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首页> 外文期刊>Metals >Tooth Root Bending Fatigue Strength of High-Density Sintered Small-Module Spur Gears: The Effect of Porosity and Microstructure
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Tooth Root Bending Fatigue Strength of High-Density Sintered Small-Module Spur Gears: The Effect of Porosity and Microstructure

机译:高密度烧结小模正齿轮的齿根弯曲疲劳强度:孔隙率和微观结构的影响

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The present paper is aimed at investigating the effect of porosity and microstructure on tooth root bending fatigue of small-module spur gears produced by powder metallurgy (P/M). Specifically, three steel variants differing in powder composition and alloying route were subjected either to case-hardening or sinter-hardening. The obtained results were interpreted in light of microstructural and fractographic inspections. On the basis of the Murakami a r e a method, it was found that fatigue strength is mainly dictated by the largest near-surface defect and by the hardness of the softest microstructural constituent. Owing to the very complicated shape of the critical pore, it was found that its maximum Feret diameter is the geometrical parameter that best captures the detrimental effect on fatigue.
机译:本文旨在研究孔隙度和显微组织对粉末冶金(P / M)生产的小模数正齿轮齿根弯曲疲劳的影响。具体而言,对三种粉末成分和合金化途径不同的钢进行了表面硬化或烧结硬化处理。根据微观结构和分形学检查解释了获得的结果。基于村上方法,发现疲劳强度主要由最大的近表面缺陷和最软的微结构成分的硬度决定。由于临界孔的形状非常复杂,因此发现其最大费雷特直径是最能反映疲劳影响的几何参数。

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