A cleaning device for an electronic fabric strength tester and a cleaning method thereof

By designing a cleaning device that combines a fan for dust extraction, a transmission device to drive the cleaning brush, and an electrostatic adsorption net, the problem of debris affecting the accuracy of electronic fabric strength tests and the environment was solved, achieving both cleaning and vibration reduction effects.

CN116274243BActive Publication Date: 2025-11-25WUHAN WUGONG GARMENT CO LTD
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Patent Information

Application Number
CN202310206790.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-07
Publication Date
2025-11-25
Estimated Expiration
2043-03-07

AI Technical Summary

Technical Problem

Electronic fabric strength testers generate a large amount of lightweight material debris and tissue material during testing, affecting the accuracy of the test and the working environment.

Method used

A cleaning device was designed, including a gantry frame, a clamp, a fixing block, a transmission rod, a cleaning brush, a dust collection system, and an electrostatic adsorption net. The device uses a fan to collect dust, a transmission device to drive the cleaning brush to sweep away debris, and an electrostatic adsorption net to collect dust. A nano anti-fouling coating prevents adhesion, and a vibration damping structure reduces vibration.

Benefits of technology

Effectively cleans debris and dust from the worktable of the electronic fabric strength tester, ensuring test accuracy, improving the working environment, and reducing debris scattering and vibration effects.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a cleaning device for an electronic fabric strength tester and a cleaning method thereof, and relates to the technical field of electronic fabric strength testers. The cleaning device is used for solving the problems that, when the electronic fabric strength tester is used to perform tests such as tearing, peeling and load setting on various materials, tissues and non-woven fabrics, a large amount of material debris and tissues are generated and remain on the workbench of the electronic fabric strength tester, thereby affecting the accuracy of the test, and the tissue debris is relatively light and is scattered everywhere when the test is performed, thereby affecting the working environment. The cleaning device comprises a base, a gantry arranged at the upper end of the base, clamps arranged at the upper and lower ends of the interior of the gantry, a rotating handle arranged at the front end of each clamp, a fixed block arranged at the upper end of the base, and the clamp at the lower end of the interior of the gantry being fixedly installed at the upper end of the fixed block, and sliding grooves arranged at the rear end of the fixed block.
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Description

Technical Field

[0001] This invention relates to the field of electronic fabric strength tester technology, specifically to a cleaning device and cleaning method for an electronic fabric strength tester. Background Technology

[0002] Electronic fabric strength testers are multifunctional instruments controlled by a single-chip microcomputer, used for timed and speed-controlled tensile testing of various materials, woven and nonwoven fabrics; tearing, peeling, constant load, constant elongation, elastic recovery rate, bursting, etc. High-end instruments can also be connected to a computer, expanding functionality, recording the entire testing process as data and curves, long-term storage of measured data, and facilitating networked management. Excellent electronic fabric strength tester management software can export all test results to Word, Excel, and Notepad, and can also sequentially import data from all test sampling points into Excel, facilitating scientific research and project assignments.

[0003] During the use of the aforementioned device, the electronic fabric strength tester generates a large amount of material debris and fabric residue when performing tearing, peeling, and constant load tests on various materials, fabrics, and nonwovens. This results in a significant amount of material debris and fabric residue remaining on the worktable of the electronic fabric strength tester, affecting the accuracy of the test. Furthermore, the fabric debris is relatively lightweight, and during the test, tearing causes the debris to fly everywhere, affecting the working environment. Therefore, we propose a cleaning device and cleaning method for electronic fabric strength testers to solve the problems mentioned above. Summary of the Invention

[0004] The purpose of this invention is to provide a cleaning device and method for an electronic fabric strength tester, in order to solve the problem mentioned in the background art that existing electronic fabric strength testers generate a large amount of material debris and fabric residues during tearing, peeling, and constant load tests on various materials, fabrics, and nonwovens. This results in a large amount of material debris and fabric residues remaining on the worktable of the electronic fabric strength tester, which affects the accuracy of the test. Furthermore, the fabric debris is relatively light, and during the test, the tearing causes the fabric debris to fly everywhere, affecting the working environment.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a cleaning device for an electronic fabric strength tester, comprising a base;

[0006] Also includes:

[0007] A gantry frame is mounted on top of a base. Clamps are located at both the upper and lower ends of the gantry frame's interior. A rotating handle is located at the front end of each clamp. A fixing block is located at the upper end of the base, and the clamps at the lower end of the gantry frame are fixedly mounted on the upper end of the fixing block. Two sliding grooves are symmetrically arranged on both sides of the rear end of the fixing block, and the sliding grooves are integrally formed with the fixing block. Two transmission rods are symmetrically arranged on the outer side of the corresponding sliding grooves. A rotating shaft is located between the two transmission rods and is movably connected to them. A cleaning brush is located on the outer side of the rotating shaft and is fixedly mounted on one side of the rotating shaft. Both sides of the upper surface of the fixing block are coated with a nano-anti-fouling coating.

[0008] Preferably, the transmission rod has a pulley at its inner bottom end, and four pulleys are arranged symmetrically in pairs, one above the other. A connecting shaft is provided on the outer side of the pulley, and a drive transmission device is provided between the two ends of the connecting shaft. A motor is provided inside the transmission rod, and one end of the motor is connected to a rotating shaft.

[0009] Preferably, the upper end of the base is provided with a dust-collecting plate, and the dust-collecting plate is fixedly installed on the upper end of the base. The bottom rear end of the dust-collecting plate is provided with a dust-collecting hole, and one end of the fixing block extends into the dust-collecting plate and connects with the inlet of the dust-collecting hole. The outer side of the base is provided with a suction tube, one end of which connects to the dust-collecting hole, and the other end of which extends into the base. The interior of the base is provided with a fan, and one end of the fan is connected to the other end of the suction tube. The upper end of the fan is provided with a discharge pipe.

[0010] Preferably, the base has a dust collection chamber inside, and the rear end of the dust collection chamber is connected to one end of the discharge pipe. One end of the discharge pipe is provided with a guide pipe. The front end of the base is provided with a dust collection plate. The upper end of the dust collection chamber is provided with a baffle, and the baffle is connected to the inlet of the dust collection plate.

[0011] Preferably, both the bottom of the dust collection chamber and the bottom of the base are equipped with filter outlets.

[0012] Preferably, the dust collection bin is provided with a collection drawer inside, and the collection drawer and the dust collection bin are pulled out through a sliding groove. The front end of the collection drawer is provided with a handle, and the collection drawer is provided with an electrostatic adsorption mesh inside, which is fixedly installed inside the collection drawer. An electrostatic generator is provided inside the collection drawer.

[0013] Preferably, the base has a support frame at its bottom end, and the support frame is fixedly installed at the bottom end of the base. The support frame has locking blocks on both sides, and the locking blocks are integrally formed with the support frame. The support frame has a mounting frame on its outer side. The mounting frame has inner grooves on both sides inside, and the inner grooves fit with the locking blocks. Small springs are provided at the connection points between the inner grooves and the upper and lower ends of the locking blocks. The mounting frame has a vibration damping spring at its inner bottom end, and a foot bracket at its bottom end.

[0014] Preferably, the collection drawer and the dust collection bin are pulled out via a sliding groove.

[0015] Preferably, a cleaning method for a cleaning device used in an electronic fabric strength tester includes the following steps:

[0016] Step 1: During use, debris and dust generated during the test of the electronic fabric strength tester will fall everywhere. Turn on the fan, and some of the debris and dust falling everywhere will be sucked into the dust suction hole from the dust suction plate by the suction force generated by the fan. The debris and dust will be blown into the base through the suction pipe. The debris and dust will be blown into the dust collection bin along the fan and the discharge pipe. A guide pipe is set at one end of the discharge pipe to press the air from the air outlet downward to prevent the air from blowing the debris and dust everywhere.

[0017] Step 2: Heavier debris falls onto the fixed block. Because the upper end of the fixed block is conical and has a nano anti-fouling coating, the debris and dust do not easily stick to the surface of the upper end of the fixed block. Under the influence of gravity, the debris slides into the dust collection plate and is sucked away by the fan from the surface of the upper end of the fixed block.

[0018] Step 3: Simultaneously start the drive transmission device, drive the pulley inside the transmission rod to rotate so that the transmission rod can slide along the slide groove into the dust collection plate at an angle downwards. At the same time, start the motor so that the rotating shaft rotates on the transmission rod and drives the cleaning brush on the rotating shaft to rotate, sweeping the remaining debris and dust towards the dust collection holes inside the dust collection plate and sucking them into the dust collection chamber by the fan.

[0019] Step 4: At the same time, some of the scattered debris and dust will fall to the front of the fixed block. Under the influence of gravity, the debris will slide to the front of the fixed block and fall into the dust collection plate. The dust collection plate tilts downward into the dust collection chamber. At the same time, a baffle is set at the top of the dust collection chamber to prevent debris and dust from drifting to other places.

[0020] Step 5: During the collection of debris and dust, activate the electrostatic generator to generate static electricity in the electrostatic adsorption net. The debris and dust will be attracted to the electrostatic adsorption net due to static electricity, making it less likely for the debris and dust to be blown away to other places. At the same time, filter outlets are set at the bottom of the base and the bottom of the dust collection chamber, so that the air generated by the fan can be blown out through the filter outlets, preventing the excessive wind force from blowing away the debris and dust that has fallen into the dust collection plate. After collection is completed, pull the collection drawer out of the base and collect and clean the debris and dust in the collection drawer.

[0021] Step Six: Install a vibration damping structure at the bottom of the base. This is achieved by fitting the locking blocks on both sides of the support frame with the inner grooves on both sides of the mounting frame, and by installing small springs to allow the base and mounting frame to buffer and dampen vibrations. Additionally, vibration damping springs are installed inside the mounting frame to achieve a double vibration damping effect, thereby reducing the vibration generated during the testing of the electronic fabric strength tester.

[0022] Compared with the prior art, the beneficial effects of the present invention are:

[0023] 1. This invention features a fixed block at the top of the base, allowing debris generated during testing by the electronic fabric strength tester to fall onto the fixed block. A nano-anti-fouling coating on the top of the fixed block allows the debris to slide to both sides through the inclined design. Simultaneously, a drive shaft, cleaning brush, and drive rod are installed at the top of the fixed block. Activating the drive mechanism causes the drive rod to slide along a groove, and the rotation of the drive shaft drives the cleaning brush to sweep residual debris and dust towards the suction holes inside the suction plate. This ensures the cleanliness of the electronic fabric strength tester's work surface, preventing the test from being affected by debris.

[0024] 2. By installing a collection drawer and a fan inside the base, debris is drawn from the surrounding area, preventing it from scattering during the test. The debris is then collected by the suction plate and dust collection plate, and then collected in the collection drawer for easy collection, processing, and cleaning. Attached Figure Description

[0025] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0026] Figure 2 This is a side sectional view of the overall structure of the present invention;

[0027] Figure 3 This is a schematic diagram of the fixing block structure of the present invention;

[0028] Figure 4 This is a side sectional view of the internal structure of the transmission rod of the present invention;

[0029] Figure 5 This is an internal cross-sectional view of the leg structure of the present invention;

[0030] In the diagram: 1. Gantry frame; 2. Clamp; 3. Base; 4. Leg; 5. Dust suction plate; 6. Dust collection plate; 7. Fixing block; 8. Suction hose; 9. Fan; 10. Discharge pipe; 11. Guide pipe; 12. Collection drawer; 13. Handle; 14. Slide; 15. Transmission rod; 16. Rotating shaft; 17. Cleaning brush; 18. Suction hole; 19. Baffle; 20. Dust collection bin; 21. Electrostatic generator; 22. Electrostatic adsorption net; 23. Drive transmission device; 24. Nano anti-fouling coating; 25. Pulley; 26. Rotating handle; 27. Motor; 28. Mounting bracket; 29. ​​Support frame; 30. Vibration damping spring; 31. Connecting shaft; 32. Inner groove; 33. Small spring; 34. Locking block; 35. Filter outlet. Detailed Implementation

[0031] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments.

[0032] Please see Figure 1-5 The present invention provides an embodiment of a cleaning device for an electronic fabric strength tester, comprising a base 3;

[0033] Also includes:

[0034] A gantry frame 1 is located on the upper end of a base 3. Grippers 2 are located at both the upper and lower ends of the gantry frame 1. A rotating handle 26 is located at the front end of each gripper 2. A fixing block 7 is located at the upper end of the base 3. The grippers 2 at the lower end of the gantry frame 1 are fixedly mounted on the upper end of the fixing block 7. Slide grooves 14 are located on both sides of the rear end of the fixing block 7. Two slide grooves 14 are symmetrically arranged on both sides of the rear end of the fixing block 7, and the slide grooves 14 and the fixing block 7 are integrally formed. Two transmission rods 15 are located on the outer side of the slide grooves 14, and two transmission rods 15 are symmetrically arranged on the outer side of the corresponding slide grooves 14. A rotating shaft 16 is located between the two transmission rods 15 and is movably connected to them. A cleaning brush 17 is located on the outer side of the rotating shaft 16 and is fixedly mounted on one side of the rotating shaft 16. A nano-anti-fouling coating 24 is located on both sides of the upper surface of the fixing block 7.

[0035] The device allows debris generated during the electronic fabric strength test to fall onto the fixed block 7. The nano anti-fouling coating 24 on the upper end of the fixed block 7 allows the debris to slide to both sides through the inclined fixed block 7. At the same time, a drive shaft 16, a cleaning brush 17, and a drive rod 15 are set on the upper end of the fixed block 7. By activating the drive transmission device 23, the drive rod 15 slides along the slide groove 14, and the rotation of the drive shaft 16 drives the cleaning brush 17 to sweep the residual debris and dust towards the dust suction hole 18 inside the dust suction plate 5. This ensures the cleanliness of the work surface of the electronic fabric strength tester and prevents the test from being affected by debris.

[0036] Please see Figure 4 The transmission rod 15 has a pulley 25 at its inner bottom end, and there are four pulleys 25 arranged symmetrically in pairs. A connecting shaft 31 is provided on the outer side of the pulley 25, and a drive transmission device 23 is provided between the two ends of the connecting shaft 31. A motor 27 is provided inside the transmission rod 15, and one end of the motor 27 is connected to a rotating shaft 16 to facilitate cleaning and collecting the upper surface of the fixed block 7.

[0037] Please see Figure 2-3 The upper end of the base 3 is provided with a dust suction plate 5, which is fixedly installed on the upper end of the base 3. The bottom rear end of the dust suction plate 5 is provided with a dust suction hole 18, and one end of the fixing block 7 extends into the dust suction plate 5 and connects with the inlet of the dust suction hole 18. The outer side of the base 3 is provided with a suction pipe 8, one end of which is connected to the dust suction hole 18, and the other end of which extends into the interior of the base 3. The interior of the base 3 is provided with a fan 9, one end of which is connected to the other end of the suction pipe 8. The upper end of the fan 9 is provided with a discharge pipe 10, which draws the debris from the surrounding area for easy collection.

[0038] Please see Figure 2-3 The base 3 has a dust collection chamber 20 inside, and the rear end of the dust collection chamber 20 is connected to one end of the discharge pipe 10. One end of the discharge pipe 10 is provided with a guide pipe 11. The front end of the base 3 is provided with a dust collection plate 6, and the upper end of the dust collection chamber 20 is provided with a baffle 19. The baffle 19 is connected to the inlet of the dust collection plate 6, so that the debris falling from the front end falls into the dust collection chamber 20 through the dust collection plate 6.

[0039] Please see Figure 2 The bottom of the dust collection bin 20 is equipped with a filter outlet so that the blown air can be discharged through the filter outlet, preventing the air force from blowing out in the opposite direction and causing the debris inside the dust collection bin 20 to float out.

[0040] Please see Figure 2The dust collection chamber 20 is equipped with a collection drawer 12 inside, and the collection drawer 12 and the dust collection chamber 20 are pulled out through a sliding groove. The front end of the collection drawer 12 is equipped with a handle 13. The collection drawer 12 is equipped with an electrostatic adsorption net 22 inside, and the electrostatic adsorption net 22 is fixedly installed inside the collection drawer 12. The collection drawer 12 is equipped with an electrostatic generator 21, which generates static electricity so that the debris can be adsorbed onto the electrostatic adsorption net 22 to prevent it from falling everywhere.

[0041] Please see Figure 3 The nano anti-fouling coating 24 is made of a nano silica fractal composition and doped with nano tungsten trioxide and nano tin oxide. The coating is antistatic and does not attract dust, preventing debris and dust from sticking to the upper end of the fixing block 7.

[0042] Please see Figure 5 A support frame 29 is provided at the bottom of the base 3, and the support frame 29 is fixedly installed at the bottom of the base 3. The support frame 29 has a locking block 34 on both sides, and the locking block 34 is integrally formed with the support frame 29. A mounting frame 28 is provided on the outside of the support frame 29. The mounting frame 28 has an inner groove 32 on both sides, and the inner groove 32 fits with the locking block 34. Small springs 33 are provided at the connection between the inner groove 32 and the upper and lower ends of the locking block 34. A vibration damping spring 30 is provided at the bottom of the mounting frame 28. A foot 4 is provided at the bottom of the mounting frame 28 to reduce the vibration generated during the test of the electronic fabric strength tester.

[0043] Please see Figure 2 The collection drawer 12 and the dust collection bin 20 are pulled out via a sliding groove, making it convenient to collect and clean debris and dust.

[0044] Please see Figure 1-5 A cleaning method for an electronic fabric strength tester cleaning device includes the following steps:

[0045] Step 1: During use, debris and dust generated during the electronic fabric strength test will fall everywhere. Start the fan 9, and some of the debris and dust falling everywhere will be sucked into the dust suction hole 18 from the dust suction plate 5 by the suction force generated by the fan 9. The debris and dust will be blown into the base 3 through the suction pipe 8. The debris and dust will be blown into the dust collection chamber 20 along the fan 9 and the discharge pipe 10. One end of the discharge pipe 10 is equipped with a guide pipe 11 to press the air from the outlet downward to prevent the air from blowing the debris and dust everywhere.

[0046] Step 2: Heavier debris falls onto the fixing block 7. Because the upper end of the fixing block 7 is conical and has a nano anti-fouling coating 24, the debris and dust are not easily stuck to the surface of the upper end of the fixing block 7. Under the influence of gravity, the debris slides into the dust collection plate 5 and is sucked away by the fan 9.

[0047] Step 3: Simultaneously start the drive transmission device 23, which drives the internal pulley 25 of the transmission rod 15 to rotate, allowing the transmission rod 15 to slide along the slide groove 14 into the suction plate 5 at an angle downwards. At the same time, the motor 27 starts, causing the rotating shaft 16 to rotate on the transmission rod 15, and driving the cleaning brush 17 on the rotating shaft 16 to rotate, sweeping the remaining debris and dust towards the suction holes 18 inside the suction plate 5, and sucking them into the dust collection chamber 20 by the fan 9.

[0048] Step 4: At the same time, some of the scattered debris and dust will fall to the front end of the fixed block 7. Under the influence of gravity, the debris will slide to the front end of the fixed block 7 and fall onto the dust collection plate 6. The dust collection plate 6 is tilted downward into the dust collection chamber 20. At the same time, a baffle 19 is provided at the upper end of the dust collection chamber 20 to prevent debris and dust from drifting to other places.

[0049] Step 5: During the collection of debris and dust, the electrostatic generator 21 is activated to generate static electricity in the electrostatic adsorption net 22. The debris and dust are attracted to the electrostatic adsorption net 22 due to static electricity, making it difficult for the debris and dust to be blown away to other places. At the same time, filter outlets 35 are provided at the bottom of the base 3 and the bottom of the dust collection chamber 20, so that the air generated by the fan 9 can be blown out from the filter outlets 35, preventing the wind force from blowing away the debris and dust that have fallen into the dust collection plate 6. After collection is completed, the collection drawer 12 is pulled out of the base 3, and the debris and dust in the collection drawer are collected and cleaned.

[0050] Step Six: A vibration damping structure is set at the bottom of the base 3. The locking blocks 34 on both sides of the support frame 29 fit into the inner grooves 32 on both sides of the mounting frame 28. At the same time, small springs 33 are set so that the base 3 and the mounting frame 28 can buffer and dampen vibration. Meanwhile, a damping spring 30 is set inside the mounting frame 28 to achieve a double vibration damping effect, so that the vibration generated by the electronic fabric strength tester is reduced during the test.

[0051] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

Claims

1. A cleaning device for an electronic fabric strength tester, comprising a base (3); Its features are: Also includes: A gantry frame (1) is set on the upper end of a base (3). The gantry frame (1) has clamps (2) at both its upper and lower ends. Each clamp (2) has a rotating handle (26) at its front end. A fixing block (7) is set on the upper end of the base (3). The clamps (2) at the lower end of the gantry frame (1) are fixedly installed on the upper end of the fixing block (7). Slide grooves (14) are provided on both sides of the rear end of the fixing block (7). Two slide grooves (14) are provided and symmetrically arranged on both sides of the rear end of the fixing block (7). The slide grooves (14) and the fixing block (7) are connected. The slide (14) is integrally molded. A transmission rod (15) is provided on the outside of the slide (14). Two transmission rods (15) are provided and symmetrically arranged on the outside of the corresponding slide (14). A rotating shaft (16) is provided between the transmission rods (15). The rotating shaft (16) is located between the two transmission rods (15) and is movably connected. A cleaning brush (17) is provided on the outside of the rotating shaft (16). The cleaning brush (17) is fixedly installed on one side of the rotating shaft (16). Both sides of the upper surface of the fixing block (7) are provided with a nano anti-fouling coating (24). The transmission rod (15) has a pulley (25) at its inner bottom end, and there are four pulleys (25) arranged symmetrically in pairs. A connecting shaft (31) is provided on the outer side of the pulley (25), and a drive transmission device (23) is provided between the two ends of the connecting shaft (31). A motor (27) is provided inside the transmission rod (15), and one end of the motor (27) is connected to a rotating shaft (16). The upper end of the base (3) is provided with a dust suction plate (5), and the dust suction plate (5) is fixedly installed on the upper end of the base (3). The bottom of the rear end of the dust suction plate (5) is provided with a dust suction hole (18), and one end of the fixing block (7) extends into the dust suction plate (5) and connects with the entrance of the dust suction hole (18). The outer side of the base (3) is provided with a suction tube (8), one end of the suction tube (8) is connected to the dust suction hole (18), and the other end of the suction tube (8) extends into the base (3). The interior of the base (3) is provided with a fan (9), and one end of the fan (9) is connected to the other end of the suction tube (8). The upper end of the fan (9) is provided with a discharge pipe (10). The base (3) is provided with a dust collection chamber (20) inside, and the rear end of the dust collection chamber (20) is connected to one end of the discharge pipe (10). One end of the discharge pipe (10) is provided with a guide pipe (11). The front end of the base (3) is provided with a dust collection plate (6). The upper end of the dust collection chamber (20) is provided with a baffle (19), and the baffle (19) is connected to the inlet of the dust collection plate (6). The dust collection chamber (20) is equipped with a collection drawer (12) inside. The front end of the collection drawer (12) is equipped with a handle (13). The collection drawer (12) is equipped with an electrostatic adsorption net (22) inside. The electrostatic adsorption net (22) is fixedly installed inside the collection drawer (12). The collection drawer (12) is equipped with an electrostatic generator (21).

2. The cleaning device for an electronic fabric strength tester according to claim 1, characterized in that: The bottom of the dust collection chamber (20) and the bottom of the base (3) are both provided with filter outlets (35).

3. The cleaning device for an electronic fabric strength tester according to claim 1, characterized in that: The base (3) has a support frame (29) at its bottom end, and the support frame (29) is fixedly installed at the bottom end of the base (3). The support frame (29) has a locking block (34) on both sides, and the locking block (34) is integrally formed with the support frame (29). The support frame (29) has an installation frame (28) on its outer side. The installation frame (28) has an inner groove (32) on both sides inside, and the inner groove (32) fits into the locking block (34). The inner groove (32) and the locking block (34) are connected at the upper and lower ends, and small springs (33) are provided at both ends. The installation frame (28) has a damping spring (30) at its bottom end, and a foot bracket (4) is provided at the bottom end of the installation frame (28).

4. The cleaning device for an electronic fabric strength tester according to claim 1, characterized in that: The collection drawer (12) and the dust collection bin (20) are pulled out via a sliding groove.

5. A cleaning method for a cleaning device for an electronic fabric strength tester, implemented according to claim 4, characterized in that: Includes the following steps: Step 1: During use, the debris and dust generated during the test of the electronic fabric strength tester will fall everywhere. Start the fan (9) to suck some of the debris and dust that fall everywhere into the dust suction hole (18) through the suction force generated by the fan (9) from the dust suction plate (5), and blow the debris and dust into the base (3) through the suction pipe (8). The debris and dust will be blown into the dust collection chamber (20) along the fan (9) and the discharge pipe (10). One end of the discharge pipe (10) is equipped with a guide pipe (11) to press the air from the air outlet downward to prevent the air from blowing the debris and dust everywhere. Step 2: Heavier debris falls onto the fixed block (7). Because the upper end of the fixed block (7) is conical and has a nano anti-fouling coating (24), the debris and dust are not easily stuck to the surface of the upper end of the fixed block (7). Under the influence of gravity, the debris slides into the dust collection plate (5) and is sucked away by the fan (9) from the upper surface of the fixed block (7). Step 3: Simultaneously start the drive transmission device (23), drive the pulley (25) inside the transmission rod (15) to rotate so that the transmission rod (15) can slide along the slide groove (14) to the inside of the suction plate (5) at an angle. At the same time, the motor (27) starts, so that the rotating shaft (16) rotates on the transmission rod (15) and drives the cleaning brush (17) on the rotating shaft (16) to rotate, sweeping the remaining debris and dust towards the suction hole (18) inside the suction plate (5) and sucking it into the dust collection chamber (20) by the fan (9). Step 4: At the same time, some of the scattered debris and dust will fall to the front end of the fixed block (7). Under the influence of gravity, the debris will slide to the front end of the fixed block (7) and fall into the dust collection plate (6). The dust collection plate (6) is tilted downward into the dust collection chamber (20). At the same time, a baffle (19) is provided at the top of the dust collection chamber (20) to prevent debris and dust from drifting to other places. Step 5: During the collection of debris and dust, start the electrostatic generator (21) to generate static electricity on the electrostatic adsorption net (22). The debris and dust will be adsorbed onto the electrostatic adsorption net (22) due to static electricity, making it difficult for the debris and dust to be blown away to other places. At the same time, filter outlets (35) are set at the bottom of the base (3) and the bottom of the dust collection chamber (20) so that the wind generated by the fan (9) can be blown out from the filter outlets (35) to prevent the wind force from blowing away the debris and dust that fall into the dust collection plate (6). After collection is completed, pull the collection drawer (12) out of the base (3) and collect and clean the debris and dust in the collection drawer. Step 6: A vibration damping structure is set at the bottom of the base (3). By setting the locking blocks (34) on both sides of the support frame (29) and the inner grooves (32) set on both sides of the mounting frame (28), and setting the small springs (33), the base (3) and the mounting frame (28) can buffer and dampen vibration. At the same time, the mounting frame (28) is equipped with damping springs (30) to achieve a double damping effect, so that the vibration generated by the electronic fabric strength tester is reduced during the test.

Citation Information

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