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The Anatomy of a Micropitting Induced Tooth Fracture Failure - Causation, Initiation, Progression and Prevention

机译:微型诱导齿断裂衰竭的解剖性 - 因果关系,开始,进展和预防

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Micropitting has become a major concern in certain classes of industrial gear applications, especially wind power and other relatively highly loaded somewhat slow speed applications, where carburized gears are used to facilitate maximum load capacity in a compact package. While by itself the appearance of micropitting does not generally cause much perturbation in the overall operation of a gear system, the ultimate consequences of a micropitting failure can, and frequently are, much more catastrophic. Micropitting is most often associated with parallel axis gears (spur and helical) however, the authors have also found this type of distress when evaluating damage to carburized, hardened and hard finished spiral bevel gears. This paper presents a discussion of the initiation, propagation and ultimate tooth fracture failure mechanism associated with a micropitting failure. The subject is presented by way of the discussion of detailed destructive metallurgical evaluations of several example micropitting failures that the authors have analyzed on both parallel axis and bevel gears.
机译:MicroPiting已经成为某些工业齿轮应用中的主要关注点,特别是风力电源和其他相对高负载的速度较慢的速度应用,其中渗碳齿轮用于促进紧凑型封装中的最大负载能力。虽然本身本身的外观通常在齿轮系统的整体运行中不会引起太大的扰动,但微米术失败的最终后果可以,并且通常是更灾难性的。微型速率最常与平行轴齿轮(Spur和Helical)相关,然而,当评估渗碳损坏时,作者也发现这种痛苦,硬化和硬成品螺旋锥齿轮。本文讨论了与微型缺乏衰竭相关的起始,繁殖和最终牙齿断裂机制的讨论。该主题是通过讨论作者在两条平行轴和锥齿轮上分析的几个示例微型微型术失败的详细破坏性冶金评估。

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