Elastic Properties, Yield Surface and Flow Rule of Nanopowder Compacts

G. Boltachev, E. Chingina, N. Volkov, K. Lukyashin
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Abstract

Different compaction processes of the nanosized granular system, which is a prototype of an alumina nanopowder, are studied by the granular dynamics method. For all processes: compaction curves ''density vs. pressure'' of the powder compact are calculated, the elastic and the plastic parts are extracted from the total deformation, the body elastic moduli are determined within the isotropic solid approximation. The inadequacy of the isotropy approximation is established. The nanopowder yield surface is constructed in the space of stress tensor invariants. The inapplicability of the traditional associated flow rule for description of oxide nanopowders compaction processes is revealed. An alternative flow rule is suggested.
纳米粉末压块的弹性性能、屈服面及流动规律
采用颗粒动力学方法研究了纳米氧化铝粉体原型材料纳米颗粒体系的不同压实过程。对于所有的过程:压实曲线“密度与压力”的粉末压实计算,从总变形中提取弹性和塑性部分,在各向同性固体近似内确定体弹性模量。确定了各向同性近似的不完备性。在应力张量不变量空间中构造纳米粉末屈服面。揭示了传统关联流规则在描述氧化物纳米粉体压实过程中的不适用性。提出了另一种流规则。
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