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首页> 外文期刊>Materials science forum >Thermo-Mechanical Fatigue of Grey Cast Iron for Cylinder Heads - Effect of Niobium, Molybdenum and Solidification Time
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Thermo-Mechanical Fatigue of Grey Cast Iron for Cylinder Heads - Effect of Niobium, Molybdenum and Solidification Time

机译:缸盖用灰铸铁的热机械疲劳-铌,钼和凝固时间的影响

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摘要

Grey iron alloyed with molybdenum and niobium in seven different compositions has been casted using three, in industrial components viable, solidification times which resulted in 21 different samples. The samples have been investigated with respect to microstructure, static properties and thermo-mechanical fatigue performance. It was found that the solidification time is very important for both the static and thermo-mechanical performance. If the solidification time is long the properties are controlled entirely by the large graphite flakes and there is no influence of the alloying elements. On the other hand if the solidification time can be kept short the need for alloying elements may be removed. For the shorter solidification times an influence from the matrix and thus the alloying elements can be seen. It was found that molybdenum enhances TMF-life while no such effect was found for niobium. Niobium, on the other hand, has a larger effect on static strength than molybdenum and also on the cyclic stress in the thermo-mechanical fatigue experiments.
机译:用三种在工业上可行的凝固时间铸造了七个成分为钼和铌的灰铸铁,产生了21个不同的样品。对样品的微观结构,静态性能和热机械疲劳性能进行了研究。发现固化时间对于静态和热机械性能都是非常重要的。如果固化时间长,则性能将完全由大的石墨薄片控制,并且不会受到合金元素的影响。另一方面,如果可以将固化时间保持得较短,则可以消除对合金元素的需求。对于较短的凝固时间,可以看到来自基体以及合金元素的影响。发现钼延长了TMF的寿命,而铌没有这种作用。另一方面,在热机械疲劳实验中,铌比钼对静态强度的影响更大,对循环应力的影响也更大。

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