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Constitutive Modeling for Tensile Behaviors of Ultra-high-strength-steel BR1500HS at Different Temperatures and Strain Rates

机译:不同温度和应变速率下超高强度钢BR1500HS拉伸行为的本构模型

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摘要

In order to investigate the tensile deformation behavior of ultra-high-strength-steel BR1500HS, a series of isothermal tensile experiments were carried out in a temperature range of 1023~1123 K and a strain rate range of 0.01~10 s~(-1) on a Gleeble-3500 thermo-mechanical simulator. The results indicate that the flow stress initially increases to a peak value and then decreases gradually to a steady state. Based on the analysis of the effect of strain, temperature and strain rate on flow stress, dynamic re-crystallization (DRX) type softening characteristics of the stress-strain curve with single peak were identified. The flow stress level decreases with increasing temperature and decreasing strain rate. By regression analysis for Arrhenius type equation, the hot deformation activation energy Q and material constants (n, α, β and A) were calculated. Further, the Arrhenius-type constitutive equation of flow stress was developed by considering the effect of strain on the variable coefficients (including activation energy Q, material constants n, α, and A). The validity of the developed constitutive equation incorporating the influence of strain was evaluated through comparing the experimental and predicted data. Furthermore, the predictability of the developed model was also evaluated using two standard statistical parameters, correlation coefficient (R) and average absolute relative error (AARE). And lvalue and AARE-value for the model are 0.997 and 4.06% respectively, which indicates that the developed model can precisely estimate the flow behavior for BR1500HS alloy throughout the entire temperature and strain rate range.
机译:为了研究超高强度钢BR1500HS的拉伸变形行为,在1023〜1123 K的温度范围和0.01〜10 s〜(-1)的应变速率范围内进行了一系列等温拉伸试验。 )在Gleeble-3500热机械模拟器上。结果表明,流变应力首先增大到峰值,然后逐渐减小到稳态。在分析应变,温度和应变速率对流动应力的影响的基础上,确定了具有单峰的应力-应变曲线的动态重结晶(DRX)型软化特性。流动应力水平随温度升高和应变率降低而降低。通过对Arrhenius型方程的回归分析,计算出热变形活化能Q和材料常数(n,α,β和A)。此外,通过考虑应变对可变系数(包括活化能Q,材料常数n,α和A)的影响,建立了Arrhenius型流动应力本构方程。通过比较实验数据和预测数据,评估了包含应变影响的本构方程的有效性。此外,还使用两个标准统计参数(相关系数(R)和平均绝对相对误差(AARE))评估了开发模型的可预测性。模型的l值和AARE值分别为0.997和4.06%,这表明所开发的模型可以精确估计BR1500HS合金在整个温度和应变率范围内的流动行为。

著录项

  • 来源
    《High temperature materials and processes》 |2015年第5期|407-416|共10页
  • 作者单位

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

    School of Material Science and Engineering, Chongqing University, Chongqing 400044, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ultra-high-strength-steel BR1500HS; flow stress; constitutive equation; material constants; micro-structure evolution;

    机译:超高强度钢BR1500HS;流应力本构方程材料常数;微观结构演变;

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