An aluminum-magnesium alloy wire drawing production device and production method

By designing a convenient adjustment guide mechanism on the wire drawing machine, the problems of inconvenient adjustment of the guide mechanism and water splashing in the prior art are solved, and rapid guidance and operation safety improvement of thick wires of different diameters are achieved.

CN119016529BActive Publication Date: 2025-06-10JIANGSU GANGCANG NEW MATERIAL TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202411506606.2
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-10-28
Publication Date
2025-06-10
Estimated Expiration
2044-10-28

AI Technical Summary

Technical Problem

The existing water tank-type wire drawing machine has inconvenient adjustment and cannot quickly adapt to thick wires of different diameters. It is easy to cause water in the water tank to splash during the wire drawing process, affecting operation safety.

Method used

A convenient adjustment guide mechanism is designed, including a driving mating strip, a water-blocking movable plate, a driving mating slide, a guide carrier plate and a side guide bar. Through the synergy of these components, rapid adjustment and guidance of the diameter of the thick wire is achieved, and water splashing is prevented through the water-blocking movable plate.

Benefits of technology

It realizes rapid guidance adjustment of thick wires of different diameters, which is simple and convenient to operate, strong adaptability, and effectively prevents water splashing, improving operation safety.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119016529B_ABST
    Figure CN119016529B_ABST
Patent Text Reader

Abstract

The present invention relates to the technical field of wire drawing equipment, and specifically relates to an aluminum-magnesium alloy wire drawing production equipment and a production method. The equipment includes a support frame, on which a drawing water tank is fixedly arranged. On both sides of the drawing water tank, support inclined plates are symmetrically and fixedly arranged. On the support inclined plates, a matching bearing plate is fixedly arranged. On the matching bearing plate, a support guide rail rod is fixedly arranged. At one end of the drawing water tank, a first bearing matching plate strip is fixedly arranged, and a first installation hole is formed in the first bearing matching plate strip. The present invention also relates to a production method for aluminum-magnesium alloy wire drawing, which includes step one: inserting a thick wire; step two: guiding and adjusting the thick wire; and step three: drawing the thick 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 wire drawing equipment, and particularly to an aluminum-magnesium alloy wire drawing production equipment and a production method thereof. Background Art

[0002] When producing aluminum-magnesium alloy wire, wire drawing operation needs to be carried out to make it reach the required diameter. When wire drawing, a water tank type wire drawing machine is usually used. The water tank type wire drawing machine is a small continuous production equipment composed of multiple drawing heads. Through step-by-step drawing, the drawing heads are placed in the water tank, and finally the aluminum-magnesium alloy is drawn to the required specification. It has high production efficiency and is very convenient to use. However, it also has certain deficiencies. That is, when wire drawing, a guiding mechanism is needed to guide and support the raw material thick wire to ensure that the wire drawing can be carried out smoothly. When the diameters of the thick wires are different, the guiding mechanism needs to be adjusted to adapt to the diameter of the thick wire. The guiding mechanism on the existing water tank type wire drawing machine is very inconvenient to adjust and cannot be quickly adjusted according to the diameter of the thick wire, and the operation is rather troublesome. In addition, when wire drawing, the thick wire needs to be passed through the water tank and connected to the drawing head, and the wire drawing situation inside the water tank needs to be checked during the wire drawing process. Therefore, there is no cover plate at the opening of the water tank for convenient operation, which will cause the water in the water tank to splash out of the water tank during the drawing process and get on the staff or the ground. Summary of the Invention

[0003] The purpose of the present invention is to provide an aluminum-magnesium alloy wire drawing production equipment and a production method thereof to solve the problems raised in the above background art.

[0004] To achieve the above purpose, the present invention provides the following technical solutions:

[0005] An aluminum-magnesium alloy wire drawing production equipment, including a support frame, a drawing water tank is fixedly arranged on the support frame, support inclined plates are symmetrically and fixedly arranged on both sides of the drawing water tank, a cooperating bearing plate is fixedly arranged on the support inclined plates, a support guide rod is fixedly arranged on the cooperating bearing plate, a first bearing cooperation plate strip is fixedly arranged at one end of the drawing water tank, a first installation hole is opened on the first bearing cooperation plate strip, and bearing installation rods are symmetrically and fixedly arranged on both sides of the first bearing cooperation plate strip. The drawing water tank is also fixedly provided with a support arch frame, a fixed support plate is fixedly arranged on the support arch frame, a second installation hole is opened on the fixed support plate, a bearing cooperation rod is fixedly arranged on the drawing water tank under the first bearing cooperation plate strip, a limit cooperation block is fixedly arranged at the end of the bearing cooperation rod far away from the drawing water tank, and a second bearing cooperation plate strip is fixedly arranged on the drawing water tank under the bearing cooperation rod, an activity cooperation hole is opened on the second bearing cooperation plate strip, and a convenient adjustable guiding mechanism with a waterproof function is installed on the drawing water tank.

[0006] Preferably, the convenient adjustment type guiding mechanism includes a driving and mating strip plate, a water blocking movable plate, a driving and mating sliding block, a first connecting spring, a first guiding carrier plate, a second guiding carrier plate, side guiding strips, a positioning movable clamping plate and a second connecting spring. A bearing and mating through hole is formed in the driving and mating strip plate, and a bearing and mating rod is inserted into the bearing and mating through hole.

[0007] Preferably, a downward extending bearing rod is fixedly arranged at the lower end of the driving and mating strip plate, a limiting and mating clamping plate is fixedly arranged at the lower end of the downward extending bearing rod, and driving and mating strip plates are symmetrically and fixedly arranged on both sides of the driving and mating strip plate. The driving and mating strip plates are located on both sides of the drawing water tank, and a driving and mating frame is fixedly arranged on the driving and mating strip plates. An abutting and mating inclined surface is arranged on the driving and mating frame.

[0008] Preferably, the water blocking movable plates are symmetrically arranged on both sides of the drawing water tank, and mating sliding holes are symmetrically formed at both ends of the water blocking movable plates. A supporting guide rail rod is inserted into the mating sliding holes. A contact and mating rod is fixedly arranged on the lower end surface of the water blocking movable plate, and the contact and mating rod is in contact with the abutting and mating inclined surface.

[0009] Preferably, a driving and mating sliding block is sleeved on the bearing and mating rod. A connecting and mating sliding hole is formed in the driving and mating sliding block, and a bearing and mating rod is inserted into the connecting and mating sliding hole. A first connecting spring is also sleeved on the bearing and mating rod. Supporting side wing plates are symmetrically and fixedly arranged on both sides of the driving and mating sliding block. A connecting and driving strip is fixedly arranged on the supporting side wing plates. A stable insertion channel and a linkage insertion channel are formed in the connecting and driving strip, and the stable insertion channel is communicated with the linkage insertion channel.

[0010] Preferably, an extending bearing plate is fixedly arranged on the driving and mating sliding block. A mating supporting vertical rod is fixedly arranged on the extending bearing plate. A mating driving frame is fixedly arranged at the upper end of the mating supporting vertical rod. A first connecting linkage rod is hinged on the driving and mating sliding block. A second connecting linkage rod is hinged on the mating driving frame.

[0011] Preferably, the upper end of the first connecting linkage rod is hinged with a first guiding carrier plate. A first guiding runner is installed on the first guiding carrier plate. A first installation carrier rod is fixedly arranged on the first guiding carrier plate. The first installation carrier rod is inserted into a first installation hole, and a first installation connecting frame is fixedly arranged on the first installation carrier rod. The first installation connecting frame is hinged with the first connecting linkage rod.

[0012] Preferably, the lower end of the second connecting linkage rod is hinged with a second guiding carrier plate. A second guiding runner is installed on the second guiding carrier plate, and a second installation carrier rod is fixedly arranged on the second guiding carrier plate. The second installation carrier rod is inserted into the second installation hole, and a second installation connecting frame is fixedly arranged on the second installation carrier rod. The second installation connecting frame is hinged with the second connecting linkage rod.

[0013] Preferably, there are two side guiding strips, symmetrically installed on both sides of the first bearing and fitting plate strip. Guide balls are installed on the side guiding strips, and an extension bearing plate is fixedly arranged on the side guiding strips. A drooping connecting bearing plate is fixedly arranged on the extension bearing plate. An activity installation hole is formed in the drooping connecting bearing plate. A bearing installation rod is inserted into the activity installation hole, and a connecting insertion rod is fixedly arranged at the lower end of the drooping connecting bearing plate. The connecting insertion rod is inserted into the stable insertion channel. A number of inclined surface positioning strips are fixedly arranged on the positioning activity clamping plate, and a fitting insertion rod is fixedly arranged on the lower end surface of the positioning activity clamping plate. The fitting insertion rod is inserted into the activity fitting hole, and a second connecting spring is sleeved on the fitting insertion rod.

[0014] A production method for drawing aluminum-magnesium alloy wire includes the following steps:

[0015] Step 1: Insertion of thick wire: Pass the thick wire through between the first guiding carrier plate, the second guiding carrier plate and the side guiding strips, and extend it into the drawing water tank.

[0016] Step 2: Guiding and adjusting of thick wire: Pull the driving and fitting strip plate to drive the water-blocking movable plate to move, and at the same time drive the driving and fitting slider to move. Under the action of the driving and fitting slider, drive the first guiding carrier plate, the second guiding carrier plate and the side guiding strips to move, so as to adapt to the diameter of the thick wire and realize the guiding of the thick wire.

[0017] Step 3: Drawing of thick wire: After the guiding and adjusting of the thick wire are completed, carry out the drawing of the thick wire.

[0018] Compared with the prior art, the beneficial effects of the present invention are as follows: The structure of the present invention is reasonably arranged and has strong functionality, and has the following advantages:

[0019] 1. At one end of the drawing water tank, there are a first guiding carrier plate, a second guiding carrier plate and side guiding strips. By pulling the driving and fitting strip plate, the driving and fitting slider can be driven to move. Furthermore, under the action of the driving and fitting slider, the first guiding carrier plate, the second guiding carrier plate and the side guiding strips can be driven to move simultaneously, so that the three can be adjusted according to the diameter of the thick wire, and different diameters of thick wires can be guided. The operation is simple, convenient and fast, and the adaptability is strong.

[0020] 2. When the driving and cooperating slider moves, it can drive the first guiding carrier plate and the second guiding carrier plate to move towards each other, so that they can limit and guide the thick wire from the upper and lower sides of the thick wire. Moreover, as the driving and cooperating slider moves, it can also drive the two side guiding strips to move towards each other, playing a role in limiting and guiding the thick wire from both sides of the thick wire, fully ensuring the accuracy of the thick wire during movement, and thus ensuring the smooth progress of wire drawing.

[0021] 3. In addition, when the driving and cooperating strip plate moves, under the action of the driving and cooperating frame, it will drive the water-blocking movable plate to move, making part of it move to the upper side of the wire-drawing water tank, playing a role in protecting the wire-drawing water tank from both sides of the wire-drawing water tank, preventing the water in the wire-drawing water tank from splashing out during wire drawing. At the same time, the water-blocking movable plates are not closed together, which is convenient for observing the inside of the wire-drawing water tank during wire drawing. Moreover, during the movement of the driving and cooperating strip plate, it can be automatically locked under the action of the positioning movable clamping plate to prevent it from moving in the reverse direction, thereby ensuring the stability of the water-blocking movable plate and the driving and cooperating slider. When there is no wire drawing, the water-blocking movable plate is on both sides of the wire-drawing water tank, making the opening of the wire-drawing water tank in a completely open state, which is convenient for operating inside the wire-drawing water tank. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 It is an assembly schematic diagram of the support frame.

[0023] Figure 2 is Figure 1 an enlarged schematic diagram of part A in

[0024] Figure 3 is Figure 1 an enlarged schematic diagram of part B in

[0025] Figure 4 It is a structural schematic diagram of the support frame.

[0026] Figure 5 It is a structural schematic diagram of the driving and cooperating strip plate.

[0027] Figure 6 It is a structural schematic diagram of the water-blocking movable plate.

[0028] Figure 7 It is a structural schematic diagram of the driving and cooperating slider.

[0029] Figure 8 It is a structural schematic diagram of the side guiding strip.

[0030] In the figure: 1. Support frame; 11. Drawing water tank; 12. Support inclined plate; 13. Matching bearing plate; 14. Support guide rod; 15. First bearing matching plate strip; 151. First installation hole; 152. Bearing installation rod; 16. Support arch frame; 161. Fixed support plate; 162. Second installation hole; 17. Bearing matching rod; 171. Limit matching block; 18. Second bearing matching plate strip; 181. Movable matching hole; 2. Driving matching strip plate; 21. Bearing matching through hole; 22. Downward extension bearing rod; 23. Limit matching clamping plate; 24. Driving and driving strip plate; 25. Driving matching frame; 26. Connecting matching inclined plane; 3. Water blocking movable plate; 31. Matching sliding hole; 32. Contact matching rod; 4. Driving matching slider; 41. Connecting matching sliding hole; 411. First connecting spring; 42. Support side wing plate; 43. Connecting driving strip; 44. Stable insertion channel; 45. Linkage insertion channel; 46. Extended bearing plate; 47. Matching support vertical rod; 471. Matching driving frame; 48. First connection linkage rod; 49. Second connection linkage rod; 5. First guiding carrier plate; 51. First guiding runner; 52. First installation carrier rod; 53. First installation connecting frame; 6. Second guiding carrier plate; 61. Second guiding runner; 62. Second installation carrier rod; 63. Second installation connecting frame; 7. Side guiding strip; 71. Guiding ball; 72. Extended bearing plate; 73. Hanging connecting bearing plate; 74. Movable installation hole; 75. Connecting insertion rod; 8. Positioning movable clamping plate; 81. Inclined plane positioning card strip; 82. Matching insertion rod; 83. Second connecting spring. Detailed implementation mode

[0031] 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.

[0032] Please refer to Figures 1 to 8 , the present invention provides a technical solution:

[0033] An aluminum-magnesium alloy wire drawing production device includes a support frame 1. A drawing water tank 11 is fixedly arranged on the support frame 1. Support inclined plates 12 are symmetrically and fixedly arranged on both sides of the drawing water tank 11. A cooperating bearing plate 13 is fixedly arranged on the support inclined plates 12. A support guide rod 14 is fixedly arranged on the cooperating bearing plate 13. A first bearing cooperating plate strip 15 is fixedly arranged at one end of the drawing water tank 11. A first installation hole 151 is formed in the first bearing cooperating plate strip 15. And bearing installation rods 152 are symmetrically and fixedly arranged on both sides of the first bearing cooperating plate strip 15. The drawing water tank 11 is also fixedly provided with a support arch frame 16. A fixed support plate 161 is fixedly arranged on the support arch frame 16. A second installation hole 162 is formed in the fixed support plate 161. A bearing cooperating rod 17 is fixedly arranged on the drawing water tank 11 below the first bearing cooperating plate strip 15. A limit cooperating block 171 is fixedly arranged at the end of the bearing cooperating rod 17 far away from the drawing water tank 11. And a second bearing cooperating plate strip 18 is fixedly arranged on the drawing water tank 11 below the bearing cooperating rod 17. A movable cooperating hole 181 is formed in the second bearing cooperating plate strip 18. A convenient adjustable guiding mechanism with a waterproof function is installed on the drawing water tank 11.

[0034] The convenient adjustable guiding mechanism includes a driving cooperating strip plate 2, a water-blocking movable plate 3, a driving cooperating slider 4, a first connecting spring 411, a first guiding carrier plate 5, a second guiding carrier plate 6, a side guiding strip 7, a positioning movable clamping plate 8 and a second connecting spring 83. A bearing cooperating through hole 21 is formed in the driving cooperating strip plate 2. The bearing cooperating rod 17 is inserted into the bearing cooperating through hole 21.

[0035] A downward extending bearing rod 22 is fixedly arranged at the lower end of the driving cooperating strip plate 2. A limit cooperating clamping plate 23 is fixedly arranged at the lower end of the downward extending bearing rod 22. And driving cooperating strip plates 24 are symmetrically and fixedly arranged on both sides of the driving cooperating strip plate 2. The driving cooperating strip plates 24 are located on both sides of the drawing water tank 11. And a driving cooperating frame 25 is fixedly arranged on the driving cooperating strip plates 24. An engaging cooperating inclined surface 26 is arranged on the driving cooperating frame 25. The surface of the driving cooperating frame 25 is smooth and free of burrs.

[0036] The water-blocking movable plates 3 are symmetrically arranged on both sides of the drawing water tank 11. And cooperating sliding holes 31 are symmetrically formed at both ends of the water-blocking movable plates 3. The support guide rod 14 is inserted into the cooperating sliding holes 31. A contact cooperating rod 32 is fixedly arranged on the lower end surface of the water-blocking movable plate 3. The contact cooperating rod 32 is in contact with the engaging cooperating inclined surface 26.

[0037] A driving mating slider 4 is sleeved on the bearing mating rod 17. A connecting mating sliding hole 41 is formed in the driving mating slider 4, and the bearing mating rod 17 is inserted into the connecting mating sliding hole 41. A first connecting spring 411 is also sleeved on the bearing mating rod 17, and both ends of the first connecting spring 411 are welded to the limiting mating block 171 and the driving mating slider 4 respectively. Support flank plates 42 are symmetrically and fixedly arranged on both sides of the driving mating slider 4. A connecting driving strip 43 is fixedly arranged on the support flank plates 42. A stable insertion channel 44 and a linkage insertion channel 45 are formed in the connecting driving strip 43. The stable insertion channel 44 communicates with the linkage insertion channel 45, and the widths of the stable insertion channel 44 and the linkage insertion channel 45 are equal.

[0038] An extending bearing plate 46 is fixedly arranged on the driving mating slider 4. A mating support vertical rod 47 is fixedly arranged on the extending bearing plate 46. A mating driving frame 471 is fixedly arranged at the upper end of the mating support vertical rod 47. A first connecting linkage rod 48 is hinged to the driving mating slider 4. A second connecting linkage rod 49 is hinged to the mating driving frame 471.

[0039] The upper end of the first connecting linkage rod 48 is hinged to a first guiding carrier plate 5. A first guiding runner 51 is installed on the first guiding carrier plate 5. A first installation carrier rod 52 is fixedly arranged on the first guiding carrier plate 5. The first installation carrier rod 52 is inserted into the first installation hole 151, and a first installation connecting frame 53 is fixedly arranged on the first installation carrier rod 52. The first installation connecting frame 53 is hinged to the first connecting linkage rod 48.

[0040] The lower end of the second connecting linkage rod 49 is hinged to a second guiding carrier plate 6. A second guiding runner 61 is installed on the second guiding carrier plate 6. A second installation carrier rod 62 is fixedly arranged on the second guiding carrier plate 6. The second installation carrier rod 62 is inserted into the second installation hole 162, and a second installation connecting frame 63 is fixedly arranged on the second installation carrier rod 62. The second installation connecting frame 63 is hinged to the second connecting linkage rod 49.

[0041] There are two side guiding bars 7, symmetrically installed on both sides of the first load-bearing and mating strip 15, and guiding balls 71 are installed on the side guiding bars 7. An extended load-bearing plate 72 is fixedly arranged on the side guiding bars 7. In addition, the side guiding bars 7 are located between the first guiding carrier plate 5 and the second guiding carrier plate 6. A drooping connecting plate 73 is fixedly arranged on the extended load-bearing plate 72. An activity installation hole 74 is formed in the drooping connecting plate 73. A load-bearing installation rod 152 is inserted into the activity installation hole 74. A connecting insertion rod 75 is fixedly arranged at the lower end of the drooping connecting plate 73. The connecting insertion rod 75 is inserted into the stable insertion channel 44 and is in contact with the inner wall of the stable insertion channel 44. A number of inclined surface positioning bars 81 are fixedly arranged on the positioning activity clamping plate 8. A mating insertion rod 82 is fixedly arranged on the lower end surface of the positioning activity clamping plate 8. The mating insertion rod 82 is inserted into the activity mating hole 181. A second connecting spring 83 is sleeved on the mating insertion rod 82. The two ends of the second connecting spring 83 are respectively welded to the second load-bearing and mating strip 18 and the positioning activity clamping plate 8.

[0042] A production method for drawing aluminum-magnesium alloy wire includes the following steps:

[0043] Step 1: Insertion of thick wire: Pass the thick wire through between the first guiding carrier plate 5, the second guiding carrier plate 6 and the side guiding bars 7 and extend it into the drawing water tank 11.

[0044] Step 2: Guiding adjustment of thick wire: Pull the driving mating strip 2 to drive the water-blocking movable plate 3 to move, and at the same time drive the driving mating slider 4 to move. Under the action of the driving mating slider 4, drive the first guiding carrier plate 5, the second guiding carrier plate 6 and the side guiding bars 7 to move so as to adapt to the diameter of the thick wire and realize the guiding of the thick wire.

[0045] Step 3: Drawing of thick wire: After the guiding adjustment of the thick wire is completed, draw the thick wire.

[0046] When wire drawing is carried out, the thick wire passes through between the first guiding carrier plate 5, the second guiding carrier plate 6 and the side guiding strip 7 and extends into the drawing water tank 11 to be connected with the drawing head in the drawing water tank 11. Then, the driving cooperation strip plate 2 is pulled to move it in the direction of the driving cooperation slider 4. In this way, with the movement of the driving cooperation strip plate 2, under the action of the connecting cooperation inclined surface 26, the water blocking movable plate 3 will be driven to move, making it protrude above the drawing water tank 11, so as to play a role in blocking water. At the same time, there is a gap between the water blocking movable plates 3, which is convenient for observing the inside of the drawing water tank 11. With the movement of the driving cooperation strip plate 2, it will contact the driving cooperation slider 4. In this way, the driving cooperation strip plate 2 will drive the driving cooperation slider 4 to move. With the movement of the driving cooperation slider 4, under the action of the first connecting linkage rod 48, the first guiding carrier plate 5 will be pushed to move upward, and at the same time, under the action of the second connecting linkage rod 49, the second guiding carrier plate 6 will be driven to move downward, so that the two guide and limit the thick wire from the upper and lower sides of the thick wire. With the movement of the driving cooperation slider 4, under the action of the linkage insertion channel 45, the side guiding strip 7 will be driven to move towards each other, and then guide and limit the thick wire from both sides of the thick wire. During the movement of the driving cooperation strip plate 2, the limit cooperation clamping plate 23 will contact the inclined surface positioning clamping strip 81, and then it will push the positioning movable clamping plate 8 to move downward until the limit cooperation clamping plate 23 crosses the inclined surface positioning clamping strip 81. Under the action of the second connecting spring 83, the positioning movable clamping plate 8 will move upward and reset, so that the limit cooperation clamping plate 23 is stuck at the inclined surface positioning clamping strip 81, avoiding the reverse movement of the driving cooperation strip plate 2, and further avoiding the reverse movement of the driving cooperation slider 4. In this way, under the action of multiple inclined surface positioning clamping strips 81, the driving cooperation strip plate 2 can stop at multiple positions, so that the first guiding carrier plate 5, the second guiding carrier plate 6 and the side guiding strip 7 can adapt to thick wires of different diameters, which is very convenient and has strong adaptability.

[0047] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principle and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A wire drawing production device for aluminum-magnesium alloy wire, comprising a support frame (1), on which a drawing water tank (11) is fixedly arranged, characterized in that: The two sides of the drawing water tank (11) are symmetrically fixed with support inclined plates (12), the support inclined plates (12) are fixed with a matching bearing plate (13), the matching bearing plate (13) is fixed with a support guide rod (14), one end of the drawing water tank (11) is fixed with a first bearing matching strip (15), the first bearing matching strip (15) is provided with a first mounting hole (151), and the two sides of the first bearing matching strip (15) are symmetrically fixed with bearing mounting rods (152), the drawing water tank (11) is also fixed with a support arch (16), the support arch (16) is fixed with a fixed support plate (161), the fixed support plate (161) is provided with a second mounting hole (151), and the first bearing matching strip (15) is fixed with a support rod (152). 62), a bearing matching rod (17) is fixedly provided on the drawing water box (11) at the lower side of the first bearing matching strip (15), a limited matching block (171) is fixedly provided on the end of the bearing matching rod (17) away from the drawing water box (11), and a second bearing matching strip (18) is fixedly provided on the drawing water box (11) at the lower side of the bearing matching rod (17), a movable matching hole (181) is provided on the second bearing matching strip (18), and a convenient adjustable guide mechanism with a waterproof function is installed on the drawing water box (11), and the convenient adjustable guide mechanism comprises a driving matching strip plate (2), a water retaining movable plate (3), a driving matching slider (4), a first connecting spring (411), a first guide carrier plate (5), A second guide carrier plate (6), a side guide strip (7), a positioning movable card plate (8) and a second connecting spring (83); a bearing matching through hole (21) is provided on the driving matching strip plate (2); a bearing matching rod (17) is inserted into the bearing matching through hole (21); a downward bearing rod (22) is fixedly provided at the lower end of the driving matching strip plate (2); a limited matching card plate (23) is fixedly provided at the lower end of the downward bearing rod (22); and driving matching strip plates (24) are symmetrically fixedly provided on both sides of the driving matching strip plate (2); the driving matching strip plates (24) are located on both sides of the drawing water tank (11); and a driving matching frame (25) is fixedly provided on the driving matching strip plate (24); and the driving matching frame (25) is provided with The water retaining movable plate (3) is symmetrically arranged on both sides of the pull water tank (11), and matching sliding holes (31) are symmetrically opened at both ends of the water retaining movable plate (3), a supporting guide rail rod (14) is inserted into the matching sliding hole (31), a contact matching rod (32) is fixedly arranged on the lower end surface of the water retaining movable plate (3), a driving matching slider (4) is sleeved on the bearing matching rod (17), a connecting matching sliding hole (41) is opened on the driving matching slider (4), a bearing matching rod (17) is inserted into the connecting matching sliding hole (41), a first connecting spring (411) is also sleeved on the bearing matching rod (17), and supporting side wing plates (42) are symmetrically fixedly arranged on both sides of the driving matching slider (4).The supporting side wing plate (42) is fixedly provided with a connecting driving strip (43), and the connecting driving strip (43) is provided with a stable plug-in channel (44) and a linkage plug-in channel (45). The driving matching slider (4) is fixedly provided with an extension bearing plate (46), and a matching supporting vertical rod (47) is fixedly provided on the extension bearing plate (46). A matching driving frame (471) is fixedly provided at the upper end of the matching supporting vertical rod (47). A first connecting linkage rod (48) is hingedly connected to the driving matching slider (4), and a second connecting linkage rod (49) is hingedly connected to the matching driving frame (471). The first connecting linkage rod (48) is hingedly connected to the matching slider (4). ) is hingedly connected to the upper end of a first guide carrier plate (5), a first guide rotating wheel (51) is mounted on the first guide carrier plate (5), and a first mounting carrier rod (52) is fixedly arranged on the first guide carrier plate (5), the first mounting carrier rod (52) is inserted into the first mounting hole (151), and a first mounting connecting frame (53) is fixedly arranged on the first mounting carrier rod (52), the first mounting connecting frame (53) is hingedly connected to the first connecting linkage rod (48), the lower end of the second connecting linkage rod (49) is hingedly connected to the second guide carrier plate (6), a second guide rotating wheel (61) is mounted on the second guide carrier plate (6), and the second guide carrier plate (6) is hingedly connected to the second guide rotating wheel (61 ... first connecting linkage rod (48), and the second guide rotating wheel (61) is hingedly connected to the second guide rotating wheel (61), and the second guide rotating wheel (61) is hingedly connected to the second guide rotating wheel (61), and the second guide rotating wheel (61) is hingedly connected to the second guide rotating wheel (61), and the second guide rotating wheel (61) is hingedly connected to the second guide rotating wheel (61), and the second guide rotating wheel (61) is hingedly connected to the first connecting linkage rod (48), and the first connecting linkage rod (53) is hingedly connected to the first connecting linkage rod (48). A second mounting rod (62) is fixedly arranged on the plate (6), the second mounting rod (62) is inserted into the second mounting hole (162), and a second mounting connecting frame (63) is fixedly arranged on the second mounting rod (62), the second mounting connecting frame (63) is hingedly connected to the second connecting linkage rod (49), the side guide strips (7) are two, symmetrically mounted on both sides of the first bearing matching strip (15), and guide balls (71) are installed on the side guide strips (7), an extended bearing plate (72) is fixedly arranged on the side guide strips (7), and a drooping connecting bearing plate (73) is fixedly arranged on the extended bearing plate (72), and the side guide strips (72) are fixedly arranged on the drooping connecting bearing plate (73). The drooping connecting support plate (73) is provided with a movable mounting hole (74), a bearing mounting rod (152) is inserted into the movable mounting hole (74), and a connecting plug rod (75) is fixedly provided at the lower end of the drooping connecting support plate (73), and the connecting plug rod (75) is inserted into the stable plug channel (44), and a plurality of inclined positioning clip strips (81) are fixedly provided on the positioning movable card plate (8), and a matching plug rod (82) is fixedly provided on the lower end surface of the positioning movable card plate (8), and the matching plug rod (82) is inserted into the movable matching hole (181), and a second connecting spring (83) is sleeved on the matching plug rod (82).

2. The aluminum-magnesium alloy wire drawing production equipment according to claim 1, characterized in that: The contact fitting rod (32) is in contact with the engaging fitting inclined surface (26).

3. The aluminum-magnesium alloy wire drawing production equipment according to claim 2, characterized in that: The stable plug-in channel (44) is interconnected with the linkage plug-in channel (45).

4. A method for producing aluminum-magnesium alloy wire drawing, characterized in that: The wire drawing production method is applicable to the aluminum-magnesium alloy wire drawing production equipment according to any one of claims 1 to 3, comprising the following steps: Step 1: Inserting the thick wire: passing the thick wire through the first guide carrier plate (5), the second guide carrier plate (6) and the side guide strip (7), and extending the thick wire into the drawing water tank (11); Step 2: guide adjustment of the thick wire: pull the driving matching strip plate (2) to drive the water retaining movable plate (3) to move, and at the same time drive the driving matching slider (4) to move, and under the action of the driving matching slider (4), drive the first guide carrier plate (5), the second guide carrier plate (6) and the side guide strip (7) to move so as to adapt to the diameter of the thick wire, thereby achieving the guidance of the thick wire; Step 3: Drawing of thick wire: After adjusting the guide of the thick wire, drawing of the thick wire is carried out.

Citation Information

Patent Citations

  • Double-layer feeding anti-deviation #-shaped frame of sectional material production line

    CN112478912A

  • Metal drawing machine with water tank

    CN202263785U