A cleaning device for wire processing and production

By designing a wire cleaning device including a guide frame, a grinding sleeve and a adjusting cone spring, the problem of insufficient cleaning of steel wire in the prior art is solved, and precise polishing of steel wire scars and improving surface quality are achieved.

CN119973842BActive Publication Date: 2025-06-24LUOYANG CITY AOXIN METAL PROD CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202510442829.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2025-06-24
Estimated Expiration
2045-04-10

AI Technical Summary

Technical Problem

Existing cleaning devices cannot fully clean the steel wire, especially when there are pit spots and welding scars on the surface of the steel wire, it cannot be thoroughly cleaned, or it is easy to cause excessive cleaning of the location where pits and welding scars are not present, resulting in the manufactured parts not meeting the requirements.

Method used

A cleaning device for steel wire processing and production is designed, including a guide frame, a polishing sleeve and an adjusting cone spring. The guide frame guides the wire to move along the fixed path, the polishing sleeve rotates on the outside of the steel wire, and cleans it by polishing hairs on the inner wall. The adjusting cone spring drives rotation through the drive source, combined with the deformation of the grinding sleeve, achieves accurate polishing of steel wire scars.

Benefits of technology

Accurately polishing the areas where the steel wire has scars to prevent excessive polishing in other areas and ensure that the surface quality of the steel wire meets the requirements.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119973842B_ABST
    Figure CN119973842B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of cleaning equipment, and particularly relates to a cleaning device for steel wire processing and production, which includes a guiding frame, a grinding sleeve, and an adjusting conical spring. When there are scars on the steel wire, the scars on the steel wire can push against the grinding sleeve, causing the grinding sleeve to deform in its own radial direction. After the grinding sleeve deforms in its own radial direction, it can abut against the adjusting conical spring. When the driving source drives the adjusting conical spring to rotate, the rotational resistance of the grinding sleeve increases, causing the adjusting conical spring to twist. During the twisting process of the adjusting conical spring, the adjusting conical spring squeezes the deformed position of the grinding sleeve, increasing the degree of grinding of the scars on the steel wire by the grinding sleeve, thereby achieving precise grinding of the areas with scars on the steel wire and preventing excessive grinding of other areas of the steel wire.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of cleaning equipment, and particularly relates to a cleaning device for wire processing and production. Background Art

[0002] As a basic and widely used material, wire plays a key role in many fields such as construction, machinery manufacturing, the automotive industry, and the production of various daily necessities. The quality of the wire surface directly affects the performance and service life of the final product. During the production process of wire, due to various factors such as the quality of raw materials and processing technology, residues, oil stains, pockmarks, and scars often appear on the wire surface.

[0003] In the prior art, for example, a Chinese invention patent with the authorization announcement number CN118751584B discloses an automatic cleaning device for wire ropes used in the production of stainless steel wire ropes. In the published document, the wire rope first passes through a wire rope cleaning frame. The motor drives the roller rotating rod and the internal gear shaft to rotate, driving the rotating shaft and the rotating shaft connecting rod to rotate, and then causing the push-pull connecting rod and the push rod to perform reciprocating motions. The cleaning frame sliding rod slides in the vertical plate chute, driving the cleaning plate and the nylon brush to reciprocate on the wire rope to achieve preliminary cleaning. The nylon brush of the cleaning plate effectively removes dirt and impurities on the wire rope surface. However, in the field of machinery manufacturing, for the wire used to manufacture precision parts, when there are pockmarks and welding scars on the wire surface, the reciprocating motion of the cleaning plate and the nylon brush cannot thoroughly clean the pockmarks and welding scars, or the reciprocating motion of the cleaning plate and the nylon brush is likely to cause excessive cleaning of the positions without pockmarks and welding scars, resulting in the manufactured parts not meeting the requirements. Summary of the Invention

[0004] The present invention provides a cleaning device for wire processing and production to solve the problem that the existing cleaning device cannot clean the wire sufficiently.

[0005] The following technical scheme is adopted for a cleaning device for wire processing and production of the present invention:

[0006] A cleaning device for wire processing and production includes a guiding frame, a grinding sleeve, and an adjusting conical spring.

[0007] The guiding frame is used to guide the steel wire to move along a fixed path; the grinding sleeve is coaxially sleeved outside the steel wire, the grinding sleeve has a first end and a second end, and in the moving direction of the steel wire, the first end is at the rear side of the second end; the grinding sleeve can deform in its own radial direction; a plurality of grinding hairs are arranged on the inner side wall of the grinding sleeve; the adjusting conical spring is coaxially sleeved outside the grinding sleeve, the adjusting conical spring has a third end and a fourth end, the diameter of the third end is smaller than that of the fourth end, the third end is fixedly connected with the first end, and in the moving direction of the steel wire, the third end is at the rear side of the fourth end; a bracket is rotatably connected to the adjusting conical spring, and the bracket is used to stabilize the adjusting conical spring and the grinding sleeve; a driving source is arranged on the bracket, and the driving source is used to drive the fourth end to rotate.

[0008] Further, the rotation direction of the driving source driving the fourth end is the same as the spiral direction of the adjusting conical spring.

[0009] Further, the grinding sleeve includes a plurality of grinding arc plates, the plurality of grinding arc plates are fixedly connected at the first end, and each grinding arc plate can abut against the adjusting conical spring when deforming.

[0010] Further, the grinding arc plate is a metal thin plate.

[0011] Further, a fixing ring is coaxially and fixedly arranged at the fourth end of the adjusting conical spring, and a supporting ring is coaxially and rotatably arranged on the inner side wall of the fixing ring, and the supporting ring supports the plurality of grinding arc plates.

[0012] Further, the guiding frame includes a frame rod and a winding roller, two frame rods are arranged, the two frame rods are arranged at intervals, a guiding hole is arranged at the upper end of each frame rod, and the two guiding holes are coaxially arranged; the winding roller is rotatably arranged on the ground, the winding roller is arranged on one side of any one of the frame rods, and the winding roller can wind the steel wire.

[0013] Further, the guiding frame further includes an auxiliary motor, and the auxiliary motor is used to drive the winding roller to rotate.

[0014] Further, the guiding frame further includes an unwinding roller, an uncleaned steel wire is wound on the unwinding roller, and the unwinding roller is rotatably arranged on the ground.

[0015] Further, the driving source is a driving motor, and the driving motor is used to drive the fixing ring to rotate.

[0016] Further, the grinding hairs are made of metal.

[0017] The beneficial effects of the present invention are as follows: A cleaning device for wire processing and production according to the present invention includes a guiding frame, a polishing sleeve, and an adjusting conical spring. When cleaning the wire, the guiding frame is used to guide the wire to be cleaned, so that the wire moves along a fixed path. By arranging the polishing sleeve outside the wire and the adjusting conical spring outside the polishing sleeve, a bracket is provided to support the adjusting conical spring and the polishing sleeve to ensure that the polishing sleeve and the adjusting conical spring are in a stable state. A power source for driving the rotation of the adjusting conical spring is arranged on the bracket. When the adjusting conical spring rotates, it drives the polishing sleeve to rotate. When the wire moves along the fixed path and during the rotation of the polishing sleeve, the polishing hairs arranged on the inner side wall of the polishing sleeve clean the outer side wall of the wire. When there are scars on the wire, the scars on the wire can push against the polishing sleeve, causing the polishing sleeve to deform in its own radial direction. After the polishing sleeve deforms in its own radial direction, it can abut against the adjusting conical spring. When the driving source drives the adjusting conical spring to rotate, the rotation resistance of the polishing sleeve increases, causing the adjusting conical spring to twist. During the twisting process of the adjusting conical spring, the adjusting conical spring squeezes the deformed position of the polishing sleeve, increasing the polishing degree of the scars on the wire, thereby achieving precise polishing of the areas with scars on the wire and preventing over-polishing of other areas of the wire. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0019] Figure 1 FIG. is a schematic structural diagram of a cleaning device for wire processing and production provided by an embodiment of the present invention;

[0020] Figure 2 is Figure 1 a partial enlarged view of part A in

[0021] Figure 3 FIG. is a schematic structural diagram of a polishing sleeve in a cleaning device for wire processing and production provided by an embodiment of the present invention;

[0022] Figure 4 FIG. is a top view of a cleaning device for wire processing and production provided by an embodiment of the present invention;

[0023] Figure 5 is Figure 4 a cross-sectional view taken along the B-B direction in

[0024] Figure 6 is Figure 5 a partial enlarged view of part C in

[0025] Figure 7 is Figure 4 a sectional view in the D-D direction in

[0026] Figure 8 is Figure 7 a locally enlarged view at position E in

[0027] In the figure: 110, support plate; 120, grinding sleeve; 121, grinding arc plate; 122, grinding hair; 130, steel wire; 140, adjusting taper spring; 150, fixing ring; 170, bracket; 210, rod; 220, winding roller; 230, auxiliary motor; 240, unwinding roller; 250, driving motor. Specific embodiments

[0028] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0029] The serial numbers assigned to the components herein, such as "first", "second", etc., are only used to distinguish the described objects and do not have any sequential or technical meaning. The terms "connection" and "coupling" used in this application, unless otherwise specifically stated, both include direct and indirect connections (couplings). In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present invention.

[0030] In the present invention, unless otherwise clearly specified and limited, the first feature being "on" or "under" the second feature may be that the first and second features are in direct contact, or the first and second features are indirectly in contact through an intermediate medium. Moreover, the first feature being "above", "over" and "on top of" the second feature may be that the first feature is directly above or obliquely above the second feature, or merely indicates that the first feature has a higher horizontal height than the second feature. The first feature being "under", "below" and "beneath" the second feature may be that the first feature is directly below or obliquely below the second feature, or merely indicates that the first feature has a lower horizontal height than the second feature.

[0031] Such as Figures 1 to 8As shown, a cleaning device for wire processing and production provided by an embodiment of the present invention includes a guiding frame, a polishing sleeve 120, and an adjusting cone spring 140.

[0032] A support plate 110 is provided on the ground. The support plate 110 is horizontally arranged. A guiding frame is provided on the support plate 110. The wire 130 to be cleaned is placed on the support plate 110. The guiding frame can guide the wire 130 to move along a fixed path. Under the action of the guiding frame, a section of the wire 130 is in a horizontal state. In this embodiment, two guiding frames are provided, and the two guiding frames are arranged at intervals. The wire 130 forms a horizontal section between the two guiding frames. A traction wheel is provided on one of the guiding frames, and the traction wheel can traction the wire 130 to make the wire 130 move along a fixed path.

[0033] The polishing sleeve 120 is slightly cylindrical in shape. The polishing sleeve 120 is coaxially sleeved outside the wire 130. A plurality of polishing hairs 122 are provided on the inner side wall of the polishing sleeve 120, and the plurality of polishing hairs 122 contact the wire 130 simultaneously. The axis direction of the polishing sleeve 120 has a first end and a second end. In the moving direction of the wire 130, the first end is at the rear side of the second end. Specifically, during the movement of the wire 130, the wire 130 enters the inside of the polishing sleeve 120 from the second end of the polishing sleeve 120, and the wire 130 detaches from the polishing sleeve 120 from the first end of the polishing sleeve 120. The polishing sleeve 120 can undergo radial deformation of itself. When there are scars on the outer side wall of the wire 130, the position of the wire 130 with scars squeezes the polishing sleeve 120 through the polishing hairs 122, so that the position of the polishing sleeve 120 being squeezed undergoes radial deformation.

[0034] The adjusting tapered spring 140 is coaxially sleeved outside the grinding sleeve 120. The axial length of the adjusting tapered spring 140 is the same as that of the grinding sleeve 120. The adjusting tapered spring 140 has a third end and a fourth end. The diameter of the third end is smaller than that of the fourth end. The third end is fixedly connected to the first end. Then, in the movement direction of the steel wire 130, the third end is at the rear side of the fourth end. A bracket 170 is arranged on the support plate 110. The bracket 170 is rotatably connected to both the third end and the fourth end of the adjusting tapered spring 140. The bracket 170 is used to ensure the stable state of the adjusting tapered spring 140 and the grinding sleeve 120. A driving source is arranged on the bracket 170, and the driving source is used to drive the fourth end to rotate. Specifically, since the grinding sleeve 120 will grind the steel wire 130 when rotating, the grinding sleeve 120 has a certain rotational resistance when rotating. When the driving source drives the fourth end, the adjusting tapered spring 140 will be twisted. At this time, the outer diameter of the adjusting tapered spring 140 will change. After the adjusting tapered spring 140 is twisted to a certain extent, the third end of the adjusting tapered spring 140 drives the grinding sleeve 120 to rotate simultaneously. When there is a scar on the outer sidewall of the steel wire 130, the position of the scar on the steel wire 130 squeezes the grinding sleeve 120 through the grinding hair 122, causing the position of the grinding sleeve 120 being squeezed to deform in the radial direction. After the grinding sleeve 120 deforms, as the steel wire 130 moves along the fixed path, the squeezing position of the steel wire 130 on the grinding sleeve 120 gradually changes, causing the deformed position of the grinding sleeve 120 to gradually change. When the deformed position of the grinding sleeve 120 abuts against the adjusting tapered spring 140, when the driving source drives the adjusting tapered spring 140 to rotate, the rotational resistance of the grinding sleeve 120 increases, causing the adjusting tapered spring 140 to be twisted. During the twisting process of the adjusting tapered spring 140, the adjusting tapered spring 140 squeezes the deformed position of the grinding sleeve 120, increasing the grinding degree of the scar on the steel wire 130 by the grinding sleeve 120, thereby realizing precise grinding of the place where the steel wire 130 has a scar.

[0035] A wire cleaning device for wire processing and production according to the present invention, when cleaning the wire 130, a guiding frame is used to guide the wire 130 to be cleaned, so that the wire 130 moves along a fixed path. By arranging the grinding sleeve 120 outside the wire 130 and arranging the adjusting cone spring 140 outside the grinding sleeve 120, a bracket 170 is arranged to support the adjusting cone spring 140 and the grinding sleeve 120 to ensure that the grinding sleeve 120 and the adjusting cone spring 140 are in a stable state. A power source for driving the adjusting cone spring 140 to rotate is arranged on the bracket 170. When the adjusting cone spring 140 rotates, it drives the grinding sleeve 120 to rotate. When the wire 130 moves along a fixed path and during the rotation of the grinding sleeve 120, the grinding hairs 122 arranged on the inner side wall of the grinding sleeve 120 clean the outer side wall of the wire 130. When there are scars on the wire 130, the scars on the wire 130 can push against the grinding sleeve 120, causing the grinding sleeve 120 to deform in its own radial direction. After the grinding sleeve 120 deforms in its own radial direction, it can abut against the adjusting cone spring 140. When the driving source drives the adjusting cone spring 140 to rotate, the rotational resistance of the grinding sleeve 120 increases, causing the adjusting cone spring 140 to twist. During the twisting process of the adjusting cone spring 140, the adjusting cone spring 140 squeezes the deformed position of the grinding sleeve 120, increasing the grinding degree of the scars on the wire 130 by the grinding sleeve 120, thereby achieving precise grinding of the areas with scars on the wire 130 and preventing over-grinding of other areas of the wire 130.

[0036] In one embodiment, when the grinding sleeve 120 rotates, it grinds the wire 130. When there are pockmarks on the surface of the wire 130, the resistance of the grinding sleeve 120 during rotation increases. When the driving source drives the fourth end, the adjusting cone spring 140 will twist further. At this time, the outer diameter of the adjusting cone spring 140 decreases, and the adjusting cone spring 140 exerts a certain squeezing force on the grinding sleeve 120, thereby increasing the grinding degree of the wire 130 by the grinding sleeve 120.

[0037] In one embodiment, when there are scars on the wire 130, the size of the scars is uncertain. When the weld scar is relatively small, the weld scar is not sufficient to push the grinding sleeve 120 to deform. At this time, the relatively small weld scar is regarded as a pockmark by default. The resistance of the grinding sleeve 120 during rotation increases. When the driving source drives the fourth end, the adjusting cone spring 140 will twist further. At this time, the outer diameter of the adjusting cone spring 140 decreases, and the adjusting cone spring 140 exerts a certain squeezing force on the grinding sleeve 120, thereby increasing the grinding degree of the wire 130 by the grinding sleeve 120.

[0038] In one embodiment, the driving source drives the fourth end to rotate in the same direction as the spiral direction of the adjusting conical spring 140. By limiting the rotation direction of the driving source driving the fourth end, when there is a scar on the outer sidewall of the steel wire 130, the diameter of the adjusting conical spring 140 gradually decreases, ensuring that the adjusting conical spring 140 can squeeze the deformed position of the grinding sleeve 120, so that the grinding sleeve 120 can intensively grind the position of the steel wire 130 with the scar.

[0039] In one embodiment, the grinding sleeve 120 includes a plurality of grinding arc plates 121. The curvature of each grinding arc plate 121 is the same. One ends of the plurality of grinding arc plates 121 are fixedly connected. The plurality of grinding arc plates 121 enclose an annular grinding sleeve 120. One ends where the plurality of grinding arc plates 121 are fixedly connected are at the first end of the grinding sleeve 120. When there is a scar on the local outer sidewall of the steel wire 130, the grinding arc plate 121 in contact with the scar deforms, and the grinding arc plates 121 not in contact with the scar remain unchanged, and the deformed grinding arc plate 121 can contact the adjusting conical spring 140, ensuring a constant grinding degree for the outer sidewall of the steel wire 130 without scars.

[0040] In one embodiment, the grinding arc plate 121 is a metal sheet. The grinding arc plate 121 is in a shape similar to a tape measure. The grinding hairs 122 are fixedly arranged on the grinding arc plate 121. The position of the steel wire 130 with the scar squeezes the grinding arc plate 121 through the grinding hairs 122. By limiting the material of the grinding arc plate 121, the grinding arc plate 121 can deform smoothly. In addition, the grinding arc plate 121 is set as a metal sheet, which can extend the service life of the grinding arc plate 121.

[0041] In one embodiment, a fixing ring 150 is coaxially and fixedly arranged at the fourth end of the adjusting conical spring 140. The fixing ring 150 is made of a hard material, such as iron metal. The outer sidewall of the fixing ring 150 is rotatably connected to the bracket 170. The inner sidewall of the fixing ring 150 is coaxially and rotatably connected with a support ring. The inner diameter of the support ring is equal to the outer diameter of the grinding sleeve 120. The support ring is sleeved on the outside of the grinding sleeve 120, and the support ring is at the second end of the grinding sleeve 120. The support ring supports the plurality of grinding arc plates 121 to prevent the second end of the grinding sleeve 120 from deforming under its own gravity.

[0042] In one embodiment, the guiding frame includes a frame rod 210 and a winding roller 220. There are two frame rods 210, which are arranged in parallel at intervals. The frame rods 210 are arranged vertically. The lower ends of the frame rods 210 are fixedly connected to the support plate 110. A guiding hole is provided at the upper end of each frame rod 210. The guiding holes on the two frame rods 210 are coaxial. The steel wire 130 passes through the two guiding holes at the same time. Between the two frame rods 210, the steel wire 130 is in a horizontal state. The winding roller 220 is rotatably arranged on the support plate 110. The winding roller 220 is arranged on one side of any one of the frame rods 210. The winding roller 220 can wind up the steel wire 130 that has been cleaned. Further, the bracket 170 is arranged between the two frame rods 210 to clean the steel wire 130 between the two frame rods 210, ensuring that the steel wire 130 entering the winding roller 220 is the cleaned steel wire 130.

[0043] In one embodiment, the guiding frame further includes an auxiliary motor 230. The auxiliary motor 230 is fixedly arranged on the support plate 110. The power output shaft of the auxiliary motor 230 is coaxially and fixedly connected to the winding roller 220. When the auxiliary motor 230 is started, it can drive the winding roller 220 to rotate. Further, a speed reducer is arranged between the auxiliary motor 230 and the winding roller 220. The speed reducer can reduce the speed of the auxiliary motor 230 and increase the torque of the auxiliary motor 230 at the same time.

[0044] In one embodiment, the guiding frame further includes an unwinding roller 240. The unwinding roller 240 is wound with the uncleaned steel wire 130. The unwinding roller 240 and the winding roller 220 are arranged at intervals. The axial direction of the unwinding roller 240 is parallel to the axial direction of the winding roller 220. The unwinding roller 240 is rotatably arranged on the support plate 110. When the winding roller 220 rotates, the unwinding roller 240 rotates passively on the support plate 110, so that the steel wire 130 gradually disengages from the unwinding roller 240.

[0045] In one embodiment, the driving source is a driving motor 250. The driving motor 250 is used to drive the fixed ring 150 to rotate. Specifically, the driving motor 250 is fixedly connected to the bracket 170. A fixed gear ring is arranged on the power output shaft of the driving motor 250. A toothed ring is fixedly arranged on the fixed ring 150. The fixed gear ring and the toothed ring are always meshed. When the driving motor 250 is started, the fixed ring 150 rotates around its own axis.

[0046] In one embodiment, the polishing bristles 122 are made of metal. When there are scars on the outer side wall of the steel wire 130, the metal polishing bristles 122 can effectively remove the scars on the outer side wall of the steel wire 130. The scars on the outer side wall of the steel wire 130 can squeeze the polishing sleeve 120 through the polishing bristles 122, causing the side wall of the polishing sleeve 120 to deform in time.

[0047] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A cleaning device for steel wire processing and production, characterized in that: include: A guide frame, the guide frame is used to guide the steel wire to move along a fixed path; A grinding sleeve, wherein the grinding sleeve is coaxially arranged outside the steel wire, the grinding sleeve has a first end and a second end, and in the moving direction of the steel wire, the first end is located at the rear side of the second end; the grinding sleeve can undergo radial deformation; and a plurality of grinding hairs are arranged on the inner side wall of the grinding sleeve; An adjusting cone spring, wherein the adjusting cone spring is coaxially sleeved on the outside of the grinding sleeve, the adjusting cone spring has a third end and a fourth end, the diameter of the third end is smaller than the diameter of the fourth end, the third end is fixedly connected to the first end, and in the moving direction of the wire, the third end is located at the rear side of the fourth end; a bracket is rotatably connected to the adjusting cone spring, and the bracket is used to stabilize the adjusting cone spring and the grinding sleeve; a driving source is provided on the bracket, and the driving source is used to drive the fourth end to rotate; The polishing sleeve comprises a plurality of polishing arc plates, the plurality of polishing arc plates are fixedly connected at the first end, and each of the polishing arc plates can abut against the adjusting cone spring when deformed; When there is a scar on the outer wall of the steel wire, the grinding bristles squeeze the grinding sleeve at the position where the scar exists, so that the squeezed position of the grinding sleeve is deformed in the radial direction. After the grinding sleeve is deformed, as the steel wire moves along a fixed path, the squeezing position of the grinding sleeve by the steel wire gradually changes, so that the deformation position of the grinding sleeve gradually changes. When the deformed position of the grinding sleeve abuts against the adjusting cone spring, when the driving source drives the adjusting cone spring to rotate, the rotational resistance of the grinding sleeve increases, so that the adjusting cone spring twists. During the twisting process of the adjusting cone spring, the adjusting cone spring squeezes the deformed position of the grinding sleeve, so that the grinding degree of the scar on the steel wire by the grinding sleeve is increased, thereby achieving precise grinding of the scar on the steel wire.

2. A cleaning device for steel wire processing and production according to claim 1, characterized in that: The driving source drives the fourth end to rotate in a direction that is the same as the spiral direction of the adjusting cone spring.

3. A cleaning device for steel wire processing and production according to claim 1, characterized in that: The polished arc plate is a metal sheet.

4. A cleaning device for steel wire processing and production according to claim 1, characterized in that: A fixing ring is coaxially fixedly provided at the fourth end of the adjusting cone spring, and a supporting ring is coaxially rotatably provided on the inner side wall of the fixing ring, and the supporting ring supports the plurality of grinding arc plates.

5. A cleaning device for steel wire processing and production according to claim 1, characterized in that: The guide frame includes a frame rod and a winding roller. Two frame rods are provided. The two frame rods are arranged at an interval. A guide hole is provided at the upper end of each frame rod. The two guide holes are coaxially arranged. The winding roller is rotatably set on the ground. The winding roller is set on one side of any one of the frame rods. The winding roller can wind up the steel wire.

6. A cleaning device for steel wire processing and production according to claim 5, characterized in that: The guide frame also includes an auxiliary motor, and the auxiliary motor is used to drive the winding roller to rotate.

7. A cleaning device for steel wire processing and production according to claim 5, characterized in that: The guide frame also includes a reel, on which uncleaned steel wire is wound, and the reel is rotatably arranged on the ground.

8. A cleaning device for steel wire processing and production according to claim 4, characterized in that: The driving source is a driving motor, and the driving motor is used to drive the fixing ring to rotate.

9. A cleaning device for steel wire processing and production according to claim 1, characterized in that: The grinding hair is made of metal.

Citation Information

Patent Citations

  • An automatic wire rope cleaning device for stainless steel wire rope production

    CN118751584B

  • Elastic deformation locating pin

    CN103615454A

  • Spring surface polishing device

    CN115635406A