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Friction and wear of iron and nickel in sodium hydroxide solutions

机译:铁和镍在氢氧化钠溶液中的摩擦磨损

摘要

A loaded spherical aluminum oxider rider was made to slide, while in various solutions, on a flat iron or nickel surface reciprocate a distance of 1 cm. Time of experiments was 1 hr during which the rider passed over the rider passed over the center section of the track 540 times. Coefficients of friction were measured throughout the experiments. Wear was measured by scanning the track with a profilometer. Analysis of some of the wear tracks included use of the SEM (scanning electron microscrope) and XPS (X-ray photoelectron spectroscopy). Investigated were the effect of various concentractions of NaOH and of water. On iron, increasing NaOH concentration above 0.01 N caused the friction and wear to decrease. This decrease is accompanied by a decrease in surface concentration of ferric oxide (Fe2O3) while more complex iron-oxygen compounds, not clearly identified, also form. At low concentrations of NaOH, such as 0.01 N, where the friction is high, the wear track is badely torn up and the surface is broken. At high concentration, such as 10 N, where the friction is low, the wear track is smooth. The general conclusion is that NaOH forms a protective, low friction film on iron which is destroyed by wear at low concentrations but remains intact at high concentrations of NaOH. Nickel behaves differently than iron in that only a little NaOH gives a low coefficient of friction and a surface which, although roughened in the wear track, remains intact.
机译:使负载的球形氧化铝骑手在各种溶液中在平坦的铁或镍表面上滑动1 cm的距离。实验时间为1个小时,在此过程中,骑手越过了轨道,经过了540次。在整个实验过程中都测量了摩擦系数。通过用轮廓仪扫描轨道来测量磨损。对一些磨损轨迹的分析包括使用SEM(扫描电子显微镜)和XPS(X射线光电子能谱)。研究了各种浓度的NaOH和水的影响。在铁上,NaOH浓度增加到0.01 N以上会导致摩擦和磨损降低。这种减少伴随着三氧化二铁(Fe2O3)表面浓度的减少,同时还形成了更复杂的铁-氧化合物(未明确鉴定)。在低浓度的NaOH(例如0.01 N)下,如果摩擦力很高,则磨损痕迹会严重撕裂,并且表面会破裂。在高浓度(例如10 N)下,摩擦较低,磨损轨迹很平滑。总的结论是,NaOH在铁上形成了一层保护性的低摩擦膜,低浓度的磨损会破坏该膜,而高浓度的NaOH则保持完整。镍的行为与铁不同,因为只有少量的NaOH会产生较低的摩擦系数,并且其表面尽管在磨损过程中会变粗糙,但仍保持完整。

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