Storage rack for stainless steel wire machining

By designing a stainless steel wire storage rack with blower mechanism and desiccant filter, the problems of dust adhesion and oxidation and cold cracking are solved, a clean and dry storage environment is achieved, and the processing quality and service life of stainless steel wire are improved.

CN223289790UActive Publication Date: 2025-09-02江苏和兴金属科技有限公司
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Patent Information

Application Number
CN202422210555.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-10
Publication Date
2025-09-02
Estimated Expiration
2034-09-10

AI Technical Summary

Technical Problem

The existing stainless steel wire processing storage racks are prone to dust adhesion and affect processing quality; the stainless steel wire is prone to oxidation or cold cracking when exposed, affecting service life and mechanical properties.

Method used

A storage rack including bottom plate, side plate, top plate, storage box and blower mechanism is designed. The fan and gas pipe are driven by a driving motor, and the airflow is sprayed through the air collection port for dust removal and cooling. It is equipped with a desiccant filter to maintain a dry environment, which is convenient for replacing the filter to reduce maintenance costs.

Benefits of technology

It improves the cleanliness and antioxidant properties of stainless steel wire, extends service life, reduces pretreatment time, and improves processing efficiency and finished product quality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of stainless steel wire storage, and discloses a storage rack for stainless steel wire processing, which comprises a bottom plate and is characterized in that the upper surface of the bottom plate is symmetrically and fixedly connected with side plates, the top ends of the two side plates are jointly and fixedly connected with a top plate, and the opposite sides of the two top plates are fixedly connected with a plurality of storage boxes. Supporting legs are symmetrically and fixedly connected to the lower surface of the bottom plate, and an air blowing mechanism is fixedly connected to the upper surface of the top plate. According to the stainless steel wire storage rack, the fan is controlled by the first driving motor to rotate so that airflow can be sprayed out through the multiple air collecting openings, the air circulation in the storage rack is enhanced, breeding of microorganisms such as bacteria and molds can be reduced, a cleaner and more sanitary storage environment is provided for stainless steel wires, and the service life of the stainless steel wires is prolonged. And meanwhile, the rotating angle of the gas conveying pipe can be conveniently adjusted through the two second driving motors, so that the wind direction is changed, and the stainless steel wires can be better treated.
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Description

Technical Field

[0001] The utility model relates to the technical field of stainless steel wire storage, more specifically to a storage rack for stainless steel wire processing. Background Art

[0002] With the advancement of science and technology and industrialization, the application areas of stainless steel wire are constantly expanding, especially in the field of high-tech. In order to meet the needs of different fields, the production technology of stainless steel wire is also constantly innovating and developing;

[0003] When storing stainless steel wire on existing stainless steel wire processing and storage racks, dust easily adheres to the outside of the stainless steel wire, which may lead to reduced processing quality of the stainless steel wire. At the same time, when storing stainless steel wire on existing stainless steel wire processing and storage racks, the stainless steel wire is generally exposed to the outside. When the external temperature is too high, the stainless steel wire is prone to oxidation reaction, resulting in rust spots and corrosion on its surface, thereby affecting its service life. When the temperature is too low, the stainless steel wire is prone to cold cracking, thereby affecting its mechanical properties and overall quality. Utility Model Content

[0004] The main technical problem solved by the utility model is to provide a storage rack for stainless steel wire processing, which can solve the problem that dust easily adheres to the outside of the stainless steel wire, thereby possibly reducing the processing quality of the stainless steel wire. At the same time, when storing the stainless steel wire on the existing stainless steel wire processing and storage rack, the stainless steel wire is generally exposed to the outside. When the external temperature is too high, the stainless steel wire is prone to oxidation reaction, resulting in rust spots and corrosion on its surface, thereby affecting its service life. When the temperature is too low, the stainless steel wire is prone to cold cracking, thereby affecting its mechanical properties and overall quality.

[0005] To solve the above technical problems, according to one aspect of the present invention, more specifically, a storage rack for stainless steel wire processing includes a bottom plate, characterized in that: side plates are symmetrically fixedly connected to the upper surface of the bottom plate, the top ends of the two side plates are commonly fixedly connected to a top plate, a plurality of storage boxes are fixedly connected to opposite sides of the two top plates, support legs are symmetrically fixedly connected to the lower surface of the bottom plate, and an air blowing mechanism is fixedly connected to the upper surface of the top plate;

[0006] The blowing mechanism includes a blow box, the inner lower surface of the blow box is fixedly connected to a drive motor 1, the top of the output shaft of the drive motor 1 is fixedly connected to a rotating rod, the outer wall of the rotating rod is fixedly connected to a fan, the top of the rotating rod extends to the top of the blow box and is fixedly connected to a rotating circular plate 1, the left and right sides of the blow box are fixedly connected to L-shaped connecting pipes, the ends of the two L-shaped connecting pipes away from the blow box are both extended to the bottom of the top plate, and are both rotatably connected to air pipes through rotating shafts, the bottom ends of the two air pipes are respectively rotatably connected to the front of the upper surfaces of the two support legs through rotating shafts, and the outer walls of the two air pipes are integrally formed with multiple air collecting ports.

[0007] Furthermore, a transmission gear is fixedly connected to the upper side of the outer side walls of the two air pipes, a driving motor 2 is fixedly connected to the lower surface of the top plate and located on the opposite sides of the two L-shaped connecting pipes, the bottom ends of the output shafts of the two driving motors 2 are fixedly connected to a rotating circular plate 2, the outer side walls of the two rotating circular plates 2 are fixedly connected to a rack plate, the outer side walls of the two air pipes are sleeved with a reset torsion spring, and the two ends of the two reset torsion springs are respectively fixedly connected to the outer side walls of the two air pipes and the upper surfaces of the two transmission gears.

[0008] Furthermore, pulling plates are provided on the upper surface of the blower box and on the left and right sides of the rotating circular plate, and the lower surfaces of the two pulling plates are fixedly connected with desiccant filters, and the bottom ends of the two desiccant filters are in contact with the inner lower surface of the blower box, and positioning plates are fixedly connected on the inner lower surface of the blower box and on the left and right sides of the two desiccant filters, and sealing rings are fixedly connected to the outer walls of the two desiccant filters and the interface with the blower box.

[0009] Furthermore, the upper surfaces of the two pulling plates are fixedly connected with handshakes.

[0010] Furthermore, a limiting groove 1 is symmetrically provided on the inner upper surface of the rotating circular plate 1, and a limiting column 1 is fixedly connected to the inner left and right sides of the two limiting grooves 1. The outer side walls of the two limiting columns 1 are slidably connected to sliding blocks, and the lower surfaces of the two sliding blocks are fixedly connected to arc plates. The lower surfaces of the two arc plates are slidably connected to the inner lower surface of the rotating circular plate 1, and the inner sides of the two arc plates are symmetrically slidably connected to extension plates. The outer side walls of the two limiting columns 1 are provided with a return spring 1, and the two ends of the two return springs 1 are respectively fixedly connected to the opposite sides of the two sliding blocks and the inner opposite sides of the two limiting grooves 1.

[0011] Furthermore, a through-type sliding groove is provided inside the rotating circular plate 1, and a resistance plate is provided inside the rotating circular plate 1 and on the left and right sides of the two arc plates, and the opposite sides of the two resistance plates are fixedly connected to a plug-in rod, and the opposite ends of the two plug-in rods pass through the sliding groove and extend to the left and right sides of the rotating circular plate 1, and a through-type limit groove 2 is provided on the upper surface of the two plug-in rods, and the left and right sides of the interior of the two limit grooves 2 are fixedly connected to the limit column 2, and the outer walls of the two limit columns 2 are slidably connected to a fixing rod, and the bottom ends of the two fixing rods are fixedly connected to the upper surface of the blow box, and the outer walls of the two limit columns 2 are sleeved with a return spring 2, and the two ends of the two return springs 2 are respectively fixedly connected to the opposite sides of the two fixing rods and the inner opposite sides of the two limit grooves 2.

[0012] Furthermore, plug-in interfaces are provided on opposite sides of the two pulling plates.

[0013] Furthermore, a support rod is fixedly connected to the center of the inner lower surface and the center of the upper surface of the rotating circular plate 1.

[0014] The beneficial effects of the storage rack for stainless steel wire processing of the utility model are:

[0015] The fan is rotated by the provided driving motor 1 to eject the air through the provided multiple air collecting ports, thereby enhancing the air circulation inside the storage rack, helping to reduce the breeding of microorganisms such as bacteria and mold, and providing a cleaner and more sanitary storage environment for the stainless steel wire. At the same time, the two provided driving motors 2 can conveniently adjust the rotation angle of the air pipe, thereby changing the wind direction, so as to better process the stainless steel wire.

[0016] The two desiccant filters are used for drying, which can provide a relatively dry storage environment for the stainless steel wire. This has a significant effect on preventing the stainless steel wire from getting damp and rusting, thereby extending the service life of the stainless steel wire. At the same time, the two desiccant filters can be easily disassembled and replaced through two pulling plates, which can reduce maintenance costs and improve maintenance efficiency.

[0017] By providing a dry, clean and ventilated storage environment for stainless steel wire, the pre-processing time of stainless steel wire before processing (such as dehumidification, rust removal, etc.) can be reduced, thereby improving processing efficiency. At the same time, a good storage environment also helps to maintain the surface quality of stainless steel wire and improve the quality of the finished product. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0019] Figure 1This is a schematic diagram of the overall structure of a storage rack for stainless steel wire processing according to the present invention;

[0020] Figure 2 This is a schematic diagram of the front cross-section structure of a blower box and a rotating circular plate of a storage rack for stainless steel wire processing according to the present invention;

[0021] Figure 3 This utility model is a storage rack for stainless steel wire processing Figure 1 Schematic diagram of the enlarged structure at A in the middle;

[0022] Figure 4 This utility model is a storage rack for stainless steel wire processing Figure 2 Schematic diagram of the enlarged structure at B in the middle;

[0023] Figure 5 This utility model is a storage rack for stainless steel wire processing Figure 2 Schematic diagram of the enlarged structure at point C in the middle.

[0024] Figure: 1, bottom plate; 2, side plate; 3, top plate; 4, storage box; 5, support leg; 6, air blower mechanism; 7, transmission gear; 8, drive motor 2; 9, rotating circular plate 2; 10, rack plate; 11, reset torsion spring; 12, pull plate; 13, desiccant filter; 14, positioning plate; 15, sealing ring; 16, handshake; 17, limit groove 1; 18, limit column 1; 19, sliding block; 20, curved plate; 21, extension Plate; 22. Return spring 1; 23. Sliding groove; 24. Resistance plate; 25. Connecting rod; 26. Limiting groove 2; 27. Limiting column 2; 28. Fixing rod; 29. ​​Plug interface; 30. Support rod; 31. Return spring 2; 601. Blowing box; 602. Driving motor 1; 603. Rotating rod; 604. Rotating circular plate 1; 605. L-shaped connecting pipe; 606. Air supply pipe; 607. Air collecting port; 608. Fan. DETAILED DESCRIPTION

[0025] The present invention will be described in detail below with reference to the accompanying drawings and in combination with embodiments. It should be noted that, unless there is a conflict, the embodiments and features in the embodiments of the present application can be combined with each other.

[0026] According to one aspect of the present invention:

[0027] like Figure 1As shown, a storage rack for stainless steel wire processing is provided, comprising a bottom plate 1, side plates 2 being symmetrically fixedly connected to the upper surface of the bottom plate 1, a top plate 3 being fixedly connected to the top ends of the two side plates 2, a plurality of storage boxes 4 being fixedly connected to opposite sides of the two top plates 3, support legs 5 being symmetrically fixedly connected to the lower surface of the bottom plate 1, a blower mechanism 6 being fixedly connected to the upper surface of the top plate 3, the blower mechanism 6 comprising a blower box 601, a drive motor 1 602 being fixedly connected to the lower inner surface of the blower box 601, a rotating rod 603 being fixedly connected to the top end of the output shaft of the drive motor 1 602, and a fan 608 being fixedly connected to the outer side wall of the rotating rod 603;

[0028] The U-shaped support of the two supporting legs 5 can better support the storage rack of the stainless steel wire. The bottom plate 1 and the two side plates 2 together constitute the main frame of the device. The multiple storage boxes 4 are fixed therebetween by the two side plates 2. The opening design on the multiple storage boxes 4 can better and more conveniently store and take out the stainless steel wire, thereby facilitating the processing by the later processing personnel and improving the convenience of the device. At the same time, when the stainless steel wire is stored in the multiple storage boxes 4, the driving motor 602 can be used to drive the rotating rod 603 to rotate, thereby driving the fan 608 to rotate to generate airflow, so that the dust on the outside of the stainless steel wire can be cleaned by these airflows and the surface can be cooled, preventing the stainless steel wire from easily undergoing oxidation reaction when the external temperature is too high, resulting in rust spots and corrosion on its surface, thereby affecting its service life. When the temperature is too low, the stainless steel wire is prone to cold cracking, thereby affecting its mechanical properties and overall quality.

[0029] like Figure 1 and Figure 2 As shown, the top end of the rotating rod 603 extends to the top of the blower box 601 and is fixedly connected to a rotating circular plate 604. The left and right sides of the blower box 601 are fixedly connected to L-shaped connecting pipes 605. The ends of the two L-shaped connecting pipes 605 away from the blower box 601 are both extended to the bottom of the top plate 3 and are both rotatably connected to the air supply pipe 606 via a rotating shaft. The bottom ends of the two air supply pipes 606 are respectively rotatably connected to the front of the upper surface of the two supporting legs 5 via a rotating shaft. The outer side walls of the two air supply pipes 606 are integrally formed with multiple air collection ports 607.

[0030] The rotation of the fan 608 generates an air flow which is transported to the interior of the two air pipes 606 through the two L-shaped connecting pipes 605. The air flow is then ejected more evenly through the multiple air collecting ports 607 on the outside of the air pipes 606, thereby removing dust and cooling the stainless steel wires stored in the multiple storage boxes 4, thereby increasing the diversity of the device and improving the processing quality of the stainless steel wires.

[0031] like Figure 1 and Figure 3As shown, a transmission gear 7 is fixedly connected to the upper side of the outer wall of each of the two air pipes 606, a drive motor 2 8 is fixedly connected to the lower surface of the top plate 3 and located on the opposite side of the two L-shaped connecting pipes 605, the bottom ends of the output shafts of the two drive motors 2 8 are fixedly connected to a rotating circular plate 2 9, the outer walls of the two rotating circular plates 2 9 are fixedly connected to a rack plate 10, and the outer walls of the two air pipes 606 are sleeved with a return torsion spring 11, and the two ends of the two return torsion springs 11 are fixedly connected to the outer walls of the two air pipes 606 and the upper surfaces of the two transmission gears 7 respectively;

[0032] The two driving motors 28 are provided to drive the two rotating circular plates 29 to rotate, and then drive the two rack plates 10 to rotate. The rotation of the two rack plates 10 indirectly drives the two transmission gears 7 to rotate, and the two transmission gears 7 are used to control the indirect deflection of the two air pipes 606, so that the stainless steel wire can be better and more evenly dusted and cooled. When the two rack plates 10 are disengaged from the two transmission gears 7, the rebound force of the two reset torsion springs 11 can reset the two air pipes 606 to their initial positions, thereby improving the practicality of the device.

[0033] like Figure 2 and Figure 4 As shown, the inner upper surface of the rotating circular plate 604 is symmetrically provided with a limiting groove 17, and the inner left and right sides of the two limiting grooves 17 are fixedly connected to a limiting column 18. The outer side walls of the two limiting columns 18 are slidably connected to a sliding block 19, and the lower surfaces of the two sliding blocks 19 are fixedly connected to an arc-shaped plate 20. The lower surfaces of the two arc-shaped plates 20 are slidably connected to the inner lower surface of the rotating circular plate 604, and the inner parts of the two arc-shaped plates 20 are symmetrically slidably connected to an extension plate 21. The outer side walls of the two limiting columns 18 are sleeved with a return spring 22, and the two ends of the two return springs 22 are respectively fixedly connected to the opposite sides of the two sliding blocks 19 and the opposite sides of the inner parts of the two limiting grooves 17;

[0034] When the fan 608 is controlled to rotate by the driving motor 602, the rotating circular plate 604 is also driven to rotate. When the rotating circular plate 604 rotates at a high speed, the two arc plates 20 are controlled to extend outward by the influence of the centripetal force. The two extension plates 21 are provided to facilitate the outward extension of the two arc plates 20. At the same time, the two limiting grooves 17 and the two limiting columns 18 can fix the two arc plates 20 to prevent the two arc plates 20 from being affected by the centripetal force and extending outward at the same time. When the driving motor 602 is turned off, the elastic potential energy stored by the rebound force of the two reset springs 22 can push the two sliding blocks 19 and the two arc plates 20 to move along the two limiting columns 18 to the initial position until they return to their original state.

[0035] like Figure 2 and Figure 5 As shown, a through sliding groove 23 is provided inside the rotating circular plate 1 604, and a contact plate 24 is provided inside the rotating circular plate 1 604 and on the left and right sides of the two arc-shaped plates 20. The opposite sides of the two contact plates 24 are fixedly connected with a plug-in rod 25, and the opposite ends of the two plug-in rods 25 pass through the sliding groove 23 and extend to the left and right sides of the rotating circular plate 1 604. A through limiting groove 26 is provided on the upper surface of the two plug-in rods 25, and the left and right sides of the two limiting grooves 26 are fixedly connected to the limiting pillar 27, and the outer side walls of the two limiting pillars 27 are slidably connected with a fixing rod 28, and the bottom ends of the two fixing rods 28 are fixedly connected to the upper surface of the blower box 601, and the outer side walls of the two limiting pillars 27 are sleeved with a return spring 21, and the two ends of the two return springs 21 are fixedly connected to the opposite sides of the two fixing rods 28 and the inner opposite sides of the two limiting grooves 26 respectively;

[0036] When the two arc plates 20 are subjected to centripetal force and extend outward at the same time, the two contact plates 24 are squeezed and moved away from each other, thereby driving the two plug-in rods 25 to move away from each other through the two plug-in rods 25. At the same time, the sliding grooves 23 are set to prevent the two plug-in rods 25 from rotating when the rotating circular plate 1 604 rotates. The cooperation of the two limiting columns 27, the two limiting grooves 26 and the two fixed rods 28 can enable the two plug-in rods 25 to maintain horizontal sliding. The rebound potential energy of the two reset springs 23 can automatically reset the two plug-in rods 25 when the rotating circular plate 1 604 stops rotating, thereby improving the safety and practicality of the device.

[0037] like Figure 2 and Figure 4 As shown, a support rod 30 is fixedly connected to the center of the inner lower surface and the center of the upper surface of the rotating circular plate 1 604;

[0038] When a through-type sliding groove 23 is opened inside the rotating circular plate 1 604, the upper and lower halves of the rotating circular plate 1 604 can be better fixed by the provided support rod 30 to prevent the upper half of the rotating circular plate 1 604 from falling off.

[0039] like Figure 2As shown, a pull plate 12 is provided on the upper surface of the blower box 601, located on the left and right sides of the rotating circular plate 1 604. A desiccant filter 13 is fixedly connected to the lower surface of each pull plate 12. The bottom ends of the two desiccant filters 13 are in contact with the inner lower surface of the blower box 601. A positioning plate 14 is fixedly connected to the inner lower surface of the blower box 601, located on the left and right sides of the two desiccant filters 13. A sealing ring 15 is fixedly connected to the interface between the outer walls of the two desiccant filters 13 and the blower box 601.

[0040] When the air flow generated by the rotation of two fans 608 is ejected through multiple air collection ports 607, the multiple desiccant filters 13 that are not filled with desiccant that can absorb moisture in the air can ensure that the air passing through the blower box 601 is fully dried, and the stainless steel wires inside the multiple storage boxes 4 can be dried, thereby delaying the oxidation process of the stainless steel wires. The dry environment is conducive to maintaining the surface smoothness and anti-oxidation properties of the stainless steel wires, thereby improving the factory quality of the stainless steel wires. If the drying effect of the desiccant filter 13 is reduced or the desiccant needs to be replaced, the user can easily remove it from the blower box 601 by pulling the plate 12, and replace or maintain it. The sealing ring 15 ensures that during the replacement or maintenance process, the interface between the desiccant filter 13 and the blower box 601 remains sealed to prevent failure of the internal seal of the blower box 601.

[0041] like Figure 2 As shown, the two opposite sides of the two pulling plates 12 are provided with plug-in ports 29;

[0042] When the fan 608 rotates and controls the rotating circular plate 604 to rotate at the same time, the two connecting rods 25 are controlled by the centripetal force to extend outward at the same time, so that the two connecting rods 25 are respectively plugged into the inside of the two plug interfaces 29, which can prevent the two pulling plates 12 from being unable to be pulled up when the device is cooling and dust removal, causing the internal seal of the blower box 601 to fail and the stainless steel wire to be unable to continue to be operated.

[0043] like Figure 2 As shown, the upper surfaces of the two pulling plates 12 are fixedly connected with a handshake 16;

[0044] The two handshakes 16 can be used to better extract the two desiccant filters 13 for replacement, thereby improving the convenience of the device.

[0045] Of course, the above description is not a limitation of the present invention, and the present invention is not limited to the above examples. Changes, modifications, additions or substitutions made by ordinary technicians in this technical field within the essential scope of the present invention also fall within the scope of protection of the present invention.

Claims

1. A storage rack for stainless steel wire processing, comprising a bottom plate (1), characterized in that: The upper surface of the bottom plate (1) is symmetrically fixedly connected to the side plates (2), the top ends of the two side plates (2) are commonly fixedly connected to a top plate (3), the opposite sides of the two top plates (3) are fixedly connected to a plurality of storage boxes (4), the lower surface of the bottom plate (1) is symmetrically fixedly connected to the support legs (5), and the upper surface of the top plate (3) is fixedly connected to the blowing mechanism (6); The blowing mechanism (6) includes a blowing box (601), the inner lower surface of the blowing box (601) is fixedly connected to a driving motor (602), the top end of the output shaft of the driving motor (602) is fixedly connected to a rotating rod (603), the outer side wall of the rotating rod (603) is fixedly connected to a fan (608), the top end of the rotating rod (603) extends to the top of the blowing box (601) and is fixedly connected to a rotating circular plate (604), the blowing box (601) is fixedly connected to a rotating circular plate (604), and the blowing box (601) is fixedly connected to a rotating circular plate (604). 01) are fixedly connected to the left and right sides of the two L-shaped connecting pipes (605), and the ends of the two L-shaped connecting pipes (605) away from the blower box (601) are both extended to the bottom of the top plate (3), and are both rotatably connected to the air supply pipe (606) through a rotating shaft. The bottom ends of the two air supply pipes (606) are respectively rotatably connected to the front of the upper surface of the two supporting legs (5) through a rotating shaft, and the outer side walls of the two air supply pipes (606) are both integrally formed with a plurality of air collection ports (607).

2. The storage rack for stainless steel wire processing according to claim 1, characterized in that: A transmission gear (7) is fixedly connected to the upper side of the outer wall of the two gas pipes (606), a driving motor (8) is fixedly connected to the lower surface of the top plate (3) and located on the opposite side of the two L-shaped connecting pipes (605), the bottom ends of the output shafts of the two driving motors (8) are fixedly connected to a rotating circular plate (9), the outer walls of the two rotating circular plates (9) are fixedly connected to a rack plate (10), the outer walls of the two gas pipes (606) are sleeved with a return torsion spring (11), and the two ends of the two return torsion springs (11) are fixedly connected to the outer walls of the two gas pipes (606) and the upper surfaces of the two transmission gears (7), respectively.

3. The storage rack for stainless steel wire processing according to claim 1, characterized in that: Pulling plates (12) are provided on the upper surface of the blower box (601) and on the left and right sides of the rotating circular plate (604). The lower surfaces of the two pulling plates (12) are fixedly connected with desiccant filters (13). The bottom ends of the two desiccant filters (13) are in contact with the inner lower surface of the blower box (601). Positioning plates (14) are fixedly connected to the inner lower surface of the blower box (601) and on the left and right sides of the two desiccant filters (13). Sealing rings (15) are fixedly connected to the interfaces between the outer walls of the two desiccant filters (13) and the blower box (601).

4. The storage rack for stainless steel wire processing according to claim 3, characterized in that: The upper surfaces of the two pulling plates (12) are both fixedly connected with a handshake (16).

5. The storage rack for stainless steel wire processing according to claim 1, characterized in that: The inner upper surface of the rotating circular plate (604) is symmetrically provided with a limiting groove (17), and the inner left and right sides of the two limiting grooves (17) are fixedly connected with a limiting column (18), and the outer walls of the two limiting columns (18) are slidably connected with a sliding block (19), and the lower surfaces of the two sliding blocks (19) are fixedly connected with an arc plate (20), and the lower surfaces of the two arc plates (20) are slidably connected with the inner lower surface of the rotating circular plate (604), and the inner sides of the two arc plates (20) are symmetrically slidably connected with an extension plate (21), and the outer walls of the two limiting columns (18) are provided with a return spring (22), and the two ends of the two return springs (22) are fixedly connected with the opposite sides of the two sliding blocks (19) and the inner opposite sides of the two limiting grooves (17) respectively.

6. The storage rack for stainless steel wire processing according to claim 5, characterized in that: A through-type sliding groove (23) is provided inside the rotating circular plate (604), and a contact plate (24) is provided inside the rotating circular plate (604) and on the left and right sides of the two arc-shaped plates (20). The opposite sides of the two contact plates (24) are fixedly connected with a plug rod (25), and the opposite ends of the two plug rods (25) pass through the sliding groove (23) and extend to the left and right sides of the rotating circular plate (604). The upper surfaces of the two plug rods (25) are provided with a through-type limiting groove 2 (26). The left and right sides of the interior of each of the two limiting grooves (26) are fixedly connected to the limiting column (27), the outer walls of the two limiting columns (27) are slidably connected to the fixing rod (28), the bottom ends of the two fixing rods (28) are fixedly connected to the upper surface of the blower box (601), and the outer walls of the two limiting columns (27) are sleeved with a return spring (31), and the two ends of the two return springs (31) are fixedly connected to the opposite sides of the two fixing rods (28) and the inner opposite sides of the two limiting grooves (26).

7. The storage rack for stainless steel wire processing according to claim 3, characterized in that: Plug interfaces (29) are provided on opposite sides of the two pulling plates (12).

8. The storage rack for stainless steel wire processing according to claim 5, characterized in that: A support rod (30) is fixedly connected at the center of the inner lower surface and the center of the upper surface of the rotating circular plate (604).