Non-woven fabric surface antistatic treatment equipment
By introducing electrostatic sensors and adjustment mechanisms into the antistatic treatment equipment for nonwoven fabric surfaces, the problem of difficulty in monitoring and adjusting electrostatic levels and tension has been solved, enabling real-time monitoring of electrostatic performance and precise control of tension, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202520027350.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing antistatic treatment equipment for nonwoven fabric surfaces is unable to monitor static electricity levels and tension in real time, leading to substandard static performance and production interruptions.
An antistatic treatment device for nonwoven fabric surfaces was designed, equipped with an electrostatic sensor to monitor the electrostatic level in real time, and an adjustment mechanism to adjust the tension of the nonwoven fabric to prevent damage.
It enables real-time monitoring of electrostatic performance and precise adjustment of tension, ensuring that electrostatic performance meets requirements, reducing production interruptions and defective products, and improving production efficiency.
Smart Images

Figure CN223687773U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the field of non - woven fabric surface treatment is specifically a kind of non - woven fabric surface antistatic treatment equipment. BACKGROUND
[0002] Non - woven fabric surface antistatic treatment equipment is a kind of equipment for improving the antistatic performance of non - woven fabric surface, and its working principle is mainly that static electricity roller is contacted with the surface of non - woven fabric, the conductivity of the surface of non - woven fabric is increased, so that static charge can quickly dissipate to air or conduct to ground, thereby reducing or eliminating the accumulation of static electricity.
[0003] In the prior art, it is difficult to monitor the static level of the surface of non - woven fabric before and after antistatic treatment in real time during use, which can cause the static level after treatment to not reach the ideal state, resulting in that the static performance of the final product does not meet the requirements;When the static electricity roller is working, if the tension of non - woven fabric is improper, it can cause damage to the surface of non - woven fabric, increase the production interruption or defective product caused by relaxation or tightness of non - woven fabric, and reduce production efficiency. UTILITY MODEL CONTENT
[0004] Therefore, in order to solve the above problems, the utility model provides a kind of non - woven fabric surface antistatic treatment equipment.
[0005] The utility model is realized in this way, a kind of non - woven fabric surface antistatic treatment equipment is constructed, the device includes mounting bracket, the right end of the mounting bracket is rotatably connected with first winding roller, the center of the mounting bracket is rotatably connected with static electricity roller, the top rear end of the mounting bracket is fixedly connected with detection mechanism, the front end left side of the mounting bracket is fixed with adjusting mechanism, the back of the adjusting mechanism is rotatably connected with second winding roller;
[0006] The detection mechanism includes support frame, the top rear end of the mounting bracket is fixedly connected with support frame, the center of the front end of the support frame is fixedly connected with connecting block, the front end of the connecting block is fixedly connected with motor, the left side of the front end of the support frame is fixedly connected with frequency converter, the back output shaft of the motor is fixedly connected with first rotating block, the back upper side of the first rotating block is fixedly connected with contact rod, the outer wall of the contact rod is slidably connected with the inner sliding groove of sliding groove plate, the left and right ends of the sliding groove plate are both fixedly connected with moving rod, and the bottom of the moving rod of the left end of the sliding groove plate is fixedly connected with static electricity sensor.
[0007] Preferably, the adjusting mechanism comprises a bottom plate, the left side of the front end of the mounting frame is fixedly provided with the bottom plate, the top right end of the bottom plate is fixedly connected with a limiting shell, the right end of the limiting shell is fixedly connected with a pneumatic cylinder, the left end push rod of the pneumatic cylinder is fixedly connected with a sliding block, the left end of the sliding block is rotatably connected with a first rotating rod, the left end of the first rotating rod is rotatably connected with a second rotating block on the front and back sides, the front end of the second rotating block on the left side of the front end of the first rotating rod is fixedly connected with a first fixed rod, the front end of the first fixed rod is fixedly connected with a third rotating block on the right side, the front end of the third rotating block is rotatably connected with a second rotating rod on the left side, the left end of the second rotating rod is rotatably connected with a moving block on the front end, and the outer wall of the moving block is slidably connected with a limiting plate.
[0008] Preferably, the adjusting mechanism further comprises a mounting plate, the back of the limiting plate is fixedly connected with the mounting plate, the back of the moving block is fixedly connected with a second fixed rod, and the back of the second fixed rod is rotatably connected with the front end of the second winding roller.
[0009] Preferably, the motor is electrically connected with the frequency converter, and the back of the connecting block is rotatably connected with a first rotating block.
[0010] Preferably, the moving rod penetrates through the left and right ends of the support frame and is slidably connected with the inside of the support frame, and the electrostatic sensor is electrically connected with an external display screen.
[0011] Preferably, the outer wall of the sliding block is slidably connected with the inside of the limiting shell, and the second rotating block is rotatably connected with the inside of the limiting shell.
[0012] Preferably, the first fixed rod penetrates through the limiting shell and the mounting plate and is rotatably connected with the inside of the mounting plate, the bottom of the mounting plate is fixedly connected with the top left end of the bottom plate, and the second fixed rod penetrates through the mounting plate and is slidably connected with the inside of the mounting plate.
[0013] The non-woven fabric surface antistatic treatment equipment has the following improvements compared with the same type of equipment:
[0014] The non-woven fabric surface antistatic treatment equipment sets a detection mechanism, and the electrostatic level of the non-woven fabric surface before and after antistatic treatment is monitored in real time through the electrostatic sensor, so that the electrostatic performance of the final non-woven fabric meets the requirements.
[0015] The non-woven fabric surface antistatic treatment equipment sets an adjusting mechanism, the tension of the non-woven fabric is adjusted by adjusting the position of the second winding roller, damage to the non-woven fabric surface caused by improper tension of the non-woven fabric is prevented, production interruption or defective products caused by relaxation or tightness of the non-woven fabric is reduced, and production efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] Fig. 1 This is a three-dimensional structural diagram of the antistatic treatment equipment of this utility model;
[0017] Fig. 2 This is a three-dimensional structural diagram of the testing mechanism of this utility model;
[0018] Fig. 3 This is a three-dimensional structural diagram of the adjustment mechanism of this utility model.
[0019] The components include: mounting frame-1, first take-up roller-2, antistatic roller-3, detection mechanism-4, support frame-41, connecting block-42, motor-43, frequency converter-44, first rotating block-45, contact rod-46, slide plate-47, moving rod-48, electrostatic sensor-49, adjustment mechanism-5, base plate-51, limiting shell-52, cylinder-53, slider-54, first rotating rod-55, second rotating block-56, first fixed rod-57, third rotating block-58, second rotating rod-59, moving block-510, limiting plate-511, mounting plate-512, second fixed rod-513, and second take-up roller-6. Detailed Implementation
[0020] The following is in conjunction with the appendix Figs. 1-3 The principles and features of this utility model are described below. The examples given are for illustrative purposes only and are not intended to limit the scope of this utility model. The utility model is described more specifically in the following paragraphs by way of example with reference to the accompanying drawings. The advantages and features of this utility model will become clearer from the following description and claims. It should be noted that the drawings are in a very simplified form and use non-precise proportions, and are only used to facilitate and clarify the illustration of the embodiments of this utility model.
[0021] It should be noted that when a component is described as "fixed to" another component, it can be directly on the other component or may have a component in between. When a component is considered "connected to" another component, it can be directly connected to the other component or may have a component in between. When a component is considered "set on" another component, it can be directly set on the other component or may have a component in between. The terms "vertical," "horizontal," "left," "right," and similar expressions used in this document are for illustrative purposes only.
[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.
[0023] Embodiment One:
[0024] Please refer to Figs. 1-2 The utility model discloses a non - woven fabric surface antistatic treatment equipment, including mount 1, the right -hand end of mount 1 is rotatably connected with first winding roller 2, the center of mount 1 is rotatably connected with static electricity removing roller 3, mount 1 top rear end fixedly connected with detection mechanism 4, mount 1 front end left side is fixed with adjusting mechanism 5, and adjusting mechanism 5 back rotatably connected with second winding roller 6.
[0025] Detection mechanism 4 includes support frame 41, and the rear end of mount 1 top is fixedly connected with support frame 41, and the center of support frame 41 front end is fixedly connected with connecting block 42, and connecting block 42 front end is fixedly connected with motor 43, and connecting block 42 is convenient for installing and fixing motor 43.
[0026] Support frame 41 left side is fixedly connected with frequency converter 44, and the output shaft of motor 43 back is fixedly connected with first rotating block 45, and the upper portion of first rotating block 45 back is fixedly connected with contact rod 46, and first rotating block 45 is convenient for driving contact rod 46 to do circular motion.
[0027] Contact rod 46 outer wall and the inner slide groove of slide groove plate 47 are slidably connected, and the both ends of slide groove plate 47 are fixedly connected with moving rod 48, and the bottom of moving rod 48 left end of slide groove plate 47 is fixedly connected with static electricity sensor 49, and motor 43 is electrically connected with frequency converter 44, and static electricity sensor 49 is convenient for detecting the static electricity level of the non - woven fabric surface of antistatic treatment.
[0028] Connecting block 42 back rotatably connected with first rotating block 45, moving rod 48 passes through the both ends of support frame 41 and is slidably connected with its inside, and static electricity sensor 49 is electrically connected with external display screen.
[0029] The working principle of the non - woven fabric surface antistatic treatment equipment based on embodiment one is:
[0030] First, when using the equipment, first place the equipment in the working area, then connect the device with the external power supply, that is, provide the power required for the equipment to work;
[0031] Second, the non-woven fabric is sequentially threaded through the first winding roller 2, the static electricity roller 3 and the second winding roller 6. The static electricity roller 3 is in contact with the surface of the non-woven fabric, thereby increasing the conductivity of the surface of the non-woven fabric, allowing the static electricity to quickly dissipate into the air or conduct to the ground, thereby reducing or eliminating the accumulation of static electricity. When the anti-static treatment is performed, the static electricity level of the surface of the non-woven fabric that has not been subjected to the anti-static treatment is detected by the static electricity sensor 49, and then the motor 43 is started, and the rotating speed of the motor 43 is controlled by the frequency converter 44. The motor 43 drives the first rotating block 45 to rotate, the first rotating block 45 drives the contact rod 46 to move in a circular motion, the contact rod 46 drives the moving rod 48 to move to the left through the sliding connection with the sliding groove plate 47, the moving rod 48 drives the static electricity sensor 49 to move to the left, and the static electricity level of the surface of the non-woven fabric that has been subjected to the anti-static treatment is detected by the static electricity sensor 49. By monitoring the static electricity level of the surface of the non-woven fabric before and after the anti-static treatment in real time, it is ensured that the static electricity level after the treatment meets the ideal state, so that the static electricity performance of the final non-woven fabric meets the requirements.
[0032] Embodiment two:
[0033] Please refer to Fig. 3 Compared with embodiment one, the non-woven fabric surface anti-static treatment equipment further comprises an adjusting mechanism 5. The adjusting mechanism 5 comprises a bottom plate 51, and the bottom plate 51 is fixed to the left side of the front end of the mounting frame 1. The right end of the top of the bottom plate 51 is fixedly connected with a limiting shell 52. The right end of the limiting shell 52 is fixedly connected with a pneumatic cylinder 53. The limiting shell 52 facilitates the installation and fixation of the pneumatic cylinder 53.
[0034] The left end of the pneumatic cylinder 53 is fixedly connected with a sliding block 54. The left end in the sliding block 54 is rotatably connected with a first rotating rod 55. The left end of the first rotating rod 55 is rotatably connected with a second rotating block 56 on the left side. The front end of the second rotating block 56 on the left side of the first rotating rod 55 is fixedly connected with a first fixed rod 57. The second rotating block 56 facilitates the rotation of the first fixed rod 57.
[0035] The front end of the first fixed rod 57 is fixedly connected with the right end of the back of a third rotating block 58. The left side of the front end of the third rotating block 58 is rotatably connected with a second rotating rod 59. The left end of the back of the second rotating rod 59 is rotatably connected with a moving block 510. The second rotating rod 59 facilitates the movement of the moving block 510.
[0036] The outer wall of the moving block 510 is slidably connected with a limiting plate 511. The back of the limiting plate 511 is fixedly connected with a mounting plate 512. The back of the moving block 510 is fixedly connected with a second fixed rod 513. The back of the second fixed rod 513 is rotatably connected with the front end of the second winding roller 6. The second fixed rod 513 facilitates the movement of the second winding roller 6.
[0037] The outer wall of the sliding block 54 is slidably connected with the inside of the limiting shell 52, the second rotating block 56 is rotatably connected with the inside of the limiting shell 52, the first fixed rod 57 penetrates through the limiting shell 52 and the mounting plate 512 and is rotatably connected with the inside thereof, the bottom of the mounting plate 512 is fixedly connected with the top left end of the bottom plate 51, and the second fixed rod 513 penetrates through the mounting plate 512 and is slidably connected with the inside thereof.
[0038] In the embodiment,
[0039] When it is necessary to adjust the tension of the non-woven fabric, the cylinder 53 is started, the cylinder 53 drives the sliding block 54 to move left in the limiting shell 52, the sliding block 54 drives the second rotating block 56 to rotate through the rotating connection with the first rotating rod 55, the second rotating block 56 drives the first fixed rod 57 to rotate, the first fixed rod 57 drives the third rotating block 58 to rotate, the third rotating block 58 drives the moving block 510 to move right in the limiting plate 511 through the rotating connection with the second rotating rod 59, the moving block 510 drives the second fixed rod 513 to move right, the second fixed rod 513 drives the second winding roller 6 to move right, and the tension of the non-woven fabric is adjusted by adjusting the position of the second winding roller 6, so that the damage to the surface of the non-woven fabric caused by improper tension of the non-woven fabric is prevented, the production interruption or the generation of defective products caused by relaxation or tightness of the non-woven fabric is reduced, and the production efficiency is improved.
[0040] The utility model discloses an anti-static treatment equipment for non-woven fabric surface is provided through the improvement, sets up detection mechanism 4, through static sensor 49 real -time monitoring the static level of non-woven fabric surface before and after anti -static treatment, prevents the static level after processing from reaching the ideal state, makes the final non-woven fabric static performance meet the requirement, sets up adjusting mechanism 5, realizes the tension of non-woven fabric adjustment through the position of second winding roller 6, prevents the tension of non-woven fabric from improper and causes the damage to the surface of non-woven fabric, reduces the production interruption or the generation of defective products caused by relaxation or tightness of non-woven fabric, improves production efficiency.
[0041] The basic principle and main features of the utility model are shown and described, and the advantages of the utility model are shown and described, and the standard parts used in the utility model can be purchased from the market, and the special-shaped parts can be ordered according to the description and the drawings, and the specific connection mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, and the mechanical parts and equipment adopt the conventional type in the prior art, and the circuit connection adopts the conventional connection mode in the prior art, which will not be described in detail here.
[0042] The above description of disclosed embodiments enables one of ordinary skill in the art to make or use the application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein can be applied to other embodiments without departing from the spirit or scope of the application. Thus, the present application is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A non-woven fabric surface antistatic treatment equipment, comprising a mounting frame (1), a first winding roller (2) is rotatably connected to the right end in the mounting frame (1), an electrostatic removal roller (3) is rotatably connected to the center in the mounting frame (1), a detection mechanism (4) is fixedly connected to the top rear end of the mounting frame (1), an adjusting mechanism (5) is fixed to the left side of the front end of the mounting frame (1), and a second winding roller (6) is rotatably connected to the back of the adjusting mechanism (5). characterized in that The detection mechanism (4) comprises a support frame (41), the top rear end of the mounting frame (1) is fixedly connected with the support frame (41), the front end center of the support frame (41) is fixedly connected with a connecting block (42), the front end of the connecting block (42) is fixedly connected with a motor (43), the left side of the front end of the support frame (41) is fixedly connected with a frequency converter (44), the back output shaft of the motor (43) is fixedly connected with a first rotating block (45), the back upper side of the first rotating block (45) is fixedly connected with a contact rod (46), the outer wall of the contact rod (46) is slidably connected with the inner sliding groove of a sliding groove plate (47), and the left and right two ends of the sliding groove plate (47) are both fixedly connected with a moving rod (48). The bottom of the moving rod (48) at the left end of the sliding groove plate (47) is fixedly connected with an electrostatic sensor (49).
2. The apparatus according to claim 1, wherein: The adjusting mechanism (5) comprises a bottom plate (51), the left side of the front end of the mounting frame (1) is fixedly connected with the bottom plate (51), the right end of the top of the bottom plate (51) is fixedly connected with a limiting shell (52), the right end of the limiting shell (52) is fixedly connected with an air cylinder (53), the left end pushing rod of the air cylinder (53) is fixedly connected with a sliding block (54), the inner left end of the sliding block (54) is rotatably connected with a first rotating rod (55), the left end of the first rotating rod (55) is rotatably connected with a second rotating block (56) on the left and right sides, the front end of the left end front side second rotating block (56) of the first rotating rod (55) is fixedly connected with a first fixed rod (57), the front end of the first fixed rod (57) is fixedly connected with the back right end of a third rotating block (58), the front left side of the third rotating block (58) is rotatably connected with a second rotating rod (59), the back left end of the second rotating rod (59) is rotatably connected with a moving block (510), and the outer wall of the moving block (510) is slidably connected with a limiting plate (511).
3. The apparatus according to claim 2, wherein: The adjusting mechanism (5) further comprises an installation plate (512), the back of the limiting plate (511) is fixedly connected with the installation plate (512), the back of the moving block (510) is fixedly connected with a second fixed rod (513), and the back of the second fixed rod (513) is rotatably connected with the front end of the second winding roller (6).
4. The apparatus according to claim 3, wherein: The motor (43) is electrically connected with the frequency converter (44), and the back of the connecting block (42) is rotatably connected with the first rotating block (45).
5. The apparatus according to claim 4, wherein: The moving rod (48) penetrates through the left and right ends of the support frame (41) and is slidably connected with the inside thereof, and the electrostatic sensor (49) is electrically connected with an external display screen.
6. The apparatus according to claim 5, wherein: The outer wall of the sliding block (54) is slidably connected with the inside of the limiting shell (52), and the second rotating block (56) is rotatably connected with the inside of the limiting shell (52).
7. The apparatus according to claim 6, wherein: The first fixed rod (57) penetrates through the limiting shell (52) and the mounting plate (512) and is rotatably connected with the inside thereof, the bottom of the mounting plate (512) is fixedly connected with the top left end of the bottom plate (51), and the second fixed rod (513) penetrates through the mounting plate (512) and is slidably connected with the inside thereof.