首页> 外文会议>International Symposium on Superalloys >Effects of Alloying Elements on Elastic, Stacking Fault, and Diffusion Properties of Fcc Ni from First-Principles: Implications for Tailoring the Creep Rate of Ni-Base Superalloys
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Effects of Alloying Elements on Elastic, Stacking Fault, and Diffusion Properties of Fcc Ni from First-Principles: Implications for Tailoring the Creep Rate of Ni-Base Superalloys

机译:合金元素对FCC NI的弹性,堆垛性故障和散射特性的影响:剪裁Ni基超合金蠕变率的影响

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To understand the effects of alloying elements on the creep rate of Ni-base superalloys, factors entering into a secondary creep rate are calculated via first-principles calculations based on density functional theory for 26 Ni31X systems where X = Al, Co, Cr, Cu, Fe, Hf, Ir, Mn, Mo, Nb, Os, Pd, Pt, Re, Rh, Ru, Sc, Si, Ta, Tc, Ti, V, W, Y, Zr, and Zn. They are volume, elastic properties, stacking fault energy, and diffusivity. It is found that shear modulus, Young's modulus, and roughly stacking fault energy show inverse correlation to the atomic volume of the system. In addition, the closer the alloying elements to Ni, with respect to atomic volume and atomic number, the larger the predicted shear modulus, Young's modulus, and stacking fault energy. Diffusivity calculations show that mid-row 5d transition metal elements, particularly Re, Os, and Ir, have the highest activation barrier for diffusion, while far-right or far-left row placement elements such as Y, Zn, and Hf, have the lowest activation energy barriers for diffusion. A creep rate ratio of ε_(Ni_(31)x)/ε_(ni) is calculated and the effect of the alloying elements shows 13 systems have a decreased creep rate relative to Ni, while 13 systems have an increased creep rate relative to Ni.
机译:要了解合金元素对Ni基超合金的蠕变率的影响,通过基于密度泛函理论的第一原理计算来计算进入二次蠕变速率的因素,用于X = Al,Co,Cr,Cu ,Fe,Hf,IR,Mn,Mo,Nb,OS,Pd,Pt,Re,Rh,Ru,Sc,Si,Ta,Tc,Ti,V,W,Y,Zr和Zn。它们是体积,弹性特性,堆叠故障能量和扩散性。结果发现,剪切模量,杨氏模量和大致堆叠故障能量显示与系统的原子体积相反相关。另外,相对于原子量和原子数,预测剪切模量,杨氏模量和堆叠故障能量更靠近Ni的合金元素越近。扩散性计算表明,中排5D过渡金属元件,特别是Re,OS和IR,具有最高的扩散激活屏障,而诸如Y,Zn和HF的远方或远左排放置元件具有扩散的最低激活能量障碍。计算ε_(Ni_(31)x)/ε_(ni)的蠕变率比,并且合金元素的效果显示13个系统相对于Ni的蠕变率降低,而13个系统相对于Ni具有增加的蠕变率。

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