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Origins of the wear resistance of AlSi cylinder bore surfaces studies by surface analytical tools

机译:表面分析工具研究AlSi缸孔表面耐磨性的起源

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This paper investigates the origin of the wear resistance of hypereutectic AlSi cylinder bore surfaces using atomic force microscopy, auger electron spectroscopy and focused ion beam analysis. Our findings suggest that the piston ring is not sliding on top of the raised silicon primary crystals, as often assumed, Instead, a new surface material is formed during running-in, which is sintered by wear particles as a result of the energy dissipated during sliding. The process can be understood as a friction induced particle strengthening of the aluminium matrix which raises the shear strength of the original material. Eventually this surface provides the wear resistance of the cylinder bore.
机译:本文使用原子力显微镜,螺旋钻电子能谱和聚焦离子束分析技术研究了过共晶AlSi缸孔表面耐磨性的成因。我们的发现表明,活塞环并没有像通常所假设的那样在凸起的硅初晶上滑动,而是在磨合过程中形成了一种新的表面材料,该材料由于磨损的能量而在磨损过程中被烧结。滑动。该过程可以理解为铝基质的摩擦诱导颗粒增强,从而提高了原始材料的剪切强度。最终,该表面提供了气缸孔的耐磨性。

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