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Comparisons of Constitutive Models for Steel Over a Wide Range of Temperatures and Strain Rates

机译:宽温度和应变率钢本构模型的比较

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This study investigates and compares several available plasticity models used to describe the thermomechanical behavior of structural steel subjected to complex loadings. The main purpose of this comparison is to select a proper constitutive model that can later be implemented into a finite element code to capture localizations (e.g., shear bands and necking) in steel and steel structures subjected to low- and high-velocity impact. Four well-known constitutive models for viscoplastic deformation of metals, i.e., Johnson-Cook (JC), Zerilli-Armstrong (ZA), Rusinek-Klepaczko (RK), and Voyiadjis-Abed (VA), have been investigated and compared with reference to existing deformation data of HSLA-65 and DH-36 steel conducted at low and high strain rates and various initial temperatures. The JC, ZA, and RK models reasonably describe the flow stress and the strain hardening behavior only in the certain ranges of strain, strain rate, and temperature for which the models were developed. This was attributed to the inaccurate assumptions used in developing these models. In contrast, the VA model most effectively describes the flow stress and strain hardening in which very good predictions are observed for the constitutive behavior of high strength steel over a wide range of strains, strain rates, and temperatures.
机译:这项研究调查并比较了几种可用的可塑性模型,这些模型用于描述承受复杂载荷的结构钢的热机械行为。这种比较的主要目的是选择一个适当的本构模型,以后可以将其实施为有限元代码,以捕获受到低速和高速冲击的钢和钢结构中的局部化(例如,剪切带和颈缩)。研究了四种著名的金属粘塑性变形本构模型,分别是Johnson-Cook(JC),Zerilli-Armstrong(ZA),Rusinek-Klepaczko(RK)和Voyiadjis-Abed(VA)。根据在低应变率和高应变率以及各种初始温度下进行的HSLA-65和DH-36钢的现有变形数据。 JC,ZA和RK模型仅在开发模型的特定应变,应变速率和温度范围内合理地描述了流动应力和应变硬化行为。这归因于在开发这些模型中使用的不正确的假设。相比之下,VA模型最有效地描述了流变应力和应变硬化,在其中,可以很好地预测高强度钢在各种应变,应变率和温度范围内的本构行为。

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