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Physical aspects of wear of the piston-ring-cylinder set of combustion engines

机译:内燃机活塞环-气缸组磨损的物理方面

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The research presented in this paper has shown that the physical aspects of interfacial phenomena, described by the total value of surface free energy and the values of its components, make it possible to select more suitable materials for sliding pairs. The total value of surface free energy depends on the molecular structure and the bonds characteristic of a given material, and determines its hardness. In order to reduce friction losses in a sliding pair that is being designed, it is proposed to match such materials for the pair in such a way that the surface of one of them has a high sum of surface free energy components originating from van der Waals interactions, while the other material's surface has a possibly low value of the sum. Furthermore, proper values of the components of surface free energy ensure proper wettability with lubricating oil. In order to minimize friction in a sliding contact, the element with the larger surface area (e.g. a cylinder sleeve) should have larger dispersion and van der Waals forces compared with those of the oil, while the element with the smaller area (e.g. a piston ring) has to have smaller (as low as possible) dispersion and van der Waals forces compared with those of the lubricating oil. Thus a basis for reducing friction losses, particularly during mixed friction and boundary friction, has been created. Pursuing the practical goal of this research, a new cylinder liner sliding pair of a piston-ring-cylinder (PRC) set (in which the ring has a titanium nitride (TiN) coating and the cylinder liner has a surface layer with varying properties, applied by vacuum nitriding) of a piston packing ring-combustion engine was designed and made. The sliding pair can be used in self-ignition combustion engines and in spark-ignition engines. The sliding pair is the result of the research carried out as part of this paper, including tests in a tribotester and three-stage testing embracing numerical simulations, preliminary tests on the real object, and tests proper on the real object. [PUBLICATION ABSTRACT]
机译:本文提出的研究表明,界面现象的物理方面(由表面自由能的总值及其成分的值所描述)使得可以为滑副选择更合适的材料。表面自由能的总值取决于给定材料的分子结构和键合特性,并确定其硬度。为了减少正在设计的滑动对中的摩擦损失,建议以如下方式匹配这种滑动对中的材料,使得其中一个的表面具有源自范德华斯的高表面自由能成分之和。相互作用,而另一种材料的表面的和值可能较低。此外,表面自由能的成分的适当值确保了与润滑油的适当润湿性。为了使滑动接触中的摩擦最小化,与油相比,具有较大表面积的元件(例如,气缸套)应具有更大的分散力和范德华力,而具有较小表面积的元件(例如,活塞)与润滑油相比,必须具有较小(尽可能低的)色散和范德华力。因此,已经建立了减少摩擦损失的基础,特别是在混合摩擦和边界摩擦期间。为了达到这项研究的实际目标,我们制造了一套新的活塞环-气缸套(PRC)的气缸套滑动对(其中,套环具有氮化钛(TiN)涂层,气缸套的表面层具有不同的特性,设计制造了活塞环密封式内燃机的真空氮化工艺。滑动副可用于自燃内燃机和火花点火发动机。滑动对是本文研究的结果,包括三学期的测试和包括数值模拟的三阶段测试,对真实对象的初步测试以及对真实对象的适当测试。 [出版物摘要]

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