Disc spiral steel production transfer structure

By designing a production transfer structure for coil steel and using brackets and transfer components, the flexible transfer of coil steel between different furnace rollers is achieved, which solves the transfer problem between production lines, improves production efficiency and flexibility, and avoids energy waste.

CN223432822UActive Publication Date: 2025-10-14WUHU XINXING DUCTILE IRON PIPES
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Patent Information

Application Number
CN202422739633.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-10-14
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

There is no flexibility in the transfer between the two production lines of Panluo Steel, which results in inflexible production and an inability to allocate production between the two lines, resulting in energy waste.

Method used

A coil steel production and transfer structure is designed, which includes a bracket and a transfer component. The bracket is arranged on one side of the furnace roller, and the transfer component can be movably arranged on the bracket. The flexible transfer of coil steel is achieved by using components such as electric hoists, wire ropes, mounting beams and steel claws.

Benefits of technology

It realizes the flexible allocation and transfer of coil steel between different furnace rollers, improves the flexibility and production efficiency of the production line, and avoids energy waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The coiled steel production transfer structure is arranged between furnace discharging roller ways and comprises a support and a transfer assembly, the support is arranged on one side of the furnace discharging roller ways, the transfer assembly is movably arranged on the support, the furnace discharging roller ways comprise the first furnace discharging roller way and the second furnace discharging roller way, and the first furnace discharging roller way and the second furnace discharging roller way are arranged on the support. The coiled steel can be flexibly allocated and transferred between the first furnace discharging roller way and the second furnace discharging roller way through the transferring assembly, the coiled steel production transferring structure can be conveniently transferred on a coiled steel production line body, and coiled steel production can be flexibly allocated.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to disc spiral steel production field, specifically, the utility model relates to a disc spiral steel production transfer structure. BACKGROUND

[0002] In the disc spiral steel production workshop, in order to improve the production efficiency of disc spiral steel, the disc spiral steel line body usually adopts double furnaces to work simultaneously, when the production is not full, one line produces, and the other line stops the furnace, when the production rhythm is slow, two lines are started simultaneously to produce, to avoid the waste of energy, but the disc spiral steel between the two lines cannot be transferred, can only produce in one line, and the production of disc spiral steel cannot be flexibly allocated.

[0003] To solve the above problems, the patent document 211078178U discloses a disc spiral steel hoisting device, including upper cross arm, lower cross arm and side arm, the upper cross arm, side arm and lower cross arm are sequentially connected and fixed to form a "U" type structure with one side open, a containing space for hoisting disc spiral steel is formed in the "U" type structure. The upper cross arm is provided with an ear, and the ear is provided with a hook hole, the length of the lower cross arm is greater than that of the upper cross arm, and the contact surface of the lower cross arm with the disc spiral steel is provided with a damping structure, but the above problems cannot be solved. UTILITY MODEL CONTENT

[0004] The utility model is carried out in order to solve the above problems, aims at providing a disc spiral steel production transfer structure which can conveniently transfer in the disc spiral steel production line and flexibly allocate disc spiral steel production. In order to realize the above object, the technical scheme that the utility model adopts is:

[0005] The utility model provides a disc spiral steel production transfer structure, is arranged between the discharge roller way, has such characteristics, including support and transfer subassembly, the support is arranged at one side of the discharge roller way, and the transfer subassembly is movably arranged on the support.

[0006] In the disc spiral steel production transfer structure provided by the utility model, the support can also have such characteristics, including stand and vertical beam, and the end of the vertical beam is connected with the stand.

[0007] In the disc spiral steel production transfer structure provided by the utility model, the transfer subassembly can also have such characteristics, including crossbeam, electric hoist, steel wire rope and mounting beam, the end of the crossbeam is movably connected with the vertical beam, the electric hoist is arranged on the crossbeam, one end of the steel wire rope is connected with the electric hoist, and the other end of the steel wire rope is connected with the mounting beam.

[0008] In the coil steel production and transfer structure provided by the present invention, it can also have such a feature that a telescopic sleeve rod is provided between the mounting beam and the cross beam, the telescopic sleeve rod includes a sleeve rod and an inner rod, one end of the sleeve rod is arranged on the cross beam, one end of the inner rod is movably arranged in the sleeve rod, and the other end of the inner rod is connected to the mounting beam.

[0009] The coil steel production and transfer structure provided by the present invention may also have the following features: the mounting beam is provided with steel scooping claws, which are evenly arranged on the mounting beam.

[0010] The coil steel production and transfer structure provided by the present invention may also have such a feature that a slider guide rail assembly is provided between the horizontal beam and the vertical beam, and the slider guide rail assembly includes a guide rail and a slider movably arranged on the guide rail, the guide rail is arranged on the vertical beam, and the slider is arranged at the end of the horizontal beam.

[0011] The coil steel production and transfer structure provided by the present invention may also have the following features: a limiting flange is provided on one side of the guide rail close to the slider, and a limiting groove is provided on the slider that is compatible with the limiting flange.

[0012] The technical effect of the utility model is: the pan-screw steel production transfer structure provided by the utility model is arranged between the furnace rollers, the pan-screw steel production transfer structure includes a bracket and a transfer component, the bracket is arranged on one side of the furnace roller, the transfer component can be movably arranged on the bracket, the furnace roller includes a first furnace roller and a second furnace roller, and the transfer component can flexibly allocate and transfer the pan-screw steel between the first furnace roller and the second furnace roller.

[0013] Therefore, the pan-screw steel production transfer structure provided by the present invention is convenient for transfer in the pan-screw steel production line and can flexibly adjust the pan-screw steel production. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] This manual includes the following drawings, which show the following contents:

[0015] Figure 1 It is a structural schematic diagram of the pan-screw steel production transfer structure in the embodiment of the present utility model in the front view direction;

[0016] Figure 2 It is a schematic structural diagram of the pan-screw steel production and transfer structure in the embodiment of the present utility model in the direction of a top view;

[0017] Figure 3 It is a structural schematic diagram of the slider guide rail assembly in an embodiment of the present utility model.

[0018] The figure is marked as: first discharge roller way-1, second discharge roller way-2, support-10, stand-11, vertical beam-12, transfer assembly-20, cross beam-21, electric hoist-22, steel wire rope-23, mounting beam-24, steel grabbing claw-25, telescopic sleeve rod-26, sleeve rod-261, inner rod-262, sliding block guide rail assembly-30, guide rail-31, limiting flange-311, sliding block-32, limiting groove-321. DETAILED DESCRIPTION

[0019] The specific embodiments of the present application will be further described in detail below with reference to the drawings, and the purpose is to help the technical personnel in the art to have a more complete, accurate and in-depth understanding of the inventive concept and technical solution of the present application, and to help its implementation.

[0020] Figure 1 It is the structure schematic diagram of the disc spiral steel production transfer structure in the embodiment of the utility model in the front view direction; Figure 2 It is the structure schematic diagram of the disc spiral steel production transfer structure in the embodiment of the utility model in the top view direction.

[0021] As shown in Figure 1 and Figure 2 The disc spiral steel production transfer structure provided by the utility model is arranged between the discharge roller ways, the disc spiral steel production transfer structure comprises a support 10 and a transfer assembly 20, the support 10 is arranged on one side of the discharge roller way, the transfer assembly 20 is movably arranged on the support 10, the discharge roller way comprises a first discharge roller way 1 and a second discharge roller way 2 which are parallel to each other, and the transfer assembly 20 can flexibly allocate and transfer the disc spiral steel between the first discharge roller way 1 and the second discharge roller way 2, so that the disc spiral steel production transfer structure provided by the utility model is convenient for transferring in the disc spiral steel production line body and can flexibly allocate the disc spiral steel production.

[0022] The support 10 comprises a stand 11 and a vertical beam 12, the stand 11 is vertically arranged on the ground at one end in the vertical direction, two stands 11 are arranged on the side away from the second discharge roller way 2 of the first discharge roller way 1 and are parallel to each other, two stands 11 are arranged on the side away from the first discharge roller way 1 of the second discharge roller way 2 and are parallel to each other, the end of the vertical beam 12 is connected with the end of the stand 11 away from the ground, the two ends of the vertical beam 12 are connected with the two stands 11 respectively, the vertical beam 12 is arranged along the direction perpendicular to the first discharge roller way 1 and the second discharge roller way 2, and the two vertical beams 12 are arranged parallel to each other, so as to improve the structural strength and the structural stability of the support 10. Four stands 11 are evenly arranged between the first discharge roller way 1 and the second discharge roller way 2, two stands 11 are connected with the middle section of one vertical beam 12, and the other two stands 11 are connected with the middle section of the other vertical beam 12, so as to further improve the structural strength and the structural stability of the support 10 and ensure the stability of the disc spiral steel transfer process.

[0023] The transport assembly 20 comprises a cross beam 21, an electric hoist 22, a steel wire rope 23 and a mounting beam 24, the end of the cross beam 21 is movably connected with the vertical beam 12, the two ends of the cross beam 21 are movably connected with two vertical beams 12 respectively, the cross beam 21 is arranged along the direction parallel to the first discharge roller way 1 and the second discharge roller way 2, the electric hoist 22 is arranged on the cross beam 21, one end of the steel wire rope 23 is connected with the electric hoist 22, the other end of the steel wire rope 23 is connected with the mounting beam 24, so that the electric hoist 22 can drive the mounting beam 24 to ascend and descend through the steel wire rope 23, the mounting beam 24 is provided with a steel grabbing claw 25, the steel grabbing claw 25 is uniformly arranged on the mounting beam 24, the steel grabbing claw 25 is hook-shaped and can hook up the coiled steel and drive the coiled steel to ascend and descend, so that the coiled steel is transported.

[0024] The mounting beam 24 and the cross beam 21 are provided with telescopic sleeve rods 26, the telescopic sleeve rod 26 comprises a sleeve rod 261 and an inner rod 262, one end of the sleeve rod 261 is arranged on the cross beam 21, one end of the inner rod 262 is telescopically arranged in the sleeve rod 261, the other end of the inner rod 262 is connected with the mounting beam 24, two telescopic sleeve rods 26 are arranged on the two sides of the cross beam 21 respectively, the telescopic sleeve rod 26 can ensure the stability of the mounting beam 24 in the ascending process of the mounting beam 24, so as to ensure the stability of the hooking and lifting process of the coiled steel, prevent the coiled steel from falling off in the transport process, and improve the stability and reliability of the structure.

[0025] Figure 3 It is the structural schematic diagram of the sliding block guide rail assembly in the embodiment of the utility model.

[0026] As Figure 3 shown, the cross beam 21 and the vertical beam 12 are provided with a sliding block guide rail assembly 30, the sliding block guide rail assembly 30 comprises a guide rail 31 and a sliding block 32, the sliding block 32 is slidably arranged on the guide rail 31, the guide rail 31 is arranged on the vertical beam 12 along the length direction of the vertical beam 12, the sliding block 32 is arranged at the end of the cross beam 21, so that the cross beam 21 can move along the length direction of the vertical beam 12, so that the coiled steel can be flexibly allocated and transported between the first discharge roller way 1 and the second discharge roller way 2. One side of the guide rail 31 close to the sliding block 32 is provided with a limiting flange 311, the sliding block 32 is provided with a limiting groove 321 matched with the limiting flange 311, the limiting flange 311 is clamped in the limiting groove 321, so that the sliding block 32 can be limited on the guide rail 31, thereby avoiding the sliding block 32 from being separated from the guide rail 31 in the transport process, and improving the stability of the transport process.

[0027] The effect and advantage of the embodiment

[0028] The disc spiral steel production transfer structure provided by the utility model is arranged between the discharge roller ways, the disc spiral steel production transfer structure comprises a support 10 and a transfer assembly 20, the support 10 is arranged on one side of the discharge roller way, the transfer assembly 20 is movably arranged on the support 10, the discharge roller way comprises a first discharge roller way 1 and a second discharge roller way 2 which are parallel to each other, the transfer assembly 20 can flexibly allocate and transfer the disc spiral steel between the first discharge roller way 1 and the second discharge roller way 2, so that the disc spiral steel production transfer structure provided by the utility model is convenient to transfer in the disc spiral steel production line body and can flexibly allocate the disc spiral steel production.

[0029] The utility model has been described exemplarily above in combination with the drawings. Obviously, the specific implementation of the utility model is not limited by the above-mentioned mode. As long as various non-essential improvements are made by adopting the method concept and technical scheme of the utility model, or the above-mentioned concept and technical scheme of the utility model are directly applied to other occasions without improvement, they are all within the protection scope of the utility model.

Claims

1. A coil steel production transfer structure, arranged between the furnace rollers, characterized in that: The invention comprises a support (10) and a transfer assembly (20), wherein the support (10) is arranged on one side of a furnace discharge roller conveyor, and the transfer assembly (20) is movably arranged on the support (10).

2. The coil steel production and transfer structure according to claim 1, characterized in that: The bracket (10) comprises a column (11) and a vertical beam (12), and the end of the vertical beam (12) is connected to the column (11).

3. The coil steel production and transfer structure according to claim 2, characterized in that: The transfer assembly (20) includes a crossbeam (21), an electric hoist (22), a steel wire rope (23) and a mounting beam (24). The end of the crossbeam (21) is movably connected to the vertical beam (12). The electric hoist (22) is arranged on the crossbeam (21). One end of the steel wire rope (23) is connected to the electric hoist (22), and the other end of the steel wire rope (23) is connected to the mounting beam (24).

4. The coil steel production and transfer structure according to claim 3, characterized in that: A telescopic sleeve rod (26) is provided between the mounting beam (24) and the cross beam (21), and the telescopic sleeve rod (26) comprises a sleeve rod (261) and an inner rod (262). One end of the sleeve rod (261) is provided on the cross beam (21), one end of the inner rod (262) is movably provided in the sleeve rod (261), and the other end of the inner rod (262) is connected to the mounting beam (24).

5. The coil steel production and transfer structure according to claim 4, characterized in that: The mounting beam (24) is provided with steel scooping claws (25), and the steel scooping claws (25) are evenly arranged on the mounting beam (24).

6. The coil steel production and transfer structure according to claim 5, characterized in that: A slider guide rail assembly (30) is provided between the cross beam (21) and the vertical beam (12), and the slider guide rail assembly (30) comprises a guide rail (31) and a slider (32) movably provided on the guide rail (31); the guide rail (31) is provided on the vertical beam (12), and the slider (32) is provided at the end of the cross beam (21).

7. The coil steel production and transfer structure according to claim 6, characterized in that: A limiting flange (311) is provided on one side of the guide rail (31) close to the slider (32), and a limiting groove (321) adapted to the limiting flange (311) is provided on the slider (32).