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Ni-Co-Sn三元系相平衡的实验研究
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作者单位:

材料学院及福建省材料基因工程重点实验室

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中图分类号:

TG113

基金项目:

国家自然科学基金项目(面上项目,重点项目,重大项目);国家自然科学基金促进海峡两岸科技合作联合基金


Experimental Investigation of the Phase Equilibria in the Ni-Co-Sn Ternary System
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Affiliation:

College of Materials and Fujian Provincial Key Laboratory of Materials Genome, Xiamen University, Xiamen

Fund Project:

National Natural Science Foundation of China (Grant No. 51771158), and Joint Fund to Promote Cross-Strait Scientific and Technological (Grant No. U1605243)

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    摘要:

    本实验通过采用电子探针显微分析和X-ray衍射分析方法实验研究了Ni-Co-Sn三元体系在700°C和1000°C时的相平衡。在这两个温度截面中均未发现三元化合物。βCo3Sn2相和Ni3Sn2(h)相形成了一个贯穿连续固溶体相。Ni-Sn侧包含Ni3Sn(l)、Ni3Sn(h)和Ni3Sn4三个化合物相,它们中Sn的固溶度是有很大区别的。700°C时,Co在Ni3Sn(l)和Ni3Sn4中的最大固溶度在分别约为6.9 at.%和25.6 at.%,在1000°C时,Co在Ni3Sn(h)中的最大固溶度约为15.5 at.%。在700℃和1000℃下,Ni-Co侧的(αCo,Ni)相为一个贯穿连续固溶体相,并且Sn在(αCo,Ni)相中的固溶度约为1 at.% ~10.5 at.%。Ni在线性化合物CoSn相中的溶解度约为15.9 at.%。

    Abstract:

    Phase equilibria of the Ni-Co-Sn ternary system at 700 °C and 1000 °C were experimentally determined by using electron probe microanalyzer and X-ray diffraction. No ternary compound was found at 700 °C and 1000 °C. There was an extensive region of mutual solubility existing between βCo3Sn2 phase and Ni3Sn2(h) phase. Three Ni-Sn binary compounds [Ni3Sn(l), Ni3Sn(h) and Ni3Sn4] showed absolutely different solubilities for the element Co. The maximum solubility of Co in Ni3Sn(l) and Ni3Sn4 phases at 700°C were 6.9 at.% and 25.6 at.%, and the solubility of Ni3Sn(h) phases changed into 15.5 at.% at 1000°C. The Ni-Co side presented an interconnected (αCo, Ni) phase region at both 700oC and 1000°C and its homogeneity range for Sn was from 1 at.% to 10.5 at.%. The solubility of Ni in the linear compound CoSn phase was about 15.9 at.%.

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引用本文

刘兴军,邓育灵,张锦彬,杨木金,杨水源,韩佳甲,卢勇,王翠萍. Ni-Co-Sn三元系相平衡的实验研究[J].稀有金属材料与工程,2020,49(5):1539~1545.[Liu Xingjun, Deng Yuling, Zhang Jinbin, Yang Mujin, Yang Shuiyuan, Han Jiajia, Lu Yong, wangcuiping. Experimental Investigation of the Phase Equilibria in the Ni-Co-Sn Ternary System[J]. Rare Metal Materials and Engineering,2020,49(5):1539~1545.]
DOI:10.12442/j. issn.1002-185X.20181273

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历史
  • 收稿日期:2018-12-21
  • 最后修改日期:2019-01-13
  • 录用日期:2019-02-21
  • 在线发布日期: 2020-06-05
  • 出版日期: