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机械合金化法制备Cu-Ti-Zr基非晶合金

Fabrication of Cu-Ti-Zr Based Amorphous Alloys by Mechanical Alloying

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【作者】 惠希东杜立辉王美玲陈国良

【Author】 HUI Xidong, DU Lihui, WANG Meiling, CHEN GuoliangState Key Laboratory for Advanced Metals and Materiab, University of Science and Technology Beijing, Beijing 100083, China

【机构】 北京科技大学新金属材料国家重点实验室北京科技大学新金属材料国家重点实验室 北京 100083北京 100083北京 100083

【摘要】 采用机械合金化法成功制备Cu40Ti60-xZrx(x=0,10,30,50)非晶合金.研究Cu-Ti-Zr合金粉末由晶态向非晶态转变过程中的组织结构变化,探讨非晶合金的形成机制,以及非晶合金的热稳定性和晶化产物.结果表明,非晶合金直接从初始元素得到,在反应过程中没有金属间化合物出现,非晶化过程可以由间隙扩散模型来解释.Cu40TixZry非晶粉末的DSC分析表明,随着Ti含量的降低和Zr含量的升高,非晶粉末的晶化温度Tx逐渐升高,对非晶粉末在相应的Tx温度附近退火15min后发现,Cu40Ti30Zr30合金没有析出相,Cu40Ti10Zr50析出了Zr2Cu,Cu4Ti和少量的一些未知相.

【Abstract】 Cu40Ti60-xZrx(x=0,10,30,50) amorphous alloys were fabricated successfully by using mechanical alloying method. The mechanism of amorphization was discussed by investigating the transformation of Cu-Ti-Zr alloy powders from crystallization to amorphous state in the process of mechanical alloying. The thermal stability and crystalline phase of amorphous alloys were also investigated. It is shown that the amorphous is formed from the original elements directly, and no metallic compounds appear in the solid-state reaction. The amorphization mechanism may be explained by the vacancy diffusion model. The DSC traces of fully amorphous Cu40TirZry powders show that the onset crystallization temperature (Tx) is increased with the decrease of Ti content and the increase of Zr content. The Cu40Ti30Zr30 and Cu40Ti10Zr50 amorphous alloys were annealed near the onset crystallization temperature, Tx. It is found that Zr2Cu, Cu4Ti and a little unidentified crystal phases were precipitated in the Cu40Ti10Zr50 amorphous alloy after annealed for 15 min, whereas there were no precipitates in the Cu40Ti30Zr30 amorphous alloy.

【基金】 国家“863”高技术发展计划(No.2001AA 331010);国家重大基础研究计划(No.G200067201-3);国家自然科学基金(No.50431030,50171006);北京市重大项目(No.H020420030320)资助
  • 【文献出处】 北京科技大学学报 ,Journal of University of Science and Technology Beijing , 编辑部邮箱 ,2004年05期
  • 【分类号】TG139.8
  • 【被引频次】2
  • 【下载频次】341
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