove on the rotating roller, the second fixing bolt passes through the connecting block and is threadedly connected to the moving block. The first drive motor is started, and the output shaft of the first drive motor drives the drive block to rotate, which in turn drives the rotating roller to rotate.

[0015] Optionally, two rotating rollers are provided, and a receiving and separating block is provided on the turntable, with the receiving and separating block disposed between the two rotating rollers.

[0016] By adopting the above technical solution, when the operator peels off the adhesive layer with poor adhesion, the set receiving and separating block will block the peeled adhesive layer, reducing the phenomenon of the peeled adhesive layer adhering to the adhesive roller that is in contact with the gauze, thereby reducing the phenomenon of the adhesive roller that is in contact with the gauze not being able to clean the gauze well.

[0017] Optionally, the main body is provided with a separation mechanism, which includes a third support block, a first fixing block, a separation block and a first adjustment component. The third support block is disposed on the main body and the first fixing block is disposed on the third support block. The separation block is slidably disposed on the first fixing block through the first adjustment component.

[0018] By adopting the above technical solution, when it is necessary to peel off an adhesive layer with poor adhesion, the operator first finds a corner of the adhesive layer and pulls it, and positions the separating block between the adhesive layer adjacent to the peeled adhesive layer and the pulled adhesive layer; then the rotating roller is rotated, and the first adjusting component is activated. The first adjusting component drives the separating block to move, and the separating block will abut against the adhesive layer that needs to be peeled off, thereby facilitating the separation of the adhesive layer with poor adhesion from the rotating roller.

[0019] Optionally, the first fixing block is provided with a clamping mechanism, the clamping mechanism including a second fixing block, a clamping block and a second adjusting component, the second fixing block is disposed on the first fixing block; there are two clamping blocks, both of which are slidably disposed on the second fixing block; the second adjusting component is disposed on the second fixing block, and both clamping blocks are connected to the second adjusting component.

[0020] By adopting the above technical solution, the second adjustment component is activated, which drives the two clamping blocks to move in opposite directions. The two clamping blocks will then clamp the edge of the torn adhesive layer. The clamping mechanism can reduce the phenomenon of operators pulling on the adhesive layer.

[0021] Optionally, the suction mechanism includes a fourth support block, a negative pressure block, a connecting pipe, and a negative pressure collection assembly. The fourth support block is disposed on the main body, and the negative pressure block is disposed on the fourth support block. The gauze is located between the two negative pressure blocks of the two suction mechanisms, and the negative pressure block has a negative pressure hole on the side facing the gauze. The negative pressure collection assembly is disposed on the main body, and the connecting pipe connects the negative pressure collection assembly and the negative pressure block.

[0022] By adopting the above technical solution, the negative pressure collection component is activated. The negative pressure collection component generates negative pressure in the negative pressure block through the connecting pipe. Impurities on the gauze will enter the connecting pipe through the negative pressure hole on the negative pressure block, and finally enter the negative pressure collection component for collection through the connecting pipe.

[0023] In summary, this application includes at least one of the following beneficial technical effects:

[0024] 1. The designed adhesive mechanism can better clean impurities from the gauze, thereby improving the gauze treatment effect;

[0025] 2. The set receiving and separating block will block the torn adhesive layer, reducing the phenomenon of the torn adhesive layer adhering to the adhesive roller that is in contact with the gauze, thereby reducing the phenomenon of the adhesive roller that is in contact with the gauze not being able to clean the gauze well. Attached Figure Description

[0026] Figure 1 This is a schematic diagram of the gauze surface cleaning device in the embodiments of this application;

[0027] Figure 2 This is a schematic diagram of the adhesive mechanism in the embodiments of this application;

[0028] Figure 3 This is a schematic diagram of the structure of the adjustment component in the embodiments of this application;

[0029] Figure 4 This is a schematic diagram of the rotating connection mechanism in an embodiment of this application;

[0030] Figure 5 This is a schematic diagram of the separation mechanism in the embodiments of this application;

[0031] Figure 6 This is a schematic diagram of the clamping mechanism in the embodiments of this application.

[0032] Reference numerals: 11. Main body; 12. First support block; 13. Support conveyor roller; 2. Suction mechanism; 21. Fourth support block; 22. Negative pressure block; 23. Connecting pipe; 3. Adhesive mechanism; 31. Second support block; 311. Main block; 312. Sub-block; 32. Turntable; 321. Sliding hole; 33. Adhesive roller; 331. Rotating roller; 332. Adhesive layer; 34. Drive assembly; 341. Second drive motor; 342. Drive shaft; 4. Adjustment mechanism; 41. Adjustment block; 411. Limiting hole; 42. Adjustment assembly; 421. Adjusting screw; 422. Adjusting shaft; 423. First bevel gear; 424. Second bevel gear; 425. Second gear; 42 6. Fixed sleeve; 427. First gear; 5. Rotating connection mechanism; 51. Limiting block; 52. First fixing bolt; 53. Connecting block; 531. First slide groove; 54. Moving block; 55. Second fixing bolt; 56. First drive motor; 57. Drive block; 6. Receiving separation block; 7. Separation mechanism; 71. Third support block; 72. First fixing block; 721. Second slide groove; 73. Separation block; 74. First adjusting component; 741. First adjusting motor; 742. Adjusting screw; 8. Clamping mechanism; 81. Second fixing block; 811. Third slide groove; 82. Clamping block; 83. Second adjusting component; 831. Second adjusting motor; 832. Bidirectional screw. Detailed Implementation

[0033] The following is in conjunction with the appendix Figure 1-6 This application will be described in further detail.

[0034] This application discloses a gauze surface cleaning device.

[0035] refer to Figure 1 A gauze surface cleaning device includes a main body 11, on which a plurality of first support blocks 12 are provided, and each first support block 12 is rotatably connected to a support conveying roller 13; the main body 11 is provided with two suction mechanisms 2 and two adhesive mechanisms 3.

[0036] The gauze is passed around the support conveyor rollers 13 on multiple first support blocks 12, and then two suction mechanisms 2 process both sides of the gauze respectively. Finally, two adhesive mechanisms 3 also process both sides of the gauze.

[0037] refer to Figure 1Each suction mechanism 2 includes a fourth support block 21 fixedly connected to the main body 11. A negative pressure block 22 is fixedly connected to the fourth support block 21. The gauze is located between the two negative pressure blocks 22 in the two suction mechanisms 2. The negative pressure block 22 has a negative pressure hole on the side facing the gauze. A negative pressure collection assembly is provided on the main body 11. The negative pressure collection assembly includes a collection box fixedly connected to the main body 11. A negative pressure pump is placed in the collection box. A connecting pipe 23 is connected to the negative pressure pump. The end of the connecting pipe 23 away from the negative pressure pump is connected to the negative pressure block 22.

[0038] Start the negative pressure pump to create negative pressure in the collection box; impurities on the gauze enter the connecting pipe 23 through the negative pressure hole on the negative pressure block 22, and finally enter the collection box for collection through the connecting pipe 23.

[0039] refer to Figure 1 and Figure 2 Each adhesive mechanism 3 includes a second support block 31. The second support block 31 includes a main block 311 fixedly connected to the main body 11. A groove is provided at one end of the main block 311 away from the main body 11. A secondary block 312 is slidably connected in the groove. A cylinder is fixedly connected to the main block 311. The piston rod of the cylinder is connected to the secondary block 312 located in the groove.

[0040] A drive assembly 34 is provided at one end of the sub-block 312 away from the main body 11. The drive assembly 34 includes a second drive motor 341 fixedly connected to the sub-block 312. A drive shaft 342 is connected to the output shaft of the second drive motor 341. A turntable 32 is fixedly connected to the drive shaft 342.

[0041] When the cylinder is activated, the piston rod of the cylinder causes the auxiliary block 312 to slide within the groove of the main block 311; the auxiliary block 312 drives the second drive motor 341 to move, and the drive shaft 342 on the second drive motor 341 causes the position of the turntable 32 to change. When the second drive motor 341 is activated, the output shaft of the second drive motor 341 drives the drive shaft 342 to rotate, and the drive shaft 342 drives the turntable 32 to rotate.

[0042] refer to Figure 2 and Figure 3 The turntable 32 has two sliding holes 321 and an adjustment mechanism 4. The adjustment mechanism 4 includes two adjustment blocks 41, which are slidably connected in the two sliding holes 321 respectively.

[0043] An adjustment assembly 42 is provided on the turntable 32. The adjustment assembly 42 includes a fixed sleeve 426 fixedly connected to the sub-block 312, and a first gear 427 is keyed to the fixed sleeve 426. Two adjustment shafts 422 are rotatably connected to the turntable 32. A second gear 425 that meshes with the first gear 427 is keyed to each adjustment shaft 422. A first bevel gear 423 is keyed to the end of the adjustment shaft 422 away from the second gear 425. An adjustment screw 421 is rotatably connected to each sliding hole 321. The adjustment screw 421 passes through the adjustment block 41 and is threadedly connected to the adjustment block 41. A second bevel gear 424 that meshes with the first bevel gear 423 is keyed to the adjustment screw 421.

[0044] When the drive shaft 342 drives the turntable 32 to rotate, the position of the adjustment shaft 422 on the turntable 32 will change. Because the second gear 425 on the adjustment shaft 422 meshes with the first gear 427, the second gear 425 will rotate. The second gear 425 drives the adjustment shaft 422 to rotate, the adjustment shaft 422 drives the first bevel gear 423 to rotate, the first bevel gear 423 drives the second bevel gear 424 to rotate, the second bevel gear 424 drives the adjustment screw 421 to rotate, and the adjustment screw 421 will drive the adjustment block 41 to move in the sliding hole 321, so that the two adjustment blocks 41 move towards or away from each other.

[0045] refer to Figure 2 and Figure 4 Each adjusting block 41 has a limiting hole 411 and an adhesive roller 33. The adhesive roller 33 includes a rotating roller 331, the end of which is located inside the limiting hole 411 of the adjusting block 41. The rotating roller 331 has multiple adhesive layers 332. Adjacent adhesive layers 332 are bonded together. The side of the adhesive layer 332 away from the rotating roller 331 has adhesive. When each layer of adhesive layer 332 is laid flat, its cross-section is parallelogram. When each layer is wrapped around the rotating roller 331, it completely wraps the rotating roller 331. That is, when the adhesive layer 332 away from the rotating roller 331 is used to stick to impurities, the impurities will not be adhered to the adhesive layer 332 close to the rotating roller 331.

[0046] Reference 2 and Figure 4Each adjusting block 41 is provided with a rotating connection mechanism 5, which includes a limiting block 51 that abuts against a rotating roller 331 located in a limiting hole 411. A first fixing bolt 52 is provided on the limiting block 51, which passes through the limiting block 51 and is threadedly connected to the adjusting block 41. A connecting block 53 is fixedly connected to each adjusting block 41. A first sliding groove 531 is provided on the connecting block 53, and a moving block 54 is slidably connected in the first sliding groove 531. A second fixing bolt 55 is provided on the connecting block 53, which passes through the connecting block 53 and is threadedly connected to the moving block 54. A first drive motor 56 is fixedly connected to the moving block 54. A rectangular drive block 57 is connected to the output shaft of the first drive motor 56. A drive groove that engages with the drive block 57 is provided at the end of the rotating roller 331.

[0047] Place the rotating roller 331 of the adhesive roller 33 into the limiting hole 411 of the adjusting block 41, then make the limiting block 51 abut against the rotating roller 331 located in the limiting hole 411. Next, pass the first fixing bolt 52 through the limiting block 51 and thread it to the adjusting block 41 to limit the rotating roller 331 on the adjusting block 41. Then, move the moving block 54 towards the rotating roller 331. The first drive motor 56 on the moving block 54 drives the drive block 57 to move. After the drive block 57 engages with the drive groove on the rotating roller 331, make the second fixing bolt 55 pass through the connecting block 53 and thread it to the moving block 54. Start the first drive motor 56. The output shaft of the first drive motor 56 drives the drive block 57 to rotate, and the drive block 57 will drive the rotating roller 331 to rotate.

[0048] refer to Figure 1 and Figure 2 Each turntable 32 is fixedly connected to a receiving and separating block 6, which is located between two adhesive rollers 33 on the turntable 32.

[0049] refer to Figure 1 and Figure 5 The main body 11 is equipped with two separation mechanisms 7, which correspond one-to-one with two turntables 32.

[0050] Each separation mechanism 7 includes a third support block 71 fixedly connected to the main body 11, and a first fixing block 72 fixedly connected to the third support block 71. The gauze is located between the two first fixing blocks 72 in the two separation mechanisms 7. Each first fixing block 72 is provided with a second sliding groove 721, and a separation block 73 is slidably connected in the second sliding groove 721. A first adjusting component 74 is provided on the first fixing block 72. The first adjusting component 74 includes an adjusting screw 742 rotatably connected in the second sliding groove 721. The adjusting screw 742 passes through the separation block 73 and is threadedly connected to the separation block 73. A first adjusting motor 741 is fixedly connected to the first fixing block 72, and the output shaft of the first adjusting motor 741 is threadedly connected to one end of the adjusting screw 742.

[0051] When the adhesive layer 332, which is far from the rotating roller 331, becomes less effective at adhering to impurities, it needs to be peeled off from the adjacent adhesive layer 332 on the rotating roller 331. When peeling off the adhesive layer 332, the operator first finds one corner of the adhesive layer 332 and pulls it, positioning the separating block 73 between the adhesive layer 332 adjacent to the peeled adhesive layer 332 and the pulled adhesive layer 332. Then, the rotating roller 331 is rotated, at which point the first adjusting motor 741 is activated. The output shaft of the first adjusting motor 741 drives the adjusting screw 742 to rotate, and the adjusting screw 742 drives the separating block 73 to move. The separating block 73 will then come into contact with the adhesive layer 332 that needs to be peeled off, making it easier to peel off the adhesive layer 332.

[0052] refer to Figure 5 and Figure 6 Each first fixing block 72 is provided with a clamping mechanism 8, which includes a second fixing block 81 fixedly connected to the first fixing block 72. The second fixing block 81 has a third sliding groove 811, and a clamping block 82 is slidably connected to each end of the third sliding groove 811. The second fixing block 81 is provided with a second adjusting component 83, which includes a bidirectional screw 832 rotatably connected in the third sliding groove 811. The bidirectional screw 832 passes through the two clamping blocks 82, and the two clamping blocks 82 are threadedly connected to the two ends of the bidirectional screw 832 respectively. A second adjusting motor 831 is fixedly connected to the second fixing block 81, and the output shaft of the second adjusting motor 831 is connected to one end of the bidirectional screw 832.

[0053] Start the second adjusting motor 831. The output shaft of the second adjusting motor 831 drives the bidirectional screw 832 to rotate. The bidirectional screw 832 drives the two clamping blocks 82 to move in opposite directions. The two clamping blocks 82 will clamp the edge of the torn adhesive layer 332.

[0054] The implementation principle of the gauze surface cleaning device in this application embodiment is as follows: the gauze passes around the support conveying rollers 13 on multiple first support blocks 12, and the gauze passes through two negative pressure blocks 22 in two suction mechanisms 2. In one of the adhesive mechanisms 3, the adhesive layer 332 on one of the rotating rollers 331 on the turntable 32 abuts against one side of the gauze, and in the other adhesive mechanism 3, the adhesive layer 332 on one of the rotating rollers 331 on the turntable 32 abuts against the other side of the gauze.

[0055] Then, the negative pressure pumps in the two suction mechanisms 2 are activated, causing the negative pressure blocks 22 in the two suction mechanisms 2 to extract impurities from both sides of the gauze. The first drive motor 56 is activated, and the output shaft of the first drive motor 56 drives the drive block 57 to rotate. The drive block 57 drives the rotating roller 331 to rotate, causing the adhesive layer 332 away from the rotating roller 331 to stick to the impurities.

[0056] When the adhesive layer 332, which is far from the rotating roller 331, weakens its ability to stick to impurities, the second drive motor 341 is activated. The drive shaft 342 on the output shaft of the second drive motor 341 drives the turntable 32 to rotate. When the turntable 32 rotates, the two adjusting blocks 41 on the turntable 32 cause the positions of the two adhesive rollers 33 to change, so that the adhesive rollers 33 on the turntable 32 that were not originally in contact with the gauze come into contact with the gauze. That is, the adhesive layer 332 in the adhesive rollers 33 that were not in contact with the gauze comes into contact with the gauze. And no matter which adhesive layer 332 of the two adhesive rollers 33 comes into contact with the gauze, the relative height of the gauze to the main body 11 will not change, thereby ensuring the tension of the gauze.

[0057] After the adhesive roller 33, which was previously in contact with the gauze, no longer does so, the operator first locates a corner of the adhesive layer 332 and tears it open. Then, two clamping blocks 82 hold the edge of the torn adhesive layer 332. At this point, the separating block 73 is positioned between the edge of the adhesive layer 332 held by the two clamping blocks 82 and the adjacent adhesive layer 332. The first drive motor 56 and the first adjusting motor 741 are started. The first drive motor 56 drives the rotating roller 331 to rotate, and the first adjusting motor 741 drives the separating block 73 to move. The separating block 73 peels off the adhesive layer 332 that needs to be torn off, causing it to fall onto the receiving separating block 6 without contacting the adhesive roller 33 that was in contact with the gauze. Finally, the operator removes the torn adhesive layer 332 from the receiving separating block 6.

[0058] 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 gauze surface cleaning device, comprising a main body (11), a first supporting block (12), a supporting conveying roller (13) and an air suction mechanism (2), a plurality of first supporting blocks (12) are arranged on the main body (11), and the supporting conveying roller (13) is arranged on each first supporting block (12); two air suction mechanisms (2) are arranged on the main body (11), and the two air suction mechanisms (2) clean the two sides of the gauze respectively; characterized in that it further comprises a sticking mechanism (3), the sticking mechanism (3) comprises a second supporting block (31), a rotating disc (32), a sticking roller (33) and a driving assembly (34), the second supporting block (31) is arranged on the main body (11), the rotating disc (32) is rotatably arranged on the second supporting block (31) through the driving assembly (34), and the two rotating discs (32) in the two sticking mechanisms (3) are located on the two sides of the gauze respectively; the sticking roller (33) comprises a rotating roller (331) and a sticking layer (332), a plurality of sticking layers (332) are arranged on the rotating roller (331), and adjacent sticking layers (332) are adhered to the sticking layer (332); the rotating disc (32) is provided with an adjusting mechanism (4), the adjusting mechanism (4) comprises an adjusting block (41) and an adjusting assembly (42), a plurality of sliding holes (321) are formed in the rotating disc (32), the sliding holes (321) correspond to the sticking rollers (33) one by one, the adjusting block (41) is slidably arranged in the sliding hole (321), and the rotating roller (331) is rotatably arranged on the adjusting block (41); the adjusting assembly (42) is arranged on the rotating disc (32) and connected with the adjusting block (41); the adjusting assembly (42) comprises an adjusting screw (421), an adjusting shaft (422), a first bevel gear (423), a second bevel gear (424), a second gear (425), a fixed sleeve (426) and a first gear (427), a plurality of adjusting screws (421) are arranged, the adjusting screws (421) correspond to the adjusting blocks (41) one by one, and the adjusting screws (421) pass through the adjusting blocks (41) and are threadedly connected with the adjusting blocks (41); the adjusting shaft (422) is rotatably arranged on the rotating disc (32), the adjusting shaft (422) is provided with a plurality of adjusting shafts (422), the adjusting shafts (422) correspond to the adjusting screws (421) one by one, one end of the adjusting shaft (422) is connected with the first bevel gear (423) through a key, and the adjusting screw (421) is connected with the second bevel gear (424) engaged with the first bevel gear (423) through a key. ​ ​ The second gear (425) is connected to one end of the adjusting shaft (422) away from the first bevel gear (423); A fixing sleeve (426) is arranged on the rotating disc (32), the first gear (427) is connected to the fixing sleeve (426), and the second gears (425) on all the adjusting shafts (422) are in mesh with the first gear (427); Two rotating rollers (331) are arranged on the rotating disc (32), and a receiving and separating block (6) is arranged on the rotating disc (32) and between the two rotating rollers (331); The main body (11) is provided with a separating mechanism (7), the separating mechanism (7) comprises a third supporting block (71), a first fixing block (72), a separating block (73) and a first adjusting assembly (74), The third supporting block (71) is arranged on the main body (11), and the first fixing block (72) is arranged on the third supporting block (71); The separating block (73) is slidably arranged on the first fixing block (72) through the first adjusting assembly (74); The first fixing block (72) is provided with a clamping mechanism (8), the clamping mechanism (8) comprises a second fixing block (81), a clamping block (82) and a second adjusting assembly (83), The second fixing block (81) is arranged on the first fixing block (72); The clamping block (82) is arranged in two, and the two clamping blocks (82) are slidably arranged on the second fixing block (81); The second adjusting assembly (83) is arranged on the second fixing block (81), and the two clamping blocks (82) are connected with the second adjusting assembly (83).

2. A scrim surface cleaning device according to claim 1, wherein, The adjusting block (41) is provided with a rotating connecting mechanism (5) connected with the rotating roller (331), the rotating connecting mechanism (5) comprises a limiting block (51), a first fixing bolt (52), a connecting block (53), a moving block (54), a second fixing bolt (55), a first driving motor (56) and a driving block (57), A limiting hole (411) is formed in the adjusting block (41), and an end of the rotating roller (331) is located in the limiting hole (411); The limiting block (51) abuts against the rotating roller (331) located in the limiting hole (411), and the first fixing bolt (52) is threadedly connected with the adjusting block (41) through the limiting block (51); The connecting block (53) is arranged on the adjusting block (41), the moving block (54) is slidably arranged on the connecting block (53), and the second fixing bolt (55) is threadedly connected with the moving block (54) through the connecting block (53); The first driving motor (56) is arranged on the moving block (54), the driving block (57) is arranged on an output shaft of the first driving motor (56), and a driving groove is formed in the rotating roller (331) and engaged with the driving block (57).

3. A scrim surface cleaning device according to claim 1, wherein, The air suction mechanism (2) comprises a fourth supporting block (21), a negative pressure block (22), a connecting pipe (23) and a negative pressure collection assembly, The fourth supporting block (21) is arranged on the main body (11), the negative pressure block (22) is arranged on the fourth supporting block (21), and the gauze is located between the two negative pressure blocks (22) of the two air suction mechanisms (2), and a negative pressure hole is formed in the side of the negative pressure block (22) facing the gauze. The negative pressure collection assembly is arranged on the main body (11); The connecting pipe (23) connects the negative pressure collection assembly and the negative pressure block (22).

Citation Information

Patent Citations

  • Cleaning roller device with vertical movement mechanism

    CN1592660A

  • Carding machine card clothing cleaning device

    CN206838676U