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Microwave Sintering of W-18Cu and W-7Ni-3Cu Alloys

机译:W-18Cu和W-7Ni-3Cu合金的微波烧结

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摘要

Microwave processing is emerging as an innovative and highly effective material processing method offering many advantages over conventional methods, especially for sintering applications. It is recognized for its various advantages, such as: time and energy saving, rapid heating rates, considerably reduced processing cycle time and temperature, fine microstructures and improved mechanical properties which lead to better product performance. Major constraints in conventional sintering of refractory material such as tungsten and its alloys are high sintering temperatures and long soaking times which cause abnormal grain growth and lead to poor mechanical properties. They get further aggravated at smaller (submicron and nano) tungsten powder sizes. This study describes recent research findings; W-18Cu and W-7Ni-3Cu alloys have been successfully consolidated using microwave heating which resulted in an overall reduction of sintering time of up to 80%. The microwave sintered samples exhibited finer microstructure and superior mechanical properties when compared with the conventional samples.
机译:微波处理正在成为一种创新的高效材料处理方法,与常规方法相比具有许多优势,尤其是对于烧结应用。它具有多种优势,例如:节省时间和能源,快速加热速率,显着减少加工周期和温度,精细的微观结构以及改善的机械性能,从而带来更好的产品性能。常规的耐火材料如钨及其合金的烧结的主要限制是高的烧结温度和长的浸泡时间,这导致异常的晶粒生长并导致差的机械性能。较小(亚微米和纳米)的钨粉尺寸会使它们进一步恶化。这项研究描述了最近的研究发现; W-18Cu和W-7Ni-3Cu合金已通过微波加热成功地固结,从而使烧结时间总体缩短了80%。与常规样品相比,微波烧结样品表现出更好的微观结构和优异的机械性能。

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