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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Finite element modeling for deep-drawing of aluminum alloy sheet 6014-T4 using anisotropic yield and non-AFR models
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Finite element modeling for deep-drawing of aluminum alloy sheet 6014-T4 using anisotropic yield and non-AFR models

机译:使用各向异性产量和非AFR模型对铝合金片材6014-T4深拉的有限元模拟

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摘要

The predictive capability of a non-associated flow rule (non-AFR) for the strong plastic anisotropy was assessed. Based on Hill's 48 function, a constitutive model under a non-AFR was established for aluminum alloy 6014-T4 sheet, in which the plastic potential function and the yield function were identified by Lankford coefficients (r-values) and yield stresses, respectively. Two constitutive models applying Hill's 48 and Yld2000 functions under the AFR were also established for the comparison with the non-AFR Hill's 48 model. These constitutive models were numerically carried out on Abaqus/Explicit by user subroutine (VUMAT). The representational ability of constitutive models was assessed in terms of the predictions on yield stresses and r-values. To further verify the simulated results, deep-drawing experiments of a cylindrical cup and a seat pan were performed. Simulation results were compared with the experiments from the aspects of the forming force, the earing profile, and the measured strain field using ex situ 3D DIC (Digital Image Correlation). Comparison results showed that non-AFR Hill's 48 model gives the best overall prediction performance and requires less effort than the AFR Yld2000 model, indicating the effectiveness and superiority of non-AFR.
机译:评估了强塑性各向异性的非相关流量规则(非AFR)的预测能力。基于Hill的48功能,为铝合金6014-T4片建立了非AFR下的本构体型模型,其中通过Lankford系数(R值)鉴定了塑料电位功能和产量功能,并分别屈服应力。还建立了应用山48和YLD2000功能的两个本构模型,以与非AFR Hill的48型号的比较建立。这些本构模型由用户子程序(VUMAT)的ABAQUS /显式进行数值上进行。根据屈服应力和R值的预测评估了本构模型的代表性能力。为了进一步验证模拟结果,进行圆柱形杯和座板的深图实验。将仿真结果与来自成形力,耳廓曲线和测量的应变场的实验进行比较,使用EX原位3D DIC(数字图像相关)。比较结果表明,非AFR Hill的48型号提供了最佳的整体预测性能,并且需要比AFR YLD2000模型更少的努力,表明非AFR的有效性和优越性。

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