Stainless steel wire oil stain cleaning device

Through the synchronous operation of the feeding mechanism and the scraping and washing mechanism, efficient cleaning of the stainless steel wire is achieved, solving the problems of low efficiency and difficult quality assurance of manual cleaning, and achieving efficient and energy-saving cleaning effects.

CN120618909AInactive Publication Date: 2025-09-12JIANGSU JINYANG STAINLESS PROD
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Patent Information

Application Number
CN202510808633.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-17
Publication Date
2025-09-12
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing cleaning method of stainless steel wire relies on manual operation, which is inefficient, difficult to adapt to medium or large-scale production, and the cleaning quality is difficult to guarantee.

Method used

The feeding mechanism and the scraping mechanism are used together to realize the synchronous scraping and washing of multiple stainless steel wires. The vibration of the feeding mechanism and the dual scraping and washing mode of the scraping mechanism are combined with the linkage mechanism to achieve efficient cleaning.

Benefits of technology

The cleaning efficiency and quality of stainless steel wire are improved, the production cycle is shortened, and the use cost and energy consumption of the device are reduced.

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Abstract

The invention relates to the technical field of stainless steel wire cleaning, in particular to a stainless steel wire oil stain cleaning device which comprises a cleaning box body, the bottom of the cleaning box body is filled with an oil stain cleaning agent, and a main frame is movably arranged in the cleaning box body. The front side wall and the rear side wall of the main frame are jointly provided with a material conveying mechanism used for synchronously and orderly conveying a plurality of stainless steel wires, and the main frame is internally provided with a scraping and washing mechanism used for synchronously scraping and washing the plurality of stainless steel wires. High-quality synchronous cleaning of a plurality of stainless steel wires can be integrally completed, meanwhile, the cleaning quality of the stainless steel wires is effectively guaranteed in a double scraping and cleaning composite mode, a cleaning agent on the surfaces of the stainless steel wires can be rapidly vaporized in a stirring and vibrating mode, subsequent production links are facilitated, production efficiency is improved, and production cost is reduced. The production period of the stainless steel wire is shortened.
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Description

Technical Field

[0001] The invention relates to the technical field of stainless steel wire cleaning, in particular to a stainless steel wire oil cleaning device. Background Art

[0002] Stainless steel wire is a common metal material with excellent corrosion resistance, strength and toughness. During the production process, stainless steel wire will be contaminated with some impurities such as oil, dust, etc. However, since the surface of stainless steel wire needs to be kept clean before welding, drawing and coating, it is necessary to use a detergent to clean the surface oil, dust and impurities of the stainless steel wire before the above operations to restore its original gloss and performance.

[0003] The existing cleaning method for stainless steel wire still relies heavily on manual labor, requiring manual labor to hold a soft cloth and use detergent to wipe the stainless steel wire. On the one hand, each cleaning can only clean a single stainless steel wire, resulting in low work efficiency and difficulty in meeting the production needs of medium or large batches of stainless steel wire. On the other hand, manual cleaning technology is too rough, and the stainless steel wire in the transmission state needs to be stopped before cleaning. This can neither ensure the cleaning quality of the stainless steel wire, inevitably misses some spots, nor can it work efficiently. Summary of the Invention

[0004] Technical problem to be solved: The present invention provides a stainless steel wire oil cleaning device that can solve the above-mentioned problems.

[0005] Technical solution: In order to achieve the above-mentioned purpose, the present invention adopts the following technical solution: a stainless steel wire oil cleaning device, comprising a cleaning box, the bottom of the cleaning box is filled with an oil cleaning agent, a main frame is movably provided inside the cleaning box, and a feeding mechanism for synchronously and orderly conveying multiple stainless steel wires is provided on the front and rear side walls of the main frame, a scraping mechanism for synchronously scraping multiple stainless steel wires is provided inside the main frame, and a lifting component for lifting the main frame from the cleaning box is provided on the upper sides of the left and right side walls.

[0006] The feeding mechanism includes a side mounting frame fixedly connected to the upper side of the front wall of the main frame, the front side of the side mounting frame is symmetrically connected with two rows of feed rollers 1 and 2 that are equidistantly distributed in the left and right directions, the bottom of the front side of the main frame is rotatably connected with several feed rollers 3 that are equidistantly distributed in the left and right directions, the rear side of the main frame is symmetrically connected with two rows of feed rollers 4 and 5 that are equidistantly distributed in the left and right directions, the plane where the single stainless steel wire is located is the conveying plane, the stainless steel wire is conveyed from back to front, and passes through feed roller 4, feed roller 5, feed roller 3, feed roller 2 and feed roller 1 in the same conveying plane in turn, and a vibration component for shaking the cleaned stainless steel wire to shake off the cleaning agent is provided between each feed roller 2 and feed roller 3.

[0007] The scraping mechanism includes two groups of sliding rods fixedly connected to the bottom of the front and rear walls of the main frame, one by one corresponding to each conveying plane. The two groups of sliding rods are slidably connected to a mounting arch frame. A cleaning cylinder is rotatably connected between the front and rear walls of the mounting arch frame. An internal cylinder is slidably inserted into the cleaning cylinder, and the stainless steel wire passes through the interior of the internal cylinder. A number of through-hole rings are equidistantly provided on the walls of the cleaning cylinder and the internal cylinder in the front and rear directions. The through-hole rings are arranged in a circular array of through-holes. A reciprocating scraping assembly for controlling its back and forth movement is provided on the upper side of each mounting arch frame. A rotating scraping assembly for controlling the rotation of the correspondingly distributed cleaning cylinder is provided between the rear end of each mounting arch frame and the rear wall of the main frame. A scraping component is provided inside each internal cylinder for coordinating with the reciprocating scraping assembly and the rotating scraping assembly to perform double scraping of the stainless steel wire.

[0008] The synchronous scraping and cleaning of multiple stainless steel wires can be achieved through the coordinated use of the feeding mechanism and the scraping and cleaning mechanism.

[0009] As a preferred technical solution of the present invention, the proposed component includes connecting handles fixedly connected to the four corners of the top of the main frame, the connecting handles are L-shaped and extend to the outside of the main frame, and the positions corresponding to the four groups of connecting handles on the left and right walls of the cleaning box are fixedly connected with vertical frames, among which three groups of vertical frames are fixedly connected to the walls of the cleaning box with guide rods, and the remaining group of vertical frames is rotatably connected to the walls of the cleaning box with a screw rod, the connecting handles distributed corresponding to the screw rod are threadedly connected to the screw rod, and the remaining connecting handles are slidably connected to the guide rods one by one, the upper end of the screw rod extends to the top of the corresponding vertical frame and is fixedly connected to the output end of motor one, and motor one is fixedly connected to the top of the vertical frame corresponding to the screw rod.

[0010] As a preferred technical solution of the present invention, the vibration assembly includes a front box fixedly connected to the outside of the front side wall of the main frame, and a rotating shaft is rotatably connected between the upper and lower walls of the front box and corresponding to the position of each conveying plane. The upper and lower ends of the rotating shaft extend to the outside of the front box and are fixedly connected to fixed blocks. A number of rubber strips are fixedly connected to the fixed block at equal intervals on the circumference. A worm gear is fixedly connected to the middle of the rotating shaft, and the worm gear is meshed with a worm segment. The worm segments together constitute a coupling shaft 2, and the coupling shaft 2 is rotatably connected between the left and right walls of the front box.

[0011] As an optimal technical solution of the present invention, the reciprocating scraping and washing assembly includes an inner support plate fixedly connected between the front and rear walls of the main frame corresponding to each conveying plane, the middle part of each inner support plate is rotatably connected to a rotating rod, the right end of the rotating rod is fixedly connected to a turntable, the outer edge of the turntable is fixedly connected to a sliding pin, and a rotating pin rotatably connected to the inner support plate on the adjacent side is provided directly below the turntable, the rotating pin is fixedly connected to a swing plate, a sliding groove is provided on the swing plate, the sliding groove is slidably connected to the sliding pin, a fan gear is fixedly connected to the lower side of the swing plate, the lower side of the fan gear is meshed with rack 1, and rack 1 is fixedly connected to the mounting arch frame.

[0012] As a preferred technical solution of the present invention, the rotating scraping and cleaning assembly includes a support plate fixedly connected to the rear side of each mounting arch, the support plate is rotatably connected to a rotating gear through a rotating column, the rotating gear is meshed with rack 2, the rear end of rack 2 is fixedly connected to the rear side wall of the main frame, the lower end of the rotating column is fixedly connected to bevel gear 1, bevel gear 1 is meshed with bevel gear 2, and bevel gear 2 is fixedly connected to the rear end outer wall of the cleaning cylinder.

[0013] As a preferred technical solution of the present invention, the scraping and cleaning component includes a plurality of brush strips fixedly connected to the inner wall of the built-in cylinder at equal intervals around the circumference, and the brush strips are composed of multiple brush strips arranged in a line. The scraping and cleaning component also includes a brush leaf ring symmetrically arranged on the front and rear sides of each through-hole ring and fixedly connected to the inner wall of the built-in cylinder. The brush leaf ring is composed of a plurality of brush leaves in a circular array. The brush strips and brush leaves are made of rubber. The front end of the built-in cylinder and the front end of the cleaning cylinder are correspondingly fixedly connected with flanges, and the two flanges are fixedly connected by a nut and bolt structure.

[0014] As a preferred technical solution of the present invention, a linkage mechanism for controlling the synchronous operation of the vibration assembly, the rotary scraping assembly and the reciprocating scraping assembly is provided inside the main frame and on the left and right side walls.

[0015] As an optimal technical solution of the present invention, the linkage mechanism includes a pulley three fixedly connected to the left end of each rotating rod, and a pulley two fixedly connected to the right end of the coupling shaft two. The left and right walls of the main frame and each inner support plate rotate together and pass through a coupling shaft one. The left end of the coupling shaft one extends to the outside of the main frame and is fixedly connected to the output end of the motor two. The motor two is fixedly connected to the outside of the main frame. The right end of the coupling shaft one extends to the outside of the main frame and is fixedly connected to the pulley one. The pulley one and the pulley two are connected by a synchronous belt one transmission. The position corresponding to each pulley three on the coupling shaft one is fixedly connected to a pulley four. The pulley three and the pulley four in the same plane are connected by a synchronous belt two transmission.

[0016] As a preferred technical solution of the present invention, the front side of the cleaning box is provided with a wire-reeling device for reeling in the cleaned stainless steel wire, and the rear side of the cleaning box is provided with a wire-reeling device for paying out the stainless steel wire before cleaning.

[0017] Beneficial effects:

[0018] 1. The feeding mechanism adopted in the present invention adopts a method of compounding the stainless steel wire up and down to make the stainless steel wire generate high-frequency slight vibration, and utilizes the vibration to quickly separate the detergent from the stainless steel wire and vaporize it, which can achieve rapid drying and de-agent removal of the stainless steel wire after cleaning, effectively reduce the surface moisture of the stainless steel wire, facilitate the subsequent wire-winding work, and improve the overall work efficiency.

[0019] 2. The scraping and cleaning mechanism adopted in the present invention removes oil stains on the surface of the stainless steel wire through a composite method of horizontal scraping and rotary scraping, effectively ensuring the degreasing quality of the stainless steel wire. At the same time, the two scraping and cleaning methods have a large coverage area, and a longer stainless steel wire can be scraped and cleaned at a single time. The work efficiency can be further improved by accelerating the cleaning and conveying speed of the stainless steel wire.

[0020] 3. The linkage mechanism adopted in the present invention utilizes a single-unit drive to complete the entire scraping and vibrating process, which is beneficial to energy conservation and emission reduction, and can also make the overall structure lighter, effectively controlling the use cost of the device.

[0021] 4. The feeding mechanism, scraping mechanism and linkage mechanism adopted in the present invention are used in combination to complete the high-quality synchronous cleaning of multiple stainless steel wires in an integrated manner. At the same time, the double scraping and washing compound method is used to effectively ensure the cleaning quality of the stainless steel wire. The detergent on the surface of the stainless steel wire can be cleaned by the vibration method, which is convenient for the subsequent production links, helps to improve production efficiency, and shortens the production cycle of stainless steel wire. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] The present invention will be further described below with reference to the accompanying drawings and examples.

[0023] Figure 1 It is a schematic diagram of the three-dimensional structure from the first perspective of the present invention.

[0024] Figure 2 It is a schematic diagram of the three-dimensional connection structure of the components and the cleaning box proposed in the present invention.

[0025] Figure 3 It is a schematic diagram of the three-dimensional connection structure of the scraping and washing mechanism and the feeding mechanism of the present invention from the first perspective.

[0026] Figure 4 It is a schematic diagram of the three-dimensional connection structure of the scraping and washing mechanism and the feeding mechanism from a second perspective of the present invention.

[0027] Figure 5 It is a left side view of the connection between the scraping and cleaning mechanism, the feeding mechanism and the stainless steel wire of the present invention.

[0028] Figure 6 It is a schematic diagram of the three-dimensional connection structure of the scraping and washing mechanism and the feeding mechanism of the present invention when viewed from a first perspective.

[0029] Figure 7 It is a schematic diagram of the three-dimensional connection structure of the scraping and washing mechanism and the feeding mechanism of the present invention from a second perspective of cross-section.

[0030] Figure 8 It is a schematic diagram of the cross-sectional structure of the cleaning cylinder of the present invention and a schematic diagram of the structure of the AA and BB sections.

[0031] In the figure: 1. Cleaning box; 11. Lifting assembly; 111. Stand; 112. Guide rod; 113. Motor 1; 114. Screw; 2. Scraping mechanism; 21. Cleaning cylinder; 211. Through-hole ring; 22. Linkage mechanism; 221. Motor 2; 222. Pulley 1; 223. Synchronous belt 1; 224. Pulley 2; 225. Pulley 3; 226. Pulley 4; 227. Coupling 1; 228. Synchronous belt 2; 23. Reciprocating scraping assembly; 231. Rack 1; 232. Sector gear; 233. Rotating pin; 234. Slide; 235. Sliding pin; 236. Rotating rod; 237. Turntable; 238. Oscillating plate; 24. Rotating scraping assembly; 241. 1. Support plate; 242. Belt gear; 243. Bevel gear one; 244. Rack two; 245. Bevel gear two; 25. Scraping component; 251. Built-in cylinder; 252. Flange; 253. Brush strip; 254. Brush ring; 26. Slide rod; 27. Mounting arch; 3. Main frame; 31. Connecting handle; 32. Inner support plate; 33. Front box; 4. Feeding mechanism; 41. Vibrating assembly; 411. Fixed block; 412. Rubber strip; 413. Worm gear; 414. Rotating shaft; 415. Worm segment; 416. Coupling two; 42. Side mounting frame; 43. Feed roller one; 44. Feed roller two; 45. Feed roller three; 46. Feed roller four; 47. Feed roller five. DETAILED DESCRIPTION

[0032] The embodiments of the present invention are described in detail below with reference to the accompanying drawings. However, the present invention can be implemented in many different ways as defined and covered by the claims.

[0033] See Figure 1 A stainless steel wire oil cleaning device includes a cleaning box 1, the bottom of the cleaning box 1 is filled with oil cleaning agent, a main frame 3 is movably provided inside the cleaning box 1, and a feeding mechanism 4 for synchronously and orderly conveying multiple stainless steel wires is provided on the front and rear side walls of the main frame 3. A scraping mechanism 2 for synchronously scraping multiple stainless steel wires is provided inside the main frame 3, and a lifting component 11 for lifting the main frame 3 from the cleaning box 1 is provided on the upper side of the left and right side walls.

[0034] See Figure 1 、 Figure 3 and Figure 4The feeding mechanism 4 includes a side mounting frame 42 fixedly connected to the upper side of the front wall of the main frame 3, and the front side of the side mounting frame 42 is symmetrically connected to two rows of feed rollers 1 43 and feed roller 2 44 that are equidistantly distributed in the left and right directions. The bottom of the front side of the main frame 3 is rotatably connected to a number of feed rollers 3 45 that are equidistantly distributed in the left and right directions. The rear side of the main frame 3 is symmetrically connected to two rows of feed rollers 46 and feed rollers 5 47 that are equidistantly distributed in the left and right directions. The plane where a single stainless steel wire is located is the conveying plane, and the stainless steel wire is conveyed from back to front, and passes through feed roller 4 46, feed roller 5 47, feed roller 3 45, feed roller 2 44 and feed roller 1 43 in the same conveying plane in turn. A plucking component 41 for plucking the cleaned stainless steel wire to shake off the cleaning agent is provided between each feed roller 2 44 and feed roller 3 45.

[0035] During specific operation, feed roller four 46, feed roller five 47, feed roller three 45 and feed roller one 43 are used as four groups of transmission rollers to make the stainless steel wire sink to the bottom in a U-shaped state. Feed roller two 44 makes the stainless steel wire between feed roller three 45 and feed roller one 43 be in a vertical conveying state, which is convenient for subsequent use with the vibration assembly 41. Feed roller three 45 and feed roller five 47 make the stainless steel wire be in a horizontal conveying state, which is similar to the horizontal transmission of stainless steel wire in the prior art. It can not only ensure the cleaning length of the stainless steel, but also facilitate the subsequent use with the scraping mechanism 2.

[0036] See Figure 1 、 Figure 5 、 Figure 6 and Figure 8 The scraping mechanism 2 includes two groups of sliding rods 26 fixedly connected to the bottom of the front and rear walls of the main frame 3, one on each conveying plane, and a mounting arch 27 is slidably connected to the two groups of sliding rods 26. A cleaning cylinder 21 is rotatably connected between the front and rear walls of the mounting arch 27. An internal cylinder 251 is slidably inserted into the cleaning cylinder 21, and the stainless steel wire passes through the interior of the internal cylinder 251. A number of through-hole rings 211 are equidistantly provided on the walls of the cleaning cylinder 21 and the internal cylinder 251 in the front and rear directions. The through-hole rings 211 are composed of a plurality of through-hole circular arrays. A reciprocating scraping assembly 23 for controlling its back and forth movement is provided on the upper side of each mounting arch 27. A rotating scraping assembly 24 for controlling the rotation of the correspondingly distributed cleaning cylinder 21 is provided between the rear end of each mounting arch 27 and the rear wall of the main frame 3. A scraping component 25 is provided inside each internal cylinder 251 for cooperating with the reciprocating scraping assembly 23 and the rotating scraping assembly 24 to perform double scraping of the stainless steel wire.

[0037] During specific operation, the cleaning agent enters the interior of the built-in cylinder 251 through the through hole and contacts the stainless steel wire. The mounting arch 27 moves forward and backward along the slide rod 26, which is a guide rod.

[0038] By cooperating with the feeding mechanism 4 and the scraping mechanism 2, synchronous scraping and cleaning of multiple stainless steel wires can be achieved.

[0039] See Figure 1 and Figure 2 The lifting component 11 includes a connecting handle 31 fixedly connected to the four corners of the top of the main frame 3. The connecting handle 31 is L-shaped and extends to the outside of the main frame 3. The positions corresponding to the four groups of connecting handles 31 on the left and right walls of the cleaning box 1 are fixedly connected with a stand 111, among which three groups of stand 111 are fixedly connected to the wall of the cleaning box 1 with a guide rod 112, and the remaining group of stand 111 is rotatably connected to the wall of the cleaning box 1 with a screw rod 114. The connecting handles 31 corresponding to the screw rod 114 are threadedly connected to the screw rod 114, and the remaining connecting handles 31 are slidably connected to each guide rod 112 one by one. The upper end of the screw rod 114 extends to the top of the corresponding stand 111 and is fixedly connected to the output end of motor 113. Motor 113 is fixedly connected to the top of the stand 111 corresponding to the screw rod 114.

[0040] During specific operation, the motor 113 controls the screw rod 114 to rotate and drive the connecting handle 31 to move along the guide rod 112, and the connecting handle 31 is used to drive the main frame 3 to move up and down, so as to achieve the purpose of lifting the stainless steel wire from the cleaning box 1 or sinking it into the inside of the cleaning box 1. When lifting it, it is convenient to install the stainless steel wire.

[0041] See Figure 1 、 Figure 3 and Figure 6 The vibration assembly 41 includes a front box 33 fixedly connected to the outside of the front side wall of the main frame 3, and a rotating shaft 414 is rotatably connected between the upper and lower walls of the front box 33 and corresponding to the position of each conveying plane. The upper and lower ends of the rotating shaft 414 extend to the outside of the front box 33 and are fixedly connected to a fixed block 411. A number of rubber strips 412 are fixedly connected to the fixed block 411 at equal intervals on the circumference. A worm gear 413 is fixedly connected to the middle of the rotating shaft 414, and the worm gear 413 is meshed with a worm segment 415. The worm segments 415 together form a coupling shaft 2 416, and the coupling shaft 2 416 is rotatably connected between the left and right walls of the front box 33.

[0042] During operation, the worm segments 415 are controlled by the rotation of the second coupling 416 to drive the worm wheel 413 to rotate, so that the rotating shaft 414 drives the fixed block 411 to control the rubber strip 412 to synchronously move the vertically distributed stainless steel wire up and down, causing this section of the stainless steel wire to vibrate. The vibration can use the principle of inertia to quickly separate the detergent from the stainless steel wire.

[0043] See Figure 1 、 Figure 4 、 Figure 6 and Figure 7The reciprocating scraping and washing assembly 23 includes an inner support plate 32 fixedly connected between the front and rear walls of the main frame 3 corresponding to each conveying plane. The middle part of each inner support plate 32 is rotatably connected to a rotating rod 236, and the right end of the rotating rod 236 is fixedly connected to a turntable 237. The outer edge of the turntable 237 is fixedly connected to a sliding pin 235. A rotating pin 233 rotatably connected to the inner support plate 32 on the adjacent side is provided directly below the turntable 237. A swing plate 238 is fixedly connected to the swing pin 233, and a slide groove 234 is provided on the swing plate 238. The slide groove 234 is slidably matched with the slide pin 235. The lower side of the swing plate 238 is fixedly connected to a sector gear 232, and the lower side of the sector gear 232 is meshed with a rack 231, and the rack 231 is fixedly connected to the mounting arch 27.

[0044] During specific operation, the rotating rod 236 controls the rotation of the turntable 237 to drive the sliding pin 235 to control the reciprocating swing of the swing plate 238 through the slide groove 234. The reciprocating swing of the swing plate 238 controls the reciprocating rotation of the sector gear 232 to control the reciprocating movement of the rack 231 back and forth. The movement of the rack 231 controls the installation arch 27 to drive the cleaning cylinder 21 to move back and forth.

[0045] See Figure 5 and Figure 7 The rotating scraping and washing assembly 24 includes a support plate 241 fixedly connected to the rear side of each mounting arch 27, and the support plate 241 is rotatably connected to a rotating gear 242 through a rotating column, and the rotating gear 242 is meshedly connected to a rack 244, and the rear end of the rack 244 is fixedly connected to the rear side wall of the main frame 3, and the lower end of the rotating column is fixedly connected to a bevel gear 1 243, and the bevel gear 1 243 is meshedly connected to a bevel gear 245, and the bevel gear 245 is fixedly connected to the rear end outer wall of the cleaning cylinder 21.

[0046] During operation, the arch 27 is installed to move back and forth to control the support plate 241 to drive the rotating gear 242 to rotate back and forth along the rack 244, and the rotating column drives the bevel gear 1 243 to rotate and drive the bevel gear 2 245 to control the reciprocating rotation of the cleaning cylinder 21.

[0047] See Figure 8 The scraping and cleaning component 25 includes a plurality of brush strips 253 fixedly connected to the inner wall of the built-in cylinder 251 at equal intervals around the circumference. The brush strips 253 are composed of multiple brush strips arranged in a line. The scraping and cleaning component 25 also includes a brush leaf ring 254 symmetrically arranged on the front and rear sides of each through-hole ring 211 and fixedly connected to the inner wall of the built-in cylinder 251. The brush leaf ring 254 is composed of a plurality of brush leaves in a circular array. The brush strips and brush leaves are made of rubber. The front end of the built-in cylinder 251 and the front end of the cleaning cylinder 21 are fixedly connected with flanges 252 respectively. The two flanges 252 are fixedly connected by a nut and bolt structure.

[0048] During specific operation, the rotational coordination of the brush strip 253 and the cleaning cylinder 21 can realize the rotational circumferential scraping of the stainless steel wire, and the forward and backward reciprocating movement coordination of the brush blade ring 254 and the mounting arch 27 can realize the repeated ring-shaped scraping of the stainless steel wire. The flange 252, bolt and nut structure is adopted to facilitate the replacement of the built-in cylinder 251, avoid the internal scraping structure from being used for a long time and losing its scraping effectiveness, and also ensure the accurate alignment of the through holes when the built-in cylinder 251 and the cleaning cylinder 21 are installed in coordination.

[0049] See Figure 1 、 Figure 3 、 Figure 5 and Figure 6 The main frame 3 and the left and right side walls are equipped with a linkage mechanism 22 for controlling the synchronous operation of the plucking assembly 41, the rotating scraping assembly 24 and the reciprocating scraping assembly 23; the linkage mechanism 22 includes a pulley 3 225 fixedly connected to the left end of each rotating rod 236, and a pulley 224 fixedly connected to the right end of the coupling 2 416. The left and right walls of the main frame 3 and each inner support plate 32 rotate together and pass through a coupling 1 227. The left end of the coupling 1 227 extends to the main frame The outside of the frame 3 is fixedly connected to the output end of the motor 221, the motor 221 is fixedly connected to the outside of the main frame 3, the right end of the coupling 1 227 extends to the outside of the main frame 3 and is fixedly connected to the pulley 1 222, the pulley 1 222 and the pulley 2 224 are connected by a synchronous belt 1 223, and the position corresponding to each pulley 3 225 on the coupling 1 227 is fixedly connected with a pulley 4 226, and the pulley 3 225 and the pulley 4 226 in the same plane are connected by a synchronous belt 2 228.

[0050] During specific operation, the motor 221 controls the rotation of the coupling 1 227, and the pulley 1 222, the pulley 2 224 and the synchronous belt 1 223 structure synchronously drive the coupling 2 416 to rotate, and the pulleys 3 225, the pulley 4 226 and the synchronous belt 2 228 structure drive the rotating rods 236 to rotate synchronously. Through the synchronous rotation of the rotating rods 236 and the coupling 2 416, the synchronous operation of the vibrating assembly 41, the rotating scraping assembly 24 and the reciprocating scraping assembly 23 is achieved.

[0051] The front side of the cleaning box 1 is provided with a wire-reeling device for reeling in the cleaned stainless steel wire, and the rear side of the cleaning box 1 is provided with a wire-releasing device for releasing the stainless steel wire before cleaning (the wire-reeling device and the wire-releasing device are prior art and are not shown in the figure).

[0052] During specific work, the stainless steel wire is tightened and transported through the wire-reeling device and the wire-releasing device, which can prevent the stainless steel wire from being entangled in a disorderly manner and causing problems that are not conducive to cleaning.

[0053] When in use: S1: First, the stainless steel wire is tightened and conveyed by the wire-taking device and the wire-releasing device. The stainless steel wire between the wire-taking device and the wire-releasing device is conveyed from back to front, and passes through the feed roller four 46, feed roller five 47, built-in cylinder 251, feed roller three 45, feed roller two 44 and feed roller one 43 in the same conveying plane in turn. Feed roller four 46, feed roller five 47, feed roller three 45 and feed roller one 43 are four groups of transmission rollers that make the stainless steel wire sink to the bottom in a U-shaped state. Feed roller two 44 makes the stainless steel wire between feed roller three 45 and feed roller one 43 be in a vertical conveying state, and feed roller three and feed roller five 47 make the stainless steel wire be in a horizontal conveying state.

[0054] S2: Then the motor 113 controls the screw rod 114 to rotate and drive the connecting handle 31 to move along the guide rod 112, and the connecting handle 31 is used to drive the main frame 3 to move downward, so that the main frame 3 and the stainless steel wire sink into the inside of the cleaning box 1, and then the cleaning agent enters the inside of the built-in cylinder 251 through the through hole and contacts the stainless steel wire.

[0055] S3: Then, the motor 221 controls the coupling 1 227 to rotate, and the pulley 1 222, the pulley 2 224 and the synchronous belt 1 223 structure synchronously drive the coupling 2 416 to rotate, and the pulleys 3 225, the pulley 4 226 and the synchronous belt 2 228 structure drive the rotating rods 236 to rotate synchronously, and the rotating rods 236 control the rotation of the turntable 237 to drive the sliding pin 235 to control the swing plate 238 to swing back and forth through the slide groove 234. The reciprocating swing of the swing plate 238 controls the reciprocating rotation of the sector gear 232 to control the reciprocating movement of the rack 1 231. The movement of the rack 1 231 controls the mounting arch 27 to drive the washing cylinder 21 to move back and forth. At the same time, the reciprocating forward and backward movement of the arch frame 27 is controlled by the support plate 241, which drives the rotating gear 242 to reciprocate along the rack 244. The bevel gear 1 243 is driven to rotate through the rotating column, which drives the bevel gear 2 245 to control the reciprocating rotation of the cleaning cylinder 21. The reciprocating rotation of the cleaning cylinder 21 causes the brush strip 253 to rotate. The rotational coordination of the brush strip 253 and the cleaning cylinder 21 realizes the rotational circumferential scraping of the stainless steel wire. The reciprocating forward and backward movement of the arch frame 27 causes the cleaning cylinder 21 to also reciprocate forward and backward. The repeated ring-type scraping of the stainless steel wire in the forward and backward directions is realized through the coordination of the brush blade ring 254 and the reciprocating forward and backward movement of the arch frame 27.

[0056] S4: The cleaned stainless steel wire is further transported forward by the cooperation of the wire-reeling device and the wire-releasing device. When it is transported to the vertical section, the worm segments 415 are controlled by the rotation of the second coupling 416 to drive the worm wheel 413 to rotate, so that the rotating shaft 414 drives the fixed block 411 to control the rubber strip 412 to synchronously move the vertically distributed stainless steel wire up and down, causing this section of the stainless steel wire to vibrate. The vibration can use the principle of inertia to quickly separate the detergent from the stainless steel wire.

[0057] The foregoing description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that various modifications and variations of the present invention are possible. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention are intended to be within the scope of protection of the present invention.

Claims

1. A stainless steel wire oil cleaning device, comprising a cleaning box, the bottom of which is filled with an oil cleaning agent, characterized in that: The cleaning box is provided with a main frame inside which the main frame is provided with a feeding mechanism for synchronously and orderly conveying a plurality of stainless steel wires and a scraping mechanism for synchronously scraping and washing. The left and right side walls of the cleaning box are provided with a lifting assembly for lifting the main frame out of the cleaning box. The feeding mechanism includes a vibration assembly, a side mounting frame fixedly connected to the upper side of the front wall of the main frame, and multiple sets of feeding rollers, which are used to synchronously convey and vibrate multiple stainless steel wires to remove the agent; The scraping and washing mechanism includes two sets of sliding rods which are fixedly connected to the bottom of the front and rear walls of the main frame in a one-to-one correspondence with each conveying plane, and the two sets of sliding rods are slidably connected to a mounting arch frame, and a cleaning cylinder is rotatably connected between the front and rear walls of the mounting arch frame, and an internal cylinder is slidably inserted into the cleaning cylinder, and the stainless steel wire passes through the interior of the internal cylinder. A number of through-hole rings are equidistantly provided on the cylinder walls of the cleaning cylinder and the internal cylinder in the front and rear directions, and a reciprocating scraping and washing assembly for controlling its back and forth reciprocating movement is provided on the upper side of each mounting arch frame, and a rotating scraping and washing assembly for controlling the correspondingly distributed cleaning cylinders to rotate is provided between the rear end of each mounting arch frame and the rear wall of the main frame, and a scraping and washing component is provided inside each internal cylinder for cooperating with the reciprocating scraping and washing assembly and the rotating scraping and washing assembly to perform double scraping of the stainless steel wire; The synchronous scraping and cleaning of multiple stainless steel wires can be achieved through the coordinated use of the feeding mechanism and the scraping and cleaning mechanism.

2. The stainless steel wire oil cleaning device according to claim 1, characterized in that: Multiple groups of feed rollers include two rows of feed rollers 1 and 2, which are symmetrically connected to the front of the side mounting frame and are rotatable, and are evenly spaced from left to right. The bottom of the front side of the main frame is rotatably connected to several feed rollers 3, which are evenly spaced from left to right. The rear side of the main frame is symmetrically connected to two rows of feed rollers 4 and 5, which are evenly spaced from left to right. The plane where a single stainless steel wire is located is the conveying plane. The stainless steel wire is conveyed from back to front, and passes through feed roller 4, feed roller 5, feed roller 3, feed roller 2 and feed roller 1 in the same conveying plane in turn. A plucking component for plucking the cleaned stainless steel wire to shake off the cleaning agent is provided between each feed roller 2 and feed roller 3.

3. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The lifting component includes connecting handles fixedly connected to the four corners of the top of the main frame, the connecting handles are L-shaped and extend to the outside of the main frame, and the positions corresponding to the four groups of connecting handles on the left and right walls of the cleaning box are fixedly connected to vertical frames, among which three groups of vertical frames are fixedly connected to the walls of the cleaning box with guide rods, and the remaining group of vertical frames is rotatably connected to the walls of the cleaning box with a screw rod, the connecting handles corresponding to the screw rod are threadedly connected to the screw rod, and the remaining connecting handles are slidably connected to the guide rods one by one, the upper end of the screw rod extends to the top of the corresponding vertical frame and is fixedly connected to the output end of motor one, and motor one is fixedly connected to the top of the vertical frame corresponding to the screw rod.

4. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The vibration assembly includes a front box fixedly connected to the outside of the front side wall of the main frame, a rotating shaft is rotatably connected between the upper and lower walls of the front box and corresponding to the position of each conveying plane, the upper and lower ends of the rotating shaft extend to the outside of the front box and are fixedly connected to fixed blocks, a number of rubber strips are fixedly connected to the fixed block at equal intervals on the circumference, a worm gear is fixedly connected to the middle of the rotating shaft, the worm gear is meshed with a worm segment, and the worm segments together form a coupling shaft 2, and the coupling shaft 2 is rotatably connected between the left and right walls of the front box.

5. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The reciprocating scraping and washing assembly includes an inner support plate fixedly connected between the front and rear walls of the main frame corresponding to each conveying plane, a rotating rod is rotatably connected to the middle of each inner support plate, a turntable is fixedly connected to the right end of the rotating rod, a sliding pin is fixedly connected to the outer edge of the turntable, and a rotating pin rotatably connected to the inner support plate on the adjacent side is provided directly below the turntable, a swing plate is fixedly connected to the swing pin, a slide groove is provided on the swing plate, the slide groove is slidably connected to the sliding pin, a fan gear is fixedly connected to the lower side of the swing plate, and a rack 1 is meshedly connected to the lower side of the fan gear, and the rack 1 is fixedly connected to the mounting arch frame.

6. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The rotary scraping and washing assembly includes a support plate fixedly connected to the rear side of each mounting arch, the support plate is rotatably connected to a rotating gear through a rotating column, the rotating gear is meshed with rack 2, the rear end of rack 2 is fixedly connected to the rear side wall of the main frame, the lower end of the rotating column is fixedly connected to bevel gear 1, bevel gear 1 is meshed with bevel gear 2, and bevel gear 2 is fixedly connected to the rear end outer wall of the cleaning cylinder.

7. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The scraping and cleaning component includes a plurality of brush strips fixedly connected to the inner wall of the built-in cylinder at equal intervals around the circumference, and the brush strips are composed of multiple brush strips arranged in a line. The scraping and cleaning component also includes a brush leaf ring symmetrically arranged on the front and rear sides of each through-hole ring and fixedly connected to the inner wall of the built-in cylinder, and the brush leaf ring is composed of multiple brush leaves in a circular array. The brush strips and brush leaves are both made of rubber. The front end of the built-in cylinder and the front end of the cleaning cylinder are correspondingly fixedly connected with flanges, and the two flanges are fixedly connected by a nut and bolt structure.

8. The stainless steel wire oil cleaning device according to claim 1, characterized in that: A linkage mechanism for controlling the synchronous operation of the plucking assembly, the rotating scraping assembly and the reciprocating scraping assembly is commonly provided inside the main frame and on the left and right side walls.

9. The stainless steel wire oil cleaning device according to claim 8, characterized in that: The linkage mechanism includes a pulley three fixedly connected to the left end of each rotating rod, and a pulley two fixedly connected to the right end of the coupling shaft two. The left and right walls of the main frame and each inner support plate rotate together and pass through a coupling shaft one. The left end of the coupling shaft one extends to the outside of the main frame and is fixedly connected to the output end of the motor two. The motor two is fixedly connected to the outside of the main frame. The right end of the coupling shaft one extends to the outside of the main frame and is fixedly connected to the pulley one. The pulley one and the pulley two are connected by a synchronous belt one transmission. The position corresponding to each pulley three on the coupling shaft one is fixedly connected to a pulley four. The pulley three and the pulley four in the same plane are connected by a synchronous belt two transmission.

10. The stainless steel wire oil cleaning device according to claim 1, characterized in that: The front side of the cleaning box is provided with a wire-reeling device for reeling in the cleaned stainless steel wire, and the rear side of the cleaning box is provided with a wire-reeling device for paying out the stainless steel wire before cleaning.