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首页> 外文期刊>Materials science forum >Dry Surface Preparation Using Supercritical Cryogenic Nitrogen Jet Improves the Adhesion Strength of Cold Gas Sprayed Coatings (SCNCS)
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Dry Surface Preparation Using Supercritical Cryogenic Nitrogen Jet Improves the Adhesion Strength of Cold Gas Sprayed Coatings (SCNCS)

机译:使用超临界低温氮射流进行的干燥表面处理可改善冷气喷涂层(SCNCS)的粘合强度

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摘要

The adhesion performance of Cold Sprayed coatings depends on the quality of the substrate [1,2,4,8]. Before deposition, the surface of substrate must be prepared to a specific required quality, which promotes the anchoring of sprayed coating. Grit Blasting (Samson et al.) [1] is known as the conventional surface preparation before Cold Spraying. But such method causes issues: a) shallow roughness, which does not strengthen bonds between layer and substrate; b) embedment of particles in the substrate, which creates discontinuity of the material at the interface and causes cracks that degrade the layer. Recently, Laser [2] and Pulsed Water Jet (PWJ) [1] have been tested as substrate preparation methods. These methods have shown their ability to generate improved roughness without particle embedment. PWJ has particularly shown interest in Al substrate to generate crevices, which are anchors for the Cold Sprayed coatings. Nevertheless, Laser affects thermally the substrate and induces constraints that may disadvantage the coating quality. PWJ generates liquid effluents. Besides some substrates such as ferrous metals can react with oxygen of water leading to corrosion and coating adhesion weakness.
机译:冷喷涂涂层的粘附性能取决于基材的质量[1,2,4,8]。在沉积之前,必须将基材表面准备成特定的所需质量,以促进喷涂涂层的固定。喷砂(Samson等人)[1]被称为冷喷涂之前的常规表面处理。但是这种方法会引起问题:a)浅的粗糙度,它不能增强层与基底之间的结合力; b)粒子在基板中的嵌入,这会在界面处造成材料的不连续性,并导致使层降级的裂纹。近来,激光[2]和脉冲水喷射(PWJ)[1]已经作为基材制备方法进行了测试。这些方法已经显示出它们能够产生改善的粗糙度而没有颗粒嵌入的能力。 PWJ特别显示出对铝基材产生缝隙的兴趣,缝隙是冷喷涂涂层的锚点。然而,激光会热影响基材,并产生可能不利于涂层质量的限制。 PWJ产生液体废水。此外,某些基材(例如黑色金属)会与水的氧气反应,从而导致腐蚀和涂层附着力下降。

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