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首页> 外文期刊>International Journal of Plasticity >Predicting forming limit diagrams for magnesium alloys using crystal plasticity finite elements
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Predicting forming limit diagrams for magnesium alloys using crystal plasticity finite elements

机译:使用晶体塑性有限元预测镁合金的形成极限图

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摘要

The crystal plasticity finite element (CPFE) method was used to predict forming limit strains of hexagonal close-packed (HCP) polycrystalline magnesium alloy sheets, namely AZ31 and ZE10, under an isothermal temperature condition. The strain rate-dependent uniaxial tensile test data along various loading directions and an initial texture were used to determine the constitutive parameters of the crystal plasticity model. A hybrid representative volume element approach, which combines the CPFE and the Marciniak-Kuczynski model, was developed to obtain the forming limit diagram of the magnesium alloys. The predicted forming limits were in excellent agreement with the Nakazima test results. Moreover, the microscopic responses such as slip/twin activation and deformation texture changes during various loading paths from uniaxial tension to the balanced biaxial tension were comprehensively analyzed and discussed from the CPFE results to understand the underlying micro-mechanism for the macro-mechanical responses.
机译:在等温温度条件下,使用晶体塑性有限元(CPFE)方法预测六方封装(HCP)多晶镁合金片,即AZ31和ZE10的形成限位菌株。沿各种装载方向和初始纹理的应变率依赖性单轴拉伸试验数据用于确定晶体塑性模型的组成型参数。开发了一种结合CPFE和Marciniak-Kuczynski模型的混合代表体积元件方法,以获得镁合金的形成极限图。预测的形成限制与Nakazima测试结果非常一致。此外,从单轴张力到平衡双轴张力的各种负载路径期间的显微响应如滑移/双激活和变形纹理改变,并从CPFE结果中讨论并讨论了宏观机械反应的潜在微机制。

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