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Selected Tribological Properties of A390.0 Alloy

机译:A390.0合金的选定摩擦学性能

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Emergence of new designs for internal combustion engines resulted in a necessity to search for new materials which will rise to excessive technological requirements under operating conditions of modern internal combustion engines of up to 150 kW. Focusing only on material properties, theoretically existing alloys should meet presents requirements. More importantly, existing materials are well fitted to the entire crank-piston system. Thus, there is a need for a more thorough examination of these materials. The paper presents studies on determination of coefficient of friction μ and wear for the A390.0 alloy modified with AlTi5B master alloy combined with EN GJL-350 cast iron. The characteristics of a T-11 tribological tester (pin on disc) used for the tests, as well as the methodology of the tribological tests, were described. Also, the analysis of the surface distribution of elements for the pin and the disc was presented. The studies were realized in order to find whether the analyzed alloy meets the excessive requirements for the materials intended for pistons of modern internal combustion engines. The results show that the A390.0 alloy can only be applied to a load of 1.4 MPa. Above this value was observed destructive wear, which results in the inability to use it in modern internal combustion engines.
机译:用于内燃机的新设计的出现导致需要寻找新材料,这将在高达150 kW的现代内燃机的工作条件下对过高的技术要求。仅关注材料性能,理论上存在的合金应满足当前的要求。更重要的是,现有材料可以很好地适合整个曲柄活塞系统。因此,需要对这些材料进行更彻底的检查。本文介绍了用AlTi5B中间合金和EN GJL-350铸铁改性的A390.0合金的摩擦系数μ和磨损的测定方法的研究。描述了用于测试的T-11摩擦测试仪(盘上销钉)的特性,以及摩擦测试的方法。此外,还介绍了销钉和圆盘的元素表面分布分析。进行研究是为了发现所分析的合金是否满足用于现代内燃机活塞的材料的过度要求。结果表明,A390.0合金只能施加1.4 MPa的载荷。高于该值,则观察到破坏性磨损,导致无法在现代内燃机中使用。

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