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首页> 外文期刊>Tribology letters >Friction and wear of fullerene-like WS{sub}2 under severe contact conditions: friction of ceramic materials
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Friction and wear of fullerene-like WS{sub}2 under severe contact conditions: friction of ceramic materials

机译:严重接触条件下类富勒烯WS {sub} 2的摩擦磨损:陶瓷材料的摩擦

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摘要

Recently, the behavior of inorganic fullerene-like (IF) WSi nanoparticles in the interface of steel-on-steel pair has been analyzed. It was shown that originally when the gap between the contact surfaces is smaller than the size of the IF nanoparticles, there is no effect of the nanoparticles on the friction force. During the test stiff IF nanoparticles can plough the surface of hard steel samples and penetrate into the interface under friction. Molecular sheets of WS{sub}2 from the delaminated IF nanoparticles, which reside in the valleys of the rough surfaces cover the contact spots and thus decrease the number of adhered spots at the transition to seizure. The goal of the present work was to study the behavior of IF nanoparticles in the interface of ceramic surfaces. The friction tests were performed using a ball-on-flat device. A silicon nitride ball was slid against an alumina flat with maximum contact pressure close to 2 GPa. SEM, TEM and AFM techniques have been used in order to assess the behavior of IF nanoparticles in the interface. The behavior of IF nanoparticles in the much harder ceramic interfaces was found to be appreciably different from the steel pair. The pristine IF nanoparticles are damaged in the inlet of the contact during the first few cycles and thin shells of broken nanoparticles gradually cover the middle range of the contact surface. Different modes of deformation and destruction of the IF nanoparticles are exhibited when going from the middle to edge area of the contact. While aggregates of the pristine nanoparticles are formed at the edge of the contact, thin shells of broken IF nanoparticles are observed in the middle area where contact pressure is maximum. Mechanical stability and damage of IF nanoparticles in the ceramic interface are discussed.
机译:最近,已经分析了无机富勒烯样(IF)WSi纳米粒子在钢对钢界面中的行为。结果表明,最初,当接触表面之间的间隙小于IF纳米颗粒的尺寸时,纳米颗粒对摩擦力没有影响。在测试过程中,坚硬的IF纳米颗粒会犁掉硬质钢样品的表面,并在摩擦作用下渗入界面。来自分层的IF纳米粒子的WS {sub} 2的分子片,其位于粗糙表面的谷中,覆盖了接触点,因此减少了向癫痫过渡的粘附点的数量。本工作的目的是研究IF纳米粒子在陶瓷表面界面中的行为。摩擦测试是使用平球装置进行的。将氮化硅球在最大接触压力接近2 GPa的氧化铝板上滑动。 SEM,TEM和AFM技术已用于评估界面中IF纳米粒子的行为。发现IF纳米粒子在坚硬得多的陶瓷界面中的行为与钢对明显不同。在最初的几个循环中,原始的IF纳米颗粒在接触器的入口受到损坏,破碎的纳米颗粒的薄壳逐渐覆盖接触表面的中间范围。从接触的中部到边缘区域,IF纳米颗粒的变形和破坏模式不同。当在接触的边缘形成原始纳米颗粒的聚集体时,在接触压力最大的中间区域观察到破碎的IF纳米颗粒的薄壳。讨论了陶瓷界面中IF纳米粒子的机械稳定性和损伤。

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