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Synthesis of high density ultrafine W/Cu composite alloy by mechano-thermochemical process

机译:力学热化学合成高密度超细钨铜复合合金

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It is difficult to obtain a high density W/Cu composite without the addition of a sintering activator as there is no mutual solubility but a great difference in melting temperature and specific gravity. Ultrafine starting powders are needed in order to achieve the desired full density W/Cu composite. Recently, the authors have developed a new manufacturing process to achieve the full density ultrafine W/Cu composite alloy by combining a thermochemical and a mechanical process (mechano-thermochemical process). W/Cu oxide and W/Cu metal composite powders, which are loosely agglomerated homogeneous clusters of nanoscale sized particles, can be synthesised by a thermochemical process and then these powders are treated again by a mechanical process to obtain ultrafine powders. In the case of the mechano-thermochemical process, a sintered W/Cu composite alloy, obtained from the W/Cu oxide composite powder passing through a multistep reduction process, shows a higher density than that produced from the W/Cu metal composite powder. A full density W + 20 wt-%Cu composite alloy with an average W particle size of 1 μm can be obtained without the addition of a sintering activator through a combination of the mechano-thermochemical process and liquid phase sintering.
机译:不添加烧结活化剂就难以获得高密度的W / Cu复合材料,因为它们没有互溶性,但熔融温度和比重却有很大差异。为了获得所需的全密度钨/铜复合材料,需要超细起始粉末。最近,作者们开发了一种新的制造工艺,通过结合热化学工艺和机械工艺(机械热化学工艺)来实现全密度超细W / Cu复合合金。 W / Cu氧化物和W / Cu金属复合粉末是松散团聚的纳米级颗粒的均匀簇,可以通过热化学方法合成,然后通过机械方法再次处理这些粉末以获得超细粉末。在机械热化学方法的情况下,由经过多步还原工艺的钨/铜氧化物复合粉末获得的烧结钨/铜复合合金显示出比由钨/铜金属复合粉末产生的更高的密度。通过机械-热化学过程和液相烧结的组合,无需添加烧结活化剂,即可获得平均W粒度为1μm的全密度W + 20 wt%Cu复合合金。

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