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An Experimental and Finite Element Study of Cold Spray Copper Impact onto Two Aluminum Substrates

机译:冷喷涂铜撞击两个铝基板的实验和有限元研究

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The effect of cold spray temperature and substrate hardness on particle deformation and adhesion has been studied, with particular emphasis on adiabatic shearing leading to melting. Copper particles were cold sprayed onto commercial purity (CP) aluminum and alloy 7050-T7451, with stagnation temperatures 200, 400, and 600℃. Deposition efficiency, assisted by particle embedding, increased with temperature and was higher on the softer CP substrate. Crater surfaces, adhered particles, and interfaces were characterized by scanning electron microscopy, focused ion beam, and transmission electron microscopy. For comparison, the impact of 15 μm Cu particles was simulated using finite element modeling. A thin layer of material on the substrate-side of the interface was predicted to reach melting point on both substrates at higher impact velocities. Formation of a molten layer was found experimentally. At 600℃, the effect of substrate heating by the gas jet could not be ignored.
机译:已经研究了冷喷涂温度和基材硬度对颗粒变形和附着力的影响,特别强调了导致熔融的绝热剪切。将铜颗粒冷喷涂到商品纯(CP)铝和合金7050-T7451上,停滞温度为200、400和600℃。沉积效率在颗粒嵌入的辅助下随温度增加而增加,并且在较软的CP基板上更高。通过扫描电子显微镜,聚焦离子束和透射电子显微镜对火山口表面,粘附的颗粒和界面进行了表征。为了进行比较,使用有限元建模模拟了15μm铜颗粒的影响。预计在界面的基片侧上的材料薄层将以较高的撞击速度在两个基片上达到熔点。实验发现形成熔融层。在600℃时,气体喷射对衬底加热的影响不容忽视。

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