Diamond wire busbar stretching device and method of use

By designing a diamond wire busbar tensioning device and adopting a fully automatic winding and unwinding structure and a coarseness adjustment structure, the problem of only being able to adjust the tension coarsely has been solved, and fine tension adjustment and fully automatic loading and unloading have been realized, thereby improving production efficiency.

CN116460158BActive Publication Date: 2026-01-09HENAN HENGCHUANG NENGKE METAL PROD CO LTD
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Patent Information

Application Number
CN202310557073.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-05-17
Publication Date
2026-01-09
Estimated Expiration
2043-05-17

AI Technical Summary

Technical Problem

In existing technologies, the tension adjustment of diamond wire busbars can only achieve coarse adjustment and cannot achieve fine adjustment. Furthermore, the loading and unloading process relies on manual operation, which is inefficient.

Method used

A diamond wire busbar stretching device was designed, comprising an equipment box, a pay-off reel, a lubrication cooler, a drawing die, and a take-up reel. It adopts a fully automatic take-up and pay-off structure and a thickness adjustment structure. The tension is finely adjusted through components such as the tower wheel, disc, upper and lower drawing dies, ring frame, circular slide rail, and ring gear. The automatic take-up and pay-off structure and the lubrication cooler improve the operating efficiency.

Benefits of technology

It enables fine-tuning of the tension of diamond wire and fully automatic loading and unloading, improving production efficiency, reducing manual intervention, and adapting to the needs of different wire thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of diamond wire busbar stretching device and use method, including equipment box, pay-off wheel, lubrication cooler, wire drawing die, take-up wheel;The inside of the equipment box is cavity structure, pay-off wheel and take-up wheel are respectively placed in the upper end of equipment box two sides, the lubrication cooler and wire drawing die are located in the inside of equipment box, the line body is sent from pay-off wheel, passes through lubrication cooler and wire drawing die and is wound on take-up wheel, characterized in that, the wire drawing die is provided with thickness adjusting structure, the lubrication cooler is provided with sealing structure, and automatic take-up structure is provided on the pay-off wheel and take-up wheel.The beneficial effects of the present application are that the present application provides a wire drawing equipment with adjustable thick wire, and the adjustment in the present case is to adjust the height of the wire drawing die, thereby adjusting the tension of the wire body;The present application provides a new feeding and collecting equipment, at least 6 stations are provided on each rotating frame, thereby reducing the material replacement frequency.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of diamond wire, in particular to a diamond wire mother wire stretching device. BACKGROUND

[0002] The diamond wire mother wire is a core wire material for producing electroplated diamond wire and resin diamond wire, which is produced by using high-quality raw materials, advanced heat treatment process and wire drawing process. It has the characteristics of high strength, high precision size, excellent surface cleanliness, etc.

[0003] The diamond wire mother wire is mainly used in the cutting industry of brittle materials such as silicon and sapphire after being made into diamond wire.

[0004] The wire drawing machine mainly winds the material and winds one end on the take-up wheel. When the wire is wound and unwound, it passes through the wire drawing die, so that the wire body becomes thinner, and the length of the wire increases.

[0005] The wire drawing die used in the wire drawing machine is generally detachable. For the replacement of the thickness of the wire body, different wire drawing dies need to be replaced, or the position of the wire drawing roller needs to be changed to adjust the tension of the wire body.

[0006] For example, the Chinese patent publication (announcement) No. CN111438207A provides a metal wire drawing machine capable of controlling tension, which comprises a wire drawing machine body, a plurality of wire drawing rollers are arranged on the wire drawing machine body, the wire drawing roller is composed of three concentric rollers, and the diameters of the three rollers are different, a plurality of cross-shaped grooves are arranged on the wire drawing machine body, the roller shaft of the wire drawing roller is arranged in the cross-shaped groove, and the roller shaft is driven by a motor and can move in the cross-shaped groove, a shifting block for adjusting the diameter of the roller is arranged at the position of the metal wire between the wire drawing rollers, and the shifting block is driven by a motor and can move the metal wire to the roller with different diameters by moving left and right. The metal wire drawing machine capable of controlling tension can realize coarse adjustment and fine adjustment of tension by moving the wire drawing roller in the cross-shaped groove or moving the metal wire to the roller with different diameters, can adapt to the needs of different metal products, and ensures the quality of the products.

[0007] The above technical solution has the advantage of being able to automatically adjust the thickness of the wire body, but it can only be coarsely adjusted and cannot be finely adjusted. The reason is that in the drawings, the tension adjustment is mainly based on the position of the wire body on the roller, and the step gradient of the roller is fixed and large, so only coarse adjustment can be achieved.

[0008] At the same time, the existing technology mainly uses manual operation to wind and unwind the wire. After one circle of mother wire material is used up, manual replacement is needed, and after the winding is completed, manual collection is also needed, which is relatively inconvenient. SUMMARY

[0009] The purpose of the present application is to solve the above problems, a kind of diamond wire busbar stretching device is designed.

[0010] The technical scheme of the present application to achieve the above-mentioned purposes is a kind of diamond wire busbar stretching device, including equipment box, pay-off wheel, lubricating cooler, wire drawing die, take-up reel;

[0011] The inside of the equipment box is a cavity structure, the pay-off wheel and the take-up reel are respectively arranged on the upper end of the equipment box, the lubricating cooler and the wire drawing die are located in the interior of the equipment box, the wire body is sent out from the pay-off wheel, passes through the lubricating cooler and the wire drawing die and is wound on the take-up reel, the wire drawing die is provided with a thickness adjusting structure, the lubricating cooler is provided with a sealing structure, and automatic take-up and pay-off structures are arranged on the pay-off wheel and the take-up reel;

[0012] The thickness adjusting structure comprises a pair of tower wheels, a disc body, a plurality of wire drawing upper dies, a plurality of wire drawing lower dies, a ring-shaped frame, a pair of circular slide rails, a ring gear and a plurality of sliding members.

[0013] The pair of tower wheels are installed in the interior of the equipment box, the pair of circular slide rails are installed in the interior of the equipment box, the left and right sides of the ring-shaped frame are installed in the pair of circular slide rails through the plurality of sliding members, the ring gear is sleeved on the ring-shaped frame, a driver A is arranged at the bottom of the equipment box, an external gear is arranged on the driver A, the gear is engaged with the ring gear, the plurality of wire drawing upper dies are installed at equal angles on the ring-shaped frame, the plurality of wire drawing lower dies are arranged at equal angles on the disc body, and the central part of the disc body is driven by a driver B.

[0014] The wire drawing upper die and the wire drawing lower die can be engaged together, an electric push rod is arranged on the opposite side of the disc body, a limiting disc is arranged on the telescopic end of the electric push rod, the limiting disc is provided with a plurality of limiting columns, a plurality of positioning holes are arranged on the outer wall of the disc body, and the limiting columns can be inserted into the positioning holes.

[0015] Preferably, the automatic take-up and pay-off structure comprises a pair of wire reel frames, a driving motor, a rotating frame, a plurality of work station frames, an auxiliary frame, an electric fastener and a plurality of rotating columns.

[0016] The pair of wire reel frames are arranged on the upper end of the equipment box and the rotating frame, the driving motor is located on one side of the wire reel frame, the rotating frame is arranged on one side of the equipment box, the auxiliary frame is arranged between the rotating frame and the equipment box, the auxiliary frame is provided with a linear module, a telescopic motor is arranged on the linear module, the telescopic motor is provided with a mounting frame on the telescopic end, the electric fastener is mounted on the mounting frame, the shaft outer end of the pay-off wheel is provided with a shaft body, and a triangular positioning body is integrally formed on one end of the shaft body.

[0017] The rotating column is movably embedded in the line wheel frame and fixedly embedded in the rotating frame, a triangular positioning cavity is arranged at the central part of the rotating column, the rear end of the triangular positioning body has a cross slot, and a plurality of inclined surfaces are arranged between the edge of the cross slot and the outer wall of the triangular positioning body, and a cross positioning block is arranged at the driving end of the driving motor;

[0018] The electric fastener is composed of a pair of clamping motors and arc-shaped clamping arms arranged on the clamping motors.

[0019] Preferably, the lubricating cooler comprises a lubricating cooling box, a lubricating cooling groove, a guide wheel, and a pair of lubricating cooling wheels.

[0020] The lubricating cooling box is installed in the interior of the equipment box, the lubricating cooling groove is located in the lubricating cooling box and integrally formed at the bottom, mounting grooves are formed in the left and right walls of the lubricating cooling box, a pair of lubricating cooling wheels are arranged in the mounting grooves, the guide wheel is arranged in the middle of the lubricating cooling groove, and the lubricating cooling groove has lubricating cooling liquid therein.

[0021] The end of the lubricating cooling groove has a sealing plate, and the end of the sealing plate has a plurality of wire inlet holes.

[0022] Preferably, a circular track is arranged on the auxiliary frame, and a plurality of sliding bodies are arranged on the outer wall of the rotating frame, which can slide in the circular track.

[0023] Preferably, at least six work station frames are arranged on the outer wall of the rotating frame.

[0024] Preferably, a magnetic attraction block is arranged on the outer wall of the rotating column, and an electromagnet is arranged on the outer wall of the line wheel frame, which is attracted to the magnetic attraction block after working, so that the rotating column cannot rotate, and the position of the triangular positioning cavity in the rotating column is fixed, facilitating the insertion of the triangular positioning body.

[0025] Preferably, the rotating motor is a self-locking motor.

[0026] Preferably, the baffle and the lubricating cooling groove are detachable.

[0027] A use method of a diamond wire busbar stretching device, characterized in that it comprises the following steps:

[0028] S1: A full-automatic winding and unwinding structure is used to install the unwinding wheel and the winding wheel, so that the wire body passes through the lubricating cooling structure and the thickness adjusting structure in sequence and is wound on the winding wheel.

[0029] S2: Lubricating cooling liquid is added to the lubricating cooling structure, and the wire body is repeatedly laid in the capstan and the wire drawing die, and each wire body passes through the lubricating cooling structure.

[0030] S3: Adjust the tension of the wire body through the thickness adjustment structure, and start the wire drawing process after the whole device is started.

[0031] The technical scheme of the application provides a wire drawing device with adjustable coarse wire, and the adjustment in the application adjusts the height of the wire drawing die, thereby adjusting the tension of the wire body.

[0032] The technical scheme sets a new feeding and collecting device, at least 6 stations are arranged on each rotating frame, thereby reducing the material replacement frequency. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 is a top view structural schematic diagram of the diamond wire busbar stretching device;

[0034] Figure 2 is a front view structural schematic diagram of the diamond wire busbar stretching device;

[0035] Figure 3 is a structural schematic diagram of the automatic winding and unwinding structure;

[0036] Figure 4 is a partially enlarged structural schematic diagram of the application; Figure 3

[0037] Figure 5 is a structural schematic diagram of the thickness adjustment structure;

[0038] Figure 6 is a structural schematic diagram of the position relationship among the triangular positioning body, the rotating column and the triangular positioning cavity;

[0039] Figure 7 is a structural schematic diagram of the position relationship between the rotating frame and the rotating column;

[0040] Figure 8 is a structural schematic diagram of the position relationship between the rotating frame and the driving motor;

[0041] Figure 9 is a partially enlarged structural schematic diagram of the application; Figure 1

[0042] Figure 10 is a structural schematic diagram of the thickness adjustment structure partially split;

[0043] Figure 11 is a structural schematic diagram of the thickness adjustment structure partially split;

[0044] Figure 12 ​​is a structural schematic diagram of B-B of the present application;

[0045] In the figure, 1, equipment box; 2, pay-off wheel; 3, take-up wheel; 4, annular frame; 5, tower wheel; 6, disc body; 7, wire drawing upper die; 8, wire drawing lower die; 9, circular slide rail; 10, ring gear; 11, sliding piece; 12, driver A; 13, external gear; 14, driver B; 15, electric push rod; 16, limit disc; 17, limit column; 18, wire wheel frame; 19, driving motor; 20, rotating frame; 21, work station frame; 22, auxiliary frame; 23, rotating column; 24, clamping motor; 25, arc-shaped clamping arm; 26, linear module; 27, telescopic motor; 28, mounting frame; 29, triangular positioning body; 30, triangular positioning cavity; 31, cross slot; 32, cross positioning block; 33, lubrication and cooling box; 34, lubrication and cooling groove; 35, guide wheel; 36, lubrication and cooling wheel; 37, magnetic attraction block; 38, electromagnet; 39, bearing. DETAILED DESCRIPTION

[0046] The present application will be described in detail below with reference to the accompanying drawings, such as Figures 1-8 A diamond wire busbar stretching device.

[0047] The present application provides a diamond wire busbar stretching device, which comprises an equipment box 1, a pay-off wheel 2, a lubrication and cooling device, a wire drawing die, and a take-up wheel 3.

[0048] The present application is characterized in that the wire body is fed into the pay-off wheel 2, and then enters the take-up wheel 3 after passing through the lubrication and cooling device and the wire drawing die.

[0049] Specifically, the present application provides a full-automatic take-up and pay-off structure, which is characterized in that the pay-off wheel 2 and the take-up wheel 3 are replaced, and an automatic take-up and pay-off structure is arranged on one side of each of the pay-off wheel 2 and the take-up wheel 3.

[0050] The thickness adjustment structure comprises a pair of tower wheels 5, a disc body 6, a plurality of wire drawing upper dies 7, a plurality of wire drawing lower dies 8, an annular frame 4, a pair of circular slide rails 9, a ring gear 10, and a plurality of sliding pieces 11.

[0051] The pair of tower wheels 5 are installed in the interior of the equipment box 1, the pair of circular slide rails 9 are installed in the interior of the equipment box 1, the left and right sides of the annular frame 4 are installed in the pair of circular slide rails 9 through the plurality of sliding pieces 11, the ring gear 10 is sleeved on the annular frame 4, the driver A 12 is arranged at the bottom of the equipment box 1, the external gear 13 is arranged on the driver A 12, the gear is engaged with the ring gear 10, the plurality of wire drawing upper dies 7 are installed at equal angles on the annular frame 4, the plurality of wire drawing lower dies 8 are arranged at equal angles on the disc body 6, and the center part of the disc body 6 is driven by the driver B 14.

[0052] The upper die 7 and the lower die 8 can be engaged together, and an electric push rod 15 is arranged on the opposite side of the disc body 6, a limiting disc 16 is arranged on the telescopic end of the electric push rod 15, the limiting disc 16 is provided with a plurality of limiting columns 17, a plurality of positioning holes are arranged on the outer wall of the disc body 6, and the limiting columns 17 can be inserted into the positioning holes.

[0053] It should be noted that the technical scheme can realize the replacement of the wire drawing die according to the required wire thickness,

[0054] Specifically, the working principle and composition are described by taking the pay-off wheel 2 as an example, and the collection of the take-up wheel 3 is opposite to that of the pay-off wheel 2.

[0055] The automatic take-up and pay-off structure comprises a pair of wire wheel frames 18, a driving motor 19, a rotating frame 20, a plurality of work station frames 21, an auxiliary frame 22, an electric fastener, and a plurality of rotating columns 23.

[0056] The pair of wire wheel frames 18 are arranged on the upper end of the equipment box 1 and the rotating frame 20, the driving motor 19 is located on one side of the wire wheel frame 18, the rotating frame 20 is arranged on one side of the equipment box 1, the auxiliary frame 22 is arranged between the rotating frame 20 and the equipment box 1, the auxiliary frame 22 is provided with a linear module 26, the linear module 26 is provided with a telescopic motor 27, the telescopic end of the telescopic motor 27 is provided with a mounting frame 28, the electric fastener is mounted on the mounting frame 28, the outer end of the shaft of the pay-off wheel 2 is provided with a shaft body, and a triangular positioning body 29 is integrally formed on one end of the shaft body.

[0057] The plurality of rotating columns 23 are movably embedded in the wire wheel frames 18 and fixedly embedded in the rotating frame 20, the central part of the rotating column 23 is provided with a triangular positioning cavity 30, the rear end part of the triangular positioning body 29 is provided with a cross groove 31, and a plurality of inclined surfaces are formed between the edge part of the cross groove 31 and the outer wall of the triangular positioning body 29, and a cross positioning block 32 is arranged on the driving end of the driving motor 19, and the technical means mainly pushes the triangular positioning body 29 into place by arranging a plurality of inclined surfaces, so that the cross positioning block 32 can be slid into the cross groove 31 during sliding.

[0058] Specifically, the technical solution is to replace the wire feeding wheel 2 on the rotating frame 20 by rotating the rotating frame 20. After one wire feeding wheel 2 is used up, the linear module 26 on the auxiliary frame 22 is controlled to drive the telescopic motor 27 to the lower side of the wire feeding wheel 2, and then the electric fastener is controlled to clamp the wire feeding wheel 2. Specifically, the triangular positioning body 29 on the wire feeding wheel 2 is pulled outwards, so that the cross groove 31 at the rear end of the triangular positioning body 29 is separated from the cross positioning block 32 at the driving end of the driving motor 19, and then separated from the triangular positioning cavity on the rotating column 23. The rotating motor on the telescopic motor 27 is driven to rotate, so as to change the angle of the wire feeding wheel 2, so as to move the wire feeding wheel 2 through the linear module 26. Through the above principle, the wire feeding wheel 2 is placed on the rotating column 23 of the rotating frame 20.

[0059] It needs to be emphasized that the technical solution takes into account that the wire feeding wheel 2 needs to rotate, and the shaft body behind it also needs to rotate. Since the shaft body is columnar, it is not convenient to fix it. Therefore, the triangular positioning body 29 is arranged on the shaft body. After the triangular positioning body 29 is arranged, the triangular positioning body 29 cannot rotate. Therefore, the rotating column 23 is arranged on the rotating frame 20 and the wire wheel frame 18, and the bearing 39 is arranged between the rotating column 23 and the wire wheel frame 18 and the rotating frame 20. The triangular positioning cavity 30 is increased in the rotating column 23, so as to adapt to the triangular positioning body 29.

[0060] The electric fastener is composed of a pair of clamping motors 24 and arc-shaped clamping arms 25 arranged on the clamping motors 24.

[0061] Specifically, the pair of clamping motors 24 drives the pair of arc-shaped clamping arms 25 to fix the wire feeding wheel 2.

[0062] Specifically, the thickness adjustment includes a wire drawing die, a pair of tower wheels 5, a bottom push cylinder, a double-piston cylinder, and a pair of limiting frames.

[0063] The pair of tower wheels 5 are located in the interior of the equipment box 1. The electric translation module is installed in the interior of the equipment box 1. The double-piston cylinder is arranged at the bottom of the equipment box 1. The outer wall of the pair of limiting frames is installed on the inner wall of the equipment box 1 through the guide rail. The positioning block is arranged at the outer end of the wire drawing die. The left and right ends of the positioning block are also provided with sliding arms. The opposite wall surface of the limiting frame is provided with a through-type sliding groove. The positioning block is installed in the through-type sliding groove through the sliding arms. A plurality of support tables are arranged in the sliding groove, and the width of the support table is one-half of the width of the sliding groove. The limiting frame can clamp the positioning block on the wire drawing die by pulling the double-piston cylinder.

[0064] It should be noted that in order to realize the adjustment of the wire body tension, the technical scheme sets a thickness adjustment structure, which can push the drawing die to rise through the bottom push cylinder located inside the equipment box 1, and drive the limiting frame located on the left and right sides of the drawing die to move relatively, so as to clamp and fix the drawing die.

[0065] It should be noted that the limiting frame in the technical scheme not only plays a limiting and fixing role, but also plays a guiding role. Specifically, the left and right sides of the drawing die have positioning blocks. When the height of the drawing die needs to be adjusted, the bottom push cylinder pushes the drawing die, and the limiting frame moves to the left and right sides, so that the positioning blocks are separated from the support table located inside the limiting frame sliding groove and are located at the middle of the sliding groove, and then the positioning blocks can slide up and down. After the height adjustment is completed, the limiting frame moves relatively, and the positioning blocks enter the support table to realize support and clamping.

[0066] Specifically, the lubricating cooler comprises a lubricating cooling box 33, a lubricating cooling tank 34, a guide wheel 35, and a pair of lubricating cooling wheels 36.

[0067] The lubricating cooling box 33 is installed inside the equipment box 1, the lubricating cooling tank 34 is located inside the lubricating cooling box 33 and is integrally formed at the bottom, the left and right walls of the lubricating cooling box 33 are provided with installation grooves, and the pair of lubricating cooling wheels 36 are arranged inside the installation grooves. The guide wheel 35 is arranged in the middle of the lubricating cooling tank 34, and the lubricating cooling tank 34 is filled with lubricating cooling liquid.

[0068] The end of the lubricating cooling tank 34 is provided with a sealing plate, and the end of the sealing plate is provided with a plurality of wire inlet holes.

[0069] Further, the auxiliary frame 22 is provided with a circular track, and the outer wall of the rotating frame 20 is provided with a plurality of sliding bodies which can slide in the circular track to realize the rotation of the rotating frame 20 according to a fixed stroke.

[0070] Further, at least six work station frames 21 are arranged on the outer wall of the rotating frame 20.

[0071] Further, a magnetic attraction block 37 is arranged on the outer wall of the rotating column 23, and an electromagnet 38 is arranged on the outer wall of the wire wheel frame 18. When the electromagnet 38 works, it is attracted to the magnetic attraction block 37, so that the rotating column 23 cannot rotate, and the triangular positioning cavity 30 inside the rotating column 23 is fixed in position, so that the triangular positioning body 29 can be inserted.

[0072] Further, the rotating motor is a self-locking motor.

[0073] Further, the baffle and the lubricating cooling tank 34 are detachable structures.

[0074] S1: through a full-automatic take-up structure to install the pay-off wheel 2 and the take-up wheel 3, so that the wire body is wound on the take-up wheel 3 in turn after passing through the lubricating and cooling structure and the thickness adjusting structure;

[0075] S2: the lubricating and cooling liquid is added in the lubricating and cooling structure, and the wire body is repeatedly laid in the cone pulley 5 and the drawing die, and each wire body passes through the lubricating and cooling structure;

[0076] S3: the thickness adjusting structure is used to adjust the tension of the wire body, and after the whole device is started, the drawing process is started.

[0077] The above technical solution only embodies the preferred technical solution of the technical solution of the present application, and some changes that the person skilled in the art may make to some parts thereof also embody the principle of the present application and are within the protection scope of the present application.

Claims

1. A diamond wire busbar stretching device, comprising a device box, a pay-off wheel, a lubricating cooler, a wire drawing die, a take-up wheel; The interior of the equipment box is a cavity structure, the pay-off wheel and the take-up wheel are respectively arranged at the two sides of the upper end of the equipment box, the lubricating cooler and the wire drawing die are located in the interior of the equipment box, the wire body is sent out from the pay-off wheel, passes through the lubricating cooler and the wire drawing die and is wound on the take-up wheel, and the equipment box is provided with a plurality of supporting rods arranged in the cavity structure. The wire drawing die is provided with a thickness adjusting structure, the lubricating cooler is provided with a sealing structure, and the pay-off wheel and the take-up wheel are both provided with an automatic take-up and pay-off structure; The thickness adjusting structure comprises a pair of tower wheels, a disc body, a plurality of wire drawing upper dies, a plurality of wire drawing lower dies, an annular frame, a pair of circular slide rails, an annular gear and a plurality of sliding members; The pair of tower wheels are installed in the interior of the device box, the pair of circular slide rails are installed in the interior of the device box, the left and right sides of the annular frame are installed on the pair of circular slide rails through the plurality of sliding members, the annular gear is sleeved on the annular frame, a driver A is arranged at the bottom of the device box, an external gear is arranged on the driver A, the gear is engaged with the annular gear, the plurality of wire drawing upper dies are installed at equal angles on the annular frame, the plurality of wire drawing lower dies are arranged at equal angles on the disc body, and the center part of the disc body is driven by a driver B; The wire drawing upper die and the wire drawing lower die can be engaged together, an electric push rod is arranged at the opposite side of the disc body, a limiting disc is arranged at the telescopic end of the electric push rod, a plurality of limiting columns are arranged on the limiting disc, a plurality of positioning holes are arranged on the outer wall of the disc body, and the limiting columns can be inserted into the positioning holes.

2. The diamond wire busbar stretching device according to claim 1, characterized in that, The automatic take-up and pay-off structure comprises a pair of wire wheel frames, a driving motor, a rotating frame, a plurality of work station frames, an auxiliary frame, an electric fastener and a plurality of rotating columns; The pair of wire wheel frames are arranged on the upper end of the device box and the rotating frame, the driving motor is located on one side of the wire wheel frame, the rotating frame is arranged on one side of the device box, the auxiliary frame is arranged between the rotating frame and the device box, a linear module is arranged on the auxiliary frame, a telescopic motor is arranged on the linear module, a mounting frame is arranged at the telescopic end of the telescopic motor, the electric fastener is mounted on the mounting frame, the shaft outer end of the pay-off wheel is provided with a shaft body, and a triangular positioning body is integrally formed at one end of the shaft body; The plurality of rotating columns are respectively movably embedded in the wire wheel frame and fixedly embedded in the rotating frame, a triangular positioning cavity is arranged at the center part of the rotating column, a cross slot is arranged at the rear end part of the triangular positioning body, and a plurality of inclined surfaces are arranged between the edge part of the cross slot and the outer wall of the triangular positioning body, and a cross positioning block is arranged at the driving end of the driving motor; The electric fastener is composed of a pair of clamping motors and arc-shaped clamping arms arranged on the clamping motors.

3. The diamond wire busbar stretching device according to claim 2, characterized in that, The lubricating cooler comprises a lubricating cooler box, a lubricating cooling tank, a guide wheel and a pair of lubricating cooling wheels; The lubricating cooler box is installed in the interior of the device box, the lubricating cooling tank is located in the lubricating cooler box and integrally formed at the bottom, installation grooves are formed in the left and right wall surfaces of the lubricating cooler box, the pair of lubricating cooling wheels are arranged in the installation grooves, the guide wheel is arranged in the lubricating cooling tank, and the lubricating cooling tank is internally provided with lubricating cooling liquid; A sealing plate is arranged at the end of the lubricating cooling tank, and a plurality of wire inlet holes are arranged at the end of the sealing plate.

4. The diamond wire busbar stretching device according to claim 3, characterized in that, A circular track is arranged on the auxiliary frame, and a plurality of sliding bodies are arranged on the outer wall of the rotating frame, and the sliding bodies can slide in the circular track.

5. The diamond wire busbar stretching device according to claim 4, wherein The outer wall of the rotating frame is provided with at least six work station frames.

6. The diamond wire busbar stretching device according to claim 4, wherein The outer wall of the rotating column is provided with a magnetic block, and the outer wall of the on-line wheel frame is provided with an electromagnet. After the electromagnet works, it is attracted to the magnetic block, so that the rotating column cannot rotate, and the position of the triangular positioning cavity in the rotating column is fixed, facilitating the insertion of the triangular positioning body.

7. The diamond wire busbar stretching device according to claim 5, wherein The driving motor is a self-locking motor.

8. The diamond wire busbar stretching device according to claim 4, wherein, The sealing plate and the lubricating cooling groove are detachable structures.

9. A method for using a diamond wire busbar stretching device, applied to the diamond wire busbar stretching device according to any one of claims 1-8, characterized in that, The method comprises the following steps: S1: install the pay-off wheel and the take-up wheel through a full-automatic collecting and releasing structure, so that the wire body is wound on the take-up wheel after passing through the lubricating cooling structure and the thickness adjusting structure in sequence; S2: add lubricating cooling liquid in the lubricating cooling structure, and repeatedly lay the wire body in the tower wheel and the drawing die, and each wire body passes through the lubricating cooling structure; S3: adjust the tension of the wire body through the thickness adjusting structure, and start the drawing process after the whole equipment is started.

Citation Information

Patent Citations

  • Metal wire drawing machine with controllable tensile force

    CN111438207A

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    CN108746227A

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    CN203209447U