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Constitutive description for casting magnesium alloy involving void evolution

Constitutive description for casting magnesium alloy involving void evolution
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摘要 In order to investigate the effect of microvoids on the mechanical behavior of casting magnesium alloy,a spherical void-cell model of the material was presented.The velocity and strain fields of the model were obtained from the assumption that the material matrix is homogeneous and incompressible.The hardening and softening functions,which respectively reflect the deformation-hardening and void-softening behaviors of the material,were presented and introduced to an endochronic constitutive equation for describing the mechanical behavior of the material including microvoids.The corresponding numerical algorithm and finite element procedure were developed and applied to the analyses of the elastoplastic response and the porosity of casting magnesium alloy ZL102.The computed results show satisfactory agreement with experimental data. In order to investigate the effect of microvoids on the mechanical behavior of casting magnesium alloy,a spherical void-cell model of the material was presented.The velocity and strain fields of the model were obtained from the assumption that the material matrix is homogeneous and incompressible.The hardening and softening functions,which respectively reflect the deformation-hardening and void-softening behaviors of the material,were presented and introduced to an endochronic constitutive equation for describing the mechanical behavior of the material including microvoids.The corresponding numerical algorithm and finite element procedure were developed and applied to the analyses of the elastoplastic response and the porosity of casting magnesium alloy ZL102.The computed results show satisfactory agreement with experimental data.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第B07期467-470,共4页 中国有色金属学报(英文版)
基金 Project(10872221)supported by the National Natural Science Foundation of China
关键词 铸造镁合金 ZL102合金 力学行为 材料模型 内时本构方程 软化材料 弹塑性响应 有限元程序 casting magnesium alloy spherical void void volume fraction elastoplasticity constitutive model
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参考文献16

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