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Role of Sn on the adhesion in Cu-Sn alloy-coated steel-rubber interface

机译:Sn对Cu-Sn合金涂层钢-橡胶界面附着力的影响

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摘要

Cu-Sn coatings with varying Sn content were deposited on steel substrate by immersion route and trie effect of variation of Sn content and the substrate roughness on the interfacial adhesion strength of Cu-Sn-coated steel substrates vulcanized with styrene butadiene rubber were investigated. The surface roughness of the coatings did not vary compared to pristine steel substrate with change in Sn weight% in the coatings. The coated surfaces exhibited bare spots or deep trough as micro-discontinuities in the coatings, where formation of Fe2O3 was evident from SEM-EDS, AES, and XPS analysis. Microstractural study of the coating cross-section and coating-substrate interface by transmission electron microscopy of cross-sectioned samples revealed inadequate penetration of coating inside these troughs. Peel test carried out on the Cu-Sn-coated steel-rubber joints showed mixed mode i.e. adhesive and cohesive mode of interfacial fracture irrespective of the coating composition. The peel test further indicated higher interfacial adhesion strength for Cu-Sn-coated samples than pure Cu-coated samples, with an optimum adhesion strength for the coatings containing 3-4 wt.% Sn.
机译:通过浸没途径在钢基底上沉积了不同Sn含量的Cu-Sn涂层,研究了Sn含量和基底粗糙度变化对丁苯橡胶硫化的Cu-Sn涂层钢基底界面粘合强度的影响。与原始钢基材相比,涂层的表面粗糙度没有变化,因为涂层中锡的重量百分比有所变化。涂层表面表现出裸露斑点或深谷,这是涂层中的微不连续之处,其中通过SEM-EDS,AES和XPS分析可明显形成Fe2O3。通过横截面样品的透射电子显微镜对涂层横截面和涂层-基材界面的显微结构研究表明,涂层在这些槽中的渗透不足。对涂覆有Cu-Sn的钢-橡胶接头进行的剥离试验显示了混合模式,即界面断裂的粘合和内聚模式,而与涂层组成无关。剥离试验还表明,与纯Cu涂层样品相比,Cu-Sn涂层样品的界面粘合强度更高,对于含3-4%(重量)Sn的涂层具有最佳的粘合强度。

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