首页> 外文会议>International Symposium on Eco-Materials Processing amp; Design; 20050116-18; Jinju(KR) >Effect of Ternary Alloying Elements on Microstructure and Mechanical Property of Nb-Si Based Refractory Intermetallic Alloy
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Effect of Ternary Alloying Elements on Microstructure and Mechanical Property of Nb-Si Based Refractory Intermetallic Alloy

机译:三元合金元素对Nb-Si基难熔金属间合金的组织和力学性能的影响

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摘要

Microstructure and mechanical property at room temperature and at 1773 K of Nb-Si based refractory intermetallic alloys were investigated in terms of compression and fracture toughness test. Mo and V were chosen as ternary alloying elements because of their high melting points, atomic sizes smaller than Nb. Both ternary alloying elements were found to have a significant role in modifying the microstructure from dispersed structure to eutectic-like structure in Nb solid solution/Nb_5Si_3 intermetallic composites. The 0.2% offset yield strength at room temperature increased with increasing content of ternary elements in Nb solid solution and volume fraction of Nb_5Si_3. At 1773 K, Mo addition has a positive role in increasing the yield strength. On the other hand, V addition has a role in decreasing the yield strength. The fracture toughness of ternary alloys was superior to binary alloys. Details will be discussed in correlation with ternary alloying, volume fraction of constituent phase, and the microstructure.
机译:对Nb-Si基耐火金属间合金在室温和1773 K下的组织和力学性能进行了压缩和断裂韧性测试。选择Mo和V作为三元合金元素是因为它们的熔点高,原子尺寸小于Nb。发现这两种三元合金元素在将Nb固溶体/ Nb_5Si_3金属间化合物中的微观结构从分散结构转变为类共晶结构方面均具有重要作用。室温下0.2%的偏移屈服强度随Nb固溶体中三元元素含量的增加和Nb_5Si_3的体积分数的增加而增加。在1773 K时,添加Mo对提高屈服强度具有积极作用。另一方面,添加V具有降低屈服强度的作用。三元合金的断裂韧性优于二元合金。将与三元合金化,组成相的体积分数和微观结构相关地讨论细节。

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