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Compact Process for the Preparation of Microfine Spherical High-Niobium-Containing TiAl Alloy Powders

机译:制备球形细微高铌TiAl合金粉末的紧凑方法

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摘要

High-Nb-containing TiAl alloys are a new generation of materials for high-temperature structural applications because of their superior high-temperature mechanical properties. The alloy powders can be widely used for additive manufacturing, thermal spraying, and powder metallurgy. Because of the difficulty of making microfine spherical alloy powders in quantity by conventional techniques, a compact method was proposed, which consisted of two-step ball milling of elemental powders and subsequent radio frequency (RF) argon plasma spheroidization. In comparison with conventional mechanical alloying techniques, the two-step milling process can be used to prepare alloy powders with uniform scale in a short milling time with no addition of process control agent. This makes the process effective and less contaminating. After RF argon plasma spheroidization, the powders produced exhibit good sphericity, and the number-average diameter is about 8.2 mu m with a symmetric unimodal particle size distribution. The powders perform high composition homogeneity and contain predominately supersaturated alpha (2)-Ti3Al phase. The oxygen and carbon contents of the spheroidized powder are 0.47% and 0.050%, respectively.
机译:高Nb含量的TiAl合金具有卓越的高温机械性能,是用于高温结构应用的新一代材料。合金粉末可广泛用于增材制造,热喷涂和粉末冶金。由于难以通过常规技术大量生产球形合金粉末,因此提出了一种紧凑的方法,该方法包括对元素粉末进行两步球磨,然后进行射频(RF)氩等离子体球化。与常规机械合金化技术相比,两步铣削工艺可在短时间内不添加工艺控制剂的情况下制备出具有均匀氧化皮的合金粉末。这使得该过程有效且污染少。 RF氩气等离子体球化后,产生的粉末显示出良好的球形度,数均直径约为8.2μm,具有对称的单峰粒度分布。这些粉末具有很高的组成均匀性,并且主要含有过饱和的α(2)-Ti3Al相。球化粉末的氧和碳含量分别为0.47%和0.050%。

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