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Investigation of the initiation and propagation of cracks in the coated surface of spur gear: An application of irreversible cohesive zone model

机译:正齿轮涂层表面裂纹萌生和扩展的研究:不可逆粘性区模型的应用

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Spur gears are the most common type of gears for industry, due to its simple structures and low costs of manufacture. Under the action of rolling contact fatigue, the main mode of the coated teeth failure is surface or subsurface originated micro-pitting, leading to the debonding of coating from substrate, fracture in the coating and even subsurface failure. Failure may originate from initiation of cracks, and its growth and propagation, however, basic failure mechanism is still not clear. In this paper, a comprehensive finite element modeling procedure including submodelling techniques and irreversible cohesive zone modelling techniques (CZM) is developed to investigate the failure mechanisms under the rolling contact fatigue loading. The details of the localized stresses distribution will be simulated using the submodelling technique. Irreversible CZM will be used to simulate the initiation and propagation of the cracks in the coated surface of the spur gears under the cyclic contact loading.
机译:正齿轮由于其简单的结构和较低的制造成本,是工业上最常见的齿轮类型。在滚动接触疲劳的作用下,带涂层的牙齿失效的主要方式是表面或亚表面产生的微点蚀,从而导致涂层从基体上剥离,涂层破裂甚至亚表面失效。失效可能源于裂纹的萌生,裂纹的扩展和传播,但是,基本的失效机理仍不清楚。本文研究了一种综合的有限元建模程序,包括子建模技术和不可逆内聚区建模技术(CZM),以研究滚动接触疲劳载荷下的破坏机理。局部应力分布的细节将使用子建模技术进行模拟。不可逆的CZM将用于模拟在循环接触载荷下正齿轮涂层表面裂纹的萌生和扩展。

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