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Methods of preparing internal combustion engine cylinder bore surfaces for frictional improvement

机译:制备用于改进摩擦的内燃机气缸孔表面的方法

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Frictional losses piston to cylinder bore contact is a major sources of mechanical losses in an internal combustion engine (ICE). Traditional plateau honing produces a relatively rough cylinder bore surface with many valleys for oil retention and plateau surfaces that are usually has micro roughness's that causes mechanical friction to act as a bearing surface. A smooth polished dimpled surface is more ideal to achieve low friction and wear in an ICE. Alternative methods to create a smooth dimpled surface on a hypereutectic aluminum ADC12 substrate for frictional improvements are evaluated in this study using an oscillating wear tester (OWT). The methods include casting in the dimples in the aluminum matrix, sandblasting as well as embossing the pits. The texture samples are evaluated by examining the surface properties, measuring frictional coefficient as well as wear characteristics. It was found that the samples embossed with #320 grit sandpaper and sandblasted with #240 sieve sand samples had a reduced coefficient of friction (μ) of 23% at low sliding speeds before hydrodynamic lubrication mode and 6.9% in the fully hydrodynamic lubrication region.
机译:活塞与气缸孔接触的摩擦损耗是内燃机(ICE)中机械损耗的主要来源。传统的高原珩磨会产生一个相对粗糙的气缸孔表面,该表面具有许多用于保油的凹谷,而高原表面通常具有微小的粗糙度,从而导致机械摩擦充当轴承表面。光滑抛光的凹坑表面对于实现ICE的低摩擦和磨损更为理想。在本研究中,使用振荡磨损测试仪(OWT)评估了在过共晶铝ADC12基板上创建光滑凹坑表面以改善摩擦的替代方法。该方法包括在铝基体中的凹坑中铸造,喷砂以及对凹坑进行压花。通过检查表面性能,测量摩擦系数以及磨损特性来评估纹理样品。结果发现,在流体动力润滑模式之前,在低滑动速度下,用#320粒度砂纸压花并用#240筛目的砂子喷砂的样品的摩擦系数(μ)降低了23%,而在完全流体动力润滑区域的摩擦系数降低了6.9%。

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