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Hot deformation behavior and constitutive modeling of VCN200 low alloy steel

机译:VCN200低合金钢的热变形行为和本构模型

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The hot working behavior of VCN200 medium carbon low alloy steel was analyzed by performing hot compression tests in temperature range of 850-1150 ℃ and at strain rates of 0.001-1 s~(-1). Flow curves were typical of dynamic recrystallization during hot working over temperature range of 900-1150 ℃ and strain rates of 0.001 -1 s~(-1). However, at lower temperatures no indication of flow softening was observed. The constitutive analysis using the hyperbolic sine function was performed and the value of apparent activation energy for the hot deformation determined to be about 435 kJ/mol. The flow curves up to the peak were successfully modeled using a dynamic recovery model. All the factors in this model were defined in terms of the Zener-Hollomon parameter. A modified form of Avrami equation was used to estimate the fractional softening due to the dynamic recrystallization for any given strain in flow curve. Using this model, the flow curves were successfully predicted and generalized to different deformation conditions.
机译:通过在850-1150℃的温度范围和0.001-1 s〜(-1)的应变速率下进行热压缩试验,分析了VCN200中碳低合金钢的热加工行为。在900-1150℃温度范围内热加工过程中动态再结晶的流动曲线是典型的,应变率为0.001 -1 s〜(-1)。然而,在较低的温度下没有观察到流动软化的迹象。进行了使用双曲正弦函数的本构分析,热变形的表观活化能值约为435 kJ / mol。使用动态恢复模型成功建模了直至峰值的流量曲线。该模型中的所有因素均根据齐纳-所罗门参数定义。使用修正形式的Avrami方程来估算流动曲线中任何给定应变的动态再结晶引起的分数软化。使用该模型,可以成功地预测流动曲线并将其推广到不同的变形条件。

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