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Effects of Doped Elements (Si Cr W and Nb) on the Stability Mechanical Properties and Electronic Structures of MoAlB Phase by the First-Principles Calculation

机译:掺杂元素(SiCrW和Nb)对第一原理计算的MoALB相位稳定性力学性能和电子结构的影响

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摘要

First-principles calculations based on density functional theory (DFT) have been performed to explore the effects of Si, Cr, W, and Nb elements on the stability, mechanical properties, and electronic structures of MoAlB ternary boride. The five crystals, with the formulas of Mo4Al4B4, Mo4Al3SiB4, Mo3CrAl4B4, Mo3WAl4B4, and Mo3NbAl4B4, have been respectively established. All the calculated crystals are thermodynamically stable, according to the negative cohesive energy and formation enthalpy. By the calculation of elastic constants, the mechanical moduli and ductility evolutions of MoAlB with elemental doping can be further estimated, with the aid of B/G and Poisson’s ratios. Si and W doping cannot only enhance the Young’s modulus of MoAlB, but also improve the ductility to some degree. Simultaneously, the elastic moduli of MoAlB are supposed to become more isotropic after Si and W addition. However, Cr and Nb doping plays a negative role in ameliorating the mechanical properties. Through the analysis of electronic structures and chemical bonding, the evolutions of chemical bondings can be disclosed with the addition of dopant. The enhancement of B-B, Al/Si-B, and Al/Si-Mo bondings takes place after Si substitution, and W addition apparently intensifies the bonding with B and Al. In this case, the strengthening of chemical bonding after Si and W doping exactly accounts for the improvement of mechanical properties of MoAlB. Additionally, Si doping can also improve the Debye temperature and melting point of the MoAlB crystal. Overall, Si element is predicted to be the optimized dopant to ameliorate the mechanical properties of MoAlB.
机译:已经进行了基于密度泛函理论(DFT)的第一原理计算,以探讨Si,Cr,W和Nb元素对MoALB三元硼化物的稳定性,力学性能和电子结构的影响。已经分别建立了五个晶体,具有Mo4Al4B4,Mo4Al 3SIB4,Mo3Cral4b4,Mo3Wal4b4和Mo3NbAl4b4的公式。根据负粘性能量和形成焓,所有计算的晶体都是热力学稳定的。通过计算弹性常数,可以进一步估计具有元素掺杂的MoALB的机械模量和延展性演进,借助于B / G和泊松的比率。 Si和W掺杂不能增强杨氏模量,也可以改善某种程度的延展性。同时,在Si和W添加后,MoALB的弹性模量应该变得更加各向同性。然而,Cr和Nb掺杂在改善机械性能方面起着负面作用。通过对电子结构和化学键合的分析,可以通过添加掺杂剂公开化学键合的演变。在Si取代后,B-B,Al / Si-B和Al / Si-Mo键合的增强,并且W添加显然将与B和Al的粘合剂增强。在这种情况下,Si和W掺杂后的化学键合的加强令人估计MoALB的机械性能。另外,Si掺杂还可以改善MoALB晶体的脱娇温度和熔点。总体而言,预计Si元素是优化的掺杂剂,以改善MoALB的机械性能。

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