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Processing of Titanium and its Alloys by Microwave Energy

机译:微波能量加工钛及其合金

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Microwave sintering of titanium and its alloys is a recent development in powder metallurgy of titanium. The sintering in an atmospheric pressure argon gas environment or vacuum is potentially cost effective and energy efficient compared to conventional sintering methods due to the possibility of direct microwave heating of the titanium powder via in-depth energy deposition augmented by hybrid heating in a ceramic casket. The in-depth heating permits very rapid processing (cycle times of potentially less than 10 minutes) which is intended to preserve a very fine grain structure in the final product resulting in excellent mechanical properties and the possibility of superplastic forming. We are investigating this approach using an S-Band microwave system. The process can be also used for composites, laminates, direct alloying, and functionally gradient materials. Evaluations to optimize different parameters for controlling the final density, microstructure, and properties of these materials are underway and results are discussed.
机译:微波烧结钛及其合金是钛粉末冶金的最新发育。与常规烧结方法相比,烧结在大气压氩气环境或真空中,与常规烧结方法相比,由于通过在陶瓷棺材中通过混合加热而增强钛粉末的微波加热钛粉末的可能性,可能是具有传统烧结方法的能力。深入的加热允许非常快速的加工(潜在的小于10分钟的循环时间),其旨在在最终产品中保持非常细的晶粒结构,从而产生优异的机械性能和超塑性成型的可能性。我们正在使用S频段微波系统调查这种方法。该方法还可用于复合材料,层压板,直接合金化和功能梯度材料。正在进行优化用于控制这些材料的最终密度,微观结构和性质的不同参数的评估,并讨论了结果。

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