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Microstructural investigations on bonding mechanisms of cold-sprayed copper with SS316L steel

机译:SS316L钢冷喷铜粘合机理的微观结构研究

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摘要

The purpose of the study was to understand the adhesion mechanism between cold-sprayed copper and SS316L steel substrate. Coatings of 3-mm thickness were deposited by cold-spraying on steel substrates prepared with different roughness values. To understand the bonding mechanism of the coating with substrates, scanning electron microscopy (SEM), and energy dispersive spectroscopy (EDS) analyses were done on interfacial surfaces; exposed after the adhesion testing. Additionally, cross-sectional as-well-as top surface deformation behaviour of single copper particles deposited on steel substrates was investigated by using SEM/EDS, to elucidate the mechanism behind bonding. The results of the study validated that the adhesion is governed by both metallurgical bonding, as-well-as, mechanical interlocking, owing to the jetting formation. The mirror-polished surface resulted in a better adhesion strength as compared to the as-received and semi-polished surfaces, which was further validated by ultrasonic testing. Also, smaller-sized particles were found to be favourable for good adhesion strength.
机译:该研究的目的是了解冷喷涂铜和SS316L钢基材之间的粘附机理。通过在用不同粗糙度值制备的钢基材上的冷喷涂沉积3mm厚的涂层。为了了解用基材的涂层的粘合机理,在界面表面上进行扫描电子显微镜(SEM)和能量分散光谱(EDS)分析;在粘附测试后暴露。另外,通过使用SEM / EDS研究沉积在钢基板上的单铜颗粒的横截面的顶表面变形行为,以阐明粘合后的机制。研究结果证实,由于喷射形成,粘附性由冶金粘合,如机械互锁所控制的。与由超声波检测进一步验证的接收和半抛光表面相比,镜子抛光的表面导致更好的粘合强度。此外,发现较小尺寸的颗粒具有良好的粘合强度。

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