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Densifieation Modeling of Titanium Alloy Powder during Hot Isostatic Pressing

机译:等静压过程中钛合金粉末的致密化模拟

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摘要

Densification model of titanium alloy (TI-6AI-4V) are investigated during hot isostatic pressing (Hip). Experimental data was obtained at various pressures and temperatures during hot isostatic pressing (Hip). Experimental data are compared with the finite element calculations by using the hybrid model and Abouaf model, respectively. The results show that the finite element calculation reslults by the hybrid model are in agreement with the experimental data for densification behaviour of the titanium alloy powder under Hip; however, the finite element calculation results by using the Abouaf model are over the experimental data. In addition, in order to obtaining relative density distributions of porous body, the statistical relationships during Poisson 's ratio, Rockwell hardness and the relative density of porous body were formulated, the results show that the statistical relationship between Poisson's ratio and the relative density of porous body is essential to construct such a constitutive model; the statistical relationship between Rockwell hardness and the relative density of porous body is essential to obtain relative density distributions of porous body.
机译:研究了热等静压(Hip)过程中钛合金(TI-6AI-4V)的致密化模型。在热等静压(Hip)期间,在各种压力和温度下获得了实验数据。分别使用混合模型和Abouaf模型将实验数据与有限元计算进行了比较。结果表明,混合模型的有限元计算结果与Hip下钛合金粉末的致密化实验数据吻合。但是,使用Abouaf模型进行的有限元计算结果超出了实验数据。此外,为了获得多孔体的相对密度分布,建立了泊松比,洛氏硬度和多孔体相对密度之间的统计关系,结果表明泊松比与相对密度之间的统计关系。多孔体对于构建这样的本构模型至关重要。洛氏硬度与多孔体相对密度之间的统计关系对于获得多孔体的相对密度分布至关重要。

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