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The Sensitivity of Modal Strain Energy for Damage Localization in Composite Stratified Beam Structures

机译:复合分层结构损伤定位模态应变能量的敏感性

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In the present paper, a modal analysis of undamaged and damaged Carbon Fibre Reinforced Polymer (CFRP) beam elements with fixed and free ends and a cross-ply (0°/90°/0°) rectangular beam with clamped boundary conditions at both ends is investigated for damage identification. The presence of single and multiple damages in composite structures based on changes in the dynamic properties of the structure are considered. The Modal Strain Energy (MSE) damaged indicator based on frequency and mode shape combined with composite structure is studied. To enhance the results, the sensitivity of MSE using mode shape is investigated by varying the number of modes. The results showed that MSE using frequency much better than mode shape. Moreover, MSE with the first mode is much better than other modes.
机译:在本文中,具有固定和自由端的未损坏和损坏的碳纤维增强聚合物(CFRP)光束元件的模态分析,以及两端具有夹紧边界条件的交叉层(0°/ 90°/ 0°)矩形梁调查造成损害识别。考虑了基于结构的动态性质的变化的复合结构中单个和多个损伤的存在。研究了基于频率和模式形状与复合结构组合的模态应变能量(MSE)损坏指示器。为了增强结果,通过改变模式的数量来研究使用模式形状的MSE的灵敏度。结果表明,MSE使用频率优于模式形状。此外,具有第一模式的MSE比其他模式要好得多。

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