首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Evaluation of Bending Strength of Carburized Gears Based on Inferential Identification of Principal Surface Layer Defects
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Evaluation of Bending Strength of Carburized Gears Based on Inferential Identification of Principal Surface Layer Defects

机译:基于主表面层缺陷推断的渗碳齿轮弯曲强度评估

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摘要

High load capacity of carburized gears originates mainly from the hardened layer and induced residual stress. On the other hand, surface decarburization, which causes a nonmartensitic layer, and inclusions such as oxides and segregation act as latent defects which considerably reduce fatigue strength. In this connection, the authors have proposed a formula of strength evaluation by separately quantifying defect influence. However, the principal defect which limits strength of gears with several different defects remains unclarified. This study presents a method of inferential identification of principal defects based on test results of carburized gears made of SCM420 clean steel, gears with both an artificial notch and nonmartensitic layer at the tooth fillet, and so forth. It clarifies practical uses of presented methods, and strength of carburized gears can be evaluated by focusing on principal defect size.
机译:渗碳齿轮的高负载能力主要源自硬化层和引起的残余应力。另一方面,引起非马氏体层的表面脱碳以及诸如氧化物和偏析的夹杂物是潜在的缺陷,其显着降低了疲劳强度。在这方面,作者提出了通过分别量化缺陷影响来确定强度的公式。但是,限制具有几种不同缺陷的齿轮强度的主要缺陷仍未阐明。这项研究提出了一种基于SCM420清洁钢制成的渗碳齿轮,在圆角处具有人工缺口和非马氏体层的齿轮等测试结果的主要缺陷推断方法。它阐明了所提出方法的实际用途,并且可以通过关注主要缺陷尺寸来评估渗碳齿轮的强度。

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