Wire storage device for producing wires in high-speed wire factory

By designing an adjustable support assembly and positioning bolts for the wire storage device, the problem of the lack of spacing adjustment in the wire storage device was solved, achieving stable fixation of wire coils of different diameters, avoiding pressure damage between wire coils, and improving practicality.

CN224030413UActive Publication Date: 2026-03-24HEBEI PUYANG IRON & STEEL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-10
Publication Date
2026-03-24

AI Technical Summary

Technical Problem

The existing wire storage device does not have a spacing adjustment function, which makes it impossible to fix wire rolls of different diameters, and the upper wire roll is prone to causing pressure damage to the lower wire roll.

Method used

A wire storage device is designed, comprising a base frame, uprights, diagonal braces, and adjustable support components. The wire rolls are fixed by the adjustable support components and positioning bolts. The support components consist of multiple layers of crossbars and sliding sleeves, and the support distance can be adjusted according to the wire diameter.

Benefits of technology

It achieves stable fixing of wire coils of different diameters, avoids pressure damage between wire coils, and improves the practicality of the storage device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a wire storage device for producing wires in a high-speed wire factory, which belongs to the field of wire storage devices and comprises a bottom frame, universal wheels are arranged on the bottom surface of the bottom frame, two vertical rods are arranged on the top surface of the bottom frame, the tops of the two vertical rods are connected together through a first connecting rod, the front sides of the vertical rods are connected with inclined rods through second connecting rods, and the inclined rods are arranged on the bottom surface of the bottom frame. A plurality of first placing grooves are formed in the front side of the inclined rod, and a position-adjustable supporting assembly is arranged between every two first placing grooves which correspond to each other in the left-right direction. The supporting assembly with the adjustable position is arranged between the two first containing grooves which correspond to each other in the left-right direction, one end of a center shaft of a wire roll is placed on the first containing grooves, the other end of the center shaft of the wire roll is placed on the supporting assembly, and the wire roll cannot be damaged by pressing; and the position of an adjusting frame in the supporting assembly can be adjusted, adjustment can be conveniently conducted according to wire coils with different diameters, and practicability is high.
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Description

TECHNICAL FIELD

[0001] The utility model relates to wire rod storage device technical field especially relates to a wire rod storage device for high wire factory production wire rod. BACKGROUND

[0002] At present, when the high wire factory produces wire rod, the coiled wire rod needs to be stored through the storage device, but the existing storage device has the following problems when in use: (1) the existing storage device does not have spacing adjustment function when in use, which leads to the inconvenience of adjusting the spacing between the fixed columns according to the wire rod coils of different diameters, resulting in poor practicality of the storage state; (2) the wire rod coils are all stacked on the storage device when the existing storage device is in use, which leads to the wire rod coils on the upper part being prone to causing pressure damage to the wire rod coils on the lower part; therefore, the above problems need to be improved and handled. SUMMARY

[0003] The utility model aims at providing a wire rod storage device for high wire factory production wire rod, solving the problem that the existing storage device does not have spacing adjustment function and the wire rod coils are all stacked on the storage device, leading to the wire rod coils on the upper part being prone to causing pressure damage to the wire rod coils on the lower part.

[0004] To solve the above technical problems, the utility model adopts the following technical scheme:

[0005] The utility model relates to a wire rod storage device for high wire factory production wire rod, which comprises a chassis, the bottom surface of the chassis is provided with universal wheels, the top surface of the chassis is provided with two vertical rods, the top parts of the two vertical rods are connected together through a first connecting rod, the front side of the vertical rod is connected with an inclined rod through a second connecting rod, the front side of the inclined rod is provided with a plurality of first placing grooves, and position-adjustable support assemblies are arranged between the two first placing grooves corresponding in position.

[0006] Further, the support assembly located at the uppermost position comprises a first horizontal rod, the two ends of the first horizontal rod are connected with the two inclined rods respectively, and a plurality of first adjusting frames are arranged on the first horizontal rod; the first adjusting frame comprises a first sliding sleeve, the first sliding sleeve is arranged on the first horizontal rod, the top surface of the first sliding sleeve is provided with a first supporting rod, and the front side of the first supporting rod is provided with a second placing groove.

[0007] Still further, a plurality of first adjusting holes are uniformly arranged on the first horizontal rod, a first positioning hole is arranged on the first sliding sleeve, and the first positioning hole is locked and positioned through a first positioning bolt after being aligned with one of the first adjusting holes.

[0008] Further, the support assembly located in the middle part comprises a second horizontal rod, two ends of the second horizontal rod are connected with the two inclined rods respectively, a plurality of second adjusting frames are arranged on the second horizontal rod, and a fourth horizontal rod for assisting the support of the second adjusting frames is arranged between the two vertical rods.

[0009] Further, the second adjusting frame comprises a second sliding sleeve, the second sliding sleeve is arranged on the second horizontal rod, a second support rod is arranged on the top surface of the second sliding sleeve, a third placing groove is arranged on the front side of the second support rod, a third support rod is arranged on the rear side of the second support rod, the other end of the third support rod is provided with a third sliding sleeve, and the third sliding sleeve is arranged on the fourth horizontal rod.

[0010] Further, the second horizontal rod is uniformly provided with a plurality of second adjusting holes, the second sliding sleeve is provided with a second positioning hole, the second positioning hole is aligned with one of the second adjusting holes and is locked and positioned by a second positioning bolt, the fourth horizontal rod is uniformly provided with a plurality of third adjusting holes, the third adjusting holes correspond to the second adjusting holes one by one, the third sliding sleeve is provided with a third positioning hole, the third positioning hole is aligned with the third adjusting hole and is locked and positioned by a third positioning bolt.

[0011] Further, the support assembly located in the bottom part comprises a third horizontal rod, two ends of the third horizontal rod are connected with the two inclined rods respectively, a plurality of third adjusting frames are arranged on the third horizontal rod, and a fifth horizontal rod for assisting the support of the third adjusting frames is arranged between the two vertical rods.

[0012] Further, the third adjusting frame comprises a fourth sliding sleeve, the fourth sliding sleeve is arranged on the third horizontal rod, a fourth support rod is arranged on the top surface of the fourth sliding sleeve, a fourth placing groove is arranged on the front side of the fourth support rod, a fifth support rod is arranged on the rear side of the fourth support rod, the other end of the fifth support rod is provided with a fifth sliding sleeve, and the fifth sliding sleeve is arranged on the fifth horizontal rod.

[0013] Further, the third horizontal rod is uniformly provided with a plurality of fourth adjusting holes, the fourth sliding sleeve is provided with a fourth positioning hole, the fourth positioning hole is aligned with one of the fourth adjusting holes and is locked and positioned by a fourth positioning bolt, the fifth horizontal rod is uniformly provided with a plurality of fifth adjusting holes, the fifth adjusting holes correspond to the fourth adjusting holes one by one, the fifth sliding sleeve is provided with a fifth positioning hole, the fifth positioning hole is aligned with the fifth adjusting hole and is locked and positioned by a fifth positioning bolt.

[0014] Compared with the prior art, the beneficial technical effects of the utility model are as follows:

[0015] The utility model discloses the support assembly of adjustable position is arranged between the two first placing groove of left and right position correspondence, and the one end of wire rod roll center axis is placed on the first placing groove, and the other end is placed on the support assembly, and wire rod roll will not cause the pressure loss, and the position of adjusting frame in support assembly can be adjusted, and it is convenient to adjust according to the wire rod roll of different diameter, and the practicality is strong. BRIEF DESCRIPTION OF DRAWINGS

[0016] The utility model will be further explained in connection with the drawings.

[0017] Figure 1 It is the three-dimensional structure schematic diagram of high line factory production wire rod wire rod storage device for the utility model;

[0018] Figure 2 It is Figure 1 The enlarged view of A in the middle;

[0019] Figure 3 It is Figure 1 The enlarged view of B in the middle;

[0020] Figure 4 It is Figure 1 The enlarged view of C in the middle;

[0021] Figure 5 It is the three-dimensional structure schematic diagram of high line factory production wire rod wire rod storage device using state for the utility model.

[0022] Mark explanation: 1, the underframe;2, universal wheel;3, vertical rod;4, inclined rod;5, first placing groove;6, first cross bar;6-1, first adjusting hole;7, first adjusting frame;7-1, first support rod;7-2, second placing groove;7-3, first sliding sleeve;7-4, first positioning bolt;8, second cross bar;8-1, second adjusting hole;9, second adjusting frame;9-1, second support rod;9-2, third support rod;9-3, third placing groove;9-4, second sliding sleeve;9-5, second positioning bolt;9-6, third sliding sleeve;10, third cross bar;10-1, fourth adjusting hole;11, third adjusting frame;11-1, fourth support rod;11-2, fifth support rod;11-3, fourth placing groove;11-4, fourth sliding sleeve;11-5, fourth positioning bolt;11-6, fifth sliding sleeve;12, fourth cross bar;12-1, third adjusting hole;13, fifth cross bar;13-1, fifth adjusting hole;14, first connecting rod;15, second connecting rod;16, wire rod roll. DETAILED DESCRIPTION

[0023] As Figures 1-5As shown, a high wire factory wire rod storage device for wire rod production line, including the chassis 1, the chassis 1 bottom four corners are installed with universal wheel 2, the top surface of the chassis 1 is connected with two vertical rod 3, two vertical rod 3 top is connected together through the first connecting rod 14, the front side of the vertical rod 3 is connected with inclined rod 4 through the second connecting rod 15, the front side of the inclined rod 4 is connected with three first placing groove 5, the corresponding position of the left and right two first placing groove 5 is provided with adjustable support assembly.

[0024] The uppermost support assembly comprises a first cross bar 6, the two ends of the first cross bar 6 are connected with two inclined rods 4 respectively, and the first cross bar 6 is provided with three first adjusting frame 7. Figure 2 As shown, the first adjusting frame 7 comprises a first sliding sleeve 7-3, the first sliding sleeve 7-3 is sleeved on the first cross bar 6, a plurality of first adjusting holes 6-1 are uniformly formed on the first cross bar 6, a first positioning hole is formed on the first sliding sleeve 7-3, and the first positioning hole is aligned with one of the first adjusting holes 6-1 and locked and positioned by a first positioning bolt 7-4; the top surface of the first sliding sleeve 7-3 is connected with a first supporting rod 7-1, and the front side of the first supporting rod 7-1 is connected with a second placing groove 7-2; one end of the wire rod roll 16 center shaft is placed on the first placing groove 5, and the other end is placed on the second placing groove 7-2.

[0025] When the size of the wire rod roll 16 changes, the first adjusting frame 7 is moved, the first sliding sleeve 7-3 moves along the first cross bar 6, so that the distance between the second placing groove 7-2 and the first placing groove 5 and the distance between the two second placing grooves 7-2 match the size of the wire rod roll 16, and the position of the first adjusting frame 7 is locked by the first positioning bolt 7-4 after being adjusted to the appropriate position.

[0026] The middle support assembly comprises a second cross bar 8, the two ends of the second cross bar 8 are connected with two inclined rods 4 respectively, the second cross bar 8 is provided with three second adjusting frame 9, and the fourth cross bar 12 for assisting the second adjusting frame 9 is connected between the two vertical rods 3; as Figure 3As shown, the second adjusting frame 9 comprises a second sliding sleeve 9-4 which is slidingly sleeved on the second horizontal rod 8, the second horizontal rod 8 is uniformly provided with a plurality of second adjusting holes 8-1, the second sliding sleeve 9-4 is provided with a second positioning hole, and the second positioning hole is locked and positioned by a second positioning bolt 9-5 after being aligned with one of the second adjusting holes 8-1; the top surface of the second sliding sleeve 9-4 is connected with a second supporting rod 9-1, the front side of the second supporting rod 9-1 is connected with a third placing groove 9-3, the rear side of the second supporting rod 9-1 is connected with a third supporting rod 9-2, the other end of the third supporting rod 9-2 is connected with a third sliding sleeve 9-6, the third sliding sleeve 9-6 is slidingly sleeved on the fourth horizontal rod 12, the fourth horizontal rod 12 is uniformly provided with a plurality of third adjusting holes 12-1, the third adjusting holes 12-1 correspond to the second adjusting holes 8-1 one by one, the third sliding sleeve 9-6 is provided with a third positioning hole, and the third positioning hole is locked and positioned by a third positioning bolt after being aligned with the third adjusting hole 12-1.

[0027] When the size of the wire coil 16 changes, the second adjusting frame 9 is moved, the second sliding sleeve 9-4 moves along the second horizontal rod 8, the third sliding sleeve 9-6 moves along the fourth horizontal rod 12, so that the distance between the third placing groove 9-3 and the first placing groove 5 and the distance between the two third placing grooves 9-3 match the size of the wire coil 16, and when the second adjusting frame 9 is moved to the appropriate position, the position of the second adjusting frame 9 is locked by the second positioning bolt 9-5 and the third positioning bolt.

[0028] The supporting assembly located at the bottom comprises a third horizontal rod 10, both ends of the third horizontal rod 10 are connected with two inclined rods 4 respectively, the third horizontal rod 10 is provided with three third adjusting frames 11, and a fifth horizontal rod 13 for assisting in supporting the third adjusting frames 11 is connected between the two vertical rods 3; as Figure 4As shown, the third adjusting frame 11 includes a fourth sliding sleeve 11-4, which is slidably fitted onto the third crossbar 10. The third crossbar 10 has a plurality of evenly spaced fourth adjusting holes 10-1. The fourth sliding sleeve 11-4 has a fourth positioning hole. The fourth positioning hole is aligned with one of the fourth adjusting holes 10-1 and then locked in place by a fourth positioning bolt 11-5. A fourth support rod 11-1 is connected to the top surface of the fourth sliding sleeve 11-4, and a fourth placement groove 11- is connected to the front side of the fourth support rod 11-1. 3. The rear side of the fourth support rod 11-1 is connected to the fifth support rod 11-2. The other end of the fifth support rod 11-2 is connected to the fifth sliding sleeve 11-6. The fifth sliding sleeve 11-6 is slidably sleeved on the fifth crossbar 13. The fifth crossbar 13 is evenly provided with a plurality of fifth adjustment holes 13-1. The fifth adjustment holes 13-1 correspond one-to-one with the fourth adjustment holes 10-1. The fifth sliding sleeve 11-6 is provided with a fifth positioning hole. After the fifth positioning hole is aligned with the fifth adjustment hole 13-1, it is locked and positioned by a fifth positioning bolt.

[0029] When the size of the wire roll 16 changes, the third adjusting frame 11 is moved, the fourth sliding sleeve 11-4 moves along the third crossbar 10, and the fifth sliding sleeve 11-6 moves along the fifth crossbar 13, so that the distance between the fourth placement slot 11-3 and the first placement slot 5, and the distance between the two fourth placement slots 11-3, match the size of the wire roll 16. When the third adjusting frame 11 moves to the appropriate position, the position of the third adjusting frame 11 is locked by the fourth positioning bolt 11-5 and the fifth positioning bolt.

[0030] In this utility model, the second placement groove 7-2, the third placement groove 9-3, and the fourth placement groove 11-3 have the same size, which is twice the length of the first placement groove 5, because the ends of two wire rolls 16 need to be placed in the second placement groove 7-2, the third placement groove 9-3, and the fourth placement groove 11-3.

[0031] The usage process of this utility model is as follows:

[0032] like Figure 5 As shown, a smaller wire roll 16 is placed on the uppermost support assembly, while a larger wire roll 16 is placed on the middle and bottom support assemblies.

[0033] The embodiments described above are merely preferred embodiments of the present utility model and are not intended to limit the scope of the present utility model. Various modifications and improvements made to the technical solutions of the present utility model by those skilled in the art without departing from the spirit of the present utility model should fall within the protection scope defined by the claims of the present utility model.

Claims

1. A wire rod storage device for a wire rod mill, characterized by: The utility model provides a kind of adjustable support frame, including chassis (1), the bottom surface of the chassis (1) is provided with universal wheel (2), the top surface of the chassis (1) is provided with two vertical rods (3), the top of two vertical rods (3) is connected together by first connecting rod (14), the front side of vertical rod (3) is connected with inclined rod (4) by second connecting rod (15), the front side of inclined rod (4) is provided with multiple first placement slot (5), and the position-adjustable support assembly is provided between the first placement slot (5) corresponding to left and right positions.

2. The wire rod storage device for a wire rod mill according to claim 1, characterized by: The uppermost support assembly includes a first crossbar (6), both ends of the first crossbar (6) are connected with two inclined rods (4) respectively, and a plurality of first adjusting frames (7) are arranged on the first crossbar (6); the first adjusting frame (7) includes a first sliding sleeve (7-3), the first sliding sleeve (7-3) is arranged on the first crossbar (6), a first support rod (7-1) is arranged on the top surface of the first sliding sleeve (7-3), and a second placement slot (7-2) is arranged on the front side of the first support rod (7-1).

3. The wire rod storage device for wire rod mill of claim 2, wherein: A plurality of first adjusting holes (6-1) are uniformly arranged on the first crossbar (6), a first positioning hole is arranged on the first sliding sleeve (7-3), and the first positioning hole is locked and positioned by a first positioning bolt (7-4) after being aligned with one of the first adjusting holes (6-1).

4. The wire rod storage device for a wire rod mill according to claim 1, characterized by: The middle support assembly includes a second crossbar (8), both ends of the second crossbar (8) are connected with two inclined rods (4) respectively, a plurality of second adjusting frames (9) are arranged on the second crossbar (8), and a fourth crossbar (12) for assisting the second adjusting frame (9) is arranged between the two vertical rods (3).

5. The wire rod storage device for wire rod mill according to claim 4, characterized in that: The second adjusting frame (9) includes a second sliding sleeve (9-4), the second sliding sleeve (9-4) is arranged on the second crossbar (8), a second support rod (9-1) is arranged on the top surface of the second sliding sleeve (9-4), a third placement slot (9-3) is arranged on the front side of the second support rod (9-1), a third support rod (9-2) is arranged on the rear side of the second support rod (9-1), the other end of the third support rod (9-2) is provided with a third sliding sleeve (9-6), and the third sliding sleeve (9-6) is arranged on the fourth crossbar (12).

6. The wire rod storage device for wire rod mill according to claim 5, characterized in that: A plurality of second adjusting holes (8-1) are uniformly arranged on the second crossbar (8), a second positioning hole is arranged on the second sliding sleeve (9-4), the second positioning hole is locked and positioned by a second positioning bolt (9-5) after being aligned with one of the second adjusting holes (8-1), a plurality of third adjusting holes (12-1) are uniformly arranged on the fourth crossbar (12), the third adjusting holes (12-1) correspond to the second adjusting holes (8-1) one by one, a third positioning hole is arranged on the third sliding sleeve (9-6), and the third positioning hole is locked and positioned by a third positioning bolt after being aligned with the third adjusting hole (12-1).

7. The wire rod storage device for wire rod mill according to claim 1, characterized in that: The support assembly at the bottom comprises a third cross bar (10), two ends of the third cross bar (10) are connected with two inclined bars (4) respectively, a plurality of third adjusting frames (11) are arranged on the third cross bar (10), and a fifth cross bar (13) for assisting in supporting the third adjusting frames (11) is arranged between the two vertical bars (3).

8. The wire rod storage device for wire rod mill according to claim 7, characterized in that: The third adjusting frame (11) comprises a fourth sliding sleeve (11-4) arranged on the third cross bar (10), the top surface of the fourth sliding sleeve (11-4) is provided with a fourth support rod (11-1), the front side of the fourth support rod (11-1) is provided with a fourth placing groove (11-3), the rear side of the fourth support rod (11-1) is provided with a fifth support rod (11-2), and the other end of the fifth support rod (11-2) is provided with a fifth sliding sleeve (11-6) arranged on the fifth cross bar (13).

9. The wire rod storage device for wire rod mill according to claim 8, characterized in that: The third cross bar (10) is uniformly provided with a plurality of fourth adjusting holes (10-1), the fourth sliding sleeve (11-4) is provided with a fourth positioning hole, the fourth positioning hole is locked and positioned by a fourth positioning bolt (11-5) after being aligned with one of the fourth adjusting holes (10-1), the fifth cross bar (13) is uniformly provided with a plurality of fifth adjusting holes (13-1), the fifth adjusting holes (13-1) correspond to the fourth adjusting holes (10-1) in a one-to-one manner, the fifth sliding sleeve (11-6) is provided with a fifth positioning hole, and the fifth positioning hole is locked and positioned by a fifth positioning bolt after being aligned with the fifth adjusting hole (13-1).