氦对Ni单晶和双晶热输运性质的影响:基于MD的研究

Saurabh S Sharma, Avinash Parashar
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摘要

摘要:核结构容易产生辐照缺陷,这种缺陷使核结构在力学和热性能上容易发生变化。Ni向不溶的He原子的转变被认为是Ni脆化的原因。氦气泡被认为是导致Ni晶体力学和热性能恶化的原因,应该对此进行详细研究,以预测老化核结构的寿命。本文的目的是研究氦对Ni单晶和双晶热输运现象的影响。基于分子动力学的模拟结合混合力场研究了氦泡对Ni晶体中热输运现象的影响。这些模拟进一步扩展到研究对称倾斜晶界(STGB)与氦原子掺杂对双晶Ni中热输运现象的影响。气泡中氦的浓度对Ni单晶的热输运有显著的影响。STGB结构还引入了界面热阻,这是错取向角的函数。掺氦晶界进一步增加了对声子运动的阻力,增加了Kapitza阻力。在取向角较大的晶界中,Kapitza阻力的增加更为明显。
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Effect of helium on the thermal transport properties in single and bi crystals of Ni: a MD based study
Abstract Nuclear structures are prone to irradiation-induced defects that make them susceptible to alternation in mechanical and thermal properties. The transmutation of Ni to insoluble He atoms is considered to be responsible for the embrittlement of Ni. Helium bubbles are deemed responsible for the deterioration of mechanical and thermal properties of the Ni crystal, and this should be studied in detail to predict the lifespan of ageing nuclear structures. The aim of this article is to study the effect of helium on the thermal transport phenomenon in single- and bi-crystals of Ni. Molecular dynamics-based simulations in conjunction with a hybrid force field are performed to study the effect of a helium bubble on the thermal transport phenomenon in Ni crystals. These simulations are further extended to study the impact of symmetrical tilt grain boundaries (STGB) in conjunction with the doping of helium atoms on the thermal transport phenomenon in bi-crystal Ni. The effect of helium concentration in the bubble significantly alters the thermal transport in single-crystal Ni. The STGB configuration also introduces interfacial thermal resistance as a function of the misorientation angle. The helium-doped grain boundaries further increase the resistance to phonon movement and increase Kapitza resistance. The increase in Kapitza resistance is more dominant in higher misorientation angle grain boundaries.
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