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Duty Cycle Fatigue Simulation for Differential Casing

机译:差速器壳的占空比疲劳仿真

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In the current scenario of growing demand for lightweight designs for improving fuel economy and reduced cost, the focus is on optimum design solutions. This calls for improved and accurate prediction capabilities in terms of life or cycles the design can sustain in real world usage profile. Conventionally, the differential casings are simulated and designed for worst loads experienced and the approach used is infinite life design for these loads. But, this would lead to overdesign and increase weight. To counter this problem the methodology for fatigue analysis for the derived duty cycle of differential casing is developed. The critical regions can be identified based on life and the solutions can be worked out without major design changes. This paper briefs the nonlinear static load cases required for deriving the block cycle loading and incorporating these as a duty cycle in fatigue solver. This results in identifying critical regions based on fatigue life using quasi static fatigue approach.
机译:在当前对轻质设计以提高燃油经济性和降低成本的需求不断增长的情况下,重点是优化设计解决方案。这就要求设计在现实使用情况下可以维持的寿命或周期方面,需要改进和准确的预测功能。常规上,差速器壳是针对承受的最坏载荷进行模拟和设计的,并且所采用的方法是针对这些载荷的无限寿命设计。但是,这将导致过度设计并增加重量。为了解决这个问题,开发了用于差速器壳体得出的占空比的疲劳分析方法。可以根据寿命来确定关键区域,并且可以在不进行重大设计更改的情况下制定解决方案。本文简要介绍了推导块循环载荷并将其作为疲劳求解器的占空比所需的非线性静载荷工况。这导致使用准静态疲劳方法基于疲劳寿命来确定关键区域。

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