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A slider-slab sliding model for hard-to-soft and soft-to-soft sliding systems with abrasive and non-abrasive wear conditions is used to investigate atomic-scale friction. The molecular dynamics simulation uses the Morse potential to calculate interatomic forces between atoms. Separation distance between the slider and the slab is changed to simulate repulsive and attractive interactive force fields exerted on interface between two sliding components. Effects of the interaction potential parameters on the sliding friction are investigated. The relationship of frictional force, normal force and temperature rise of the slider and the slab during sliding are established. Comparison of the hard-to-soft and the soft-to-soft sliding system are carried out and shows different tribological phenomena. 相似文献
24.
Frictional anisotropy of oriented carbon nanotube surfaces 总被引:1,自引:0,他引:1
P.L. Dickrell S.B. Sinnott D.W. Hahn N.R. Raravikar L.S. Schadler P.M. Ajayan W.G. Sawyer 《Tribology Letters》2005,18(1):59-62
This report examines highly anisotropic tribological behavior of multi-walled nanotube films oriented in mutually orthogonal directions. The average values of coefficient of friction varied from extremely high values (=0.795) for vertically aligned nanotubes grown on rigid substrates to very low values (=0.090) for nanotubes dispersed flat on the same substrates. The results were insensitive to humidity, in contrast to graphite materials, and indicate that nanotubes could be utilized as both low and high frictional surfaces. 相似文献
25.
Scanning electron microscope (SEM) tribometric data on polycrystalline silicon (poly-Si) vs. poly-Si, Si(100) vs. Si(100)
and Si(111) vs. Si(111) interfaces, obtained in
Torr and in 0.2 Torr partial pressure of hydrogen gas (
) from room temperature to 850°C, were performed under standard and much slower thermal ramping rates. The friction data were analyzed per the methodology
described in part I of this paper series. The results indicate a highly beneficial friction- and wear-reducing regime within
a relatively narrow thermal region. This desirable region coincides with some chemisorption of excited species of molecular
hydrogen just before the mass thermal desorption of surface hydrides. These data represent the tribochemical equivalent of
a method routinely used in electronics, whereby deep electron traps (dangling Si bonds) are passivated by baking in molecular
hydrogen. The
also exerts a moderating influence on the size of the friction noise at all test temperatures. However, the general level
of friction beyond the beneficial thermal region is high. In parallel, the general wear rate of Si representative of the entire
range of standard thermal ramping in both atmospheric environments is in the extremely high 10-12m3/(N m) range. Operating strictly in the beneficial, low-friction thermal regime resulted in a several orders-of-magnitude
reduction in the wear rate over those measured under standard thermal ramping conditions. Although the results confirm previous
findings that Si is not a good material of construction for miniaturized moving mechanical assemblies (e.g., microbearings
and gears), there seems to be some limited possibility of gas-phase lubrication of Si micromechanisms with rarefied hydrogen
at surface temperatures between 100 and 300°C.
This revised version was published online in July 2006 with corrections to the Cover Date. 相似文献
26.
本文为臭氧防霉实验研究。25℃条件下,10~20ppm臭氧直接处理串珠镰刀菌、黄曲霉、黑曲霉、草酸青霉、圆弧青霉,每天处理8小时,明显抑制其生长发育,连续处理效果更佳。用臭氧保藏高水分玉米,接触臭氧玉米不霉变,但臭氧渗透差,必须辅以通风。20℃时向含水量23.42%玉米中通入10ppm臭氧,可向下渗透1米,1米处O_3为0.5ppm,交换次数约每5分钟一次,玉米保藏20天未发生霉变,加大O_3浓度,O_3可渗透至1.5米。2~10ppm臭氧25℃时处理水分21.05%的玉米,玉米过氧化值、脂肪酸值均无明显变化。较新鲜玉米香味略差,但仍较对照样品好。试验还证明受臭氧处理玉米发芽率略有降低。 相似文献
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研究了加入不同含量的微细铬铁粉对烧结钢干摩擦磨损性能的影响,并借助于扫描电镜观察分析其磨损形貌,探讨摩擦磨损机制。研究结果表明:添加微细铬铁粉可改善烧结钢的强度、硬度和摩擦磨损性能,铬的质量分数为1.5%时,耐磨性最佳。磨损造成一定厚度的塑性变形,硬度较高的材料塑性变形层较薄。磨损早期,磨粒磨损是主导机制,磨损后期,由于塑性变形导致亚表层产生裂纹,进而发生的剥层磨损是主导磨损机制。 相似文献
29.
30.
本工作对尼龙1010(PA1010)及其与双酚A型聚碳酸酯(PC)的共混物进行了内耗测量,发现它们的内耗峰温与测量起始温度有密切联系。 相似文献