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超音速电弧喷射雾化制备的非互溶Ag-10Ni合金粉末的凝固特征 被引量:5

Rapid Solidification Features of Ag-10Ni Immiscible Alloy by Ultrasonic Arc Spray Gas Atomization
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摘要 采用超音速电弧喷射气雾化制粉设备制备了难固溶Ag-10Ni合金粉末。研究了粉末粒度分布、形貌及凝固组特征,并对雾化熔滴的冷却速率及过冷度、凝固组织的凝固次序、形成机制进行了分析。结果表明:粉末分散性好、粒度主要集中在20μm~45μm、平均粒度32μm、形貌主要为球形和近球形;粉末颗粒凝固组织为富Ag基体+弥散分布于基体中的细Ni相+位于芯部的大直径初晶富Ni相,在大直径初晶富Ni相中弥散分布析出Ag相;富Ag基体的凝固组织为树枝晶组织,小颗粒粉末(<20μm)枝晶间距小于0.2μm。 The fine powder of Ag-10Ni immiscible alloy was prepared by Ultrasonic Arc Spray Gas Atomization process. The particle size distribution, morphology, microstructure evolution of the powder were studied in the present paper. It is shown that the particle size of the Ag-10Ni alloy powder ranges from 20 μm to 45 μm, the average particle size is about 32 μm, the powder possesses spherical form; the microstructure of the Ag-10Ni panicle consists of the large spherical Ni-rich panicles with dispersed Ag precipitates in the center part of the solidified droplets, Ag-rich matrix with dispersed tiny Ni-rich panicles and Ni precipitates on outer part of large Ni-rich panicles. The Ag-rich matrix has a dendritic structure. The interdendritic spacing is about 0.2 μm for the powder less than 20 μm.
出处 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第5期924-928,共5页 Rare Metal Materials and Engineering
基金 Yunnan Province Natural Science Foundation(2003E0082M)
关键词 Ag-Ni非互溶合金 超音速电弧喷射气雾化 快速凝固特征 Ag-Ni immiscible alloy Ultrasonic Arc Spray Gas Atomization rapid solidification features
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参考文献12

  • 1He Chunxiao(何纯孝),Ma Guangchen(马光辰).Phase Diagrams of Precious Metals(贵金属相图)[M]. Beijing:Metallurgical Industry Press, 1983:25
  • 2Yu Jueqi(虞觉奇),Yi Wenzhi(易文质)et al. Phase Diagramsof Binary Alloys(二元合金相图))[M]. Shanghai: Shanghai Scientific & Technical Publishers, 1987:117
  • 3Cheng Guang(陈光),Fu Hengzhi(傅恒志).Advanced Materials Fabricated by Non-equilibrium Solidification Process(非平衡凝固新型金属材料))[M]. Beijing: Science Press, 2004:44
  • 4Tsuji K, Inaoda H, kojima K et al. Materials Science, [J], 1992,27(4): 1179
  • 5He Chunxiao(何纯孝),Wang Yongli(王永立).Fabricator's Handbook of Precious Metals(贵金属加工手册)[M]. Beijing:Metallurgical Industry press, 1976:45
  • 6Wang Hangong. Ultrasonic Arc Spray Technique[M]. Beijing:National Defense Industry Press, 1999
  • 7Huang Peiyun(黄培云).Principle of Powder Metallurgy(粉末冶金原理))[M]. Beijing: Metallurgical Industry Press, 2004:133
  • 8Zhou Yaohe(周尧和),Hu Zhuanqi(胡壮麒),Jie Wanqi(介万奇).New Solidification Technique(凝固技术))[M]. Beijing:Machine Industry Press, 1988:253
  • 9Lavemia E J, Ayers J D, Srivatsan T S. Int Met Rev[J], 1992, 37(1):1
  • 10Hu Hanqi(胡汉起).Principle of Metal Solidification(金属凝固原理)[M]. Beijing: Machine Industry Press, 1991 : 37

二级参考文献5

  • 1徐滨士 刘世参.表面工程新技术[M].北京:国防工业出版社,2001..
  • 2Grant P S, Cantor B, Katgerman L. Modelling of droplet dynamic and thermal histories during spray forming( Ⅰ ) [J]. Acta Metall.Mater, 1993, 41 ( 11 ): 3097 - 3108.
  • 3Lee E S, Ahn S. Solidification progress and heat transfer analysis of gas - atomized alloy droplets during spray forming [ J ]. Acta Metall. Mater,1994,42(9): 3231 -3243.
  • 4朱子新,梁秀兵,徐滨士,杜则裕.高速电弧喷涂熔滴速度的数值模拟及试验[J].焊接学报,2002,23(1):5-8. 被引量:16
  • 5朱子新,徐滨士,张伟,杜则裕.高速电弧喷涂雾化气流速度的数学模型[J].中国表面工程,2002,15(1):24-25. 被引量:11

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