Easily-cleaned wire-drawing liquid filtering and recycling device

CN224641967UActive Publication Date: 2026-08-18ANBOSHI (XIAMEN) ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202521694069.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-11
Publication Date
2026-08-18
Estimated Expiration
2035-08-11

AI Technical Summary

Technical Problem

[0004]现有的拉丝液过滤回收装置是通过擦拭辊与金属丝接触,吸附拉丝液,然后利用刮板将擦拭辊上的拉丝液刮下,实现拉丝液的回收,但通过刮板直接对擦拭辊吸收的拉丝液进行分离时,由于刮板与擦拭辊直接接触并产生相对运动,长时间的摩擦会导致擦拭辊表面磨损,影响擦拭辊的使用寿命和对拉丝液的吸附效果,进而降低整个装置的工作效率和回收效果

Benefits of technology

[0024]1.本实用新型通过设有回收机构,通过挤压辊对擦拭辊表面的海绵进行挤压,使拉丝液受压流出,再结合刮板的刮除作用,能够更彻底地将拉丝液从擦拭辊表面分离并回收,大大提高了拉丝液的回收效率,且降低对擦拭辊的损伤;

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an easy-to-clean wire drawing liquid filtering and recycling device belongs to wire drawing liquid recycling device technical field, this easy-to-clean wire drawing liquid filtering and recycling device, including wire drawing machine body, one side of wire drawing machine body is fixed with first casing, one side of first casing is fixed with second casing, the bottom of first casing is fixed with the installation shell, and the top of installation shell is embedded with filter screen, the inside of first casing is equipped with the recovery mechanism that will be more thorough separation of wire drawing liquid, and the inside of second casing is equipped with the power mechanism that realizes synchronous transmission through transmission gear set.
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Description

Technical Field

[0001] This utility model relates to the technical field of drawing fluid recovery devices, and in particular to an easy-to-clean drawing fluid filtration and recovery device. Background Technology

[0002] Cable drawing machines are among the most critical pieces of equipment in cable manufacturing. Lubricants are required during the drawing process, and selecting the right drawing fluid can effectively reduce the coefficient of friction, prevent excessive heat damage and surface corrosion of the material, and improve production efficiency and product quality. However, when the cable is drawn from the drawing machine's outlet, the drawing fluid is often carried outside the machine and cannot be effectively collected, causing it to drip around the equipment and pollute the surrounding operating area. Furthermore, drawing fluid is usually made of an oil-based material, which is flammable. If it comes into contact with an open flame, it can pose a serious fire hazard, causing unnecessary economic losses to the factory.

[0003] According to the announcement number CN222113062U, a wire drawing machine drawing fluid recovery device is proposed. By adding a wire drawing fluid recovery component and a transmission component to the discharge port of the wire drawing machine, a series of problems caused by the wire drawing fluid being drawn out are fundamentally solved. This better ensures the environmental conditions of the operating area, prevents the risk of fire, ensures the safety of the lives and property of the operators, and reduces unnecessary economic losses to the factory.

[0004] Existing wire drawing fluid filtration and recovery devices work by having a wiping roller contact the metal wire to absorb the wire drawing fluid, and then using a scraper to scrape the fluid off the wiping roller to achieve recovery. However, when the scraper directly separates the wire drawing fluid absorbed by the wiping roller, the scraper and the wiping roller are in direct contact and generate relative movement. Prolonged friction will cause wear on the surface of the wiping roller, affecting its service life and the adsorption effect of the wire drawing fluid, thereby reducing the overall efficiency and recovery effect of the device.

[0005] Therefore, there is an urgent need to provide an easy-to-clean wire drawing liquid filtration and recovery device to solve the above problems. Utility Model Content

[0006] The technical problem to be solved by this utility model is to overcome the shortcomings of the prior art and provide an easy-to-clean wire drawing liquid filtration and recovery device.

[0007] To solve the above-mentioned technical problems, the present invention adopts a technical solution as follows: providing an easy-to-clean wire drawing liquid filtration and recovery device, including a wire drawing machine body, a first housing fixed on one side of the wire drawing machine body, and a second housing fixed on one side of the first housing;

[0008] A mounting shell is fixed to the bottom of the first housing, a filter screen is fitted into the top of the mounting shell, and a suction pump is fixed to one side of the mounting shell.

[0009] The first housing is equipped with a recycling mechanism to more thoroughly separate the drawing fluid, and the second housing is equipped with a power mechanism that achieves synchronous transmission through a transmission gear set.

[0010] Through the above technical solution, the metal wire produced by the wire drawing machine body is discharged through the through holes of the first shell and the second shell, the wire drawing liquid flows into the mounting shell through the first shell, the filter screen performs preliminary filtration of the wire drawing liquid, and the suction pump draws the wire drawing liquid into the circulation purification equipment for further treatment.

[0011] The present invention is further configured such that: the recycling mechanism includes a first wiping roller rotatably mounted on the top of one side of the first housing, and a second wiping roller rotatably mounted on the top of the other side of the first housing, and the exterior of the first wiping roller and the second wiping roller is an absorbent sponge.

[0012] The above technical solution uses an adsorption sponge outside the first and second wiping rollers to adsorb and recover the drawing liquid on the surface of the metal wire.

[0013] The present invention is further configured such that: a first extrusion roller is rotatably mounted on one bottom side of the first housing, and a second extrusion roller is rotatably mounted on the other bottom side of the first housing, and the outer surface of the first extrusion roller is closely attached to the outer surface of the first wiping roller adsorbing the sponge.

[0014] Through the above technical solution, the first extrusion roller pressurizes the drawing liquid inside the sponge adsorbed by the first wiping roller to flow out, and the second extrusion roller pressurizes the drawing liquid inside the sponge adsorbed by the second wiping roller to flow out.

[0015] The present invention is further configured such that: two scrapers are fixed to the rear side wall of the inner cavity of the first housing, and the top ends of the two scrapers are respectively sealed to the outside of the first extrusion roller and the second extrusion roller by rubber strips.

[0016] Through the above technical solution, the two scrapers scrape off the drawing fluid outside the first extrusion roller and the second extrusion roller respectively, and guide the drawing fluid to collect at the bottom opening of the first housing.

[0017] The present invention is further configured such that: the power mechanism includes a first gear fixed to one end of the first wiping roller, and a second gear is fixed to the outside of the first squeezing roller, and the first gear and the second gear mesh with each other.

[0018] Through the above technical solution, the first extrusion roller drives the second gear to rotate, and the second gear drives the first wiping roller to rotate in the opposite direction through the first gear.

[0019] The present invention is further configured such that: a third gear is fixed at one end of the second wiping roller, and a fourth gear is fixed on the outside of the second squeezing roller, wherein the third gear and the fourth gear mesh.

[0020] Through the above technical solution, the second extrusion roller drives the fourth gear to rotate, and the fourth gear drives the second wiping roller to rotate in the opposite direction through the third gear.

[0021] The present invention is further configured such that: one end of the first extrusion roller and the second extrusion roller are both fixed with a first bevel gear, the inner bottom wall of the second housing is fixed with an installation motor, and the output shaft of the installation motor is fixedly connected to two second bevel gears through a coupling, and the two first bevel gears mesh with the two second bevel gears respectively.

[0022] The above technical solution involves installing a motor to drive two second bevel gears to rotate, and the two second bevel gears respectively drive the first extrusion roller and the second extrusion roller to rotate through the first bevel gear.

[0023] The beneficial effects of this utility model are as follows:

[0024] 1. This utility model has a recycling mechanism. The sponge on the surface of the wiping roller is squeezed by the squeezing roller, causing the drawing liquid to flow out under pressure. Combined with the scraping action of the scraper, the drawing liquid can be separated and recycled more thoroughly from the surface of the wiping roller, which greatly improves the recycling efficiency of the drawing liquid and reduces the damage to the wiping roller.

[0025] 2. This utility model has a power mechanism that uses a unified power to drive the wiping roller and the squeezing roller. Synchronous transmission is achieved through a transmission gear set, which ensures that the rotation speed and direction of the wiping roller and the squeezing roller are coordinated and consistent, avoiding the problems of unstable equipment operation and poor recycling effect caused by uncoordinated power transmission. Attached Figure Description

[0026] Figure 1 This is a three-dimensional structural diagram of the present invention;

[0027] Figure 2 This is an exploded structural diagram of the present invention;

[0028] Figure 3 This is a diagram showing the internal structure of the second shell of this utility model;

[0029] Figure 4 This is a diagram of the internal structure of the first housing of this utility model.

[0030] In the diagram: 1. Wire drawing machine body; 2. First housing; 3. Second housing; 4. Mounting housing; 5. Filter screen; 6. Recycling mechanism; 601. First wiping roller; 602. Second wiping roller; 603. First extrusion roller; 604. Second extrusion roller; 605. Scraper; 7. Power mechanism; 701. First gear; 702. Second gear; 703. Third gear; 704. Fourth gear; 705. First bevel gear; 706. Mounting motor; 707. Second bevel gear; 8. Suction pump. Detailed Implementation

[0031] The preferred embodiments of the present invention will now be described in detail with reference to the accompanying drawings, so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more definite definition of the scope of protection of the present invention.

[0032] Please see Figures 1-4 A wire drawing liquid filtration and recovery device includes a wire drawing machine body 1, a first housing 2 fixed to one side of the wire drawing machine body 1, and a second housing 3 fixed to one side of the first housing 2; a mounting shell 4 fixed to the bottom end of the first housing 2, a filter screen 5 fitted into the top end of the mounting shell 4, and a suction pump 8 fixed to one side of the mounting shell 4; a recovery mechanism 6 for more thorough separation of the wire drawing liquid is provided inside the first housing 2, the recovery mechanism 6 includes a first wiping roller 601 rotatably mounted on the top end of one side of the first housing 2, and a second wiping roller 602 rotatably mounted on the top end of the other side of the first housing 2, the exterior of the first wiping roller 601 and the second wiping roller 602 being an absorbent sponge; a first squeeze roller 603 rotatably mounted on the bottom end of one side of the first housing 2, and a second squeeze roller 604 rotatably mounted on the bottom end of the other side of the first housing 2, the exterior of the first squeeze roller 603 being in close contact with the exterior of the absorbent sponge of the first wiping roller 601; and the rear wall of the inner cavity of the first housing 2. Two scrapers 605 are fixed, and the tops of the two scrapers 605 are respectively sealed to the outside of the first extrusion roller 603 and the second extrusion roller 604 by rubber strips. The metal wire produced by the wire drawing machine body 1 is discharged through the through holes of the first housing 2 and the second housing 3. The drawing liquid on the surface of the metal wire is absorbed and recovered by the adsorption sponge outside the first wiping roller 601 and the second wiping roller 602. The first extrusion roller 603 pressurizes the drawing liquid inside the adsorption sponge of the first wiping roller 601 to flow out, and the second extrusion roller 604 pressurizes the drawing liquid inside the adsorption sponge of the second wiping roller 602 to flow out. The two scrapers 605 scrape off the drawing liquid outside the first extrusion roller 603 and the second extrusion roller 604 respectively, and guide the drawing liquid to collect at the bottom opening of the first housing 2. The drawing liquid flows into the mounting shell 4 through the first housing 2. The filter screen 5 performs preliminary filtration of the drawing liquid. The suction pump 8 draws the drawing liquid into the circulation purification equipment for further treatment.

[0033] like Figure 3 and Figure 4 As shown, the interior of the second housing 3 is equipped with a power mechanism 7 that achieves synchronous transmission through a transmission gear set. The power mechanism 7 includes a first gear 701 fixed to one end of the first wiping roller 601, a second gear 702 fixed to the outside of the first squeezing roller 603, the first gear 701 and the second gear 702 meshing together, a third gear 703 fixed to one end of the second wiping roller 602, a fourth gear 704 fixed to the outside of the second squeezing roller 604, the third gear 703 meshing with the fourth gear 704, and a first bevel gear 705 fixed to one end of both the first squeezing roller 603 and the second squeezing roller 604. A motor 706 is fixed to the inner bottom wall of the second housing 3. The output shaft of motor 706 is fixedly connected to two second bevel gears 707 via a coupling. Two first bevel gears 705 mesh with the two second bevel gears 707 respectively. Motor 706 is installed to drive the two second bevel gears 707 to rotate. The two second bevel gears 707 drive the first extrusion roller 603 and the second extrusion roller 604 to rotate via the first bevel gear 705 respectively. The first extrusion roller 603 drives the second gear 702 to rotate. The second gear 702 drives the first wiping roller 601 to rotate in the opposite direction via the first gear 701. The second extrusion roller 604 drives the fourth gear 704 to rotate. The fourth gear 704 drives the second wiping roller 602 to rotate in the opposite direction via the third gear 703.

[0034] In use, the metal wire produced by the wire drawing machine body 1 is discharged through the through holes of the first housing 2 and the second housing 3. A motor 706 drives two second bevel gears 707 to rotate. These two bevel gears 707, through a first bevel gear 705, drive the first extrusion roller 603 and the second extrusion roller 604 to rotate. The first extrusion roller 603 drives the second gear 702 to rotate. The second gear 702, through a first gear 701, drives the first wiping roller 601 to rotate in the opposite direction. The second extrusion roller 604 drives the fourth gear 704 to rotate. The fourth gear 704, through a third gear 703, drives the second wiping roller 602 to rotate in the opposite direction. The first wiping roller... The adsorption sponges outside rollers 601 and 602 adsorb and recover the drawing liquid on the surface of the metal wire. The first squeeze roller 603 pressurizes and flows out the drawing liquid inside the adsorption sponge of the first wiping roller 601. The second squeeze roller 604 pressurizes and flows out the drawing liquid inside the adsorption sponge of the second wiping roller 602. The two scrapers 605 scrape off the drawing liquid outside the first squeeze roller 603 and the second squeeze roller 604 respectively, and guide the drawing liquid to collect at the bottom opening of the first housing 2. The drawing liquid flows into the mounting housing 4 through the first housing 2. The filter screen 5 performs preliminary filtration of the drawing liquid. The suction pump 8 draws the drawing liquid into the circulation purification equipment for further treatment.

[0035] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the description and drawings of this utility model, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. An easy-to-clean wire drawing liquid filtration and recovery device, comprising a wire drawing machine body (1), characterized in that: A first housing (2) is fixed to one side of the wire drawing machine body (1), and a second housing (3) is fixed to one side of the first housing (2). The bottom end of the first housing (2) is fixed with a mounting shell (4), the top end of the mounting shell (4) is fitted with a filter screen (5), and a suction pump (8) is fixed on one side of the mounting shell (4). The first housing (2) is provided with a recycling mechanism (6) for more thorough separation of the drawing liquid. The recycling mechanism (6) includes a first wiping roller (601) rotatably mounted on the top of one side of the first housing (2) and a second wiping roller (602) rotatably mounted on the top of the other side of the first housing (2). The exterior of the first wiping roller (601) and the second wiping roller (602) is an absorbent sponge. A first extrusion roller (603) is rotatably mounted on one bottom side of the first housing (2), and a second extrusion roller (604) is rotatably mounted on the other bottom side of the first housing (2). The outside of the first extrusion roller (603) is closely attached to the outside of the first wiping roller (601) adsorbing sponge. Two scrapers (605) are fixed to the rear side wall of the inner cavity of the first housing (2). The top ends of the two scrapers (605) are respectively sealed to the outside of the first extrusion roller (603) and the second extrusion roller (604) by rubber strips. The second housing (3) is provided with a power mechanism (7) that achieves synchronous transmission through a transmission gear set. The power mechanism (7) includes a first gear (701) fixed to one end of the first wiping roller (601), and a second gear (702) fixed to the outside of the first squeezing roller (603). The first gear (701) and the second gear (702) mesh with each other. A third gear (703) is fixed to one end of the second wiping roller (602), and a fourth gear (704) is fixed to the outside of the second squeezing roller (604). The third gear (703) and the fourth gear (704) mesh with each other. One end of the first extrusion roller (603) and the second extrusion roller (604) is fixed with a first bevel gear (705). The inner bottom wall of the second housing (3) is fixed with a motor (706). The output shaft of the motor (706) is fixedly connected to two second bevel gears (707) through a coupling. The two first bevel gears (705) mesh with the two second bevel gears (707) respectively.

Citation Information

Patent Citations

  • Wire drawing liquid recovery device of cable wire drawing machine

    CN222113062U