Shearography as part of a multi-functional sensor for the detection of signature features in movable cultural heritaged
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Summary
The particular advantages identified for incorporating shearography in a multi-functional sensor are the ability to measure unstable objects, such as gently vibrating canvas paintings, adjustable interferometric sensitivity and a different sensitivity parameter (displacement gradient) to the other sensors investigated.
- Type
- article
- Published
- 2007-07-19
- Cited by
- 28
- References
- 15
- OpenAlex
- https://openalex.org/W1979616476
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:109203347
Keywords
Shearography, Computer science, Interferometry, Sensitivity (control systems), Software
References
- Art of the Byzantine era
- Lasers in the Preservation of Cultural Heritage: Principles and Applications
- Development of impact assessment procedure and preliminary results with digital holographic speckle pattern interferometry for signatures multi-encoding use
- Artwork diagnostics with fiber-optic digital speckle pattern interferometry.
- Role of dynamic holography with photorefractive crystals in a multi-functional sensor for the detection of signature features in movable cultural heritage
- Surface strain measurement: a comparison of speckle shearing interferometry and optical fibre Bragg gratings with resistance foil strain gauges
- Checkup for aging artwork—Optical tools to monitor mechanical behaviour
- Laser-based systems for the structural diagnostic of artwork: an application to XVII-century Byzantine icons
- Mobile shearography system for the inspection of aircraft and automotive components
- HOLOGRAPHY IN THE CONSERVATION OF STATUARY
- Temporal Phase Measurement Methods
Cited by
- A New Quantitative Method for the Non-Invasive Documentation of Morphological Damage in Paintings Using RTI Surface Normals
- Annual Report 2011-2012: Building Bridges
- Combination of topology and structural information for damages and deterioration analysis of artworks
- Artwork Inspection by Shearography with Adapted Loading
- Detection of transport and age induced damages on artwork: an advanced concept
- Interference fringe-patterns association to defect-types in artwork conservation: an experiment and research validation review
- Automatic Frames Extraction and Visualization From Noisy Fringe Sequences for Data Recovering in a Portable Digital Speckle Pattern Interferometer for NDI
- Shearography technology and applications: a review
- Crack-Growth on Canvas Paintings during Transport Simulation Monitored with Digital Holographic Speckle Interferometry
- The Noninvasive Analysis of Painted Surfaces: Scientific Impact and Conservation Practice
- Lock-in-shearography for the detection of transport-induced damages on artwork
- Pulsed Thermography Applied to the Study of Cultural Heritage
- On development of portable digital holographic speckle pattern interferometry system for remote‐access monitoring and documentation in art conservation
- Soft tissue elastography via shearing interferometry
- Use of holographic subsurface radar analysis in the preservation and restoration of cultural heritage objects
- Deep Learning-Based Wrapped Phase Denoising Method for Application in Digital Holographic Speckle Pattern Interferometry
- A proposed radar method for non-destructive investigation of Egyptian pyramids
- After the paint has dried: a review of testing techniques for studying the mechanical properties of artists’ paint
- Shearography and its applications – a chronological review
- A symmetry concept and significance of fringe patterns as a direct diagnostic tool in artwork conservation
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