DEVICE WITH ADJUSTABLE OFFSET DISTANCE IN SERPENTINE ROLLING FOR ROLLING MILL AND USING METHOD THEREOF
20260008086 ยท 2026-01-08
Inventors
- Zhiquan Huang (Taiyuan City, CN)
- Xiangyu Gao (Taiyuan City, CN)
- Jinchao Zou (Zhoukou City, CN)
- Yinglong Guo (Anshun City, CN)
- Lianyun Jiang (Jining City, CN)
- Yanchun ZHU (Taiyuan City, CN)
- Shaoluo Wang (Taiyuan City, CN)
- Hui Li (Taiyuan City, CN)
- Pengfei Wu (Taiyuan City, CN)
- Yu Liu (Tianmen City, CN)
Cpc classification
B21B2273/04
PERFORMING OPERATIONS; TRANSPORTING
B21B2269/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A device for a rolling mill with an adjustable offset distance in serpentine rolling and a method thereof are provided. The device includes a frame, offset moving components, upper and lower work rolls, telescopic components, lifting components, and a monitoring component. The offset moving components are connected to a middle of the frame, and the offset moving components are connected to the lower work roll bearing seats, and the lower work roll bearing seats are connected to the lower work roll; the offset moving components are fixedly connected to the telescopic components; a top of the frame is fixedly connected to the lifting components, and the lifting components are fixedly connected to upper work roll bearing seats, and the upper work roll bearing seats are connected to the upper work roll, and the monitoring component is provided at a rolling exit of the frame.
Claims
1. A device with an adjustable offset distance in serpentine rolling for a rolling mill, the device comprising: a frame, offset moving components, an upper work roll, a lower work roll, telescopic components, lifting components, and a monitoring component; wherein the offset moving components are connected to two sides of lower work roll bearing seats at a middle of the frame, the lower work roll is arranged between the lower work roll bearing seats, the offset moving components are fixedly connected to the telescopic components, a top of the frame is fixedly connected to the lifting components, the lifting components are fixedly connected to upper work roll bearing seats, the upper work roll is arranged between the upper work roll bearing seats, and the monitoring component is provided at a rolling exit of the frame.
2. The device with the adjustable offset distance in serpentine rolling for the rolling mill according to claim 1, wherein the offset moving components comprise two first dovetail-shaped wedge blocks and two second dovetail-shaped wedge blocks, the two first dovetail-shaped wedge blocks and the two second dovetail-shaped wedge blocks are respectively embedded in dovetail-shaped wedge slots in the middle of the frame, one of the two first dovetail-shaped wedge blocks and one of the two second dovetail-shaped wedge blocks are respectively arranged at two sides of one of the lower work roll bearing seats, another of the two first dovetail-shaped wedge blocks and another of the two second dovetail-shaped wedge blocks are respectively arranged at two sides of another of the lower work roll bearing seats, and vertical side surfaces of the two first dovetail-shaped wedge blocks and the two second dovetail-shaped wedge blocks respectively abut against and are parallel to side surfaces of the lower work roll bearing seats.
3. The device with the adjustable offset distance in serpentine rolling for the rolling mill according to claim 1, wherein the telescopic components comprise two telescopic hydraulic cylinders, brackets are fixedly connected to an outer side of the frame, bases of the two telescopic hydraulic cylinders are fixedly connected to pulleys, the pulleys are nested in pulley grooves of the brackets, and the two telescopic hydraulic cylinders are arranged on and perpendicular to the outer side of the frame.
4. The device with the adjustable offset distance in serpentine rolling for the rolling mill according to claim 1, wherein the lifting components comprise two lifting hydraulic cylinders, and the two lifting hydraulic cylinders are fixedly connected to the top of the frame.
5. The device with the adjustable offset distance in serpentine rolling for the rolling mill according to claim 1, wherein the monitoring component comprises a plate camber measuring instrument, and the plate camber measuring instrument is vertically arranged at the rolling exit.
6. A method of the device with the adjustable offset distance in serpentine rolling for the rolling mill according to claim 2, comprising following steps: step 1: synchronously driving the one of the two first dovetail-shaped wedge blocks and the one of the two second dovetail-shaped wedge blocks to move outwards away from or inwards towards the frame through telescopic force of telescopic hydraulic cylinders, so as to drive the lower work roll to move along a rolling direction; forming a predetermined offset displacement between the lower work roll and the upper work roll; forming displacement self-locking between the two first dovetail-shaped wedge blocks and the two second dovetail-shaped wedge blocks and the respective dovetail-shaped wedge slots of the frame, and adjusting the predetermined offset displacement by gradually controlling a telescopic distance of the telescopic hydraulic cylinders; and step 2: equipping a plate camber measuring instrument at the rolling exit to monitor a camber of a plate in real-time, feeding back plate camber data to a server, and adjusting and correcting the predetermined offset displacement through the server by adjusting the telescopic hydraulic cylinders.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] In order to explain the embodiments of the present disclosure or the technical solution in the prior art more clearly, the drawings needed in the embodiments will be briefly introduced below. Apparently, the drawings in the following description are only some embodiments of the present disclosure. For one of ordinary skill in the art, other drawings may be obtained according to these drawings without creative effort:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
DETAILED DESCRIPTION OF THE EMBODIMENTS
[0034] In the following, the technical solutions in the embodiments of the present disclosure will be clearly and completely described with reference to the attached drawings. Apparently, the described embodiments are only a part of the embodiments of the present disclosure, but not all the embodiments. Based on the embodiments in the present disclosure, all other embodiments obtained by one of ordinary skill in the art without creative effort belong to the protection scope of the present disclosure.
[0035] In order to make the above objects, features and advantages of the present disclosure more obvious and easier to understand, the present disclosure will be further described in detail with the attached drawings and specific embodiments.
[0036] With reference to
[0037] In an embodiment, the offset moving components includes four of dovetail-shaped wedge blocks, the dovetail-shaped wedge blocks are respectively nested in the dovetail-shaped wedge slots in the middle of the frame 1, and the vertical surfaces of the dovetail-shaped wedge blocks are parallel to and abut against the side surfaces of the lower work roll bearing seats 8, respectively. The inclined surfaces of the dovetail-shaped wedge blocks respectively mate with the inclined surfaces of dovetail-shaped wedge slots. The dovetail-shaped wedge blocks include two first dovetail-shaped wedge blocks 10 and two second dovetail-shaped wedge blocks 11. A first dovetail-shaped wedge block 10 and a second dovetail-shaped wedge block 11 are respectively located at two sides of one of the lower work roll bearing seats 8. The other first dovetail-shaped wedge block 10 and the other second dovetail-shaped wedge block 11 are respectively located at two sides of the other of the lower work roll bearing seats 8. During sliding, an offset angle is formed between the dovetail-shaped wedge blocks and the dovetail-shaped wedge slots in the middle of the frame 1, and self-locking is formed at the predetermined position, improving the stability of the lower work roll 9.
[0038] In an embodiment, the telescopic components include two telescopic hydraulic cylinders 12. The base of the telescopic hydraulic cylinder 12 is fixedly connected to pulleys 13, and the pulleys 13 are nested in the pulley grooves of the bracket 7. The bottoms of the brackets 7 are fixedly connected to the outer side of the frame 1, and the telescopic hydraulic cylinder 12 is arranged on and perpendicular to the outer side of the frame 1. The output ends of the two telescopic hydraulic cylinders 12 are respectively connected to the first dovetail-shaped wedge block 10 and the second dovetail-shaped wedge block 11 at the same side. The telescopic hydraulic cylinders 12 drives the first dovetail-shaped wedge block 10 and the second dovetail-shaped wedge block 11 to move. The dovetail-shaped wedge blocks are guided through the inclined surfaces of dovetail-shaped wedge slots and slide along the inclined surfaces of dovetail-shaped wedge slots, driving the lower work roll bearing seats 8 to move along the direction perpendicular to the axial direction of the lower work roll 9, so that the lower work roll 9 moves through the lower work roll bearing seats 8, and the offset displacement is formed between the lower work roll 9 and the upper work roll 2. The brackets 7 may prevent offset deviations or personal safety issues caused by improper manual operation during the sliding of the offset moving components, improving operation safety and the accuracy of offset moving. The pulleys 13 produce adaptive sliding in the pulley grooves, preventing damage to the telescopic hydraulic cylinders 12 caused by the force inclined in the rolling direction generated during the internal and external movement of the offset moving component, ensuring that the telescopic hydraulic cylinders 12 are always perpendicular to the outer side of the frame 1, reducing workpiece scrap rates, and extending workpiece service life.
[0039] In an embodiment, the lifting components include two lifting hydraulic cylinders 3, the lifting hydraulic cylinders 3 are fixedly connected to the top of the frame 1. Output ends of the telescopic hydraulic cylinders are respectively connected to the upper work roll bearing seats 6. The lifting hydraulic cylinders 3 extend and contract to control the ascent and descent of the upper work roll bearing seats 6, thereby making the roll gap meet the requirements of the finished metal plate.
[0040] In an embodiment, the monitoring component includes a plate camber measuring instrument 4, the plate camber measuring instrument 4 is vertically arranged at the rolling exit. The plate camber measuring instrument 4 is used to monitor the camber of the metal plate.
[0041] A using method of the device with the adjustable offset distance in serpentine rolling for the rolling mill is provided, as shown in
[0044] Compared with existing rolling devices, the device according to the present disclosure enables arbitrary adjustment of the offset distance on a single rolling mill, meeting the optimal offset displacement parameters required for the rolling of different types, specifications, and processes of dissimilar metal combinations. In the rolling process, strong shear force may be generated between the metal matrix and the interface, achieving the deformation coordination of dissimilar metals and promoting the firm bonding of the interface.
[0045] In the description of the present disclosure, it should be understood that the terms longitudinal, transverse, up, down, front, back, left, right, vertical, horizontal, top, bottom, inside, outside, etc. indicate orientation or positional relationships based on the orientation or positional relationships shown in the accompanying drawings, only for the convenience of describing the present disclosure, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation of the present disclosure.
[0046] The above-mentioned embodiments only describe the preferred mode of the present disclosure, and do not limit the scope of the present disclosure. Under the premise of not departing from the design spirit of the present disclosure, various modifications and improvements made by one of ordinary skill in the art to the technical solution of the present disclosure should fall within the protection scope of the present disclosure.