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Fatigue of structures in mechanical vibratory environment. From mission profiling to fatigue life prediction.

机译:机械振动环境中结构的疲劳。从使命的分析到疲劳寿命预测。

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The durability of components operating in a mechanical vibratory environment is usually validated on shaker rigs, using an accelerated simplified test derived from mission profiling and test synthesis process. The basis of this method is damage equivalence, the accelerated test leading to the same fatigue damage content as that observed in real service conditions. Numerical simulation can help optimizing this process, allowing verifying that the synthetic test is realistic, and giving the damage distribution based on real material behaviour laws. The complete approach will be described in this paper and illustrated by some real applications. Extension of classical spectral methods to confined plasticity is also presented with laboratory experimental validation.
机译:在机械振动环境中操作的部件的耐久性通常在振动器钻机上验证,使用来自任务分析和测试合成过程的加速简化测试。这种方法的基础是损坏的等价,加速测试导致与实际服务条件中观察到的相同疲劳损伤内容。数值模拟可以帮助优化该过程,允许验证合成测试是逼真的,并根据真实的材料行为法律提供损害分布。本文将描述完整的方法,并由一些实际应用说明。实验室实验验证还提出了典型谱方法的经典光谱方法。

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