首页> 外文会议>ASME international heat transfer conference;IHTC14 >THE EFFECT OF INTERSTITIAL LAYERS ON THERMAL BOUNDARY CONDUCTANCE BETWEEN LENNARD-JONES CRYSTALS
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THE EFFECT OF INTERSTITIAL LAYERS ON THERMAL BOUNDARY CONDUCTANCE BETWEEN LENNARD-JONES CRYSTALS

机译:中间层对Lennard-Jones晶体之间的热边界传导的影响

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Thermal transport at the interface between Lennard-Jones crystals is explored via non-equilibrium molecular dynamics simulations. The vibrational properties of each crystal are varied by changing the atomic mass of the crystal. By applying a constant thermal flux across the two-crystal composite system, a steady-state temperature gradient is established and thermal boundary conductance at the interface between the crystals is calculated via Fourier's law. With the material properties of the two crystals fixed, thermal boundary conductance can be affected by an intermediate layer inserted between the two crystals. It is found that when the interstitial layer atomic mass is between those values of the crystals comprising the interface, interfacial transport is enhanced. This layer helps bridge the gap between the different vibrational spectra of the two materials, thus enhancing thermal transport, which is maximized when the interstitial layer atomic mass approaches the average mass of the two fixed crystals. The degree of enhancement depends on the vibrational mismatch between the interstitial layer and the crystals comprising the interface, and we report an increase in thermal boundary conductance of up to 50 %.
机译:通过非平衡分子动力学模拟探索了Lennard-Jones晶体之间的界面处的热传输。通过改变晶体的原子质量来改变每个晶体的振动特性。通过在两晶体复合系统上施加恒定的热通量,可以建立稳态温度梯度,并通过傅立叶定律计算晶体之间界面处的热边界电导。在固定两个晶体的材料特性的情况下,热边界电导率可能会受到插入在两个晶体之间的中间层的影响。发现当间隙层原子质量在构成界面的晶体的那些值之间时,界面传输增强。该层有助于弥合两种材料的不同振动光谱之间的间隙,从而增强热传递,当间隙层原子质量接近两个固定晶体的平均质量时,热传递将最大化。增强的程度取决于间隙层和构成界面的晶体之间的振动失配,并且我们报道了热边界电导增加了多达50%。

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