Parametric Study of Reactive Melt Infiltration

E. Nelson, P. Colella
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引用次数: 15

Abstract

Reactive melt infiltration is viewed as a promising means of achieving near-net shape manufacturing with quick processing time and at low cost. Since the reactants and products are, in general, of varying density, overall conservation of mass dictates that there is a force related to chemical conversion which can directly influence infiltration behavior. In effect, the driving pressure forces may compete with the forces from chemical conversion, affecting the advancement of the front. We have developed a two-dimensional numerical code to examine these effects, using reaction-formed silicon carbide as a model system for this process. We have examined a range of initial porosities, pore radii, and reaction rates in order to investigate their effects on infiltration dynamics.
反应熔体渗透的参数化研究
反应熔体渗透被认为是实现近净形状制造的一种有前途的方法,具有快速的加工时间和低成本。由于反应物和生成物通常具有不同的密度,总体质量守恒定律表明存在一种与化学转化有关的力,这种力可以直接影响渗透行为。实际上,驱动压力可能与化学转化的力量竞争,影响锋面的推进。我们已经开发了一个二维数值代码来检查这些影响,使用反应形成的碳化硅作为这个过程的模型系统。我们研究了一系列初始孔隙率、孔隙半径和反应速率,以研究它们对渗透动力学的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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