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首页> 外文期刊>Intermetallics >Influence of alloying elements on mechanical and electronic properties of NbMoTaWX (X = Cr, Zr, V, Hf and Re) refractory high entropy alloys
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Influence of alloying elements on mechanical and electronic properties of NbMoTaWX (X = Cr, Zr, V, Hf and Re) refractory high entropy alloys

机译:合金元素对NbMotawx(X = Cr,Zr,V,HF和Re)耐火高熵合金的影响

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NbMoTaW refractory high entropy alloy (RHEA) has shown great potential applications for high temperature components due to its high temperature mechanical strength. However, the brittleness at room temperature hinders its engineering application and further development. To overcome this deficiency, refractory alloying elements with melting temperatures over 1850 degrees C, i.e., Cr, Zr, V, Hf, and Re, were chosen to enhance the mechanical performance of NbMoTaW RHEA in the present work. The effects of refractory alloying elements on the strength and ductility of NbMoTaW RHEA were investigated via a combination of theory and experiment. To be specific, the first-principle calculations based on density functional theory were employed to predict the mechanical properties of the alloyed NbMoTaWX (X = Cr, Zr, V, Hf and Re) RHEAs and explain the alloying effect from the atomic and electronic level. Moreover, the phase structures of the alloyed RHEAs were determined based on the formation enthalpy and cohesive energy, as well as some empirical parameters, such as the average valence electron concentration VEC and atomic size difference delta. In combination with the experimental results, the calculated elastic constants and modulus indicated that most of these alloying elements enhanced the strength of NbMoTaW RHEA, while only Zr-alloying significantly improved the ductility. The strengthening mechanism of different elements was well analyzed based on the total and partial density of states, overlapping Mulliken population, charge density contour, and atomic distance. The improvement of the ductility for Zr-alloying was attributed to the formation of Zr-Zr metallic bonds in the alloyed NbMoTaWX RHEAs. The theoretic predictions were confirmed by the experimental investigations. The present work provides a good guidance for design and construction of NbMoTaW RHEA.
机译:NBMoTaw耐火材料高熵合金(RHEA)由于其高温机械强度而显示出高温分量的潜在应用。然而,室温下的脆性阻碍了其工程应用和进一步发展。为了克服这种缺陷,选择具有超过1850℃的熔化温度的耐火合金元素,即Cr,Zr,V,Hf和Re,以增强NBMotaw rhea在本作工作中的机械性能。通过理论和实验的组合研究了耐火合金化元素对NBMOTAW rhea的强度和延展性的影响。具体而言,基于密度泛函理论的第一原理计算用于预测合金NbMotawx(X = Cr,Zr,V,HF和Re)Rheas的机械性能,并解释原子和电子水平的合金效果。此外,基于形成焓和内聚能量确定合金resh的相结构,以及一些经验参数,例如平均价电子浓度Vec和原子尺寸差二Δ。结合实验结果,计算的弹性常数和模量表明,大多数这些合金元素增强了NbMotaw rhea的强度,而只有Zr合金化显着改善了延展性。基于状态的总密度和部分密度,重叠Mulliken群,电荷密度轮廓和原子距离,很好地分析了不同元素的强化机制。 Zr合金化延性的改善归因于合金NbMotawx Rheas中的Zr-Zr金属键的形成。实验研究证实了理论预测。本工作为NBMOTAW Rhea的设计和构建提供了良好的指导。

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