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两种用于描述AISI - 1045中碳钢在高温下热变形行为的流变应力模型。

Two flow stress models for describing hot deformation behavior of AISI-1045 medium carbon steel at elevated temperatures.

作者信息

Murugesan Mohanraj, Jung Dong Won

机构信息

Department of Mechanical Engineering, Jeju National University, 1, Ara 1(il)-dong, Jeju-si, Jeju-do 63243, South Korea.

出版信息

Heliyon. 2019 Apr 15;5(4):e01347. doi: 10.1016/j.heliyon.2019.e01347. eCollection 2019 Apr.

Abstract

In materials processing, practical understanding of materials behavior at elevated temperatures and high strain rates is necessary for modeling the real system behavior. The tensile deformation behavior of AISI-1045 steel material is investigated at deformation temperatures (923-1223 K) and strain rates (0.05-1.0 s). This paper proposes a detailed research to characterize the material flow behavior based on modified Johnson-Cook (JC) and Zerilli-Armstrong (ZA) models, respectively, as well as the predictability of these two models are discussed. The experimental flow stress-strain data are employed to fit the constitutive equations to estimate the elected model material parameters. To demonstrate the validity and the accuracy of the proposed models, the model adequacies such as coefficient of determination and average absolute relative error are discussed. From the observation made, the authors found that the modified ZA model is more appropriate for predicting the material behavior as the predicted flow stress data and the experimental data displayed better correlation among them. To make this point more concrete, random experiments are conducted to validate the proposed constitutive models and the obtained results also show that the developed modified ZA model exhibits a better relationship with the experimental data. Overall, the proposed research work can be used as an efficient tool in the initial design of numerical model to accurately replicate the experiment in order to save time and cost.

摘要

在材料加工过程中,要对实际系统行为进行建模,就必须切实了解材料在高温和高应变速率下的行为。研究了AISI - 1045钢材料在变形温度(923 - 1223 K)和应变速率(0.05 - 1.0 s⁻¹)下的拉伸变形行为。本文分别基于修正的约翰逊 - 库克(JC)模型和泽里利 - 阿姆斯特朗(ZA)模型,对材料的流动行为进行了详细研究,并讨论了这两种模型的预测能力。利用实验得到的流动应力 - 应变数据来拟合本构方程,以估计所选模型的材料参数。为了验证所提出模型的有效性和准确性,讨论了诸如决定系数和平均绝对相对误差等模型适配度。通过观察,作者发现修正的ZA模型更适合预测材料行为,因为预测的流动应力数据与实验数据之间显示出更好的相关性。为了更具体地说明这一点,进行了随机实验以验证所提出的本构模型,所得结果也表明所开发的修正ZA模型与实验数据具有更好的相关性。总体而言,所提出的研究工作可作为数值模型初始设计中的有效工具,以准确复制实验,从而节省时间和成本。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ee9/6475830/32a8bd6b8169/gr001.jpg

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