中国机械工程 ›› 2023, Vol. 34 ›› Issue (19): 2381-2393.DOI: 10.3969/j.issn.1004-132X.2023.19.013

• 工程前沿 • 上一篇    下一篇

精确预测近平面应变载荷下各向异性行为的屈服准则参数识别策略

都凯1;任彦强1;侯勇2;李小强3;陈帅峰4;孙亮1;左晓姣1;袁晓光1   

  1. 1.沈阳工业大学材料科学与工程学院,沈阳,110870
    2.首尔国立大学材料科学与工程学院,首尔,08826
    3.北京航空航天大学机械工程及自动化学院,北京,100191
    4.中国科学院金属研究所师昌绪先进材料创新中心,沈阳,110016
  • 出版日期:2023-10-10 发布日期:2023-11-02
  • 通讯作者: 左晓姣(通信作者),女,1985年生,副教授。研究方向为金属材料使役行为。E-mail:kz_candy@163.com。
  • 作者简介:都凯,男,1992年生,讲师。研究方向为板材成形理论与加工技术。E-mail:dukai@sut.edu.cn。
  • 基金资助:
    国家自然科学基金青年科学基金(52305396);辽宁省博士科研启动基金(2023-BS-125);宝马集团中国学院英才发展计划。

Parameter Identification Strategy of Yield Criterion for Accurately Predicting Anisotropic Behaviors under Near Plane Strain Loading

DU Kai1;REN Yanqiang1;HOU Yong2;LI Xiaoqiang3;CHEN Shuaifeng4;SUN Liang1;ZUO Xiaojiao1;YUAN Xiaoguang1   

  1. 1.School of Materials Science and Engineering,Shenyang University of Technology,Shenyang,110870
    2.Department of Materials Science and Engineering & RIAM,Seoul National University,Seoul,08826
    3.School of Mechanical Engineering and Automation,Beihang University,Beijing,100191
    4.Shi-changxu Innovation Center for Advanced Materials,Institute of Metal Research,Chinese 
    Academy of Sciences,Shenyang,110016
  • Online:2023-10-10 Published:2023-11-02

摘要: 随着现代汽车工业对冲压零部件成形精度要求的不断提高,描述商用汽车板材变形行为的模型的精度也必须相应提高。在此背景下,结合当前工业级实验室检测能力,提出一种基于单轴拉伸、等双轴拉伸和近平面应变数据标定先进各向异性屈服准则的参数识别策略。将新提出的校准方法应用于BBC2008屈服准则并与其他几种屈服准则(包括工业界广泛使用的Hill48和Barlat89,以及与BBC2008灵活性相当的Yld2004-18p、Yld2011-27p、Yoshida2013和Poly4*Hosford)进行比较。通过定量评估MP980和SPCE钢以及5182-O和A6XXX-T4铝合金的法平面屈服轨迹、对角线平面剪切屈服轨迹、等双轴和单轴拉伸屈服应力与塑性应变比的预测误差,验证了新参数识别策略的有效性和适用性。结果表明,新方法能够全面提升塑性各向异性方面的描述能力,尤其是对于对角线平面剪切屈服轨迹。不同屈服准则对商用汽车板材各向异性行为的描述能力表现出非常大的差异性。特别地,在使用相同力学性能数据校准屈服准则的前提下,释放指数的潜在调节能力比增加材料参数的数量更加重要。

关键词: 商用汽车板材, 塑性各向异性, 参数识别策略, 近平面应变载荷, 关联流动法则

Abstract:  With the increasing demands for forming accuracy of stamped parts in the modern automobile industries, the accuracy of models describing the deformation behavior of commercial sheet metals should be improved accordingly. In the context, a parameter identification strategy was proposed based upon uniaxial tension, equi-biaxial tension, and near-plane strain data to calibrate advanced anisotropic yield criteria, combined with current industrial laboratory testing capabilities. The newly proposed calibration method was applied to the BBC2008 yield criterion and compared with several other yield criteria, including the widely used Hill48 and Balat89 in the industry, as well as Yld2004-18p, Yld2011-27p, Yoshida2013, and Poly4*Hosford, which had similar flexibility to BBC2008. The effectiveness and applicability of the new parameter identification strategy were verified by quantitatively evaluating the predicted errors of the yield loci in the normal and diagonal planes, equi-biaxial and uniaxial tensile yield stresses, and plastic strain rations for MP980 and SPCE steels, as well as 5182-O and A6XXX-T4 aluminum alloys. The results show that the new method may comprehensively improve the ability to describe plastic anisotropy, especially for diagonal plane shear yield loci. There are significant differences in the ability of different yield criteria to describe the anisotropic behavior of commercial sheet metals. In particular, under the premise of calibrating yield criteria with the same mechanics properties data, releasing the potential adjustment ability of the exponent is more important than increasing the number of material parameters. 

Key words: commercial automobile sheet metal, plastic anisotropy, parameter identification strategy, near plane strain loading, associated flow rule

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