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MODELING LARGE STRAIN, HIGH RATE DEFORMATION IN METALS

机译:造型大应变,金属高速率变形

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The large strain deformation response of 6061-T6 and Ti-6Al-4V has been evaluated over a range in strain rates from 10~(-4)s~(-1) to over 10~4s~(-1). The results have been used to critically evaluate the strength and damage components of the Johnson-Cook (JC) material model. A new model that addresses the shortcomings of the JC model was then developed and evaluated. The model is derived from the rate equations that represent deformation mechanisms active during moderate and high rate loading. Another model that accounts for the influence of void formation on yield and flow behavior of a ductile metal (the Gurson model) was also evaluated. The characteristics and predictive capabilities of these models are reviewed.
机译:6061-T6和Ti-6AL-4V的大应变变形响应已经在10〜(4)S〜(-1)至超过10〜4s〜(-1)的范围内。结果已被用于批判性地评估约翰逊厨师(JC)材料模型的强度和损伤部件。然后开发并评估解决JC模型缺点的新模型。该模型来自表示在中等和高速率负载期间激活的变形机制的速率方程。还评估了对空隙形成对延性金属的产量和流动性的影响的另一种模型,也得到了评价延性金属(Gurson模型)。综述了这些模型的特征和预测能力。

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