Adhesive tape dust removal mechanism
By designing a tape dust removal mechanism, which utilizes tape pulling, tape pressing, and positioning mechanisms, automatic dust removal of the rubber surface of the plug is achieved, solving the problems of low efficiency and instability of traditional manual dust removal, and improving the stability and efficiency of production.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-03-06
AI Technical Summary
Traditional manual dust removal methods are inefficient and unstable, and are difficult to effectively remove dust and lint from clogged rubber parts.
Design a tape dust removal mechanism, including a tape pulling mechanism, a tape pressing mechanism, and a positioning mechanism, which uses a rubber wheel sleeve and a pressing cylinder to realize the continuous movement of the tape and the automatic dust removal of the rubber surface.
It improved dust removal efficiency and stability, reduced tape wear, and enhanced production stability and efficiency.
Smart Images

Figure CN223970591U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of dust removal for plugged rubber stoppers, and more particularly to a tape dust removal mechanism. Background Technology
[0002] like Figure 3 As shown, Figure 3 The plug inside the air valve has a rubber part at its end. The production workshop is filled with dust, lint, etc., which can affect subsequent production processes.
[0003] The traditional solution is to hold the plug with your fingers and repeatedly adhere and separate the rubber part from the tape, using the sticky side of the tape to remove dust and lint from the rubber part.
[0004] However, this dust removal method is relatively inefficient and heavily relies on the labor efficiency of the operators. At the same time, the dust removal effect is easily affected by the operators. For example, during this manual dust removal, the rubber surface was tilted and did not make full contact with the tape, which shows that this dust removal method has relatively large instability. Utility Model Content
[0005] To address the aforementioned problems, this utility model provides a tape dust removal mechanism, which aims to solve the significant instability of manual dust removal while also significantly improving dust removal efficiency.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is: a tape dust removal mechanism, characterized in that it includes a tape pulling mechanism, a tape pressing mechanism, and a positioning mechanism.
[0007] A tape-pulling mechanism with a tape path for continuous tape movement;
[0008] The positioning mechanism is opposite to the adhesive surface of the tape, and the positioning mechanism has a constrained plug with the rubber surface of the plug facing the aforementioned adhesive surface;
[0009] The tape pressing mechanism has its output end facing the end of the plug, and the output end of the tape pressing mechanism is also facing the back of the tape. The output end has a direction that pushes the tape toward the end of the plug.
[0010] Furthermore, the tape pulling mechanism includes at least a pair of parallel first rubber roller sleeves and a second rubber roller sleeve located between the first rubber roller sleeves, making the middle area of the tape path arched. Specifically, the second rubber roller sleeve divides the tape passing through the first rubber roller sleeve into two segments. When the output end of the tape pressing mechanism applies pressure to one segment of the tape, it can also ensure the cleanliness of the adhesive surface of the other segment of the tape. This is to reduce tape wear. Since the area of the rubber surface is relatively small, the use of the second rubber roller sleeve is a further control over the amount of tape used.
[0011] Based on the use of the second rubber wheel sleeve, the preferred embodiment of the positioning mechanism is composed of a pressing cylinder and a pressing block. The two ends of the pressing block correspond to the rubber strips on both sides of the second rubber wheel sleeve, and the output end of the pressing cylinder is connected to the pressing block. Under the action of the pressing cylinder, the pressing block pushes the two sections of rubber strips to move simultaneously. In other words, the purpose of this design is to achieve a multi-station effect. In this embodiment, the present invention is a dual-station structure with two positioning mechanisms. Therefore, under the action of the pressing block, dust removal can be achieved on two plugs simultaneously.
[0012] To prevent the pressure block from damaging the tape, tape clamping blocks are provided at both ends of the pressure block. Preferably, the tape clamping blocks are made of rubber.
[0013] Furthermore, the second rubber wheel sleeve is located on the output end of a height adjustment mechanism. Specifically, adjusting the height of the second rubber wheel sleeve is to prevent interference with the lower pressure block, which is located above the second rubber wheel sleeve.
[0014] Because of the presence of the second rubber wheel sleeve, and because the second rubber wheel sleeve is longitudinally adjustable, the positioning mechanism includes a limit block and a pneumatic finger located outside the limit block. This design of the positioning mechanism can fit the usage environment of the second rubber wheel sleeve and will not interfere with the second rubber wheel sleeve.
[0015] The tape feeding mechanism includes a feeding tray, a winding tray, and multiple third rubber roller sleeves mounted on the mounting plate. The tape is fed out from the feeding tray and, after passing through the first rubber roller sleeve, the second rubber roller sleeve, and the third rubber roller sleeve, is wound up by the take-up tray.
[0016] The beneficial effects of this utility model are:
[0017] This invention utilizes a positioning mechanism, a tape pressing mechanism, and a tape pulling mechanism to achieve dust removal from the rubber surface. This machine dust removal method replaces manual operation, ensuring subsequent quality control and production capacity. In other words, this invention improves production stability and efficiency by combining the above mechanisms. Attached Figure Description
[0018] Figure 1This is a perspective view of the present invention.
[0019] Figure 2 yes Figure 1 Enlarged diagram of point A.
[0020] Figure 3 It is a 3D diagram of the plug. Detailed Implementation
[0021] like Figure 1-3 As shown, a tape dust removal mechanism is characterized by comprising a tape pulling mechanism, a tape pressing mechanism, and a positioning mechanism.
[0022] A tape pulling mechanism with a tape path for continuous movement of tape 1;
[0023] The positioning mechanism is opposite to the adhesive surface of the tape 1. The positioning mechanism has a constrained plug, and the rubber surface 21 of the plug is opposite to the aforementioned adhesive surface.
[0024] The tape pressing mechanism has its output end facing the plug 2, and the output end of the tape pressing mechanism is also facing the back side of the tape 1 (the side facing away from the adhesive side). The output end has a direction that pushes the tape 1 toward the plug 2.
[0025] The beneficial effects of this utility model are:
[0026] This invention utilizes a positioning mechanism, a tape pressing mechanism, and a tape pulling mechanism to achieve dust removal from the rubber surface 21. This machine dust removal method replaces manual operation, ensuring subsequent quality control and production capacity. In other words, this invention improves production stability and efficiency by combining the above mechanisms.
[0027] Furthermore, the tape pulling mechanism includes at least a pair of parallel first rubber roller sleeves 31 and a second rubber roller sleeve 32 located between the first rubber roller sleeves 31, such that the middle area of the tape path is arched 1a. Specifically, the second rubber roller sleeve 32 divides the tape 1 passing through the first rubber roller sleeve 31 into two segments. When the output end of the tape pressing mechanism applies pressure to one segment of the tape 1, it can also ensure the cleanliness of the adhesive surface of the other segment of the tape 1. This is to reduce the wear of the tape 1. The area of the rubber surface 21 is relatively small, so the use of the second rubber roller sleeve 32 is a further control over the amount of tape 1 used.
[0028] Based on the use of the second rubber wheel sleeve 32, the preferred embodiment of the above positioning mechanism is composed of a pressing cylinder 41 and a pressing block 42. The two ends of the pressing block 42 correspond to the two sections of the tape 1, respectively. The output end of the pressing cylinder 41 is connected to the pressing block 42. Under the action of the pressing cylinder 41, the pressing block 42 pushes the two sections of tape 1 to move simultaneously. That is to say, the purpose of this design is to achieve a multi-station effect. In this embodiment, the present invention is a dual-station structure with two positioning mechanisms. Therefore, under the action of the pressing block 42, dust removal can be achieved on the two plugs 2 at the same time.
[0029] In order to prevent the pressure block 42 from damaging the tape 1, tape pressure blocks 43 are provided at both ends of the pressure block 42. Preferably, the tape pressure blocks 43 are made of rubber material.
[0030] Furthermore, the second rubber wheel sleeve 32 is disposed on the output end of a height adjustment mechanism (not shown in the figure). Specifically, the height of the second rubber wheel sleeve 32 is adjusted to prevent interference with the lower pressure block 42, which is located above the second rubber wheel sleeve 32.
[0031] Because of the presence of the second rubber wheel sleeve 32, and because the second rubber wheel sleeve 32 is longitudinally adjustable, the positioning mechanism includes a limit block 51 and a pneumatic finger 52 located outside the limit block 51. This design of the positioning mechanism can fit the usage environment of the second rubber wheel sleeve 32 and will not interfere with the second rubber wheel sleeve 32. The pneumatic finger 52 clamps the plug 2 on the limit block 51.
[0032] The tape pulling mechanism includes a feeding tray 61, a winding tray 62, and multiple third rubber roller sleeves 63 mounted on the mounting plate. The tape 1 is fed out from the feeding tray 61 and, after passing through the first rubber roller sleeve 31, the second rubber roller sleeve 32, and the third rubber roller sleeve 63, is wound up by the winding tray 62.
[0033] The above embodiments are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.
Claims
1. A tape dust removing mechanism characterized by comprising: The tape pulling mechanism, the tape pressing mechanism and the positioning mechanism are included. The tape pulling mechanism has a tape path for continuous movement of the tape. The positioning mechanism is opposite to the adhesive surface of the tape, and has a plug constrained therein, and the rubber surface of the plug is opposite to the adhesive surface. The tape pressing mechanism is opposite to the plug at the output end thereof, and the output end of the tape pressing mechanism is also opposite to the back surface of the tape, and the output end has a direction for pushing the tape to move to the plug.
2. The adhesive tape dust removal mechanism according to claim 1, characterized by The tape pulling mechanism includes at least a pair of first rubber wheel sleeves in parallel with each other, and a second rubber wheel sleeve between the first rubber wheel sleeves, so that the middle region of the tape path is arched.
3. The belt dusting mechanism of claim 2, wherein The positioning mechanism includes a pressing cylinder and a pressing block, and the two ends of the pressing block are respectively corresponding to the tape outside the two sides of the second rubber wheel sleeve, and the output end of the pressing cylinder is connected with the pressing block.
4. The belt dust removal mechanism according to claim 3, wherein The two ends of the pressing block are provided with tape pressing blocks made of rubber material.
5. The belt dusting mechanism of claim 2, wherein The positioning mechanism also includes a height adjusting mechanism, and the second rubber wheel sleeve is arranged on the output end of the height adjusting mechanism.
6. The belt dusting mechanism of claim 5, wherein The positioning mechanism includes a limiting block and a pneumatic finger outside the limiting block.
7. The belt dust removal mechanism according to claim 5, wherein The tape pulling mechanism includes a feeding disc, a winding disc and a plurality of third rubber wheel sleeves arranged on a mounting plate.