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Discrete Element Modeling of Intermetallic Matrix Composite Manufacturing by Powder Metallurgy

机译:粉末冶金金属间化合物复合材料制造的离散元建模

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摘要

This paper presents a numerical and experimental analysis of manufacturing of intermetallic ceramic composites by powder metallurgy techniques. The scope of the paper includes the formulation and development of an original numerical model of powder metallurgy of two-phase material within the framework of the discrete element method, simulations of powder metallurgy processes for different combinations of process parameters, and a verification of the numerical model based on own experimental results. Intermetallic-based composite NiAl–Al2O3 has been selected as representative material for experimental and numerical studies in this investigation. Special emphasis was given to the interactions between the intermetallic and ceramic particles by formulating the special model for adhesive contact bond. In order to properly represent a real microstructure of a two-phase sintered body, a discrete element specimen was generated using a special algorithm. Numerical validation showed the correct numerical representation of a sintered two-phase composite specimen. Finally, micromechanical analysis was performed to explain the macroscopic behavior of the sintered sample. The evolution of the coordination number, a number of equilibrium contacts, and the distribution of the cohesive neck size with respect to time are presented.
机译:本文介绍了通过粉末冶金技术制造金属间陶瓷复合材料的数值和实验分析。本文的范围包括在离散元素法的框架内制定和开发两相材料粉末冶金的原始数值模型,针对工艺参数不同组合的粉末冶金过程模拟以及数值验证基于自己的实验结果的模型。基于金属间化合物的复合NiAl–Al <数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ mm1”溢出=“ scroll”> 2 O 3 作为实验的代表性材料和数值研究。通过制定粘合剂接触结合的特殊模型,特别强调了金属间和陶瓷颗粒之间的相互作用。为了正确表示两相烧结体的真实微观结构,使用特殊算法生成了离散元素样本。数值验证显示了烧结两相复合材料试样的正确数值表示。最后,进行了微机械分析以解释烧结样品的宏观行为。给出了配位数的演变,平衡接触的数量以及内聚颈尺寸相对于时间的分布。

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