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Regression Method of Determining Generalized Description of Flow Curve of Steel under Dynamic Recrystallization

机译:动态再结晶下确定钢流动曲线一般描述的回归方法

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摘要

A regression method of obtaining a generalized description of a flow curve is proposed in this paper. The flow curve of a metal at a constant temperature and a constant strain rate is precisely obtained by an inverse analysis of hot compression. To eliminate the error in the flow curve induced by the inhomogeneous distribution of temperature in the test piece, an electromagnetic analysis of induction heating is performed with thermal analysis throughout the heating and hot compression of a test piece. The coefficients embedded in the flow curve are determined by the inverse analysis associated with thermomechanical FE (Finite Element) analysis. The obtained coefficients, which cover wide ranges of hot-forming temperature and high strain rate, are regressed using the proposed regression method, and a generalized flow curve for a C-Si-Mn steel is obtained. Although the proposed regression method is demonstrated for only one type of C-Si-Mn steel, it could also be used to obtain a generalized description of a flow curve for other types of steel under dynamic recrystallization, which could be used to estimate the force characteristics of hot metals in bulk forming processes, such as forging and rolling.
机译:提出了一种获得流量曲线广义描述的回归方法。通过对热压缩进行逆分析,可以精确地得出金属在恒定温度和恒定应变速率下的流动曲线。为了消除由试件中温度不均匀分布引起的流动曲线中的误差,在试件的整个加热和热压缩过程中都要进行感应加热的电磁分析和热分析。通过与热机械FE(有限元)分析相关的逆分析来确定嵌入在流量曲线中的系数。使用提出的回归方法对获得的,涵盖了大范围的热成形温度和高应变速率的系数进行回归,并获得了C-Si-Mn钢的广义流动曲线。尽管仅针对一种类型的C-Si-Mn钢演示了所建议的回归方法,但该方法也可用于获得动态再结晶条件下其他类型钢的流动曲线的一般描述,从而可用于估算力大块成形过程(例如锻造和轧制)中铁水的特性。

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