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Finite element simulation of subsurface initiated damage from non-metallic inclusions in wind turbine gearbox bearings

机译:风力发电机齿轮箱轴承中非金属夹杂物引起的地下破坏的有限元模拟

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摘要

The premature failure of wind turbine gearbox bearings significantly affects the reliability of wind turbine operation and energy production. Damage initiated from non-metallic inclusions known as White Etching Cracks (WECs) has been identified as the dominant initiation mechanism that causes the premature failure under the influence of transient events. In this study, the factors affecting the initiation of subsurface damage from non-metallic inclusions were investigated by finite element modelling. It was found that the direction of surface traction and loading-unloading cycle had a detrimental effect on stress concentration at the tips of the de-bonded non-metallic inclusions in bearing steel.
机译:风力涡轮机齿轮箱轴承的过早故障会严重影响风力涡轮机运行和能源生产的可靠性。由非金属夹杂物引起的损坏被称为白色蚀刻裂纹(WEC),已被确认为是主要的引发机制,该机制在瞬态事件的影响下导致过早失效。在这项研究中,通过有限元建模研究了影响非金属夹杂物引发地下破坏的因素。结果表明,表面牵引的方向和装卸循环对轴承钢中非金属夹杂物尖端的应力集中具有不利影响。

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