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Publishing Language: Chinese

MEASUREMENT OF NATURAL FREQUENCY OF THE CLAMPED BEAM BASED ON FIBER BRAGG GRATINGS SENSOR

Sanmei JIN1Ziqiang ZHANG1Zhao Cai2Ruiping JING1( )
School of Mathematics and Physics, China University of Geosciences (Wuhan), Wuhan, Hubei 430074
Wuhan Maxway Technology Co., Ltd., Wuhan, Hubei 430074
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Abstract

In this paper, we design a scheme of measuring the natural frequency of fixed beam by fiber grating sensor and measure the first to fourth order natural frequency of fixed beam. In particular, we analyzed the structural characteristics of clamped beams and derived theoretical formulas for their first to fourth-order natural frequencies. Then, with the clamped beam as the basic frame, the beam body is excited by the shaker to make the beam body produce forced vibration. When the beam body generates standing waves, the fiber Bragg grating (FBG) is used as the sensitive element to measure the deflection change of the specific position of the beam body. The wavelength variation of the FBG is measured by Micron Optic fiber grating demodulator, the data is then collected and processed by MOI software to obtain the natural frequency of fixed beams. The experimental results show that the measured natural frequencies of the clamped beam are in good agreement with theoretical values, with minimal error. The experimental scheme is simple in structure, highly sensitive, and robust against external interference, demonstrating strong practicality and promising applications.

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Physics and Engineering
Pages 319-322

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Cite this article:
JIN S, ZHANG Z, Cai Z, et al. MEASUREMENT OF NATURAL FREQUENCY OF THE CLAMPED BEAM BASED ON FIBER BRAGG GRATINGS SENSOR. Physics and Engineering, 2025, 35(4): 319-322. https://doi.org/10.26599/PHYS.2025.9320446

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Received: 11 April 2023
Published: 03 December 2025
© 2025 Physics and Engineering.