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首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Two-Dimensional Multiparticle Finite Element Modeling on the Cold Isostatic Pressing of Al Powder
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Two-Dimensional Multiparticle Finite Element Modeling on the Cold Isostatic Pressing of Al Powder

机译:二维多粒子有限元模拟粉粉冷等静压

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In this article, the cold isostatic pressing (CIP) of Al powders with different initial packing structures was numerically simulated in two dimensions using the multiparticle finite element method from particulate scale. The effects of external pressure and initial packing structures on the packing densification and performance of the compacts were systematically studied. Various macro/micro properties (such as relative density and distribution, local stress and distribution, and particle deformation behavior) and the densification dynamics/mechanisms were characterized and analyzed. Corresponding modeling on die compaction was also conducted for comparison. The results show that the relative displacement of particles is much less and the particle shape is more regular for CIP of ordered initial packing structure than those for CIP of random initial packing structure, and the distributions of relative density and local stress in the compact for the former case are more homogeneous. Compared with die compaction, the formability of CIP is much better; also, the compact has higher relative density and more uniform density and stress distributions. The normal stresses are transmitted in all directions in the compact during CIP because the external load is applied uniformly to the outer surface of the rubber mold from all directions in the entire process, while the normal stresses are directional along the loading path during die compaction. (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:在本文中,使用来自颗粒量表的多粒有限元方法,在两维模拟具有不同初始填充结构的Al膏的冷等静压(CIP)。系统地研究了外部压力和初始包装结构对填充致密化和性能的影响。特征和分析了各种宏/微观性质(例如相对密度和分布,局部应力和分布,颗粒变形行为,致密化动力学/机制。还进行了对相应的模拟造型进行比较。结果表明,颗粒的相对位移较少,颗粒形状更规则地用于依据有序初始填充结构的CIP,以及用于CIP的随机初始填充结构的CIP,以及紧凑的相对密度和局部应力的分布以前的案例更加均匀。与模具压实相比,CIP的可成形性更好;而且,该紧凑的相对密度和更均匀的密度和应力分布具有更高的相对密度和更均匀的密度。在CIP期间,正常应力在紧凑型期间在紧凑的方向上传输,因为外部负载从整个过程中的所有方向均匀地施加到橡胶模具的外表面上,而正常应力在模具压实期间沿着装载路径定向。 (c)2018年矿物质,金属和材料协会和ASM国际

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