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Phase Equilibria of the Sn-Ni-V System: The 980A degrees C Isothermal Section and the Sn-Rich Corner at 600A degrees C and 300A degrees C

机译:Sn-Ni-V系统的相平衡:980A的等温截面和600A和300A的Sn-Rich角

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Ternary Sn-Ni-V alloys were prepared and annealed at 980A degrees C, 600A degrees C, and 300A degrees C for 15, 60 and 60 days, respectively. The annealed alloys were metallographically examined and the equilibrium phases formed were identified on the basis of determination of composition and x-ray diffraction analysis. The isothermal region of the ternary Sn-Ni-V system at 980A degrees C was studied. Nine three-phase regions and more than 20 conjugate lines were detected at 980A degrees C. The range of composition of VNi2Sn at 980A degrees C spans 24.5-59.2 at.% V, 52.1-25.5 at.% Ni, and 15.3-23.4 at.% Sn. Its lattice constant increases with increasing V content. A sharp increase near 40.4 at.% V is indicative of a second-order transition. It is believed that atomic site occupation changed when the V content was > 40.4 at.%. The maximum solubility of V in Ni3Sn2 can reach 23.3 at.%; that in Ni3Sn is below 0.6 at.%. Up to 3.4 at.% Ni dissolves in V3Sn. The Sn-rich corner of the Sn-Ni-V system at 600A degrees C and 300A degrees C was also investigated experimentally. The solubility of Ni in VSn2 and V in Ni3Sn4 at 600A degrees C and 300A degrees C are both less than 0.5 at.%.
机译:制备三元Sn-Ni-V合金,并分别在980A,600A和300A的温度下退火15、60和60天。对退火后的合金进行金相检查,并根据成分确定和X射线衍射分析确定形成的平衡相。研究了三元Sn-Ni-V体系在980A摄氏度下的等温区域。在980A的温度下检测到9个三相区域和20多个共轭线。在980A的温度下,VNi2Sn的组成范围为V的24.5-59.2 at。%,Ni的52.1-25.5 at。和15.3-23.4。 。%锡其晶格常数随V含量的增加而增加。 V接近40.4 at。V的急剧增加表明存在二阶跃迁。据信当V含量> 40.4at。%时原子位点占据发生了变化。 V在Ni3Sn2中的最大溶解度可以达到23.3 at。%。 Ni3Sn中的元素含量低于0.6 at。%。 Ni最多溶解在3.4 at。%的V3Sn中。还通过实验研究了Sn-Ni-V系统在600A摄氏度和300A摄氏度的富Sn角。在600A和300A时,Ni在VSn2中的溶解度和V在Ni3Sn4中的溶解度均小于0.5 at。%。

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