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Ultrahigh-Temperature Nb-Silicide-Based Composites

机译:超高温Nb硅化物基复合材料

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This article reviews the most recent progress in the development of Nb-silicide-based in situ composites for potential applications in turbine engines with service temperatures of up to 1350℃. These composites contain high-strength Nb siiicides that are toughened by a ductile Nb solid solution. Preliminary composites were derived from binary Nb-Si alloys, while more recent systems are complex and are alloyed with Ti, Hf, W, B, Ge, Cr, and Al. Alloying schemes have been developed to achieve an excellent balance of room-temperature toughness, fatigue-crack-growth behavior, high-temperature creep performance, and oxidation resistance over a broad range of temperatures. Nb-silicide-based composites are described with emphasis on processing, microstructure, and performance. Nb silicide composites have been produced using a range of processing routes, including induction skull melting, investment casting, hot extrusion, and powder metallurgy methods. Nb silicide composite properties are also compared with those of Ni-based superalloys.
机译:本文回顾了基于Nb硅化物的原位复合材料开发的最新进展,该复合材料可用于涡轮发动机的最高工作温度为1350℃。这些复合材料包含高强度的Nb硅化物,可通过可延展的Nb固溶体增韧。初步的复合材料是从二元Nb-Si合金衍生而来的,而最新的系统则很复杂,并与Ti,Hf,W,B,Ge,Cr和Al形成合金。已经开发出合金化方案,以在广泛的温度范围内达到室温韧性,疲劳裂纹增长行为,高温蠕变性能和抗氧化性的极佳平衡。描述了基于Nb硅化物的复合材料,重点是加工,微观结构和性能。铌硅化物复合材料的生产采用了多种工艺路线,包括感应熔炼,熔模铸造,热挤压和粉末冶金方法。还比较了Nb硅化物复合材料的性能与Ni基高温合金的性能。

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