Void initialization mechanism for spallation in shock melted materials under high strain rates
编号:185 访问权限:仅限参会人 更新:2025-04-08 11:07:23 浏览:13次 特邀报告

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摘要
Dynamic spallation processes of materials at high strain rates are of critical importance to a wide range of scientific and engineering disciplines, including astrophysics, material sciences, and aerospace engineering. It is involved in subjects like planetary collisions, jet engine debris impacts, and laser-driven impact experiments, etc. We show with molecular dynamics simulations that spinodal decomposition is a probable initiation mechanism of spallation in impact-melted samples at extremely high strain rates. The formation of voids or bubbles is a secondary process following the spinodal amplification of density fluctuations. As a result, the spallation strength can be related to the inherent thermodynamic property of the liquid, i.e., the liquid-gas spinodal curve, which can be determined by independent equation-of-state studies in prior. This connection between high strain rate spallation and spinodal decomposition may be further examined in future experiments
关键词
spall,shock impact,liquid metal,spinodal
报告人
KangWei
研究员 Peking University

稿件作者
KangWei Peking University
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    05月12日

    2025

    05月15日

    2025

  • 03月26日 2025

    初稿截稿日期

  • 04月30日 2025

    提前注册日期

  • 05月15日 2025

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