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首页> 外文期刊>Metallurgical and Materials Transactions A >Mathematical Modeling of Multipass Hot Deformation of Aluminum Alloy AA5083—Model Development and Validation
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Mathematical Modeling of Multipass Hot Deformation of Aluminum Alloy AA5083—Model Development and Validation

机译:铝合金AA5083多道次热变形的数学建模—模型开发与验证

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摘要

Hot rolling, a critical step in the manufacturing of sheet products, influences the final sheet properties based on the microstructure evolution during this operation. A comprehensive mathematical model of the hot rolling process for aluminum alloys has been developed. This article outlines the development of a two-dimensional (2-D) mathematical model to simulate multipass hot rolling using the commercial finite element (FE) package, ABAQUS. Microstructure evolution during multipass rolling was modeled using a physically based approach to predict the stored energy and the resulting microstructure for an AA5083 aluminum alloy. The stored energy in the material between passes is quantified using a rule-of-mixtures approach based on the fraction of the material that is recrystallized. An extensive experimental program was undertaken to validate the model using Corus’ single-stand reversible rolling facility located in IJmuiden, The Netherlands. Overall, the model was able to simulate the thermomechanical history experienced during multipass hot rolling reasonably well based on comparison to temperature and rolling load measurements. The model was also able to predict the fraction recrystallized through the thickness of the strip reasonably well, but the grain size predictions were consistently low.
机译:热轧是片材产品制造中的关键步骤,它基于此操作过程中的微观结构演变影响最终的片材性能。已经开发了铝合金热轧过程的综合数学模型。本文概述了使用商业有限元(FE)软件包ABAQUS来模拟多道次热轧的二维(2-D)数学模型的开发。使用基于物理的方法对多道次轧制过程中的组织演变进行建模,以预测AA5083铝合金的储能和所得组织。基于再结晶的材料的比例,使用混合规则方法量化了道次之间材料中存储的能量。使用位于荷兰IJmuiden的Corus单机架可逆轧制设备进行了广泛的实验程序,以验证模型。总体而言,基于与温度和轧制载荷测量值的比较,该模型能够较好地模拟多道次热轧过程中经历的热机械历史。该模型还能够很好地预测通过带钢厚度再结晶的份额,但晶粒尺寸的预测始终很低。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2007年第4期|922-935|共14页
  • 作者单位

    University of British Columbia Vancouver BC Canada V6T 1Z4;

    Advanced Materials ampamp Process Engineering Laboratory University of British Columbia Vancouver BC Canada V6T 1Z4;

    Advanced Materials ampamp Process Engineering Laboratory University of British Columbia Vancouver BC Canada V6T 1Z4;

    Advanced Materials ampamp Process Engineering Laboratory University of British Columbia Vancouver BC Canada V6T 1Z4;

    Corus RDampampT IJmuiden Technical Centre 1970 CA IJmuiden The Netherlands;

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