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The Effect of Microstructure Heterogeneity on Fatigue Property of Powder Metallurgy Steels

机译:显微组织异质性对粉末冶金钢疲劳性能的影响

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摘要

Powder metallurgy is a new method for mass production of precision components with appropriate mechanical properties, but in this kind of materials (PM parts) with special microstructures (pores act as local stress risers), fracture due to fatigue is expected as an important destructive factor.Various microstructures in powder metallurgy steels, depending on alloying methods, have different response against cyclic loading, diffusion bonding is an effective method to obtain high fatigue performance in PM steels. The main characteristic of this materials consists of well-organized phases distribution due to incomplete diffusion of alloying elements.In this study fatigue behavior of diffusion-bonded, distaloy AE, steel with two carbon contents under different periodic loading are investigated The effect of carbon content and various loading mode upon fatigue performance is analyzed. Metallugraphy and fractography examination on fatigue loaded samples revealed the positive effect of micro structure heterogeneity on fatigue crack behavior and this concept is a reason for increasing of diffusion-bonded powders application to manufacturing of components that are subjected to cyclic stresses.
机译:粉末冶金是一种大规模生产具有适当机械性能的精密零件的新方法,但是在这种具有特殊微观结构(孔充当局部应力上升点)的材料(PM零件)中,由于疲劳引起的断裂预计是重要的破坏因素粉末冶金钢中的各种显微组织,取决于合金化方法,对循环载荷的响应不同,扩散结合是在PM钢中获得高疲劳性能的有效方法。这种材料的主要特征是由于合金元素的不完全扩散而导致组织良好的相分布。在这项研究中,研究了扩散结合的远侧AE钢在不同周期载荷下具有两种碳含量的钢的疲劳行为。并分析了各种加载方式对疲劳性能的影响。对疲劳载荷样品的金相和分形学检查揭示了微观结构异质性对疲劳裂纹行为的积极影响,这个概念是增加扩散结合粉末在承受循环应力的组件中应用的原因。

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