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Damage Identification of CFRP Laminated Beam by the Natural Frequency Change Using Response Surface Methodology

机译:响应面法通过固有频率变化识别CFRP叠合梁的损伤

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摘要

Recently, FRP composite structures have been applied to many structures of vehicles. Damage, such as delamination, by an accidental impact causes stiffness degradation of the structures. Since the damage is interior and invisible from the outside, it is important to inspect the damage by non- destructive inspection. In the present study, we propose an identification method of delamination in CFRP laminated beam using the natural frequency change and response surface methodology (RSM). Response surfaces are used for approximation of the natural frequency change in delaminat- ed CFRP beam. In order to identify the delamination, we make a performance function using response surfaces. By minimizing the performance function, we can predict the delamination position and length of the delaminated CFRP beam easily and inexpensively. As a result, it is shown that there are good agreement between actual and predicted delamination positions and lengths.
机译:近来,FRP复合结构已经被应用于车辆的许多结构。意外撞击造成的损坏(例如分层)会导致结构的刚度下降。由于损坏是内部的,并且从外部看不到,因此重要的是要通过无损检查来检查损坏。在本研究中,我们提出了一种使用固有频率变化和响应面方法(RSM)的CFRP叠层梁分层识别方法。响应面用于近似分层CFRP梁的固有频率变化。为了识别分层,我们使用响应面进行性能函数处理。通过最小化性能函数,我们可以轻松,经济地预测分层CFRP梁的分层位置和长度。结果表明,实际和预计的分层位置和长度之间具有良好的一致性。

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