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Better Surface Integrity and Tribological Properties of Steel Sintered by Powder Metallurgy

机译:粉末冶金烧结的钢材更好的表面完整性和摩擦学性质

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摘要

The current research reports the improvement in surface integrity and tribological characteristics of steel prepared using a powder metallurgy (PM) by ultrasonic nanocrystal surface modification (UNSM) at 25 and 300 °C. The surface integrity and tribological properties of three samples, namely, as-PM, UNSM-25 and UNSM-300 were investigated. The average surface roughness of the as-PM, UNSM-25 and UNSM-300 samples was measured using a non-contact 3D scanner, where it was found to be 3.21, 1.14 and 0.74 µm, respectively. The top surface hardness was also measured in order to investigate the influence of UNSM treatment temperature on the hardness. The results revealed that the as-PM sample with a hardness of 109 HV was increased up to 165 and 237 HV, corresponding to a 32.1% and 57.2% after both the UNSM treatment at 25 and 300 °C, respectively. XRD analysis was also performed to confirm if any changes in chemistry and crystal size were took place after the UNSM treatment at 25 and 300 °C. In addition, dry tribological properties of the samples were investigated. The friction coefficient of the as-PM sample was 0.284, which was reduced up to 0.225 and 0.068 after UNSM treatment at 25 and 300 °C, respectively. The wear resistance was also enhanced by 33.2 and 52.9% after UNSM treatment at both 25 and 300 °C. Improvements in surface roughness, hardness and tribological properties was attributed to the elimination of big and deep porosities after UNSM treatment. Wear track of the samples and wear scar of the counter surface balls were investigated by SEM to reach a comprehensive discussion on wear mechanisms. Overall, it was confirmed that UNSM treatment at 25 and 300 °C had a beneficial effect on the surface integrity and tribological characteristics of sintered steel by the PM that is used in a shock absorber for a car engine.
机译:目前的研究报告了通过在25和300℃下通过超声纳米晶体表面改性(UNSM)在25和300℃下使用粉末冶金(PM)制备的钢的表面完整性和摩擦的改善。研究了三个样品的表面完整性和摩擦学性质,即AS-PM,UNSM-25和UNSM-300。使用非接触式3D扫描仪测量AS-PM,UNSM-25和UNSM-300样品的平均表面粗糙度,其中发现其分别为3.21,1.14和0.74μm。还测量了顶表面硬度,以便研究UNSM治疗温度对硬度的影响。结果表明,具有109HV硬度的AS-PM样品高达165和237HV,相当于25和300℃的UNSM治疗后的32.1%和57.2%。还进行了XRD分析以确认在25和300°C的UNSM治疗后发生了化学和晶体尺寸的任何变化。此外,研究了样品的干燥摩擦学性质。 AS-PM样品的摩擦系数为0.284,分别在25和300℃下的UNSIM处理后减少至0.225和0.068。在25℃和300℃下,在UNSM处理后,耐磨性也增强了33.2和52.9%。表面粗糙度,硬度和摩擦学性质的改善归因于未经态性治疗后的大而深孔孔隙。通过SEM研究了柜台球的样品和磨损瘢痕的磨损轨迹,达到磨损机制的综合讨论。总的来说,确认,在25和300°C下的UNSM治疗对由用于汽车发动机的减震器中使用的PM对烧结钢的表面完整性和摩擦学特性进行了有益的影响。

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