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Isothermal section of Nd-Zr-Si ternary system at 773 K

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【作者】 何建贤何维姚祥曾令民

【Author】 HE Jianxian,HE Wei,YAO Xiang,ZENG Lingmin(Key Laboratory of Nonferrous Metal Materials and New Processing Technology of Ministry of Education,College of Materials Science and Engineering,Guangxi Uni-versity,Nanning 530004,China)

【机构】 Key Laboratory of Nonferrous Metal Materials and New Processing Technology of Ministry of Education,College of Materials Science and Engineering,Guangxi Uni-versity

【摘要】 Phase diagram is an important basis for materials research and materials application.The phase relations of the Nd-Zr-Si ternary system at 773 K were investigated by X-ray powder diffraction analysis,metallographic analysis and scanning electron microscopy with en-ergy dispersive analysis.The isothermal section of the phase diagram of the Nd-Zr-Si ternary system at 773 K was determined.The isother-mal section of the system consisted of 13 single-phase regions,23 two-phase regions and 11 three-phase regions.The homogeneity range of α-NdSix was from 63 at.% to 66 at.% Si(with x=1.70-1.94).The maximum solid solubilities of Nd in Zr-Si binary compounds and Zr in the Nd-Si binary compounds were observed less than 1 at.% at 773 K.

【Abstract】 Phase diagram is an important basis for materials research and materials application.The phase relations of the Nd-Zr-Si ternary system at 773 K were investigated by X-ray powder diffraction analysis,metallographic analysis and scanning electron microscopy with en-ergy dispersive analysis.The isothermal section of the phase diagram of the Nd-Zr-Si ternary system at 773 K was determined.The isother-mal section of the system consisted of 13 single-phase regions,23 two-phase regions and 11 three-phase regions.The homogeneity range of α-NdSix was from 63 at.% to 66 at.% Si(with x=1.70-1.94).The maximum solid solubilities of Nd in Zr-Si binary compounds and Zr in the Nd-Si binary compounds were observed less than 1 at.% at 773 K.

【基金】 Project supported by the Natural Science Foundation of China (50861005,50961002);Natural Science Foundation of Guangxi(2011GXNSFD018005);Plan of the Top Innovation Team Construction of Guangxi University (31)
  • 【文献出处】 Journal of Rare Earths ,稀土学报(英文版) , 编辑部邮箱 ,2012年01期
  • 【分类号】TG146.414
  • 【被引频次】1
  • 【下载频次】40
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