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首页> 外文期刊>Journal of Sound and Vibration >A self-demodulated fiber Bragg grating for investigating impact-induced transient responses of phononic crystal beams
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A self-demodulated fiber Bragg grating for investigating impact-induced transient responses of phononic crystal beams

机译:一种自解调的光纤布拉格光栅,用于研究呼吸晶梁的冲击诱导的瞬态响应

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摘要

This work presents a fiber Bragg grating (FBG) displacement sensing system to experimentally investigate the dynamic behaviors of phononic crystal (PC) beams through impact-induced early short time or long time transient responses. Based on the couple-mode theory and the optical transfer matrix (T-matrix) formulation, we first show that it is feasible to achieve linear displacement sensing using a single FBG without extra demodulators such as matching gratings. To validate its effectiveness, the proposed self-demodulated FBG system is applied to measure the point-wise transient displacement responses of a cantilever PC beam subjected to steel ball impacts. To demonstrate the transient sensing performance, the measured early short time transient responses are compared with the corresponding ones predicted by the method of reverberation-ray matrix (MRRM) theoretically and the finite element method (FEM) numerically. The excellent agreements verify together the experimental, theoretical and numerical results. Finally, conducting Fast-Fourier transform (FFT) to the early short time or long time transient responses gives the frequency responses that clearly show the existence of the band gaps. In addition to providing a new displacement sensing method using the self-demodulated FBGs, this work also offers another route to investigate the band structures of PC beams through the frequency responses transformed from the early short time transient responses, long before the structural damping becomes dominant. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作提出光纤布拉格光栅(FBG)的位移感测系统通过实验调查声子晶体(PC)的动态行为光束通过冲击诱发的早期短的时间或长的时间的瞬态响应。基于所述耦合模理论和光学传递矩阵(T-矩阵)制剂,我们首先表明,它是可行的使用单个光纤光栅而无需额外的解调器,如匹配的光栅来实现线性位移感测。为了验证其有效性,所提出的自解调FBG系统应用于测量经受钢球撞击悬臂PC束的逐点的瞬态位移响应。为了证明瞬态感测性能,测得的初期短时间瞬态响应与理论上由混响射线矩阵(MRRM)的方法预测的相应的一和有限元方法(FEM)数值比较。优异的协议验证一起实验,理论和数字结果。最后,进行快速傅立叶变换(FFT)的早期短的时间或长的时间瞬态响应给出的频率响应其清楚地示出带隙的存在。除了使用自解调的FBG提供了一个新的位移检测方法,这项工作也提供了另一条路线,调查带结构的PC光束通过从早期的短时间瞬态响应变换的频率响应,没过多久,结构阻尼成为主导。 (c)2018年elestvier有限公司保留所有权利。

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