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FATIGUE DESIGN OF ROLLER BEARING FOR LARGE FPSO TURRETS

机译:大型FPSO塔架滚动轴承的疲劳设计。

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The present report presents the fatigue design and a fatigue life prediction method for large roller bearings applied in the turret turn table for large Floating Production Storage and Offloading (FPSO) units. The contact point between wheel and rail in these bearings is subjected to a multi-axial stress situation and both surface wear and fatigue cracking may occur. Stress analyses with contact elements are carried out and a methodology based on the Dang Van fatigue criterion is adopted. The criterion is based on an equivalent stress defined as a combination of the fluctuation of the shear stress from its mean value and the associated hydrostatic stress at a critical plane at any time. The criterion has been used in the railway industry and is regarded as an appropriate approach for the crack initiation phase in the high cycle fatigue regime. A realistic case study is included where material combinations with high strength stainless steel S165M and high strength carbon steel 42CrMo4 are applied. It is demonstrated that a favorable wheel-rail design is characterized by an extreme load condition with a stress situation within the linear elastic behavior of the steel. Furthermore, the Dang Van equivalent stress function shall be below the shear stress fatigue limit. These two design criteria will ensure robust design and long durability of the turret bearings.
机译:本报告介绍了用于大型浮动产品存储和卸载(FPSO)单元的转塔转台的大型滚动轴承的疲劳设计和疲劳寿命预测方法。这些轴承中轮与轨之间的接触点承受多轴应力,并且可能同时发生表面磨损和疲劳裂纹。进行了接触元件的应力分析,并采用了基于Dang Van疲劳准则的方法。该标准基于等效应力,该等效应力定义为剪应力相对于其平均值的波动以及在任何时候在关键平面处的相关静压应力的组合。该标准已在铁路行业中使用,被认为是高周疲劳状态下裂纹萌生阶段的一种合适方法。包括一个实际案例研究,其中应用了具有高强度不锈钢S165M和高强度碳素钢42CrMo4的材料组合。事实证明,良好的轮轨设计的特征是在钢的线性弹性行为范围内具有应力情况的极端载荷条件。此外,当范等效应力函数应低于剪切应力疲劳极限。这两个设计标准将确保转塔轴承的坚固设计和长久的耐用性。

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