首页> 外文期刊>Journal of Thermal Spray Technology >Microstructural and Tribological Characteristics of Sn-Sb-Cu-Based Composite Coatings Deposited by Cold Spraying
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Microstructural and Tribological Characteristics of Sn-Sb-Cu-Based Composite Coatings Deposited by Cold Spraying

机译:冷喷涂沉积Sn-Sb-Cu基复合涂层的微观结构和摩擦学特征

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摘要

Sn-based Babbitt coatings are widely used for sliding in hydrodynamic bearings. The Babbitting of bearing surfaces is among others accomplished by casting; however, this implies some disadvantages such as segregations, or susceptibility to shrinkage defects. Thermal spraying represents a promising method to overcome these challenges. To date, no studies on Babbitt coatings deposited by means of low-pressure cold spraying (LPCS) are available in the literature. In this study, a first attempt is made to produce a Sn-Sb-Cu-based composite coating reinforced with alumina particles by means of LPCS which enables the coating of internal diameters (IDs) of cylindrical components. A tailor-made feedstock was utilized which consists of a powder mixture of Sn, Sb, Cu and alumina. The composite coating is investigated with regard to its microstructural and tribological characteristics using scanning electron microscopy (SEM), energy-dispersive x-ray spectroscopy (EDS), x-ray diffraction (XRD), as well as dry sliding experiments. Metallographic investigations demonstrate the feasibility of depositing an alumina-reinforced Sn-Sb-Cu-based composite coating with a dense microstructure and low porosity. The composite coating mainly consists of Sn, SbSn, Cu and hexagonal CuSn. Despite a small fraction of alumina particles, the microhardness of the composite coating is primarily determined by the formation of SbSn intermetallic phases dispersed in the soft Sn-Sb-rich matrix. The composite coating possesses a coefficient of friction of 0.43 +/- 0.01 and wear coefficient k of 17.27 +/- 7.77 x 10(-5) mm(3) N m(-1) sliding against a 100Cr6 counterbody.
机译:基于Sn的巴比特涂层广泛用于在流体动力学轴承中滑动。轴承表面的乌巴布特是通过铸造完成的其他方式;然而,这意味着诸如分离或对收缩缺陷的易感性等一些缺点。热喷涂代表了克服这些挑战的有希望的方法。迄今为止,在文献中没有对借助低压冷喷涂(LPC)沉积的巴巴特涂层的研究。在该研究中,首先尝试通过LPC制备与氧化铝颗粒增强的Sn-Sb-Cu基复合涂层,其能够涂覆圆柱形部件的内径(IDS)。利用量制的原料,其由Sn,Sb,Cu和氧化铝的粉末混合物组成。使用扫描电子显微镜(SEM),能量分散X射线光谱(EDS),X射线衍射(XRD)以及干式滑动实验,研究了复合涂层。金相调查证明了沉积氧化铝增强的Sn-Sb-Cu基复合涂层的可行性,具有致密的微结构和低孔隙率。复合涂层主要由Sn,SBsn,Cu和六边形Cusn组成。尽管部分氧化铝颗粒部分,复合涂层的显微硬度主要通过形成分散在富含软SN-SB的基质中的SBSN金属间相。复合涂层具有0.43 +/- 0.01和17.27 +/- 7.77×10(-5)mm(3)n m(-1)的磨损系数k的系数,滑动在100cr6靶靶中。

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