在 1198K 的 Fe-Ni-Zr 三元系统的等温的节试验性地和扫描电子显微镜学(SEM ) 和电子探针微量分析(EPMA ) 用散开三元组技术被决定。结果显示有七个二进制金属间化合的阶段, Fe2Zr , FeZr2 , NiZr2 , NiZr , Ni10Zr7 , Ni7Zr2 ,和 Ni5Zr ,在三元系统,二元化合物 NiZr2 和 FeZr2 发现显示出一个同质范围并且形成一个连续稳固的答案,也就是( Fe , Ni ) Zr2 五三阶段的节,γ( Fe , Ni )+Ni7Zr2 + Ni5Zr ,γ( Fe , Ni )+ Ni7Zr2 ,+ Ni10 , Zr7 ,γ( Fe , Ni )+Fe2Zr + Ni10Zr7 ,( Fe , Ni ) Zr2 ,+Fe2Zr + Ni10Zr7 ,并且( Fe , Ni )Zr2 +NiZr + Ni10Zr7 ,在等温的节存在。没有三元化合物被观察。
The isothermal section of Fe-Ni-Zr ternary system at 1198K was experimentally determined using diffusion triple technique together with scanning electron microscopy (SEM) and electron probe microanalysis (EPMA ). The results indicate that there are seven binary intermetallic phases, Fe2Zr, FeZr2, Nir2, NiZr, Ni10Zr7, Ni7Zr2 and Ni5Nr, found in the temary system, the binary compounds NiZr2 and FeZr2 show a homogeneity range and form a continuous solid solution, namely (Fe, Ni)Zr2 Five three-phase sections, γ(Fe,Ni) + Ni3Zr2 + Ni5Zr,γ(Fe, Ni) + Ni7Zr2 + Ni10Zr7, γ(Fe,Ni) + Fe2Zr + Ni10Zr7, (Fe,Ni)Zr2 + Fe2Zr + Nil0Zr7, and (Fe,Ni)Zr2 + NiZr + Ni10Zr7, exist in the isothermal section. No ternary compound is observed.