Rust removal device for stainless steel wire rope machining

By designing a rust removal device including a spiral slide and a twisted steel brush, the problem of incomplete rust removal of wire ropes is solved, comprehensive cleaning and lubrication of the wire ropes are achieved, and the service life of the wire ropes is significantly extended.

CN120734880APending Publication Date: 2025-10-03TANCHENG HONGMING METAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202511202629.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-27
Publication Date
2025-10-03

AI Technical Summary

Technical Problem

Existing methods for removing rust from steel wire ropes have blind spots, and the rust removal is not thorough, which cannot effectively extend the service life of the steel wire rope.

Method used

A rust removal device for stainless steel wire rope processing was designed, which included a machine platform, a wire pay-off device, a wire take-up device, a dust-proof mechanism, a moving mechanism, a grinding mechanism, and a lubrication mechanism. Through the cooperation of a spiral slideway and a twisted steel brush, the wire rope can be fully brushed and lubricated to form a protective layer.

Benefits of technology

It achieves thorough cleaning of the wire rope surface and gaps, prevents corrosion, and significantly extends the service life of the wire rope.

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Abstract

The invention relates to the technical field of steel wire rope maintenance, in particular to a stainless steel wire rope machining rust removal device which comprises a machine table, a pay-off device and a take-up device, the pay-off device and the take-up device are installed at the left end and the right end of the upper surface of the machine table respectively, the pay-off device is used for releasing a steel wire rope, and the take-up device winds the steel wire rope. A dustproof mechanism is installed in the middle of the upper surface of the machine table, a steel wire rope treatment space is provided through the dustproof mechanism, a moving mechanism is installed at the top of the outer wall of the dustproof mechanism, a supporting plate and a lubricating mechanism are installed at the left end and the right end of the moving mechanism correspondingly, and the supporting plate is inserted into an inner cavity of the dustproof mechanism; the outer wall of the polishing mechanism is provided with a pin matched with the dustproof mechanism, the polishing mechanism preferentially cleans rust on the surface of the steel wire rope, and then the lubricating mechanism lubricates the steel wire rope.
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Description

Technical Field

[0001] The invention relates to the technical field of steel wire rope maintenance, in particular to a rust removal device for processing stainless steel wire ropes. Background Art

[0002] Wire rope is a helical bundle of steel wires twisted according to specific rules, with suitable mechanical properties and geometric dimensions. It consists of steel wires, a core, and lubricating grease. The forming process involves twisting multiple layers of wire into strands, then winding a predetermined number of strands around the core into a spiral structure. Due to its high strength, light weight, stable operation, resistance to sudden breakage, and reliable operation, wire rope is widely used in material handling machinery for lifting, traction, tensioning, and load-bearing applications.

[0003] However, after long-term use or storage, wire ropes are susceptible to corrosion from moisture and oxygen in the air, causing them to rust. To extend their service life, rust removal is necessary. Currently, brushing with a steel brush is the primary method for batch cleaning wire ropes. However, since mechanical brushes can only move in a straight line, and the twisted structure of wire ropes creates blind spots in the cracks, this results in incomplete rust removal and fails to fundamentally cure the corrosion problem. Furthermore, existing rust removal treatments fail to form an effective protective layer on the surface of the wire rope, leaving it in direct contact with air, making it difficult to fundamentally extend the service life of the wire rope. Summary of the Invention

[0004] The purpose of the present invention is to solve the problems that the existing steel wire rope rust removal has dead corners, the rust removal is not thorough, the steel wire rope cannot be maintained, and the service life of the steel wire rope cannot be extended.

[0005] The present invention achieves the above-mentioned purpose through the following technical solutions: a rust removal device for stainless steel wire rope processing, comprising a machine platform, a wire payer and a wire takeer, the wire payer and the wire takeer being respectively mounted on the left and right ends of the upper surface of the machine platform, the wire payer being used to release the wire rope, and the wire takeer being used to reel the wire rope, a dustproof mechanism being mounted on the middle portion of the upper surface of the machine platform, a wire rope processing space being provided by the dustproof mechanism, a moving mechanism being mounted on the top of the outer wall of the dustproof mechanism, a support plate and a lubricating mechanism being respectively mounted on the left and right ends of the moving mechanism, the support plate being inserted into the inner cavity of the dustproof mechanism, a grinding mechanism being mounted on the right end of the support plate, a pin being mounted on the outer wall of the grinding mechanism cooperating with the dustproof mechanism, the grinding mechanism preferentially cleaning the rust on the surface of the wire rope, and then the lubricating mechanism lubricating the wire rope; The dust-proof mechanism includes a rust removal chamber installed in the middle of the upper surface of the machine platform, a slide is provided on the inner wall of the rust removal chamber, and a pin is inserted into the inner cavity of the slide, a cover is provided on the right side wall of the rust removal chamber, and a fixed pulley supporting the steel wire rope is provided on the inner wall of the rust removal chamber, which plays a limiting role and allows the steel wire rope to pass through the center of the cover, and two upper and lower symmetrical air suction hoods are provided on the right side wall of the cover, which are connected to the dust suction fan through an air pipe to suck away impurities on the surface of the steel wire rope and in the air; The purpose is to provide a rust removal environment for the wire rope and prevent impurities generated during rust removal from flying out.

[0006] Specifically, the slideways are distributed on the inner wall of the rust removal chamber in a spiral shape.

[0007] Specifically, the moving mechanism includes a box body installed on the top of the outer wall of the rust removal chamber, a driving assembly is installed transversely in the inner cavity of the box body, and sliding rods that can slide left and right are inserted on the front and back sides of the box body, and the left end of the sliding rod is installed on the support plate to realize the linkage of the two sliding rods, and a roller is installed on the inside of the sliding rod; It has a linear and bidirectional drive function, which allows the wire rope to be repeatedly brushed and polished to improve the cleaning effect.

[0008] Specifically, the driving assembly includes a motor installed in the middle of the right side wall of the box body, a roller is installed at the output end of the motor, a guide groove is opened on the outer wall of the roller, and the roller is inserted into the inner cavity of the guide groove.

[0009] Specifically, the guide grooves are distributed on the outer wall of the drum in a wave shape.

[0010] Specifically, the lubricating mechanism includes an oil tank installed at the right end of the sliding rod, the oil tank is used to store lubricating oil, an oil pipe for guiding the lubricating oil is installed at the bottom of the oil tank, an oil storage bag is installed at the bottom of the oil pipe, the oil storage bag is annular, and a valve core is embedded in the inner wall of the oil storage bag at equal intervals along the circumference. The valve core is circular and can rotate on the oil storage bag, and a flow channel is opened on the outer wall of the valve core, and one end of a conduit connected to the flow channel is installed on the outer wall of the valve core, and a brush is installed at the other end of the conduit, and the brush slides over the surface of the wire rope to disperse the lubricating oil; The lubrication mechanism evenly applies lubricating oil to the wire rope to form a protective layer on the surface of the wire rope, thereby maintaining the wire rope.

[0011] Specifically, the grinding mechanism includes a support plate installed at the right end of the support plate, a rotatable turntable is installed on the right side wall of the support plate through a bearing, and the outer wall of the turntable is installed with a pin, and a plurality of steel brushes are installed along the circumferential direction of the inner wall of the turntable; The steel brush moves along a spiral trajectory to clean the gaps in the wire rope and prevent dead corners in the wire rope.

[0012] Specifically, a plurality of the steel brushes are distributed on the inner wall of the turntable in a twist shape.

[0013] The beneficial effects of the present invention are: 1. The present invention drives the drum to rotate through a motor, and utilizes the cooperation between the wavy guide groove and the roller to drive the slide rod and the grinding mechanism to slide back and forth left and right, so that the steel brush repeatedly brushes and grinds the wire rope, effectively solving the problem of insufficient cleaning caused by low frequency and significantly improving the rust removal effect.

[0014] 2. When the support plate drives the support disc to move, the pin of the grinding mechanism is constrained by the spiral slide, forcing the turntable and the steel brush to move along the rotation trajectory. Combined with the twist-like distribution of the steel brush, it can accurately adapt to the spiral gap structure of the wire rope, so that the steel brush can brush deeply along the gap, thoroughly removing the dead corners that are difficult to reach the wire rope, and fundamentally avoiding the continuous corrosion of the wire rope caused by residual rust.

[0015] 3. In the lubrication mechanism, the brush is in continuous contact with the wire rope. When the oil storage bag moves left and right with the slide bar, the valve core rotates synchronously. When the oil storage bag moves to the left, the flow channel is connected with the oil storage bag, and the lubricating oil is transported to the brush through the conduit and evenly applied to the surface of the wire rope. It can not only reduce the wear of the wire rope during use, but also form an effective protective layer to isolate air and moisture, prevent secondary corrosion, and significantly extend the service life of the wire rope. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a three-dimensional diagram of the present invention; Figure 2 Schematic diagram of the structure of the dust-proof mechanism and lubrication mechanism of the present invention; Figure 3 This is an expanded view of the dust-proof mechanism of the present invention; Figure 4 It is an expanded view of the mobile mechanism of the present invention; Figure 5 This is a front cross-sectional view of the lubrication mechanism of the present invention; Figure 6 This is a schematic diagram of the grinding mechanism structure of the present invention; Figure 7 This is a schematic diagram of the drive assembly structure of the present invention.

[0017] In the figure: 1. Machine; 2. Wire pay-off; 3. Wire take-up; 4. Dust-proof mechanism; 5. Moving mechanism; 6. Support plate; 7. Lubrication mechanism; 8. Grinding mechanism; 9. Pin; 41. Rust removal chamber; 42. Slide; 43. Cover; 44. Suction hood; 51. Box; 52. Drive assembly; 53. Slide rod; 54. Roller; 521. Motor; 522. Drum; 523. Guide groove; 71. Oil tank; 72. Oil pipe; 73. Oil storage bag; 74. Valve core; 75. Flow channel; 76. Conduit; 77. Brush; 81. Support plate; 82. Turntable; 83. Steel brush. DETAILED DESCRIPTION

[0018] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the preferred embodiments of the present invention are further described below in conjunction with specific implementation methods and accompanying drawings.

[0019] See also Figure 1-7 The present invention provides a rust removal device for stainless steel wire rope processing, comprising a machine 1, a wire payer 2 and a wire take-up 3, the wire payer 2 and the wire take-up 3 are respectively mounted on the left and right ends of the upper surface of the machine 1, the wire payer 2 is used to release the wire rope, and the wire take-up 3 is used to reel the wire rope, a dustproof mechanism 4 is mounted in the middle of the upper surface of the machine 1, the dustproof mechanism 4 provides a wire rope processing space, a moving mechanism 5 is mounted on the top of the outer wall of the dustproof mechanism 4, a support plate 6 and a lubricating mechanism 7 are respectively mounted on the left and right ends of the moving mechanism 5, the support plate 6 is inserted into the inner cavity of the dustproof mechanism 4, a grinding mechanism 8 is mounted on the right end of the support plate 6, a pin 9 cooperating with the dustproof mechanism 4 is mounted on the outer wall of the grinding mechanism 8, the grinding mechanism 8 first cleans the rust on the surface of the wire rope, and then the lubricating mechanism 7 lubricates the wire rope.

[0020] The dust-proof mechanism 4 includes a rust removal chamber 41 installed in the middle of the upper surface of the machine 1. A slide 42 is provided on the inner wall of the rust removal chamber 41, and the pin 9 is inserted into the inner cavity of the slide 42. The slide 42 is spirally distributed on the inner wall of the rust removal chamber 41. The movement trajectory of the pin 9 is constrained by the slide 42, so that the turntable 82 moves in a spiral trajectory. A cover plate 43 is installed on the right side wall of the rust removal chamber 41. A fixed pulley supporting the wire rope is installed on the inner wall of the rust removal chamber 41, which plays a limiting role and allows the wire rope to pass through the center of the cover plate 43. Two upper and lower symmetrical air suction hoods 44 are installed on the right side wall of the cover plate 43. The air suction hood 44 is connected to the dust suction fan through an air pipe to suck away impurities on the surface of the wire rope and in the air.

[0021] More specifically, the inner wall of the rust removal chamber 41 of the dustproof mechanism 4 is preset with a spiral slide 42, and the pin 9 provided on the outer wall of the turntable 82 of the grinding mechanism 8 is inserted into the inner cavity of the slide 42, forming a "slide-pin" trajectory constraint matching structure; when the moving mechanism 5 drives the support plate 6 to drive the grinding mechanism 8 to move back and forth along the axial direction of the rust removal chamber 41, the pin 9 is mechanically limited by the inner wall of the slide 42 and cannot move freely along a straight line. It can only be forced to move synchronously with the trajectory of the spiral slide 42; because the pin 9 is fixedly connected to the turntable 82, the spiral trajectory of the pin 9 will be directly transmitted to the turntable 82, driving the turntable 82 to rotate around the axis of the wire rope, and finally causing the steel brush on the inner wall of the turntable 82 to form a compound motion trajectory of "left and right reciprocating sliding and circular rotation". This trajectory is precisely adapted to the spiral twist structure of the stainless steel wire rope, ensuring that the steel brush can penetrate into the gaps in the wire rope to remove rust, avoiding the cleaning dead corners that exist in traditional linear grinding.

[0022] In order to ensure that the wire rope is always in a stable processing position during the rust removal process, the dust-proof mechanism 4 realizes double limiting through "fixed pulley support and cover plate 43 guidance"; on the one hand, the fixed pulley installed on the inner wall of the rust removal chamber 41 fits the surface of the wire rope, and utilizes the rolling support characteristics of the fixed pulley to reduce the friction resistance of the wire rope during movement and constrain the up and down position of the wire rope to prevent the wire rope from deviating up and down due to its own weight or grinding force; on the other hand, a through hole adapted to the diameter of the wire rope is opened in the center of the cover plate 43 on the right side wall of the rust removal chamber 41, and the wire rope passes through the through hole. Combined with the limiting effect of the fixed pulley, it can ensure that the wire rope always moves in a straight line along the axis direction of the rust removal chamber 41, and accurately passes through the turntable center of the grinding mechanism 8 and the subsequent lubricating mechanism 7, providing position guarantee for uniform rust removal of the grinding mechanism and accurate oiling of the lubricating mechanism; at the same time, the closed structure of the cover plate 43 and the rust removal chamber 41 can form a closed processing space to prevent rust residue and dust generated by rust removal from splashing out.

[0023] As a preferred solution, further, the moving mechanism 5 includes a box body 51 installed on the top of the outer wall of the rust removal chamber 41, and a driving component 52 is installed horizontally in the inner cavity of the box body 51. Slide rods 53 that can slide left and right are inserted on the front and back sides of the box body 51, and the left end of the slide rod 53 is installed with the support plate 6 to realize the linkage of the two slide rods 53. A roller 54 is installed on the inside of the slide rod 53. The rolling of the roller 54 can reduce the friction with the guide groove 523 and reduce mechanical wear; the moving mechanism 5 can drive the support plate 6 and the lubrication mechanism 7 to reciprocate left and right synchronously, wherein the support plate 6 drives the grinding mechanism 8 to repeatedly brush and grind the wire rope to achieve deep cleaning, providing a reliable power basis for the subsequent thoroughness of rust removal and uniformity of lubrication.

[0024] As a preferred solution, further, the driving component 52 includes a motor 521 installed in the middle of the right side wall of the box body 51, and a roller 522 is installed at the output end of the motor 521. A guide groove 523 is opened on the outer wall of the roller 522, and the roller 54 is inserted into the inner cavity of the guide groove 523. The double rollers 54 pull the slide rod 53 to disperse the driving force and ensure the transmission accuracy of the roller 54 and the guide groove 523; the guide groove 523 is distributed in a wave shape on the outer wall of the roller 522, and the curved surfaces on both sides of the guide groove 523 are symmetrical. As the roller 522 rotates, the guide groove 523 can squeeze the roller 54 left and right, thereby realizing the reciprocating movement of the slide rod 53 left and right.

[0025] More specifically, when the motor 521 is powered on and started, its output shaft drives the roller 522 to rotate clockwise at a constant speed. At this time, the wavy guide groove 523 on the outer wall of the roller 522 rotates synchronously: when the wave crest area of ​​the guide groove 523 contacts the roller 54, the left curved surface of the guide groove 523 generates a leftward squeezing force on the roller 54, pushing the roller 54 to drive the slide bar 53 to slide leftward in the horizontal direction, thereby pulling the support plate 6 and the grinding mechanism 8 to move leftward; when the roller 522 continues to rotate, the trough area of ​​the guide groove 523 gradually contacts the roller 54, and the right curved surface of the guide groove 523 contacts the roller 54. The rightward extrusion force is generated, pushing the roller 54 to drive the slide bar 53 to slide to the right in the horizontal direction, thereby pulling the support plate 6 and the grinding mechanism 8 to move to the right; as the drum 522 continues to rotate, the above-mentioned left and right extrusion forces act alternately on the roller 54, causing the slide bar 53 to realize continuous left and right reciprocating motion, and the movement frequency is positively correlated with the speed of the motor 521 (the speed of the motor 521 is 100-200r / min, and the corresponding reciprocating frequency of the slide bar 53 is 10-20 times / min), ensuring that the grinding mechanism 8 can repeatedly brush the surface and gaps of the wire rope, thereby improving the thoroughness of rust removal.

[0026] As a preferred solution, further, the lubricating mechanism 7 includes an oil tank 71 installed at the right end of the slide rod 53. The oil tank 71 is used to store lubricating oil. An oil pipe 72 for guiding the lubricating oil is installed at the bottom of the oil tank 71. An oil storage bag 73 is installed at the bottom of the oil pipe 72. The oil storage bag 73 is annular. A valve core 74 is embedded in the inner wall of the oil storage bag 73 at equal intervals along the circumferential direction. The valve core 74 is circular and can rotate on the oil storage bag 73 to close the oil storage bag 73. A flow channel 75 is opened on the outer wall of the valve core 74. The flow channel 75 is used for conducting the oil storage bag 73. The valve core 74 The outer wall is provided with one end of a conduit 76 connected to the flow channel 75, and the other end of the conduit 76 is provided with a brush 77. The brush 77 slides over the surface of the wire rope to disperse the lubricating oil. The lubricating mechanism 7, with the help of the reciprocating driving force of the moving mechanism 5, can realize the automatic opening and closing of the valve core 74 without an additional power source, so that the lubricating oil only flows out in a quantitative manner during the left movement and is evenly spread through the brush 77. This ensures that a complete lubricating protective layer is formed on the surface of the wire rope, avoids the waste of lubricating oil, and realizes the automation and precision of lubrication after rust removal.

[0027] More specifically, the lubricating mechanism 7 utilizes the left and right reciprocating driving force of the slide rod 53 in the moving mechanism 5 to realize the automatic opening and closing of the valve core 74 and the quantitative and uniform application of lubricating oil. The specific working process is as follows: Initial state: the oil tank 71 is pre-filled with a sufficient amount of lubricating oil. Under the action of gravity, the lubricating oil flows into the oil storage bag 73 through the oil pipe 72 and fills the oil storage bag 73. At this time, the valve core 74 is in a closed state, and the area of ​​its outer wall without the flow channel 75 is in contact with the inner wall of the oil storage bag 73, blocking the connection between the oil storage bag 73 and the conduit 76. The lubricating oil is temporarily stored in the oil storage bag 73 without leakage.

[0028] Left-shift oiling process: When the moving mechanism 5 drives the slide bar 53 to move left, the slide bar 53 drives the lubrication mechanism 7 to move left synchronously as a whole; due to the friction between the brush 77 and the surface of the wire rope, the wire rope generates a rightward reaction force on the brush 77, and the reaction force is transmitted to the valve core 74 through the conduit 76, driving the valve core 74 to rotate clockwise around its own axis; when the valve core 74 rotates to the flow channel 75 and connects with the inside of the oil storage bag 73, the lubricating oil in the oil storage bag 73 flows into the conduit 76 through the flow channel 75, and is then transported to the brush 77 by the conduit 76; while the brush 77 moves left with the slide bar 53, it evenly applies the lubricating oil on the surface of the wire rope to form a preliminary protective layer.

[0029] Right shift oil cut-off process: When the moving mechanism 5 drives the slide bar 53 to move right, the slide bar 53 drives the lubrication mechanism 7 to move right synchronously as a whole; at this time, the wire rope generates a leftward reaction force on the brush 77, and the reaction force is transmitted to the valve core 74 through the conduit 76, driving the valve core 74 to rotate counterclockwise around its own axis; when the valve core 74 rotates to the outer wall area without the flow channel 75 and fits the inner wall of the oil storage bag 73, the connection between the oil storage bag 73 and the conduit 76 is blocked, and the lubricating oil stops being transported to the brush 77, avoiding the waste caused by repeated application of the lubricating oil during the right shift of the slide bar 53, and ensuring the uniform thickness of the lubricating oil on the surface of the wire rope.

[0030] Circular operation: As the slide rod 53 continues to reciprocate left and right under the drive of the moving mechanism 5, the lubricating mechanism 7 continuously repeats the cyclic process of "moving left to apply oil and moving right to cut off oil". After the wire rope is derusted, a complete and uniform lubricating protective layer is automatically and quantitatively formed on its surface, realizing the continuous coordinated operation of rust removal and lubrication, effectively improving the corrosion resistance of the wire rope and extending its service life.

[0031] As a preferred solution, further, the grinding mechanism 8 includes a support plate 81 installed at the right end of the support plate 6, and a rotatable turntable 82 is installed on the right side wall of the support plate 81 through a bearing, and the outer wall of the turntable 82 is installed with a pin 9, and a plurality of steel brushes 83 are installed along the circumference of the inner wall of the turntable 82, and the plurality of steel brushes 83 are distributed on the inner wall of the turntable 82 in a twisted shape, so that the distribution of the steel brushes 83 is consistent with the gap of the wire rope, so that the steel brushes 83 move along the gap of the wire rope to brush the gap of the wire rope, thereby preventing dead corners in rust removal of the wire rope; the grinding mechanism 8 makes use of the reciprocating power of the support plate 6 and the trajectory constraint of the slideway 42 to make the movement trajectory of the steel brush 83 fully compatible with the twisting structure of the wire rope, thereby achieving comprehensive rust removal on the surface and gaps of the wire rope, effectively avoiding dead corners in rust removal, and fundamentally preventing the continuous corrosion of the wire rope caused by residual rust.

[0032] Working principle: Step 1: The pay-off device 2 releases the wire rope, and the take-up device 3 reels the wire rope, so that the wire rope passes through the cover plate 43 and the oil storage bag 73 and moves from left to right, completing the preparation work before wire rope processing; Step 2: The motor 521 drives the roller 522 to rotate, and the curved surface of the guide groove 523 squeezes the roller 54. Since the inclined surface of the guide groove 523 is symmetrical on the roller 522, the guide groove 523 can squeeze the roller 54 to the left and right, thereby causing the slide bar 53 to slide left and right, providing power for the movement of the lubricating mechanism 7 and the grinding mechanism 8; Step 3: The support plate 6 pulls the support disc 81 to move left and right. Since the pin 9 can only slide along the slide 42, the steel brush 83 is prompted to move in a rotating manner along the track of the slide 42. The steel brush 83 moves along the gap of the wire rope to fully polish and remove rust on the wire rope. The steel brush 83 can also repeatedly clean the wire rope by reciprocating left and right, and the impurities are sucked away by the suction force of the suction hood 44 to achieve the cleaning of the wire rope; Step 4: When the oil tank 71 moves left and right, the valve core 74 can rotate back and forth under the contact of the brush 77 and the wire rope. When the brush 77 moves to the left, the flow channel 75 is connected with the inner cavity of the oil storage bag 73, and the lubricating oil flows out from the flow channel 75. The brush 77 evenly applies the lubricating oil on the wire rope, which plays a maintenance role on the wire rope.

[0033] The technical features of the above embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

Claims

1. A rust removal device for processing stainless steel wire ropes, comprising a machine (1), a wire unwinder (2) and a wire take-up (3), wherein the wire unwinder (2) and the wire take-up (3) are respectively mounted on the left and right ends of the upper surface of the machine (1), the wire unwinder (2) is used to release the wire rope, and the wire take-up (3) is used to reel in the wire rope, and the device is characterized in that: A dustproof mechanism (4) is installed in the middle of the upper surface of the machine (1), and a wire rope processing space is provided through the dustproof mechanism (4). A moving mechanism (5) is installed on the top of the outer wall of the dustproof mechanism (4). A support plate (6) and a lubricating mechanism (7) are installed on the left and right ends of the moving mechanism (5). The support plate (6) is inserted into the inner cavity of the dustproof mechanism (4). A grinding mechanism (8) is installed on the right end of the support plate (6). A pin (9) that cooperates with the dustproof mechanism (4) is installed on the outer wall of the grinding mechanism (8). The grinding mechanism (8) first cleans rust on the surface of the wire rope, and then the lubricating mechanism (7) lubricates the wire rope. The dustproof mechanism (4) includes a rust removal chamber (41) installed in the middle of the upper surface of the machine (1), the inner wall of the rust removal chamber (41) is provided with a slideway (42), and the pin (9) is inserted into the inner cavity of the slideway (42), the right side wall of the rust removal chamber (41) is provided with a cover plate (43), the inner wall of the rust removal chamber (41) is provided with a fixed pulley for supporting the steel wire rope, which plays a limiting role and allows the steel wire rope to pass through the center of the cover plate (43), and the right side wall of the cover plate (43) is provided with two upper and lower symmetrical air suction hoods (44), which are connected to the dust suction fan through an air pipe and are used to suck away impurities on the surface of the steel wire rope and in the air.

2. A rust removal device for stainless steel wire rope processing according to claim 1, characterized in that: The slideway (42) is distributed in a spiral shape on the inner wall of the rust removal chamber (41).

3. A rust removal device for stainless steel wire rope processing according to claim 2, characterized in that: The moving mechanism (5) includes a box body (51) installed on the top of the outer wall of the rust removal chamber (41), a driving assembly (52) is installed transversely in the inner cavity of the box body (51), and sliding rods (53) capable of sliding left and right are inserted on the front and rear sides of the box body (51), and the left end of the sliding rod (53) is installed on the support plate (6) to achieve linkage between the two sliding rods (53), and a roller (54) is installed on the inner side of the sliding rod (53).

4. A rust removal device for stainless steel wire rope processing according to claim 3, characterized in that: The driving assembly (52) comprises a motor (521) mounted in the middle of the right side wall of the box (51); a roller (522) is mounted on the output end of the motor (521); a guide groove (523) is formed on the outer wall of the roller (522); and a roller (54) is inserted into the inner cavity of the guide groove (523).

5. A rust removal device for stainless steel wire rope processing according to claim 4, characterized in that: The guide grooves (523) are distributed in a wave-like manner on the outer wall of the drum (522).

6. A rust removal device for stainless steel wire rope processing according to claim 5, characterized in that: The lubricating mechanism (7) includes an oil tank (71) installed at the right end of the slide rod (53). The oil tank (71) is used to store lubricating oil. An oil pipe (72) for guiding the lubricating oil is installed at the bottom of the oil tank (71). An oil storage bag (73) is installed at the bottom of the oil pipe (72). The oil storage bag (73) is annular. A valve core (74) is embedded in the inner wall of the oil storage bag (73) at equal intervals along the circumference. The valve core (74) is circular and can rotate on the oil storage bag (73). A flow channel (75) is opened on the outer wall of the valve core (74). One end of a conduit (76) connected to the flow channel (75) is installed on the outer wall of the valve core (74). A brush (77) is installed at the other end of the conduit (76). The brush (77) slides over the surface of the wire rope to disperse the lubricating oil.

7. A rust removal device for stainless steel wire rope processing according to claim 6, characterized in that: The grinding mechanism (8) includes a support plate (81) mounted on the right end of the support plate (6), a rotatable turntable (82) is mounted on the right side wall of the support plate (81) via a bearing, and the outer wall of the turntable (82) is mounted on the pin (9), and a plurality of steel brushes (83) are mounted on the inner wall of the turntable (82) along the circumferential direction.

8. The rust removal device for stainless steel wire rope processing according to claim 7, characterized in that: A plurality of steel brushes (83) are distributed on the inner wall of the turntable (82) in a twisted shape.

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