SNCM8合金钢热变形行为的研究

N. Jantepa, S. Suranuntchai
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引用次数: 1

摘要

通过在850˚C至1200˚C的温度范围和0.01 s−1至10 s−1的应变速率下进行热压缩试验,研究了SNCM8钢的塑性流动行为。建立了基于动态再结晶的本构模型,其中Cingara方程用于表示达到峰值应力的加工硬化,Avrami方程用于描述超过峰值应力直至稳态的动态软化。研究发现,组合模型预测的应力-应变响应与特定条件下的实验结果曲线相当一致。模型流量曲线的相关系数(R)为0.9485,平均绝对相对误差(AARE)为2.3614%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of Hot Deformation Behavior of SNCM8 Alloy Steel
Plastic flow behavior of the SNCM8 steel was investigated by performing hot compression tests within the temperature range of 850˚C to 1200˚C and strain rates of 0.01 s−1 to 10 s−1. Constitutive modeling based on dynamic recrystallization was established, in which Cingara equation was applied to represent work hardening up to peak stress and Avrami equation to describe dynamic softening beyond peak stress up to steady state. It was found that stress-strain responses predicted by the combined model fairly agreed with experimentally resulted curves for the particular conditions. The correlation coefficient (R) of 0.9485 and average absolute relative error (AARE) of 2.3614% was calculated for the modeled flow curves.
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来源期刊
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