Determination of isothermal section of Fe-Ti-Zr ternary system at 1173 K
Phase relations in the Fe-Ti-Zr ternary system at 1173 K were investigated by means of diffusion-triple approach together with electron probe microanalysis(EPMA) technique. A series of tie lines and tie-triangles were determined and the isothermal section at 1 173 K was established, which consists o...
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Published in | Transactions of Nonferrous Metals Society of China Vol. 17; no. 5; pp. 963 - 966 |
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Main Author | |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.10.2007
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ISSN | 1003-6326 |
DOI | 10.1016/S1003-6326(07)60208-8 |
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Abstract | Phase relations in the Fe-Ti-Zr ternary system at 1173 K were investigated by means of diffusion-triple approach together with electron probe microanalysis(EPMA) technique. A series of tie lines and tie-triangles were determined and the isothermal section at 1 173 K was established, which consists of four three-phase fields: β(Ti, Zr)+FeZr2+FeTi, FeZr2+FeTi+Fe2Zr, FeTi +Fe2Zr +Fe2Ti and Fe2Zr +Fe2Ti +Fe. The results show that the largest solubility of Ti in Fe2Zr is about 11.3 %(mole fraction) and the solid solubility of Ti in FeZr2 is about 26.9%, the solid solubility of Zr in Fe2Ti is about 8.1% and the solid solubility of Zr in FeTi is 7.2%. The binary compound FeZr2 is nearly a linear compound. No ternary compound is found. |
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AbstractList | Phase relations in the Fe-Ti-Zr ternary system at 1173 K were investigated by means of diffusion-triple approach together with electron probe microanalysis(EPMA) technique. A series of tie lines and tie-triangles were determined and the isothermal section at 1173 K was established, which consists of four three-phase fields: β(Ti, Zr) + FeZr
2 + FeTi, FeZr
2 + FeTi + Fe
2Zr, FeTi + Fe
2Zr + Fe
2Ti and Fe
2Zr + Fe
2Ti + Fe. The results show that the largest solubility of Ti in Fe
2Zr is about 11.3%(mole fraction) and the solid solubility of Ti in FeZr
2 is about 26.9%, the solid solubility of Zr in Fe
2Ti is about 8.1% and the solid solubility of Zr in FeTi is 7.2%. The binary compound FeZr
2 is nearly a linear compound. No ternary compound is found. Phase relations in the Fe-Ti-Zr ternary system at 1173 K were investigated by means of diffusion-triple approach together with electron probe microanalysis(EPMA) technique. A series of tie lines and tie-triangles were determined and the isothermal section at 1173 K was established, which consists of four three-phase fields: beta(Ti, Zr) + FeZr2 + FeTi, FeZr2 + FeTi + Fe2Zr, FeTi + Fe2Zr + Fe2Ti and Fe2Zr + Fe2Ti + Fe. The results show that the largest solubility of Ti in Fe2Zr is about 11.3%(mole fraction) and the solid solubility of Ti in FeZr2 is about 26.9%, the solid solubility of Zr in Fe2Ti is about 8.1% and the solid solubility of Zr in FeTi is 7.2%. The binary compound FeZr2 is nearly a linear compound. No ternary compound is found. Phase relations in the Fe-Ti-Zr ternary system at 1173 K were investigated by means of diffusion-triple approach together with electron probe microanalysis(EPMA) technique. A series of tie lines and tie-triangles were determined and the isothermal section at 1 173 K was established, which consists of four three-phase fields: β(Ti, Zr)+FeZr2+FeTi, FeZr2+FeTi+Fe2Zr, FeTi +Fe2Zr +Fe2Ti and Fe2Zr +Fe2Ti +Fe. The results show that the largest solubility of Ti in Fe2Zr is about 11.3 %(mole fraction) and the solid solubility of Ti in FeZr2 is about 26.9%, the solid solubility of Zr in Fe2Ti is about 8.1% and the solid solubility of Zr in FeTi is 7.2%. The binary compound FeZr2 is nearly a linear compound. No ternary compound is found. |
Author | 周果君 金姗 刘立斌 刘华山 金展鹏 |
AuthorAffiliation | School of Materials Science and Engineering, Central South University, Changsha 410083, China |
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Cites_doi | 10.1361/105497102770331172 10.1016/0022-5088(86)90368-1 10.1007/BF02648490 10.1016/S1359-6462(97)00074-2 10.1016/0956-716X(93)90160-T 10.1007/BF02670607 10.1016/0022-5088(77)90162-X 10.1088/0305-4608/15/1/026 10.1016/0022-3115(95)00207-3 10.1007/s11663-998-0113-z |
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SubjectTerms | diffusion triple Fe-Ti-Zr Fe-Ti-Zr三元体系 isothermal section phase diagram 微量分析 相位图表 等温线 |
Title | Determination of isothermal section of Fe-Ti-Zr ternary system at 1173 K |
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