Effect of dilution on the microstructure and high-temperature wear resistance of self-lubricating nickel alloy claddings

S. Gudala, Uzwalkiran Rokkala, Subba Rao Medabalimi, R. M.R., Konovalov Sergey Valerievich
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Abstract

In this study, the impact of substrate dilution on the microstructure and tribological properties of tungsten inert gas (TIG)-deposited self-lubricating claddings was investigated. The dilution of Ti content on cladding increased as the TIG current increased, and the microhardness of the cladding decreased. The content of intermetallic phases such as TiNi and TiC increased with the increase in TIG current. The tribological studies revealed that coating dilution at higher TIG currents has prominent effects on wear behaviour at elevated temperatures. In both clads, the percentage decrease in hardness from higher TIG current to lower TIG current was noted as 31%. The higher dilution of Ti content in the cladding was found to be beneficial in tribological studies performed, especially at higher temperatures (≥400). Also, solid lubricants such as MoS2 and BaF2 encapsulation in the nickel alloy were found to be beneficial at both low and high temperatures.
稀释对自润滑镍合金包层微观结构和高温耐磨性的影响
本研究探讨了基体稀释对钨惰性气体(TIG)沉积自润滑覆层微观结构和摩擦学特性的影响。随着氩弧焊电流的增加,覆层上钛含量的稀释程度增加,覆层的显微硬度降低。金属间相如 TiNi 和 TiC 的含量随着 TIG 电流的增加而增加。摩擦学研究表明,较高氩弧焊电流下的涂层稀释对高温下的磨损行为有显著影响。在两种镀层中,从较高的氩弧焊电流到较低的氩弧焊电流,硬度下降的百分比均为 31%。在所进行的摩擦学研究中发现,堆焊层中较高的钛含量稀释是有益的,尤其是在较高温度(≥400)下。此外,在镍合金中封装 MoS2 和 BaF2 等固体润滑剂在低温和高温下都有好处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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