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Comparing in-service multi-input loads applied on non-stiff components submitted to vibration fatigue to provide specifications for robust design

机译:比较施加到非刚性部件上的承受振动疲劳的在役多输入负载,以提供可靠设计的规格

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This study focuses on applications from the automotive industry, on mechanical components submitted to vibration loads. On one hand, the characterization of loading for dimensioning new structures in fatigue is enriched and updated by customer data analysis. On the other hand, the loads characterization also aims to provide robust specifications for simulation or physical tests. These specifications are needed early in the project, in order to perform the first durability verification activities. At this time, detailed information about the geometry and the material is rare. Vibration specifications need to be adapted to a calculation time or physical test durations in accordance with the pace imposed by the projects timeframe. In the trucks industry, the dynamic behaviour can vary significantly from one configuration of truck to another, as the trucks architecture impacts the load environment of the components. The vibration specifications need to be robust by taking care of the diversity of vehicles and markets considered in the scope of the projects. For non-stiff structures, the lifetime depends, among other things, on the frequency content of the loads, as well as the interactions between the components of the multi-input loads. In this context, this paper proposes an approach to compare sets of variable amplitude multi-input loads applied on non-stiff structures. The comparison is done in terms of damage, with limited information on the structure where the loads sets are applied on. The methodology is presented, as well as an application. Activities planned to validate the methodology are also exposed.
机译:这项研究的重点是汽车行业的应用,以及承受振动载荷的机械部件。一方面,通过客户数据分析来丰富和更新用于确定疲劳中新结构尺寸的载荷特性。另一方面,负载表征还旨在为仿真或物理测试提供可靠的规格。为了执行首次耐久性验证活动,在项目早期需要这些规格。目前,有关几何形状和材料的详细信息很少。振动规范需要根据项目时间框架所施加的速度来适应计算时间或物理测试持续时间。在卡车行业中,由于卡车的结构会影响组件的负载环境,因此动态行为在卡车的一种配置之间会发生很大的变化。振动规范需要通过考虑项目范围内考虑的车辆和市场的多样性来保持稳健。对于非刚性结构,寿命尤其取决于负载的频率含量以及多输入负载的组件之间的相互作用。在这种情况下,本文提出了一种比较施加在非刚性结构上的可变幅度多输入负载组的方法。比较是在损坏方面进行的,有关施加载荷集的结构的信息有限。介绍了该方法学以及一个应用程序。还公开了计划验证该方法的活动。

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