[口头报告]Collisional model of nanoparticles molten at high temperature

Collisional model of nanoparticles molten at high temperature
编号:307 稿件编号:95 访问权限:仅限参会人 更新:2024-05-20 09:58:08 浏览:499次 口头报告

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摘要
The collision of nano Al2O3 particles is investigated using Molecular Dynamics (MD) at temperatures far exceeding the melting point in order to understand the nano collisions in high-temperature environments. The MD simulation demonstrates two basic modes of collision at the nanoscale: sticking and rebounding, while no breakup or splashing is observed even though considerably high temperature and impact velocities are applied. The phase diagram of sticking and rebounding is influenced by temperature and cannot be described by the Weber number of droplets. Alternatively, the threshold velocity of sticking and the restitution coefficient are found to well agree with the adhesive elastoplastic contact theory proposed by Ning and Thornton (1998). A semi-analytical model is formulated based on the MD results to describe the restitution coefficient of nano collisions in various cases of velocity, temperature and particle sizes.
 
关键字
nano contacts,molten solids,adhesive elastoplastic model,coefficient of restitution,aluminium oxidation,Molecular Dynamics
报告人
蔡牧言
东南大学

稿件作者
蔡牧言 东南大学
郑奇军 Monash University (Suzhou)
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