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Application of laser shock adhesion testing to the study of the interlamellar strength and coating-substrate adhesion in cold-sprayed copper coating of aluminum

机译:激光冲击附着力测试在铝冷喷涂铜层间层间强度和涂层与基底附着力研究中的应用

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摘要

Compared with conventional thermal spraying, cold spraying should exhibit specific interlamellar (i.e., at sprayed particle boundaries) properties and coating-substrate interface due to certain characteristics of this process. These characteristics result from the spraying of particles at a low ("cold") temperature combined with a high velocity, which leads to a low oxidation and a limited residual porosity in the sprayed coating.Due to the fairly recent development of cold-spray processing and to investigation difficulty in this field, very little is known about interface properties, primarily interlamellar strength and coating-substrate adhesion.In this study, laser shock adhesion testing, namely, LASAT, was developed to be suitable for the determining of both the interlamellar strength and the coating-substrate adhesion.LASATesting of cold-sprayed Cu onto Al showed that Cu-Cu interlamellar strength was about of the same order as that of Cu-Al coating-substrate adhesion.Results are discussed in the light of a parallel microstructural investigation into Cu-Cu and Cu-Al interfaces. More generally, this study demonstrated the feasibility of the LASATesting as a powerful tool for the measuring of adhesion, including in local zones. © 2004 Elsevier B.V. All rights reserved.
机译:与传统的热喷涂相比,由于该工艺的某些特性,冷喷涂应表现出特定的层间性能(即在喷涂的颗粒边界处)和涂层-基材界面。这些特性是由于在低温(“冷”)温度下以较高的速度喷涂颗粒而导致的,这导致喷涂膜中的氧化程度低且残留孔隙率有限。由于冷喷涂工艺的最新发展对于这一领域的研究难度,人们对界面特性(主要是层间强度和涂层与基材的粘附性)了解甚少。在这项研究中,开发了激光冲击粘附性测试(即LASAT)以同时确定层间LASA对Al进行冷喷涂Cu的测试表明,Cu-Cu层间强度与Cu-Al涂层对基材的附着力大致相同。针对平行微结构讨论了结果研究Cu-Cu和Cu-Al界面。更广泛地说,这项研究证明了LASATesting作为测量附着力(包括局部区域)的强大工具的可行性。 &复制; 2004 Elsevier B.V.保留所有权利。

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