Selected papers on photoelasticity
This text provides a comprehensive introduction to infrared-transparent materials for windows and domes that must withstand harsh environmental conditions, such as high-speed flight or high-temperature process monitoring. Each section contains introductory material that makes the book readable by anyone with a background in science or engineering.
53 pages matching wave plates in this book
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Coherence Radiometry Ari T Friberg
Gas Laser Technology J Gary Eden
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accuracy applied Araldite axis Bakelite beam birefringence boundary calibration camera coating thickness coefficients compression constant crack curves deformation determined developed difference dimensional disk dispersion of birefringence dynamic effect elastic epoxy equations error evaluation Experimental Mechanics factor Figure fringe multiplication fringe order fringe patterns fringe value Frocht frozen stress function image processing interferometer isochromatic fringe isoclinic parameter isopachic light intensity linear load maximum measurements model material modulus oblique incidence obtained optical photoelastic analysis photoelastic fringe photoelastic model photographs pixel plane stress plastic Poisson's ratio polariscope polarized principal axes principal stress direction principal stresses problems Proc procedure quarter-wave plate refractive refractive index region relative retardation resin rotation of principal sensor SESA shear stress shown in Fig shows slice solution specimen strain stress analysis stress concentration stress distribution stress-optical structure surface technique temperature tests three-dimensional photoelasticity tion wave plates wavelength zero