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Mechanical characterization of low-pressure cold-sprayed metal coatings on aluminium

机译:铝上低压冷喷涂金属涂层的机械特性

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摘要

Metal coatings are widely used in order to improve the superficial properties of mechanical components or tools. Cold spray deposition is an attractive technology that allows to realize a reported coating on a metallic or polymeric surface. The essence of the phenomenon is that particles of ductile metals or alloys, having diameter of approximately 10-100 micron, become deformed and strongly attached to a surface when they impinge on the surface of metals, ceramics or glasses at impact velocities in the range of about 400-1200 m/s. In this manner, coatings can be formed on a substrate. In this work, mechanical tests were carried out in order to evaluate the adhesion of different metal particles on an aluminium alloy substrate, in order to characterize both the coating-substrate adhesion and the adhesion between two consecutive layers of the cold-sprayed metal coating. In particular, both bending tests and pure adhesion test were carried out in order to better understand the powder deposition mechanism. Bending tests were carried out in four-point bending configuration. On the basis of the experimental campaign, it results that the adhesion of the pure aluminum particles are very good, conversely the copper particles show a good adhesion on the aluminum substrate but have a low internal cohesion.
机译:金属涂层被广泛使用以改善机械部件或工具的表面性能。冷喷涂沉积是一种有吸引力的技术,可以在金属或聚合物表面上实现报道的涂层。这种现象的本质是,直径约为10-100微米的易延展金属或合金颗粒以80到100的冲击速度撞击金属,陶瓷或玻璃表面时,会变形并牢固地附着在表面上。约400-1200 m / s。以这种方式,可以在基底上形成涂层。在这项工作中,进行了机械测试,以评估铝合金基板上不同金属颗粒的附着力,以表征涂层与基板的附着力以及冷喷涂金属涂层的两个连续层之间的附着力。特别地,为了更好地理解粉末沉积机理,进行了弯曲试验和纯附着试验。弯曲测试以四点弯曲配置进行。在实验过程的基础上,结果表明纯铝颗粒的粘合性非常好,相反,铜颗粒在铝基板上显示出良好的粘合性,但内部粘合力低。

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