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Low cycle thermal fatigue of aluminum alloy cylinder head in consideration of changing metrology microstructure

机译:考虑变化的计量微观结构,铝合金气缸盖的低循环热疲劳

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To meet several marketing demands, development of new aluminum alloys which can be used for future high-efficiency diesel engines has been widely pursued. Especially, cylinder heads (hereafter referred to as "head(s)") are used at high combustion pressure and very high temperature, which makes it difficult to achieve a structure with light weight and high rigidity. In this study, aluminum alloy A356 (Al-Si-Mg series) which is a major head material, were conducted the thermal fatigue tests. Thus, the authors focused on the changing of material characteristics (hardness and stress-strain curves as for macroscopic characteristic and microstructure as for microscopic characteristic) during the test. This paper deals with the effects of artificial aging on two aluminum alloys A356, which have been often used for engine cylinder heads. The aluminum alloys were artificially aged under several different conditions after T6 heat treatment. The alloys were tested for fatigue characteristics as thermo-mechanical fatigue failure. The microstructure was observed by TEM to see the effects on microstructure in terms of fatigue failure. In addition, we examined the microstructure of an actual head after a durability test, and tried to find out whether material test conditions above mentioned were reasonable. Finally, the relationship between the microstructure changes and the low cycle thermal fatigue is discussed.
机译:为满足几种营销需求,广泛追求可用于未来高效柴油发动机的新型铝合金的开发。特别地,在高燃烧压力和非常高的温度下使用气缸盖(以下称为“头部”),这使得难以实现具有轻质和高刚性的结构。在本研究中,作为主要头部材料的铝合金A356(Al-Si-Mg系列)进行了热疲劳试验。因此,作者的重点是在试验期间重点关注材料特性(硬度和应力 - 应变曲线的宏观特征和微观结构的微观结构)。本文涉及人工老化对两种铝合金A356的影响,该铝合金A356经常用于发动机气缸盖。在T6热处理后,铝合金在几种不同的条件下在几种不同的条件下表现为。测试合金以疲劳特性作为热机械疲劳失效。通过TEM观察到微观结构,以便在疲劳失效方面看到对微观结构的影响。此外,我们在耐久性测试后检查了实际头部的微观结构,并试图找出上述材料测试条件是否合理。最后,讨论了微观结构变化与低循环热疲劳之间的关系。

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