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Understanding Friction and Wear Mechanisms of High-Purity Titanium against Steel in Liquid Nitrogen Temperature

机译:在液氮温度下了解高纯钛对钢的摩擦磨损机理

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摘要

Although the friction and wear properties of several metallic alloys in unlubricated conditions are widely investigated, such understanding for high-purity metals in cryogenic environment is rather limited. This article reports the tribological properties of high-purity α-titanium (α-Ti), prepared by cold rolling and recrystallization annealing, under liquid nitrogen (LN2) and room temperature (RT) environments against steel (bearing grade: SAE 52100) at varying loads (up to 15 N) and sliding speeds (0.6 to 4.19 m/s). It has been found that the steady-state coefficient of friction (COF) of titanium under LN2 environment (~0.27 to 0.33) is lower than that at RT COF (~0.33 to 0.58) irrespective of sliding speed. For cryogenic sliding conditions, the COF decreased steadily with sliding speed to a mean value of about 0.28 and no appreciable variation in COF is noticed for sliding speed of more than 1.5 m/s. The wear rate under both environment conditions was of the order of 10?3 mm3 N?1 m?1 irrespective of variation in operating parameters, but the RT wear rate was found to be higher compared to the LN2 case. Overall, the experimental results demonstrate improved tribological properties of high-purity titanium at LN2 temperature compared to the RT. Flow localization at tribological interfaces because of the large strain rate and subsequent damage accumulation at the titanium test piece are some of the attributes of the wear of Ti at LN2 temperature. In addition, the galling of titanium was also observed to occur under large contact stress and sliding speed conditions.
机译:尽管已广泛研究了几种金属合金在未润滑条件下的摩擦和磨损性能,但对于在低温环境下对高纯度金属的这种了解却相当有限。本文报道了在液氮(LN2)和室温(RT)环境下通过冷轧和重结晶退火制备的高纯度α-钛(α-Ti)对钢(轴承等级:SAE 52100)的摩擦学性能。变化的载荷(最大15 N)和滑动速度(0.6到4.19 m / s)。已经发现,与滑动速度无关,在LN2环境下(〜0.27至0.33),钛的稳态摩擦系数(COF)低于RT COF下的稳态摩擦系数(〜0.33至0.58)。对于低温滑动条件,COF随滑动速度稳定下降至平均值约0.28,并且对于大于1.5 m / s的滑动速度,未观察到COF的明显变化。两种环境条件下的磨损率均为10?3 mm3 N?1 m?1 ,与操作参数的变化无关,但RT磨损率被发现比LN2病例要高。总体而言,实验结果表明,与RT相比,在LN2温度下高纯度钛的摩擦学性能得到了改善。由于大的应变速率以及随后在钛试件上的损伤积累,摩擦学界面处的流体局部化是LN2温度下Ti磨损的一些属性。此外,还观察到钛在较大的接触应力和滑动速度条件下发生磨损。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第2期|472-480|共9页
  • 作者单位

    Laboratory for Advanced Ceramics Department of Materials and Metallurgical Engineering Indian Institute of Technology IIT Kanpur 208016 India;

    Praxair Electronics Orangeburg New York NY 10962 USA;

    Laboratory for Advanced Ceramics Department of Materials and Metallurgical Engineering Indian Institute of Technology IIT Kanpur 208016 India;

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