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Influence of Gradual Damage on the Structural Dynamic Behaviour of Composite Rotors: Experimental Investigations

机译:渐进损伤对复合材料转子结构动力学行为的影响:实验研究

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摘要

Fibre-reinforced composite structures subjected to complex loads exhibit gradual damage behaviour with the degradation of the effective mechanical properties and changes in their structural dynamic behaviour. Damage manifests itself as a spatial increase in inter-fibre failure and delamination growth, resulting in local changes in stiffness. These changes affect not only the residual strength but, more importantly, the structural dynamic behaviour. In the case of composite rotors, this can lead to catastrophic failure if an eigenfrequency coincides with the rotational speed. The description and analysis of the gradual damage behaviour of composite rotors, therefore, provide the fundamentals for a better understanding of unpredicted structural phenomena. The gradual damage behaviour of the example composite rotors and the resulting damage-dependent dynamic behaviour were experimentally investigated under propagating damage caused by a combination of out-of-plane and in-plane loads. A novel observation is the finding that a monotonic increase in damage results in a non-monotonic frequency shift of a significant number of eigenfrequencies.
机译:承受复杂载荷的纤维增强复合材料结构会表现出逐渐的破坏行为,其有效机械性能会下降,并且其结构动态行为也会发生变化。损伤表现为纤维间失效和分层增长的空间增加,导致局部刚度变化。这些变化不仅影响残余强度,而且更重要的是影响结构动态性能。在复合转子的情况下,如果本征频率与转速一致,则可能导致灾难性故障。因此,对复合材料转子逐渐损坏行为的描述和分析为更好地理解不可预测的结构现象提供了基础。在平面外和平面内载荷组合所造成的传播性损坏下,对复合转子示例的渐进式损坏行为以及由此产生的取决于损坏的动态行为进行了实验研究。一种新颖的观察结果是,损伤的单调增加会导致大量特征频率的非单调频移。

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