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A novel approach for determining material constitutive parameters for a wide range of triaxiality under plane strain loading conditions

机译:确定平面应变载荷条件下大范围三轴材料本构参数的新方法

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摘要

This paper focuses on material constitutive models for plane strain applications such as orthogonal cutting. It presents a novel approach to determine the material model parameters which utilizes a new, adjustable stress state specimen, Digital Image Correlation (DIC) measurements, and an inverse method for parameter identification. The proposed double-notched specimen is purposely designed to allow the identification of damage and fracture parameters for the plane strain condition. The corresponding equivalent plastic strains at different stages of deformation and damage were calculated from DIC measurements. The elastic modulus and yield surface were obtained using a numerical optimization based inverse method. Ultimately, the fracture locus was obtained and the parameters in the Rice and the reduced form of the Johnson Cook (JC) damage models were identified. The model validation is also provided.
机译:本文关注于平面应变应用(例如正交切削)的材料本构模型。它提出了一种确定材料模型参数的新颖方法,该方法利用了新的可调应力状态试样,数字图像相关性(DIC)测量以及用于参数识别的逆方法。所提出的双缺口试样是专门设计用于允许识别平面应变条件下的损伤和断裂参数。由DIC测量计算出在变形和破坏的不同阶段的相应的等效塑性应变。使用基于数值优化的逆方法获得弹性模量和屈服面。最终,获得了断裂轨迹,并确定了莱斯和约翰逊·库克(JC)损伤模型的简化形式中的参数。还提供了模型验证。

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