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Experimental and First Principles Study of the Ni-Ti-W System

机译:Ni-Ti-W系统的实验和第一原理研究

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Nickel based superalloys are structural materials with a chemical composition and structure which has been developed to enable good high temperature performances leading to a wider range of applications.Their unique properties are due to their microstructure characterized by the coexistence of L1_2-ordered intermetallic precipitates like Ni_3Al or Ni_3Ti - γ' phase - in a face-centered cubic nickel based solid solution matrix, (Ni) - γ phase.Solid solution strengthening at high temperatures can also be provided by the addition of refractory alloying elements, like tungsten, W.Therefore, the mechanical properties behaviour of the alloys is very strongly related to their composition and microstructures.The purpose of this work is to study the effect of composition and microstructures in a series of Ni-rich prototype alloys, Ni_(100-2x)-Ti_x-W_x (in which x is in at.%), in order to understand and ultimately optimize the performance of these materials.The adopted strategy was to combine experimental studies using Neutron Diffraction, Electron Probe Micro Analysis - EPMA, Differential Scanning Calorimeter - DSC and micro-hardness measurements, with first principles calculations for structure optimization and Gibbs energies at different temperatures, for each phase, leading to thermodynamic assessment.
机译:镍基超合金是与已被开发以实现良好的高温性能,导致更宽范围applications.Their的独特性质是由于其微观结构的特征在于以下共存的化学组成和结构的结构材料L1_2有序金属间沉淀物等Ni_3Al或Ni_3Ti - γ”相 - 在面心立方镍基固溶体基质,镍(Ni) - 在高温下γphase.Solid固溶强化也可以通过加入耐火合金元素的设置,如钨,W.Therefore ,合金的力学性能表现十分密切相关,其成分和这项工作的microstructures.The目的是研究的组成和微观结构的一系列富Ni合金原型的(100-2x)的影响,Ni_ -Ti_x -W_x(其中x为在原子%)中,为了理解和最终优化这些铺料采用的策略的性能是结合前perimental研究利用中子衍射,电子探针显微分析 - 电子探针,差示扫描量热 - DSC和显微硬度测量,与第一原理计算的结构优化和吉布斯能在不同温度下,对于每一个阶段,导致热力学评估。

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