Approach to evaluate the rolling mill capacity in a plate rolling process

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초록

This study presents an approach to evaluating the rolling mill capacity from the viewpoints of productivity and revamping cost when a plate mill is upgraded. In this light, a concept is proposed of a 'characteristic length', defined as the ratio of the design torque of the drive motor over the design force of the rolling equipment (structure of the rolling mill). A draft schedule algorithm for the plate rolling process is also presented, which consists of a force-thickness relation at each pass, and a roll force and torque prediction model. Using the draft schedule algorithm linked with the characteristic length, a series of plate rolling analyses was performed to examine the productivity of a plate mill while varying: (i) the design force of the rolling equipment; (ii) the design torque of the drive motor; (iii) both its design force and torque; and (iv) the strength of the slab. In addition, as a practical example, the proposed approach has been applied to three actual plate mills in Korea, China, and Russia. The results reveal that upgrading the design torque is the most efficient method from the viewpoint of productivity and revamping cost. It was also found that a critical characteristic length exists in which productivity cannot be increased any further, even though the rolling mill capacity has been upgraded further. Hence, this critical characteristic length can be used as an index to avoid the overcapacity problem of a plate mill when it is revamped.

키워드

revamping; characteristic length; design force; design torque; productivity; plate mill; SYSTEM
제목
Approach to evaluate the rolling mill capacity in a plate rolling process
저자
Moon, C-H; Lee, Y.
DOI
10.1243/09544054JEM1957
발행일
2010-12
유형
Article
저널명
Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture
권
224
호
B12
페이지
1831 ~ 1840