APPLICATION OF EXPLICIT-IMPLICIT CO-SIMULATION TECHNIQES INto THE ROLL PASS DESIGN OF CHANNELS WITH LARGE DEFORMATIONS

M. Dziedzic, S. Turczyn
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Abstract

The practical aim of the following study was to develop a new roll pass design (RPD) of the channels (UPN) and introduce it into industrial rolling. The necessity of usage of a charge stock with a greater cross section has caused necessity of an application of the new rolling schedule characterized by large deformations. The investigations are based on an explicit–implicit co-simulation techniques applied in the ABAQUS commercial code. A complete production line containing all passes for forming the section including break-down, intermediate and finishing sequences are modelled. The data of exit section from subsequent pass is imported as the entering material for the next pass. The series of the plastometric tests were performed to obtain characteristic data of the rolled steel, which were required for the subsequent computer calculations. The metal flow in the roll grooves in each stand, separation force and roll torque in each pass are also calculated. It can be concluded that the explicit–implicit co-simulation techniques used in the analysis are an efficient and accurate enough application for the roll pass design of the steel sections.
显式-隐式联合模拟技术在大变形通道滚道设计中的应用
以下研究的实际目的是开发一种新的辊道设计(RPD)的通道(UPN),并将其引入工业轧制。由于必须使用大截面的装料,因此必须采用以大变形为特征的新轧制规程。该研究基于ABAQUS商业代码中应用的显式-隐式联合仿真技术。一个完整的生产线包含所有的通道形成部分,包括分解,中间和精加工序列建模。从后续通道的出口段的数据被导入作为下一个通道的输入材料。进行了一系列塑性试验,以获得轧制钢的特征数据,这些数据为随后的计算机计算所必需。计算了各机架轧辊槽内的金属流动、各道次的分离力和轧辊扭矩。结果表明,采用显式-隐式联合模拟技术对型钢轧辊孔型设计是一种有效而准确的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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