15 November 2019 Dual-sensitive spatial phase-shifting shearography based on a common-path configuration
Author Affiliations +
Abstract

A common-path spatial phase shifting digital speckle pattern shearing interferometry setup is introduced for simultaneous measurement of in-plane and out-plane strain components under dynamic loading using two laser beams with different wavelengths that symmetrically illuminate the test object and a single detector. The simplicity, stability, and efficiency of the arrangement are provided by using a glass plate as a shearing device, which is capable of tuning the sensitivity continuously. The phase is recovered from a single frame by the Fourier method. In this setup, the spatial carrier frequencies can be adjusted independent of the amount of the lateral shear. Ultimately, the desired field of view can easily be achieved by simple imaging optics. To validate the feasibility and the flexibility of our technique, the proposed setup is used to evaluate the in-plane and out-plane strain maps of an aluminum plate, which is deformed under dynamic stress in its plane. The temporal phase stability of the proposed system is also investigated.

© 2019 Society of Photo-Optical Instrumentation Engineers (SPIE) 0091-3286/2019/$28.00 © 2019 SPIE
Helia Hooshmand-Ziafi, Khosrow Hassani, and Masoomeh Dashtdar "Dual-sensitive spatial phase-shifting shearography based on a common-path configuration," Optical Engineering 58(11), 114104 (15 November 2019). https://doi.org/10.1117/1.OE.58.11.114104
Received: 19 August 2019; Accepted: 30 October 2019; Published: 15 November 2019
Lens.org Logo
CITATIONS
Cited by 7 scholarly publications.
Advertisement
Advertisement
RIGHTS & PERMISSIONS
Get copyright permission  Get copyright permission on Copyright Marketplace
KEYWORDS
Shearography

Sensors

Phase shifts

Speckle

Aluminum

Interferometry

Wavefronts

Back to Top