首页> 外文期刊>Journal of Thermal Spray Technology >Tribological Behavior of Atmospheric Plasma-Spray-Deposited Ni-Based Composite Coatings at Different Speeds and Temperatures
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Tribological Behavior of Atmospheric Plasma-Spray-Deposited Ni-Based Composite Coatings at Different Speeds and Temperatures

机译:大气等离子体喷涂沉积Ni基复合涂层的摩擦学行为,不同速度和温度

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摘要

In order to examine the effect of sliding speeds on the elevated temperature tribological performance of atmospheric plasma-sprayed Ni-Al-Ag-MoS2 (NAMB), Ni-Al-Ag-MoS2-5 wt.% hBN (NAMB5) and Ni-Al-Ag-MoS2-10 wt.% hBN (NAMB10) composite coatings, friction and wear tests were conducted against alumina ball as a counter face using 'a rotary ball on disk configuration' at a constant load of 5 N and different sliding speeds 0.3, 0.5, 0.7 and 0.9 m/s from room temperature (RT) to 800 degrees C using a high-temperature tribometer. Both coefficient of friction and wear rate were found to decrease with increasing speed from 0.3 to 0.7 m/s with a marginal increase beyond that for all the coatings. However, coating NAMB5 exhibited better lubricity in comparison with the other coatings at all sliding speeds and temperatures. The coefficient of friction recorded for this coating decreased from 0.51 to 0.23 at a sliding speed of 0.3 m/s and from 0.48 to 0.1 at a sliding speed of 0.7 m/s as the temperature was increased from RT to 800 degrees C. The results indicate the existence of a synergistic action of hBN in combination with Ag and MoS2 in providing lower friction and wear, thus highlighting the potential of hBN as an effective solid lubricant to stabilize the friction in a wide range of temperatures and speeds.
机译:为了检测滑动速度对大气血浆喷涂Ni-Ag-MOS2(Namb)的升高摩擦学性能的影响,Ni-Al-Ag-MOS2-5重量%HBN(Namb5)和Ni- Al-Ag-MOS2-10wt.%HBN(Namb10)复合涂层,摩擦和磨损试验在恒压为5 n和不同滑动速度的恒定负载下使用“盘配置”和旋转球进行抗衡面。使用高温摩擦计,从室温(RT)为0.3,0.5,0.7和0.9m / s至800℃。发现摩擦速率和磨损率的速度均匀减小,随着0.3至0.7米/秒的增加而降低,其边际增加超过所有涂层。然而,与所有滑动速度和温度的其他涂层相比,涂层Namb5表现出更好的润滑性。对于该涂层记录的摩擦系数以0.3m / s的滑动速度从0.51至0.23减小,并且在0.7m / s的滑动速度下以0.48至0.1,随着温度从RT至800℃增加。结果表明HBN与AG和MOS2组合在提供较低的摩擦和磨损方面的存在协同作用,从而突出了HBN作为有效固体润滑剂的电位,以稳定在各种温度和速度范围内的摩擦。

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