A cutting waste collecting device for a conductive non-transfer tape

CN224782875UActive Publication Date: 2026-09-22江苏南锦电子材料有限公司
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202522445440.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-18
Publication Date
2026-09-22
Estimated Expiration
2035-11-18

AI Technical Summary

Technical Problem

这种粘附现象对可循环收集筒的影响尤为突出,会给后续清理与重复使用带来极大困扰——因胶带废料与筒壁间的粘附力较强,清理时需耗费大量人力与时间,不仅拖慢了收集筒的周转节奏,还可能因清理不彻底导致残留粘性累积,下次收集时废料更易粘附,久而久之甚至会影响收集筒的正常使用,缩短其循环使用寿命;

Benefits of technology

本实用新型中,通过设置防粘废料收集机构中的凸起防粘机构与海绵块、水流循环机构的配合,实现水流循环保持筒壁湿润,破坏废料粘附条件,配合固液分离设计,有效解决导电无转印胶带废料粘壁问题,降低清理难度,提升收集装置的循环利用效率。

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224782875U_ABST
    Figure CN224782875U_ABST
Patent Text Reader

Abstract

The utility model relates to a waste collecting device technical field especially is a kind of cutting waste collecting device of conductive non-transfer adhesive tape, including cylinder foot, the top of cylinder foot is fixed with anti-sticking waste collecting mechanism, and the upper portion of anti-sticking waste collecting mechanism is clamped with pipe cylinder cover, and the side of cylinder foot is installed with water flow circulation mechanism, and anti-sticking waste collecting mechanism includes cylinder body, the inside of cylinder body is fixed with several groups of linear arrangement's convex anti-sticking mechanism, four sponge blocks are installed to the inner wall of cylinder body, anti-sticking waste collecting mechanism includes cylinder body, the inside of cylinder body is equipped with anti-stripping dovetail groove, anti-stripping dovetail groove extends to the bottom end of cylinder body inside, and anti-stripping dovetail groove is matched with sponge block, and each group of convex anti-sticking mechanism includes four arc convex blocks, in the utility model, water flow circulation keeps cylinder wall wet, destroys waste sticking condition, cooperates solid-liquid separation design, effectively solves waste sticking wall problem, reduces cleaning difficulty, and improves the recycling efficiency of collecting device.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the technical field of waste collection devices, specifically a device for collecting cutting waste from conductive non-transfer tape. Background Technology

[0002] In the production and processing of conductive non-transfer tape, the cutting process generates a large amount of waste. The collection and treatment of this waste is a key aspect of the production process. For recyclable waste collection cylinders, the collection of waste and the maintenance of the cylinder body are crucial to the equipment turnover efficiency. Since conductive non-transfer tape itself has strong adhesion, the existing process often uses an adsorption tube to transport the cutting waste into the collection cylinder. However, during the process of entering the collection cylinder, the waste is very easy to adhere tightly to the inner wall of the collection cylinder due to its own adhesion. This adhesion phenomenon has a particularly prominent impact on recyclable collection cylinders, causing great trouble for subsequent cleaning and reuse. Because the adhesive tape waste has a strong adhesion to the cylinder wall, cleaning requires a lot of manpower and time, which not only slows down the turnover of the collection cylinder, but may also lead to the accumulation of residual stickiness due to incomplete cleaning. The waste is more likely to adhere during the next collection, and over time it may even affect the normal use of the collection cylinder and shorten its cycle life. To improve this problem, the industry often uses the method of pre-storing water at the bottom of the collection tube to prevent waste from directly contacting the tube wall and reduce adhesion. However, the waste material cut by conductive non-transfer tape is light and is continuously disturbed by the adsorption airflow when introduced through the adsorption tube, making it difficult to settle into the bottom water. It still adheres in large quantities to the upper part of the inner wall of the tube, which makes cleaning the collection tube still laborious and maintenance efficiency needs to be improved. Therefore, a waste collection device for cutting conductive non-transfer tape is proposed to address the above problems. Utility Model Content

[0003] The purpose of this invention is to provide a device for collecting waste material from the cutting of conductive non-transfer tape, so as to solve the problems mentioned in the background art.

[0004] To achieve the above objectives, this utility model provides the following technical solution: A waste collection device for conductive non-transfer tape cutting includes a cylindrical foot, with an anti-stick waste collection mechanism fixed at the top of the cylindrical foot. A tube-type cap is fitted above the anti-stick waste collection mechanism, and a water circulation mechanism is installed on one side of the cylindrical foot. The anti-stick waste collection mechanism includes a cylindrical body, with several sets of linearly arranged raised anti-stick mechanisms fixed on the inner side of the cylindrical body. Four sponge blocks are installed on the inner wall of the cylindrical body, and an anti-detachment dovetail groove is formed on the inner side of the cylindrical body, extending to the bottom of the inner side of the cylindrical body and fitting with the sponge blocks. Each set of raised anti-stick mechanisms includes four arc-shaped protrusions, with connecting blocks fixed at both ends of each arc-shaped protrusion. A collection groove is formed at the center of the top of each arc-shaped protrusion, and multiple cones are fixed on the outer wall of each arc-shaped protrusion.

[0005] As a further optimization of this utility model, the water circulation mechanism includes a water collection box, which is fixedly located at the center of the top of the cylinder. A triangular filter hole is provided at the top of the water collection box. A waste collection box is fitted around the middle of the outer side of the water collection box and fits snugly against the cylinder. A circulation pipe is fixedly connected through one side of the water collection box. A water outlet box is fixed at the top of the cylinder. The top of the circulation pipe is connected through the water outlet box. A control valve is fixed at the bottom of the outer side of the circulation pipe, and a water pump is fixed at the top of the outer side of the circulation pipe.

[0006] As a further optimization of this utility model, the four sponge blocks are arranged in a circle and are parallel to each other. The sponge blocks extend into the bottom of the inner side of the cylinder. The vertical projection shape of the sponge blocks is dovetail-shaped, and the outer side of the sponge blocks is attached to the outer side of the connecting block.

[0007] As a further optimization of this utility model, the outer side of the arc-shaped protrusion has an arc-shaped structure, the outer wall of the connecting block near the arc-shaped protrusion has an inclined structure, and the outer wall of the connecting block away from the arc-shaped protrusion has an arc-shaped structure.

[0008] As a further optimization of this utility model, the inner side of the collection groove has an arc-shaped structure, and each arc-shaped protrusion has multiple protrusions arranged in an arc shape, with a gap between the protrusions and the inner wall of the cylinder.

[0009] As a further optimization of this utility model, the upper surface of the water collection box has a hemispherical structure, and the center of the water collection box and the center of the cylinder are located on the same central axis.

[0010] As a further optimization of this utility model, the circulation pipe is located outside the cylinder, and the control valve is located below the water pump.

[0011] Compared with the prior art, the beneficial effects of this utility model are: In this invention, by setting up a raised anti-sticking mechanism in the anti-sticking waste collection mechanism in cooperation with a sponge block and a water circulation mechanism, water circulation is achieved to keep the cylinder wall moist, thereby disrupting the conditions for waste adhesion. Combined with the solid-liquid separation design, this effectively solves the problem of conductive non-transfer tape waste sticking to the wall, reduces the difficulty of cleaning, and improves the recycling efficiency of the collection device. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the structure of the anti-sticking waste collection mechanism of this utility model; Figure 3 This is a schematic diagram of the structure of the raised anti-stick mechanism of this utility model; Figure 4 This is a schematic diagram of the water circulation mechanism of this utility model; Figure 5 This is a cross-sectional structural diagram of the anti-sticking waste collection mechanism of this utility model; Figure 6 This is a cross-sectional structural diagram of the cylindrical body of this utility model.

[0013] In the diagram: 1. Piston foot; 2. Anti-sticking waste collection mechanism; 21. Cylinder body; 22. Raised anti-stick mechanism; 221. Arc-shaped raised block; 222. Connecting block; 223. Collection groove; 224. Conical protrusion; 23. Sponge block; 24. Anti-detachment dovetail groove; 3. With tube cap; 4. Water circulation mechanism; 41. Water collection box; 42. Triangular filter hole; 43. Circulation pipe; 44. Water outlet box; 45. Control valve; 46. Water pump; 5. Waste collection box. Detailed Implementation

[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0015] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.

[0016] Please see Figures 1-6 This utility model provides a technical solution: A waste collection device for cutting conductive non-transfer tape includes a cylindrical base 1, with an anti-stick waste collection mechanism 2 fixed to the top of the cylindrical base 1. A tube-type cap 3 is fitted above the anti-stick waste collection mechanism 2. A water circulation mechanism 4 is installed on one side of the cylindrical base 1. The anti-stick waste collection mechanism 2 includes a cylindrical body 21, with several sets of linearly arranged protruding anti-stick mechanisms 22 fixed to the inner side of the cylindrical body 21. Four sponge blocks 23 are installed on the inner wall of the cylindrical body 21. The inner side of the body 21 is provided with an anti-detachment dovetail groove 24, which extends to the bottom of the inner side of the cylinder 21 and is adapted to the sponge block 23; each set of protruding anti-sticking mechanism 22 includes four arc-shaped protrusions 221, both ends of which are fixed with connecting blocks 222, a collection groove 223 is provided at the center of the top of the arc-shaped protrusions 221, and multiple protruding cones 224 are fixed on the outer wall of the arc-shaped protrusions 221; Specifically, in the anti-sticking waste collection mechanism 2, the sponge block 23 is fixed by the anti-detachment dovetail groove 24 to keep the cylinder wall moist. The arc-shaped protrusion 221 and the convex cone 224 work together to destroy the conditions for waste adhesion. The collection groove 223 assists in moisturizing. The tube cover 3 ensures accurate waste delivery. Combined with the water circulation mechanism 4, the problem of sticking to the wall is completely solved, the collection efficiency is improved and it is easy to maintain. As a further implementation of this solution, the water circulation mechanism 4 includes a water collection box 41, which is fixed to the center of the top of the cylinder 21. A triangular filter hole 42 is provided on the top of the water collection box 41. A waste collection box 5 is fitted on the middle of the outer side of the water collection box 41. The waste collection box 5 is in close contact with the cylinder 21. A circulation pipe 43 is fixed through one side of the water collection box 41. A water outlet box 44 is fixed at the top of the cylinder 21. An opening is provided on the side of the bottom of the water outlet box 44. The top of the circulation pipe 43 is connected through the water outlet box 44. A control valve 45 is fixed at the bottom of the outer side of the circulation pipe 43. A water pump 46 is fixed at the top of the outer side of the circulation pipe 43. Specifically, the upper surface of the water collection box 41 has a hemispherical structure, and the center of the water collection box 41 and the center of the cylinder 21 are on the same central axis. The circulation pipe 43 is located outside the cylinder 21, and the control valve 45 is located below the water pump 46. The spherical upper surface of the water collection box 41 is coaxial with the cylinder 21 to ensure smooth water flow. The triangular filter hole 42 prevents clogging and works with the waste collection box 5 to achieve solid-liquid separation. The external circulation pipe 43 does not take up internal space, and the control valve 45 facilitates flow control. Overall, it saves water and improves waste collection efficiency. As a further implementation of this scheme, the four sponge blocks 23 are arranged in a circle and are parallel to each other. The sponge blocks 23 extend into the bottom of the inner side of the cylinder 21. The vertical projection shape of the sponge blocks 23 is a dovetail shape. The sponge blocks 23 can fully contact the circulating water flow when they extend into the bottom of the cylinder 21, and continuously maintain a moist state. As a further implementation of this solution, the outer side of the arc-shaped protrusion 221 has an arc-shaped structure, the outer side of the sponge block 23 is attached to the outer side of the connecting block 222, the outer wall of the connecting block 222 is inclined on the side close to the arc-shaped protrusion 221, and the outer wall of the connecting block 222 is arc-shaped on the side away from the arc-shaped protrusion 221. To further explain, the arc-shaped structure on the outer side of the arc-shaped protrusion 221 guides the water flow smoothly, and the inclined structure on one side of the connecting block 222 facilitates the flow of excess water on both sides of the sponge block 23 to the collection tank 223. The arc-shaped structure on the side of the connecting block 222 away from the arc-shaped protrusion 221 can avoid cutting the sponge block 23. As a further implementation of this scheme, the inner side of the collection trough 223 has an arc-shaped structure, and each arc-shaped protrusion 221 is provided with multiple protrusions 224. The multiple protrusions 224 are arranged in an arc shape, and there is a gap between the protrusions 224 and the inner wall of the cylinder 21. To further explain, the collection tank 223 can collect excess water flow, preventing water flow from flowing directly down the cylinder wall and causing local dryness. The water flow that is continuously retained in the collection tank 223 can keep the top of the arc-shaped protrusion 221 always in a moist state. In response to the characteristic that tape waste is easy to adhere to dry areas, it forms a targeted anti-sticking guarantee, ensuring that there are no anti-sticking dead corners inside the cylinder 21. Workflow: Fix the device next to the conductive non-transfer tape cutting equipment using the cylinder foot 1, ensuring overall stability and no shaking. Check whether the four sponge blocks 23 are fully embedded in the anti-detachment dovetail groove 24 inside the cylinder 21 of the anti-stick waste collection mechanism 2, and whether the outer side of the sponge block 23 is tightly attached to the outer side of the connecting block 222. Confirm that the waste collection box 5 has been fitted onto the middle of the outer side of the water collection box 41. Insert the external cutting waste adsorption tube into the feed end of the tube cap 3, adjust the docking angle, and ensure that the waste generated by cutting can be accurately transported into the cylinder 21 to avoid waste scattering. Add an appropriate amount of clean water into the cylinder 21 to make the sponge block 23 completely wet, and use the water absorption of the sponge block 23 to maintain the initial moisture level inside the cylinder 21. During water circulation operation, the control valve 45 is opened, and the water pump 46 at the top of the outer side of the circulation pipe 43 is started. The water pump 46 provides power to transport the clean water in the water collection box 41 to the circulation pipe 43. The water flows up along the circulation pipe 43 to the outlet box 44 at the top. Due to gravity, the water in the outlet box 44 drips from the bottom opening. The water first contacts the raised anti-sticking mechanism 22 on the inner side of the cylinder 21 and flows along the arc-shaped outer side of the arc-shaped protrusion 221. Multiple arc-shaped convex cones 224 A gap is formed between the water and the inner wall of the cylinder 21, causing slight disturbance to the water flow and preventing the water from adhering smoothly to the cylinder wall. At the same time, some water seeps into the sponge block 23 below, replenishing the water in the sponge block 23 and keeping it moist. The water flowing through the raised anti-sticking mechanism 22 and the sponge block 23 is collected at the bottom of the cylinder 21 and then flows to the water collection box 41 at the top center. It is filtered through the triangular filter hole 42 at the top of the water collection box 41. The filtered clean water re-enters the circulation pipe 43, realizing the reuse of water resources. After the cutting equipment is started, the conductive non-transfer tape waste enters the cylinder 21 through the adsorption tube and the tube cover 3. At this time, the continuous circulating water flow in the cylinder 21 impacts the waste. Because the waste is light, the water flow prevents it from directly contacting the cylinder wall. Even if some waste is close to the arc-shaped protrusion 221 due to its stickiness, the water flow disturbance formed by the cone 224 and the arc structure of the arc-shaped protrusion 221 will destroy the adhesion conditions between the waste and the cylinder wall. At the same time, the wet cylinder wall and the surface of the protrusion anti-sticking mechanism 22 greatly reduce the stickiness of the waste and prevent the waste from sticking. In addition, the arc-shaped collection groove 223 at the top center of the arc-shaped protrusion 221 receives the excess water dripping from the sponge block 23, keeps the top of the arc-shaped protrusion 221 moist, and further enhances the anti-sticking effect. Waste materials flowing towards the center of cylinder 21 with the water flow enter water collection box 41 along with the water flow. After being filtered by triangular filter holes 42, the waste materials are intercepted in water collection box 41. Subsequently, due to gravity, they fall into the waste collection box 5 installed below. The filtered clean water continues to participate in the water flow circulation, realizing the separation of waste materials and water. When the waste materials in waste collection box 5 accumulate to a certain amount, the water pump 46 and control valve 45 are turned off, the waste collection box 5 is removed, and the conductive non-transfer tape waste inside is collected and transported for disposal. After cleaning, it is put back on the outside of water collection box 41, and the device operation is restored.

[0017] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A device for collecting waste material from the cutting of conductive non-transfer tape, comprising a cylindrical base (1), characterized in that: The top of the cylinder foot (1) is fixed with an anti-stick waste collection mechanism (2), and a tube cap (3) is attached above the anti-stick waste collection mechanism (2). A water circulation mechanism (4) is installed on one side of the cylinder foot (1). The anti-sticking waste collection mechanism (2) includes a cylinder (21), and a number of sets of linearly arranged protruding anti-sticking mechanisms (22) are fixed on the inner side of the cylinder (21). Four sponge blocks (23) are installed on the inner wall of the cylinder (21). An anti-detachment dovetail groove (24) is opened on the inner side of the cylinder (21). The anti-detachment dovetail groove (24) extends to the bottom of the inner side of the cylinder (21), and the anti-detachment dovetail groove (24) is adapted to the sponge block (23). Each set of the raised anti-stick mechanism (22) includes four arc-shaped raised blocks (221), both ends of which are fixed with connecting blocks (222), a collection groove (223) is provided at the center of the top of the arc-shaped raised block (221), and multiple cones (224) are fixed on the outer wall of the arc-shaped raised block (221).

2. The waste collection device for cutting conductive non-transfer tape according to claim 1, characterized in that: The water circulation mechanism (4) includes a water collection box (41), which is fixed at the center of the top of the cylinder (21). A triangular filter hole (42) is opened at the top of the water collection box (41). A waste collection box (5) is fitted on the middle of the outer side of the water collection box (41). The waste collection box (5) is in close contact with the cylinder (21). A circulation pipe (43) is fixed through one side of the water collection box (41). A water outlet box (44) is fixed at the top of the cylinder (21). The top of the circulation pipe (43) is connected through the water outlet box (44). A control valve (45) is fixed at the bottom of the outer side of the circulation pipe (43). A water pump (46) is fixed at the top of the outer side of the circulation pipe (43).

3. The waste collection device for cutting conductive non-transfer tape according to claim 1, characterized in that: The four sponge blocks (23) are arranged in a circle and are parallel to each other. The sponge blocks (23) extend into the bottom of the inner side of the cylinder (21). The vertical projection shape of the sponge blocks (23) is a swallowtail shape. The outer side of the sponge blocks (23) is attached to the outer side of the connecting block (222).

4. The waste collection device for cutting conductive non-transfer tape according to claim 1, characterized in that: The outer side of the arc-shaped protrusion (221) has an arc-shaped structure, the outer wall of the connecting block (222) is inclined on the side close to the arc-shaped protrusion (221), and the outer wall of the connecting block (222) is arc-shaped on the side away from the arc-shaped protrusion (221).

5. The waste collection device for cutting conductive non-transfer tape according to claim 1, characterized in that: The inner side of the collection groove (223) has an arc-shaped structure. Each arc-shaped protrusion (221) has multiple protrusions (224). The multiple protrusions (224) are arranged in an arc shape, and there is a gap between the protrusions (224) and the inner wall of the cylinder (21).

6. The waste collection device for cutting conductive non-transfer tape according to claim 2, characterized in that: The upper surface of the water collection box (41) has a hemispherical structure, and the center of the water collection box (41) and the center of the cylinder (21) are located on the same central axis.

7. The waste collection device for conductive non-transfer tape cutting according to claim 2, characterized in that: The circulation pipe (43) is located outside the cylinder (21), and the control valve (45) is located below the water pump (46).