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首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Molecular Dynamics Analysis of Elementary Process of Coating by a High-Temperature, High-Speed Droplet (Flattening Process and Atomic Behavior of a Droplet)
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Molecular Dynamics Analysis of Elementary Process of Coating by a High-Temperature, High-Speed Droplet (Flattening Process and Atomic Behavior of a Droplet)

机译:高温,高速熔滴涂层基本​​过程的分子动力学分析(熔滴过程和液滴的原子行为)

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Three-dimensional molecular dynamics simulation was conducted to clarify at an atomic level the flattening process of a high-temperature droplet impacting a substrate at high speed. The droplet and the substrate were assumed to consist of pure aluminum, and the Morse potential was postulated between a pair of aluminum atoms. By visualizing the analytical results, the processes of melting and solidification, temperature distribution, deformation velocity, and potential energy of atoms of the droplet were clarified. The following conclusions were obtained: (1) Transfer of the droplet atoms to the horizontal direction in the flattening process increases in proportion to the horizontal distance from the central axis of the droplet. (2) The increase of the flattening ratio of the droplet ends as soon as solidification of the droplet starts from the outside edge of the droplet. This behavior indicates the end of flattening.
机译:进行了三维分子动力学模拟,以在原子水平上阐明了高温液滴高速撞击基板的平坦化过程。假定液滴和基底由纯铝组成,并且在一对铝原子之间假定莫尔斯电势。通过可视化分析结果,阐明了液滴的熔化和凝固过程,温度分布,变形速度和原子势能。得到以下结论:(1)在扁平化过程中液滴原子向水平方向的转移与距液滴中心轴的水平距离成比例地增加。 (2)从液滴的外边缘开始液滴的凝固,液滴的扁平化率的增加就结束。此行为表明扁平化的结束。

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