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Solidification Microstructure Evolution Modeling in Nb-Si Based Intermetallics- Strengthened-Metal-Matrix Composites

机译:基于Nb-Si的金属间化学 - 强化金属 - 基质复合材料的凝固微观结构演化建模

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For higher fuel efficiency and greater thrust to weight ratios, there is a continuous drive for higher performance turbine engine components. Nb-silicide intermetallics, owing to their high melting point and high-temperature strength, are potential candidates for high temperature applications. These intermetallics when precipitated in the metal matrix of a (Nb) solid solution, result in intermetallic-strengthened metal matrix composites that have a good combination of room temperature toughness and high temperature strength. The microstructures of these in-situ composites can be complex and vary significantly with the addition of elements such as Ti and Hf. Hence an improved understanding of phase stability and the microstructural evolution of these alloys is essential for alloy optimization. In the present paper we describe binary alloy microstructural evolution modeling of dendritic and eutectic solidification obtained using phase-field simulations. The effect of parameters such as heat extraction rate, the ratio of the diffusivity of the solute in liquid to solid, and the liquid-solid interfacial energy, on microstructural evolution during solidification is discussed in detail.
机译:为了更高的燃料效率和更高的重量比率,具有更高的性能涡轮发动机部件的连续驱动。由于其高熔点和高温强度,Nb-硅化物金属间金属间金属间金属间金属间金属间金属间金属间金属间金属间金属化合物是高温应用的潜在候选者。这些金属间质量在(Nb)固溶体的金属基质中沉淀时,导致金属间基质复合材料具有良好的室温韧性和高温强度。这些原位复合材料的微观结构可以复杂并且随着加入诸如Ti和Hf的元素而显着变化。因此,改善了对相稳定性的理解和这些合金的微观结构演化对于合金优化是必不可少的。在本文中,我们描述了使用相场模拟获得的树突和共晶凝固的二元合金微观结构演化建模。详细讨论了诸如热提取率,溶液中溶液的扩散率与固体液体 - 固体界面能量的效果,以及液体固体界面能量的效果。

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