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Effects of Graphite Morphology and Matrix Structure on Thermal Cycle Fatigue Properties of Cast Iron

机译:石墨形态和基体结构对铸铁热循环疲劳性能的影响

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摘要

When considering material strengthening, full knowledge of the mechanism of destruction is required to develop the strengthening method. Although thermal fatigue is a problem faced for cast iron engine parts due to pouring operations or the operating environment and many researches on thermal fatigue of cast iron have been reported, little research has been conducted on the effects of graphite morphology and matrix structure on thermal fatigue properties. In this research, the effects of graphite morphology and matrix structure on thermal cycle fatigue properties of cast iron were investigated in thermal cycle fatigue tests on thermal fatigue at the explosive side using a sample resembling a cylinder head made of cast iron. The results showed that cracks generated by the thermal cycle fatigue of cast iron are closely related to graphite shape and generate early in the order of flake shape, CV, and spheroidal shape. The progress of cracks was also found to be strongly related to thermal stress generated by heat load and static strength ratio. The difference in the size of thermal stress generated in cast iron is governed by the physical properties of the material. Since physical properties are related to the graphite morphology, the thermal cycle fatigue properties of cast iron also depend on the graphite form. The effects of heat conduction are especially large, and since CV graphite cast iron showed good heat conduction, and exhibited static strength, the thermal cycle fatigue properties of CV graphite cast iron were found to be excellent in moderate cooling conditions.
机译:在考虑进行材料加固时,需要充分了解破坏机理才能开发出加固方法。尽管由于浇铸操作或工作环境而使热疲劳成为铸铁发动机零件面临的问题,并且已经报道了许多关于铸铁热疲劳的研究,但是关于石墨形态和基体结构对热疲劳的影响的研究很少。属性。在这项研究中,使用类似于铸铁制成的气缸盖的样品,在爆炸侧热疲劳的热循环疲劳试验中研究了石墨形态和基体结构对铸铁热循环疲劳性能的影响。结果表明,铸铁热循环疲劳产生的裂纹与石墨形状密切相关,并以薄片状,CV和球状的顺序出现。还发现裂纹的发展与由热负荷和静态强度比产生的热应力密切相关。铸铁中产生的热应力大小的差异取决于材料的物理性能。由于物理性能与石墨的形态有关,因此铸铁的热循环疲劳性能也取决于石墨的形式。导热的影响特别大,并且由于CV石墨铸铁表现出良好的导热性,并表现出静态强度,因此发现CV石墨铸铁在中等冷却条件下的热循环疲劳性能优异。

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