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Investigation into initiation and propagation of cracks in the coated surfaces of spur gears with submodelling and irreversible cohesive-zone modelling techniques

机译:利用亚模型和不可逆粘性区建模技术研究正齿轮涂层表面裂纹的萌生和扩展

摘要

Spur gears are one of the commonly used transmission parts in industry, due to its simplicity in structures and low cost in manufacturing. Due to a performance requirement, a spur gear may be coated with a specific coating arrangement. Under working conditions, the coating on the teeth may be damaged due to contact fatigue, in the forms such as micro-pitting and/or delamination. The failure mechanism of the coated surface under the gearing contact loading has been investigated intensively through experiment. A comprehensive computational model, which could be used to investigate the propagation of cracks in the coated surfaces, is still lacking. In the research reported in this paper, several finite element modelling techniques, including that for submodelling and irreversible cohesive zone modelling (CZM), have been developed to investigate the failure mechanisms of the coated surfaces of gears under the gearing contact fatigue loading. These techniques not only allow the localized stresses distribution and deformation in the interested locations in the coating and the substrate to be investigated in detail but also enable visual observation on the development of fatigue damages in the coating.
机译:正齿轮由于其结构简单和制造成本低廉而成为工业上常用的传动部件之一。由于对性能的要求,正齿轮可以涂有特定的涂层装置。在工作条件下,牙齿上的涂层可能会由于接触疲劳而损坏,呈微点蚀和/或分层的形式。通过实验深入研究了齿轮接触载荷作用下涂层表面的失效机理。仍然缺乏可用于研究涂层表面裂纹扩展的综合计算模型。在本文报道的研究中,已经开发了几种有限元建模技术,包括用于子建模和不可逆内聚区建模(CZM)的有限元建模技术,以研究在齿轮接触疲劳载荷下齿轮涂层表面的失效机理。这些技术不仅允许详细研究涂层和基材中感兴趣位置的局部应力分布和变形,而且还可以目视观察涂层中疲劳损伤的发展。

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