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Comparative analysis of anti-cavitation and abrasion resistance properties of two different detonation coatings

机译:两种不同爆轰涂层抗空化和耐磨性能的比较分析

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Combined damage of cavitation and abrasion is one of the serious problems that affect lifetime and performance on hydraulic machineries and its components. Thermal spraying as a surface hardening and protection technology is required to protect hydraulic components, such as water turbine and radial flow pump, in general. Detonation sprayed coating with high abrasion resistance is one of the promising solutions as the protective coating against combined damage of cavitation and abrasion under solid-liquid double phase liquid conditions. In this study, NiCr-Cr_3C_2 and WC12Co coatings on the No.45 steel substrate surface have been formed by detonation spraying with the same technological parameter and their properties such as microstructure and microhardness have been studied. The cavitation and abrasion behavior of coatings and the substrate has been investigated using a self-manufactured rotating disk system. The resistance properties of cavitation erosion and abrasion have been illustrated and analyzed with the substrate by the cumulative mass loss curves. The results indicate that, the resistance properties of cavitation erosion and abrasion of NiCr-C_r3C_2 coating are the best.
机译:空化和磨损的综合损伤是影响液压机械及其组件的寿命和性能的严重问题之一。通常需要作为表面硬化和保护技术的热喷涂,以保护液压部件,例如水轮机和径向流动泵。具有高耐磨性的爆炸喷涂涂层是具有防止固体双相液体条件下的空化和磨损的保护涂层的有希望的解决方案之一。在本研究中,通过使用相同的技术参数的爆炸喷射形成NICR-CR_3C_2和WC12CO涂层,并研究了它们的诸如微观结构和显微硬度的性质。使用自制造的旋转盘系统研究了涂层和基板的空化和磨损行为。通过累积质量损失曲线用衬底示出并分析了空化腐蚀和磨损的抵抗性能。结果表明,NiCR-C_R3C_2涂层的空化腐蚀和磨损的耐受性是最佳的。

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