Abstract:Liquid metal (LM) has attracted much attention in advanced
thermal
management due to its superior thermal conductivity. The traditional
research method of LM thermal conductivity is mainly based on experimental
measurement at the macroscale. It is well known that thermal conduction
is attributed to the thermal motion of molecules and atoms. It is
valuable to study the thermal conductivity of LM in conjunction with
atomic thermal motion at the microscale. In this work, the reverse
nonequilibrium molecular dynam… Show more
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