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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Influence of contact area on the sliding friction and wear behaviour of an electrochemical jet textured Al-Si alloy
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Influence of contact area on the sliding friction and wear behaviour of an electrochemical jet textured Al-Si alloy

机译:接触面积对电化学喷射纹理Al-Si合金滑动摩擦和磨损行为的影响

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摘要

Environmental legislation continues to drive optimisation of internal combustion engines in the automotive sector in an effort to reduce harmful emissions and promote fuel efficiency. Significant frictional losses occur at the ring pack, prompting research on reducing sliding friction at the ring - liner interface through the use of surface texturing. This study assesses the influence of contact area on the friction and wear behaviour of lightweight monolithic hyper-eutectic Al-Si alloy with a textured surface generated by electrochemical jet texturing. Flat rectangular samples were prepared from a cast cylinder liner via electro-discharge machining and flat lapped to 6 mu m diamond finish prior to immersion in a 1 mol solution of NaOH for 120 s to simulate the mechanical honing process. Surfaces were electrochemically jet textured using a 2.3 mol solution of NaC1 and current density of 220 A/cm(2). An offset array of 1.3 x 0.3 mm rectangular features at 1.2 mm spacing was created with an average depth of 39 mu m. Lubricated reciprocating sliding was carried out at a stroke length of 25 mm in a bath of PAO (4 cSt) at 100 degrees C against a 6 mm diameter, 13 mm long 52100 steel cylinder with three different contact areas corresponding to initial contact pressures of 157, 12 and 4 MPa. Sliding frequencies were varied between 1 and 15 Hz at a load of 50 N in order to establish the influence of both the contact pressure and velocity on the friction behaviour as a function of the lubrication regime. Textured features were observed to reduce the average coefficient of friction by up to 37% via a lubricant reservoir mechanism if the counter-surface contact width was greater than the feature dimension. Increases in contact pressure prevented a micro-EHL effect due to adhesive wear rather than pressurization of textured features.
机译:环境立法继续推动汽车领域内燃烧发动机的优化,以减少有害排放,促进燃油效率。在环形包装中发生显着的摩擦损失,提示通过使用表面纹理来减少环衬垫界面的滑动摩擦。该研究评估了接触区域对轻质整体超共晶Al-Si合金与电化学​​喷射纹理产生的纹理表面的摩擦磨损行为的影响。通过电放电加工和平面覆盖到6μm金刚石晶体的浇筑圆柱衬里,在浸入1摩尔NaOH溶液中的120℃以模拟机械珩磨过程之前,从铸造加工加工和平面覆盖到6μm金刚石衬里制备。使用2.3摩尔NaC1和电流密度为220a / cm(2)的电化学喷射纹理的表面纹理。 1.2 mm间距为1.2 mm间距的1.3×0.3mm矩形特征的偏移阵列,平均深度为39 mu m。在Pao(4CST)的浴中,在100℃下以25mm的行程长度进行润滑的往复滑动,其直径为6mm长的52100钢瓶,具有三个不同的接触区域,对应于157的初始接触压力,12和4 MPa。在50 n的负载下,滑动频率在1和15 Hz之间变化,以确定接触压力和速度对摩擦行为的影响,作为润滑制度的函数。如果反表面接触宽度大于特征尺寸,则观察到纹理特征通过润滑剂储存机制将平均摩擦系数降低至37%。接触压力的增加阻碍了由于粘合剂磨损而不是纹理特征的加压引起的微型EHL效应。

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