Stainless steel wire winding device

By designing an adjustable pressure roller and guide structure for the stainless steel wire winding device, the problem of the inability to adjust the pressure roller's squeezing force was solved, improving the winding effect and stability, and preventing uneven tension and accumulation.

CN223632828UActive Publication Date: 2025-12-05江苏鑫旺新材料科技有限公司
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Patent Information

Application Number
CN202520067670.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-13
Publication Date
2025-12-05
Estimated Expiration
2035-01-13

AI Technical Summary

Technical Problem

Existing stainless steel wire winding devices cannot adjust the squeezing force of the pressure rollers according to the different toughness and strength of stainless steel wires, resulting in uneven tension and reduced winding effect.

Method used

A stainless steel wire winding device including a winding assembly and a guiding assembly was designed. Through adjustable pressure rollers and a guiding structure, the extrusion pressure of the pressure rollers can be flexibly adjusted and the stainless steel wire can be guided to prevent uneven tension.

Benefits of technology

This technology allows for adjustment of the pressure roller's squeezing force according to actual needs, improving the winding effect of stainless steel wire and the stability of the device, preventing the accumulation of stainless steel wire, and increasing winding efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a stainless steel wire winding device which comprises a working table, a winding assembly is arranged on the top of the working table, and a guiding assembly is arranged on the top of the working table. The winding assembly comprises arc-shaped frames rotationally installed at the top of the workbench, a pressing roller is rotationally installed between the arc-shaped frames, a first supporting column is rotationally installed between the arc-shaped frames, a winding frame is fixedly installed on the outer surface of the first supporting column, a groove is formed in one side of the winding frame, a supporting plate is slidably installed in the groove, and a first square groove is formed in one side of the supporting plate. According to the stainless steel wire winding device, a worker can conveniently adjust the extrusion force of the compression roller according to actual requirements through the arranged winding assembly, so that the situation that the tension is not uniform when the compression roller extrudes a stainless steel wire with high toughness strength is prevented, and the winding effect of the winding device on the stainless steel wire is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to stainless steel wire technical field, concretely relates to a stainless steel wire winding device. BACKGROUND

[0002] Stainless steel wire is through the stainless steel material after drawing process product of line shape, has excellent corrosion resistance, strength and toughness, in order to improve the transportation and storage efficiency of stainless steel wire, usually winding device is used to the stainless steel wire is wound.

[0003] Stainless steel wire needs workmanship to be wound on the take-up roller when winding, and the pressure roller is extruded to the stainless steel wire through the spring, and finally the motor is started to drive the take-up roller to rotate, so that the take-up roller is wound to the stainless steel wire.

[0004] Because the toughness of stainless steel wire is different in different application places, and the extrusion force of the spring on the pressure roller cannot be adjusted, when the pressure roller is extruded to the stainless steel wire with high toughness, there is uneven tension, which reduces the winding effect of the winding device on the stainless steel wire, and a stainless steel wire winding device is needed to solve the above problems. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a stainless steel wire winding device to solve the above problems in the prior art.

[0006] In order to achieve the above purpose, the utility model provides the following technical scheme:

[0007] Including workbench, the workbench top is provided with winding assembly, the workbench top is provided with guide assembly,

[0008] The winding assembly includes an arc-shaped frame rotatably installed on the top of the workbench, a pressure roller rotatably installed between the arc-shaped frames, a first support column rotatably installed between the arc-shaped frames, a winding frame fixedly installed on the outer surface of the first support column, a recess formed on one side of the winding frame, a support plate slidably installed in the recess, a first square groove formed on one side of the support plate, a square plate slidably installed in the first square groove, and a spring fixedly installed between the square plate and the winding frame.

[0009] The winding assembly can adjust the extrusion force of the pressure roller according to actual needs, so as to prevent uneven tension when the pressure roller is extruded to the stainless steel wire with high toughness, thereby increasing the winding effect of the winding device on the stainless steel wire.

[0010] The first square groove is internally fixedly provided with a fixed plate, one side of the fixed plate is rotatably provided with a threaded column, and the threaded column is in threaded connection with the square plate.

[0011] One side of the fixed plate is rotatably provided with a first bevel gear, the first bevel gear is connected with the threaded column, the first square groove is rotatably internally provided with a second bevel gear, one side of the supporting plate is rotatably provided with a knob, the knob is connected with the second bevel gear, one side of the supporting plate is fixedly provided with a buckle, the top of the workbench is rotatably provided with a second supporting column, and the second supporting column is fixedly connected with the supporting plate.

[0012] The guiding assembly comprises a guiding frame, a reciprocating rotating shaft, a square block, a first rotating shaft, a second rotating shaft, a transmission belt, a supporting frame and a motor.

[0013] The first rotating shaft is rotatably arranged at the bottom of the workbench, the second rotating shaft is rotatably arranged at the bottom of the workbench, the second rotating shaft is connected with the reciprocating rotating shaft, the transmission belt is sleeved between the first rotating shaft and the second rotating shaft, the supporting frame is fixedly arranged at the bottom of the workbench, the motor is fixedly arranged at one side of the supporting frame, and the first rotating shaft is connected with the output end of the motor.

[0014] The top of the workbench is rotatably provided with a take-up roller, and the take-up roller is connected with the first rotating shaft.

[0015] In the above technical scheme, the stainless steel wire winding device has the following beneficial effects:

[0016] The winding assembly can adjust the extrusion force of the compression roller according to actual needs, thereby preventing uneven tension from occurring when the compression roller extrudes the stainless steel wire with high toughness, and thereby increasing the winding effect of the winding device on the stainless steel wire.

[0017] The buckle can limit and fix the knob, thereby preventing the compression roller from being accidentally touched after the extrusion force is adjusted, and thereby improving the stability of the winding device during use.

[0018] The guiding assembly can guide the winding of the stainless steel wire, thereby preventing the stainless steel wire from accumulating on the take-up roller, and thereby improving the winding effect of the winding device on the stainless steel wire. BRIEF DESCRIPTION OF DRAWINGS

[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments. Obviously, the drawings described below are only some embodiments of the present application, and other drawings can also be obtained by those skilled in the art according to these drawings.

[0020] Figure 1 The present application provides a winding device structure schematic diagram for the stainless steel wire winding device embodiment.

[0021] Figure 2 The present application provides a winding device cross-section structure schematic diagram for the stainless steel wire winding device embodiment.

[0022] Figure 3 The present application provides a winding assembly structure schematic diagram for the stainless steel wire winding device embodiment.

[0023] Figure 4 The present application provides a winding frame structure schematic diagram for the stainless steel wire winding device embodiment.

[0024] 1, workbench; 2, winding assembly; 3, guide assembly; 4, arc-shaped frame; 5, compression roller; 6, first support column; 7, winding frame; 8, groove; 9, support plate; 10, first square groove; 11, square plate; 12, spring; 13, fixed plate; 14, threaded column; 15, first bevel gear; 16, second bevel gear; 17, knob; 18, buckle; 19, second support column; 20, guide frame; 21, reciprocating shaft; 22, square block; 23, first shaft; 24, second shaft; 25, transmission belt; 26, support frame; 27, motor; 28, second square groove; 29, guide groove; 30, take-up roller. DETAILED DESCRIPTION

[0025] In order to make those skilled in the art better understand the technical solutions of the present application, the present application will be further described in detail below with reference to the drawings.

[0026] As shown in Figures 1-4 The present application provides a stainless steel wire winding device.

[0027] The present application provides a stainless steel wire winding device.

[0028] The winding assembly 2 comprises arc-shaped frames 4 rotatably mounted on the top of the workbench 1, pressure rollers 5 rotatably mounted between the arc-shaped frames 4, first support columns 6 rotatably mounted between the arc-shaped frames 4, winding frames 7 fixedly mounted on the outer surfaces of the first support columns 6, recesses 8 formed in one side of the winding frames 7, support plates 9 slidably mounted in the recesses 8, first square grooves 10 formed in one side of the support plates 9, square plates 11 slidably mounted in the first square grooves 10, springs 12 fixedly mounted between the square plates 11 and the winding frames 7, the stainless steel wire being threaded through the guide grooves 29 and wound around the take-up roller 30, the knob 17 being rotated according to actual needs to drive the threaded column 14 to rotate through the first bevel gears 15 and the second bevel gears 16, the threaded column 14 driving the square plate 11 to move, the square plate 11 extruding the spring 12 to adjust the extrusion force of the spring 12 on the pressure roller 5, after the spring 12 is adjusted, the motor 27 is started to drive the first rotating shaft 23, the transmission belt 25 and the second rotating shaft 24 to rotate, the first rotating shaft 23 driving the take-up roller 30 to rotate to wind the stainless steel wire, the second rotating shaft 24 driving the square block 22 to move back and forth through the reciprocating shaft 21, the square block 22 guiding the stainless steel wire to wind through the guide grooves 29, and the spring 12 extruding the winding frame 7 to extrude the pressure roller 5 through the first support column 6 and the arc-shaped frame 4 to extrude the stainless steel wire.

[0029] The winding assembly 2 can facilitate the staff to adjust the extrusion force of the pressure roller 5 according to actual needs, thereby preventing the pressure roller 5 from extruding the stainless steel wire with high toughness strength and causing uneven tension, and thereby increasing the winding effect of the winding device on the stainless steel wire.

[0030] With reference to Figure 3 The first square groove 10 of the embodiment is fixedly provided with a fixed plate 13, one side of the fixed plate 13 is rotatably provided with a threaded column 14, and the threaded column 14 is threadedly connected with the square plate 11.

[0031] The fixed plate 13 is rotatably provided with a first bevel gear 15 connected with the threaded column 14, the first square groove 10 is rotatably provided with a second bevel gear 16, one side of the support plate 9 is rotatably provided with a knob 17 connected with the second bevel gear 16, one side of the support plate 9 is fixedly provided with a buckle 18, the top of the workbench 1 is rotatably provided with a second support column 19 fixedly connected with the support plate 9.

[0032] The buckle 18 can limit and fix the knob 17, thereby preventing the knob 17 from being accidentally touched after the extrusion force adjustment of the pressure roller 5 is completed, and thereby improving the stability of the winding device in use.

[0033] With reference to Figure 1The guiding assembly 3 of the embodiment comprises a guiding frame 20, a reciprocating rotating shaft 21, a square block 22, a first rotating shaft 23, a second rotating shaft 24, a transmission belt 25, a support frame 26 and a motor 27, the guiding frame 20 is fixedly installed on the top of the workbench 1, a second square groove 28 is formed in one side of the guiding frame 20, the square block 22 is slidably installed in the second square groove 28, the reciprocating rotating shaft 21 is rotatably installed in the guiding frame 20, the reciprocating rotating shaft 21 is threadedly connected with the square block 22, and a guiding groove 29 is formed in one side of the square block 22.

[0034] The guiding assembly 3 can guide the winding of the stainless steel wire, so that the stainless steel wire is prevented from being accumulated on the take-up roller 30, and the winding effect of the winding device on the stainless steel wire is improved.

[0035] The first rotating shaft 23 is rotatably installed on the bottom of the workbench 1, the second rotating shaft 24 is rotatably installed on the bottom of the workbench 1, the second rotating shaft 24 is connected with the reciprocating rotating shaft 21, the transmission belt 25 is sleeved between the first rotating shaft 23 and the second rotating shaft 24, the support frame 26 is fixedly installed on the bottom of the workbench 1, the motor 27 is fixedly installed on one side of the support frame 26, and the first rotating shaft 23 is connected with the output end of the motor 27.

[0036] The take-up roller 30 is rotatably installed on the top of the workbench 1 and is connected with the first rotating shaft 23.

[0037] Working principle: first, the stainless steel wire is threaded through the guiding groove 29 and wound on the take-up roller 30, the knob 17 is rotated according to actual needs, the threaded column 14 is driven to rotate through the first bevel gear 15 and the second bevel gear 16, the square plate 11 is driven to move by the threaded column 14, the spring 12 is extruded by the square plate 11, the extrusion degree of the spring 12 on the compression roller 5 is adjusted, after the spring 12 is adjusted, the motor 27 is started to drive the first rotating shaft 23, the transmission belt 25 and the second rotating shaft 24 to rotate, the take-up roller 30 is driven to rotate by the first rotating shaft 23, so that the stainless steel wire is wound, the square block 22 is driven to reciprocate by the second rotating shaft 24 through the reciprocating rotating shaft 21, the stainless steel wire is guided and wound by the square block 22 through the guiding groove 29, and the spring 12 extrudes the winding frame 7, so that the first support column 6 and the arc-shaped frame 4 extrude the compression roller 5, and the compression roller 5 extrudes and winds the stainless steel wire.

[0038] The above only describes certain exemplary embodiments of the present application by way of illustration, without doubt, for ordinary skilled in the art, without departing from the spirit and scope of the present application, the described embodiments can be modified in various ways. Therefore, the above description and drawings are illustrative in nature, and should not be construed as limiting the scope of protection of the claims of the present application.

Claims

1. A stainless steel wire winding device comprising a worktable (1), characterized in that, The workbench (1) top is provided with a winding assembly (2), the workbench (1) top is provided with a guide assembly (3); The winding assembly (2) comprises arc-shaped frames (4) rotatably installed on the top of the workbench (1), pressure rollers (5) rotatably installed between the arc-shaped frames (4), first support columns (6) rotatably installed between the arc-shaped frames (4), winding frames (7) fixedly installed on the outer surfaces of the first support columns (6), recesses (8) formed in one side of the winding frames (7), support plates (9) slidably installed in the recesses (8), first square grooves (10) formed in one side of the support plates (9), square plates (11) slidably installed in the first square grooves (10), and springs (12) fixedly installed between the square plates (11) and the winding frames (7).

2. A stainless steel wire winding device according to claim 1, characterized in that The first square grooves (10) are fixedly installed with fixed plates (13), the fixed plates (13) are rotatably installed with threaded columns (14) on one side, and the threaded columns (14) are threadedly connected with the square plates (11).

3. A stainless steel wire winding device according to claim 2, characterized in that The fixed plates (13) are rotatably installed with first bevel gears (15) on one side, the first bevel gears (15) are connected with the threaded columns (14), the first square grooves (10) are rotatably installed with second bevel gears (16), the support plates (9) are rotatably installed with knobs (17) on one side, the knobs (17) are connected with the second bevel gears (16), the support plates (9) are fixedly installed with buckles (18) on one side, the workbench (1) top is rotatably installed with second support columns (19), and the second support columns (19) are fixedly connected with the support plates (9).

4. A stainless steel wire winding device according to claim 1, wherein The guide assembly (3) comprises a guide frame (20), a reciprocating rotating shaft (21), a square block (22), a first rotating shaft (23), a second rotating shaft (24), a transmission belt (25), a support frame (26) and a motor (27), the guide frame (20) is fixedly installed on the top of the workbench (1), the guide frame (20) is formed with a second square groove (28) on one side, the square block (22) is slidably installed in the second square groove (28), the reciprocating rotating shaft (21) is rotatably installed in the guide frame (20), the reciprocating rotating shaft (21) is threadedly connected with the square block (22), and the square block (22) is formed with a guide groove (29) on one side.

5. A stainless steel wire winding device according to claim 4, characterized in that The first rotating shaft (23) is rotatably installed at the bottom of the workbench (1), the second rotating shaft (24) is rotatably installed at the bottom of the workbench (1), the second rotating shaft (24) is connected with the reciprocating rotating shaft (21), the transmission belt (25) is sleeved between the first rotating shaft (23) and the second rotating shaft (24), the support frame (26) is fixedly installed at the bottom of the workbench (1), the motor (27) is fixedly installed on one side of the support frame (26), and the first rotating shaft (23) is connected with the output end of the motor (27).

6. A stainless steel wire winding device according to claim 4, wherein The workbench (1) top rotary installation has a take-up roller (30), the take-up roller (30) is connected with the first rotating shaft (23).