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Design of maintenance schedules for fatigue-prone metallic components using reliability-based optimization

机译:使用基于可靠性的优化设计易疲劳金属部件的维护计划

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This contribution focuses on the design of optimal maintenance schedules for metallic structures prone to develop fatigue cracks. The crack propagation phenomenon is addressed using a fracture mechanics approach. The problem of maintenance scheduling is addressed within the framework of reliability-based optimization (RBO). Thus, it is possible to minimize the costs associated with maintenance and eventual failure while explicitly considering uncertainties in the crack propagation phenomenon and inspection activities. The underlying RBO problem is solved using an efficient method recently developed by the authors. A numerical example demonstrating the application of the proposed approach is presented.
机译:该贡献集中于针对易于产生疲劳裂纹的金属结构的最佳维护计划的设计。使用断裂力学方法解决了裂纹扩展现象。在基于可靠性的优化(RBO)框架内解决了维护计划的问题。因此,可以在明确考虑裂纹扩展现象和检查活动的不确定性的同时,将与维护和最终故障相关的成本降至最低。潜在的RBO问题是使用作者最近开发的一种有效方法来解决的。给出了一个数值示例,说明了所提出方法的应用。

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