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The Cold Spray Process and Its Potential for Industrial Applications

机译:冷喷涂工艺及其工业应用潜力

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摘要

Cold spraying has attracted serious attention since unique coating properties can be obtained by the process that are not achievable by conventional thermal spraying. This uniqueness is due to the fact that coating deposition takes place without exposing the spray or substrate material to high temperatures and, in particular, without melting the sprayed particles. Thus, oxidation and other undesired reactions can be avoided. Spray particles adhere to the substrate only because of their high kinetic energy on impact. For successful bonding, powder particles have to exceed a critical velocity on impact, which is dependent on the properties of the particular spray material. This requires new concepts for the description of coating formation but also indicates applications beyond the market for typical thermal spray coatings. The present contribution summarizes the current "state of the art" in cold spraying and demonstrates concepts for process optimization.
机译:由于通过该方法可以获得常规热喷涂无法获得的独特涂层性能,因此冷喷涂引起了人们的严重关注。这种独特性是由于这样的事实,即涂层沉积的发生不会使喷涂材料或基材暴露在高温下,尤其是不会熔化喷涂的颗粒。因此,可以避免氧化和其他不希望的反应。喷雾颗粒仅由于其在冲击时的高动能而粘附在基材上。为了成功粘合,粉末颗粒的冲击速度必须超过临界速度,这取决于特定喷涂材料的特性。这需要用于描述涂层形成的新概念,而且还指示了典型热喷涂涂层在市场之外的应用。本文稿总结了冷喷涂的当前“最新技术”,并演示了工艺优化的概念。

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