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首页> 外文期刊>Journal of Materials Science >Study of adhesion of PROTAL (R) copper coating of Al 2017 using the laser shock adhesion test (LASAT)
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Study of adhesion of PROTAL (R) copper coating of Al 2017 using the laser shock adhesion test (LASAT)

机译:使用激光冲击附着力测试(LASAT)研究Al 2017的PROTAL(R)铜涂层的附着力

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Surface preparation of substrates is a major stage in thermal spraying as it greatly influences coating adhesion. Standard grit-blasting creates roughness but also often leaves grit inclusions at the substrate surface, which are detrimental for coating quality. In contrast, the use of smooth substrates involves improvements in metallurgical adhesion. This work deals with the use of substrate pre-heating and of the PROTAL(R) process ('PROjection Thermique Assistee par Laser') to promote metallurgical adhesion. PROTAL is based on substrate laser treatment prior to spraying to achieve an oxide-free interface and, under specific conditions, which modifies the substrate morphology. A metallurgically reactive system (i.e., copper sprayed onto Al 2017) was selected to be suitable for controlling metallurgical features at the coating-substrate interface ( mainly pores, intermetallic phases and pre-existing cracks). These were shown to depend on substrate roughness and on the substrate temperature during the first spraying pass. LAser shock adhesion test, namely LASAT, was developed to enable morphological and metallurgical features of as-sprayed interfaces to be studied separately. The existence of a critical roughness for anchoring (CRA) and of an adhesion transition temperature (ATT) could be assumed. As for metallurgical properties, interface intermetallics and pre-existing cracks were shown to be detrimental for adhesion. Moreover, LASATesting succeeded in showing that adhesion of PROTAL coatings is better than that of APS-only coatings. (C) 2004 Kluwer Academic Publishers. [References: 10]
机译:基材的表面处理是热喷涂的主要阶段,因为它极大地影响涂层的附着力。标准的喷砂处理会产生粗糙度,但也会经常在基材表面留下砂砾夹杂物,这对涂层质量不利。相反,使用光滑的基材会改善冶金附着力。这项工作涉及衬底预热和PROTAL(R)工艺(“ PROjection Thermique Assistee par Laser”)的使用,以提高冶金附着力。 PROTAL基于喷涂前的基底激光处理,以实现无氧化物的界面,并在特定条件下改变了基底的形态。选择了一种冶金反应体系(即喷涂到Al 2017上的铜)以适合控制涂层-基底界面处的冶金特征(主要是孔,金属间相和预先存在的裂纹)。这些取决于第一次喷涂过程中的基材粗糙度和基材温度。 LASER冲击附着力测试(即LASAT)的开发是为了使喷涂界面的形态和冶金学特征能够分别进行研究。可以假定存在用于锚固的临界粗糙度(CRA)和粘附转变温度(ATT)。至于冶金性能,界面金属间化合物和预先存在的裂纹被证明对附着力有害。此外,LASATesting成功地显示出PROTAL涂层的附着力优于仅APS的涂层。 (C)2004 Kluwer学术出版社。 [参考:10]

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