Supersonic Impact and Bonding of Individual Al Microparticles on Al₂O₃ for Cold Spray Metal-Ceramic Systems
编号:28 访问权限:仅限参会人 更新:2026-09-14 17:42:42 浏览:2次 特邀报告

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摘要
Cold spray deposition is fundamentally governed by high-velocity impacts of individual solid particles. However, the deformation, rebound, jetting, and bonding processes occurring over micro- and nanoscales remain difficult to resolve using cold spray. In particular, it remains unclear whether the critical velocity criterion defined for metal-metal cold spray systems is applicable to metal-ceramic deposition systems.
In this study, laser ablation particle acceleration and observation (LAPAO) is employed to systematically investigate the supersonic impact and adhesion behavior of individual Al microparticles on Al₂O₃ ceramic substrates. Unlike metal-metal impacts, no unique critical velocity separating adhesion from rebound is observed. Adhesion and rebound coexist stochastically over a broad impact-velocity range, with no evident dependence on particle size. Ejection generated during impact originated from the ceramic substrate. Post-impact characterization reveals that bonding is primarily controlled by mechanical interlocking between the deformed Al particle and the locally fractured brittle Al₂O₃ substrate. Because the formation of an effective interlock depends strongly on local ceramic microstructural heterogeneity and fracture morphology, the adhesion process is inherently stochastic. Substantial particle deformation and substrate fracture cannot guarantee successful bonding without the formation of valid mechanical interlocking structures.
关键词
cold spray,single particle,high-velocity impact,metal-ceramic bonding,mechanical interlock
报告人
TIANQI ZHU
Professor Xi'an Jiaotong University

稿件作者
TIANQI ZHU Xi'an Jiaotong University
Leo Devlin Trinity College Dublin
WEIMING SU Trinity College Dublin
YAN CHEN Trinity College Dublin
PENGFEI YU Trinity College Dublin
ROCCO LUPOI Trinity College Dublin
SHUO YIN Trinity College Dublin
冠军 杨 西安交通大学
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重要日期
  • 会议日期

    10月16日

    2026

    10月18日

    2026

  • 10月15日 2026

    初稿截稿日期

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中国机械工程学会
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扬州大学
中国矿业大学
中国机械工程学会表面工程分会
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