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Updated: Jun 2, 2026

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Micro/Nano-scale Strain Distribution Measurement from Sampling Moiré Fringes
Published on: May 23, 2017
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Accurate high-speed displacement measurement method for slender structures based on the sampling moiré method.
Optics Express
|July 30, 2025
Summary
A novel method uses phase difference analysis of oblique gratings to measure width-direction displacement in elongated structures. This technique offers high accuracy and stability for dynamic displacement monitoring.
Area of Science:
- Mechanical Engineering
- Optical Metrology
- Materials Science
Background:
- Measuring width-direction displacement in elongated structures is challenging.
- Existing methods may lack accuracy, speed, or full-field coverage.
- Elongated structures like blades require precise displacement monitoring during operation.
Purpose of the Study:
- To propose a novel, indirect displacement measurement method for width-direction displacement.
- To address the limitations of current measurement techniques for elongated structures.
- To provide a high-accuracy, high-speed, and full-field measurement solution.
Main Methods:
- Fabrication of an oblique 45° grating.
- High-speed camera imaging of the grating.
- Length-direction phase analysis using the sampling moiré method.
- Calculation of width-direction displacement from phase differences.
Main Results:
- The method demonstrates high displacement measurement accuracy and stability.
- Successfully captured displacement-time curves for simulated vibrating elongated structures.
- Obtained frequency spectra of vibrating components via Fourier transform.
- Verified effective reflection of displacement changes in vibrating blades.
Conclusions:
- The proposed method offers a novel approach for indirect width-direction displacement measurement.
- It provides high accuracy, speed, ease of operation, and full-field coverage.
- This technique holds significant scientific and engineering value for elongated structures.

