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Size Effect Analysis of Thermal Conductivity in Lithium Nanometer Film

机译:锂纳米薄膜导热系数的尺寸效应分析

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摘要

Lithium is widely used in the pharmaceutical industry, fuel cell, ceramic industry, glass, lubricants, aluminum industry, refrigerant, nuclear industry and photovoltaic industry. The thermal properties of lithium are very important for the design and safe operation. The ME AM potential was applied to calculate thermal conductivity of lithium with emphasis on size effect analysis in the lithium nanometer film using non-equilibrium molecular dynamics simulation method. The results show that the lithium thermal conductivity increases with increasing film thickness. The obvious size effect and anisotropy of thermal conductivity are found in the lithium nanometer film. From the simulation results, the difference of normal and tangential thermal conductivity has been analyzed quantitatively.
机译:锂广泛用于制药工业,燃料电池,陶瓷工业,玻璃,润滑剂,铝工业,制冷剂,核工业和光伏工业。锂的热性质对于设计和安全操作非常重要。应用ME AM电势来计算锂的热导率,重点是使用非平​​衡分子动力学模拟方法对锂纳米膜中的尺寸效应进行分析。结果表明,锂热导率随膜厚的增加而增加。在锂纳米薄膜中发现了明显的尺寸效应和热导率各向异性。根据仿真结果,定量分析了法向和切向导热系数的差异。

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