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Preparation of Cu-Cr alloy powder by mechanical alloying

机译:机械合金化制备Cu-Cr合金粉末

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摘要

A study of Cu-Cr alloy powder preparation by a newly developed mechanical alloying (MA) approach was conducted using a modified mill. Results showed that the preparation temperature was much lower in the tests employing modified mill than with traditional equipment, and that no distinct differences could be found in the products prepared by the vibratory and planetary mills. Active carbon powder was found to exhibit an excellent reducing capacity for metallic oxides, while graphite powder was found inappropriate in this process. Based on the experimental results, purified Cu-Cr alloy nano-scale grain can prepared by mechanical alloying in the modified mill at 325 °C for 3 h with a ball-to-powder mass ratio of 15:1. A crystal agglomeration phenomenon was also found in the final alloy powder, leading to an increase in particle size.
机译:使用改进的磨机对通过新开发的机械合金化(MA)方法制备Cu-Cr合金粉末进行了研究。结果表明,在使用改进型磨机的测试中,制备温度要比传统设备低得多,并且在振动磨和行星式磨机制备的产品中没有发现明显差异。发现活性炭粉末对金属氧化物表现出优异的还原能力,而发现石墨粉末不适用于该方法。根据实验结果,可以通过在修改后的磨机中以325的球粉质量比在325°C下机械合金化3 h来制备纯化的Cu-Cr合金纳米级晶粒。在最终的合金粉末中也发现了结晶团聚现象,导致粒径增加。

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