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TRIBO-MECHANICAL PROPERTIES OF CoCr and NiWCrB HARDFACING SUPERALLOY COATING SYSTEMS

机译:COCR和NIWCRB Hardfacing超合金涂层系统的摩擦机械性能

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Wear of materials is a serious problem facing industry especially in mechanical applications where moving parts are continuously subjected to friction. Hard coatings prepared by a variety of processes are nowadays considered as effective solutions to protect components against wear. Examples of such processes are: thermal spray coating, vacuum-based coating and hardfacing. In this paper, we study the mechanical, tribological and corrosion properties of two hard coating systems: CoCr Stellite 6 (ST6) hardfacing on 316 stainless steel and NiWCrB Colmonoy 88 (C88) thermal spray coating on Inconel 718. The effect of gas nitriding on the microstructure and wear performance of these coating systems is investigated. X-ray diffraction, energy dispersive spectroscopy and scanning electron microscopy were used for microstructural analysis. Micro-indentation technique was utilized to measure the surface and cross-sectional hardness of the coatings. Rockwell indentation technique was used to evaluate coating adhesion in accordance with CEN/TS 1071-8. Pin-on-disk tests were conducted to assess the tribological performance of the coatings. Microstructural analysis showed that ST6 has a cobalt matrix in the form of dendrites reinforced with metal carbide particles whereas C88 has a Nickel matrix reinforced mainly with metal boride particles. ST6 and C88 improved significantly the wear resistance of their corresponding substrates. This is mainly due to good adhesion and high hardness of the coatings; HR15N values of ST6 and C88 were almost 85 as compared to 61 and 80 for 316 and INC substrates, respectively. ST6 was found to improve significantly the corrosion resistance of 316 whereas C88 decreased the corrosion performance of INC. Moreover, nitriding treatment was found to improve significantly the wear resistance of 316 and INC, however, in the case of ST6, nitriding was beneficial in terms of wear resistance only at relatively low load.
机译:材料的磨损是一个严重的面临的行业尤其是在机械应用中,移动部件连续摩擦。如今,通过各种方法制备的硬涂层被认为是保护抗磨损部件的有效溶液。这些方法的实例是:热喷涂涂层,真空涂层和性硬化。本文研究了两种硬涂层系统的机械,摩擦腐蚀特性:COCR Stellite 6(ST6)在316不锈钢和Niwcrb Colmonoy 88(C88)热喷涂在第718上的热喷涂涂层。气体氮化的影响研究了这些涂料系统的微观结构和磨损性能。 X射线衍射,能量分散光谱和扫描电子显微镜用于微观结构分析。利用微压痕技术来测量涂层的表面和横截面硬度。 Rockwell压痕技术用于根据CEN / TS 1071-8评估涂层粘附。进行了引脚测试以评估涂层的摩擦学性能。微观结构分析表明,ST6具有钴晶钴的钴基,用金属碳化物颗粒加固,而C88主要具有镍基质,主要用金属硼化物颗粒加固。 ST6和C88显着提高了它们相应的基材的耐磨性。这主要是由于涂层的良好附着力和高硬度;与316和INC基质的61和80相比,ST6和C88的HR15N值几乎是85。发现ST6显着提高了316的耐腐蚀性,而C88降低了INC的腐蚀性能。此外,发现氮化处理显着提高了316和Inc的耐磨性,然而,在ST6的情况下,氮化是有益的耐磨性仅在相对较低的负荷下。

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