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Sand slurry erosive wear of thermal sprayed coating of stellite

机译:司太立特热喷涂涂层的砂浆腐蚀磨损

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The present paper describes the sand slurry erosive wear behaviour of the flame sprayed stellite (Co-Cr-W-Ni-C) coating. The wear behaviour was evaluated with the help of a slurry pot tester by using two sand slurry concentrations (20 and 40 percent sand particles) at different rotational speeds (600-1000 rev min~(-1)). It was observed that the weight loss of the coating material and rotational speed relationship is governed by the concentration of sand particles in slurry. Slurry erosive wear of the coating showed that in case of 20 percent silica sand slurry, weight loss increases with increase in rotational speed from 600 to 1000 rev min~(-1) while in case of 40 percent silica sand slurry weight loss first increases with increase in rotational speed from 600 to 800 rev min~(-1) followed by marginal decrease in weight loss with further increase in rotational speed from 800 to 1000 rev min~(-1). Improvement in wear resistance of mild steel due to development of the thermal sprayed coating was calculated as wear ratio which is a ratio of weight loss of mild steel and that of coating. Wear ratio was found in range of 4.2-7.5 under different test conditions. The microstructure study showed polyhedral shaped Cr dominated carbide particles in eutectic matrix. The average microhardness of the coating was 680 HV. Wear behaviour of coating has been discussed in light of microstructure and microhardness of coating. Scanning electron microscopy study of wear surface showed that loss of material from the coating takes place by indentation, crater formation and lip formation and its fracture.
机译:本文介绍了火焰喷涂的司太立(Co-Cr-W-Ni-C)涂层的砂浆腐蚀磨损行为。借助于淤浆罐测试仪,以两种不同浓度(600-1000 rev min〜(-1))的沙浆浓度(20%和40%的沙粒)来评估磨损行为。可以看出,涂料的重量损失和转速之间的关系受浆料中砂粒浓度的控制。涂料的浆液腐蚀磨损表明,在20%的硅砂浆情况下,重量损失随转速从600增加到1000 rev min〜(-1)而增加,而在40%的硅砂浆情况下,重量损失首先随转速从600增加到800 rev min〜(-1),然后重量损失略有减少,转速从800进一步增加到1000 rev min〜(-1)。计算出由于热喷涂涂层的发展而引起的软钢耐磨性的提高,以磨损率计算,该磨损率是低碳钢与涂层的重量损失之比。在不同的测试条件下,磨损率在4.2-7.5范围内。显微组织研究表明,共晶基质中多面体形的Cr占主导地位的碳化物颗粒。涂层的平均显微硬度为680 HV。已经根据涂层的微观结构和显微硬度讨论了涂层的磨损行为。磨损表面的扫描电子显微镜研究表明,涂层中的材料损失是通过压痕,缩孔和唇部形成及其断裂而发生的。

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