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Book Details
Date Published: 12 November 1999
Pages: 606
ISBN: 9780819497963
Volume: MS158
Pages: 606
ISBN: 9780819497963
Volume: MS158
Table of Contents
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Section One
Two-Dimensional Photoelasticity; Birefringent Coatings
Two-Dimensional Photoelasticity; Birefringent Coatings
3 The method of oblique incidence of photoelasticity
D.C. Drucker (S.E.S.A. Proceedings 1950)
19 On the Tardy and Senarmont methods of measuring fractional
relative retardations
H.T. Jessop (British Journal of Applied Physics 1953)
23 Photoelastic evaluation of individual principal stresses by
large field absolute retardation measurements
D. Post (S.E.S.A. Proceedings 1956)
37 Experiments in mechanical and optical coincidence in
photoplasticity
M.M. Frocht, R.A. Thompson (S.E.S.A. Proceedings 1961)
42 A comparison of static and dynamic properties of
photoelastic materials
A.B.J. Clark, R.J. Sanford (Experimental Mechanics 1963)
46 An analytic separation method for photoelasticity
J.W. Dally, E.R. Erisman (Experimental Mechanics 1966)
53 On dispersion of birefringence of photoelastic materials
J.T. Pindera, G. Cloud (Experimental Mechanics 1966)
64 The generic nature of the absolute-retardation method of
photoelasticity
Daniel Post (Experimental Mechanics 1967)
73 On the complete determination of dynamic states of stress
P. Bohler, W. Schumann (Experimental Mechanics 1968)
80 Photoelastic-fringe multiplication for tenfold increase in
sensitivity
Daniel Post (Experimental Mechanics 1970)
88 Interpretation of fringes in stress-holo-interferometry
R.J. Sanford, A.J. Durelli (Experimental Mechanics 1971)
94 Accuracy of birefringent-coating method for coatings of
arbitrary thickness
Daniel Post, Felix Zandman (Experimental Mechanics 1961)
106 Reinforcing effect of birefringent coatings
F. Zandman, S.S. Redner, E.I. Riegner (Experimental
Mechanics 1962)
Section Two
Three-Dimensional Photoelasticity
Three-Dimensional Photoelasticity
119 The fundamentals of three-dimensional photoelasticity
M. Hetenyi (Journal of Applied Mechanics 1938)
126 Stress analysis by three-dimensional photoelasticity methods
Daniel C. Drucker, Raymond D. Mindlin (Journal of Applied
Physics 1940)
135 A new material for three-dimensional photoelasticity
M.M. Leven (S.E.S.A. Proceedings 1948)
145 Interpretation of photoelastic transmission patterns for a
three-dimensional model
D.C. Drucker, W.B. Woodward (Journal of Applied Physics
1954)
148 Further work on the general three-dimensional photoelastic
problem
Max M. Frocht, Roscpe Guernsey, Jr. (Journal of Applied
Mechanics 1955)
155 The determination of effective stress and maximum shear
stress by means of small cubes taken from photoelastic
models
J.S. Brock (S.E.S.A. Proceedings 1958)
162 Optical phenomena in photoelastic models by the rotation of
principal axes
Hillar K. Aben (Experimental Mechanics 1966)
172 Fringe multiplication in three-dimensional photoelasticity
D. Post (Journal of Strain Analysis 1966)
181 Designing with scattered-light photoelasticity
W.F. Swinson, J.L. Turner, W.F. Ranson (Experimental
Mechanics 1980)
187 Three-dimensional photoelasticity by stress freezing
Jan Cernosek (Experimental Mechanics 1980)
Section Three
Digital Photoelasticity
Digital Photoelasticity
199 Complete automatic analysis of photoelastic fringes
R.K. Muller, L.R. Saackel (Experimental Mechanics 1979)
206 Half-fringe photoelasticity: a new approach to whole-field
stress analysis
A.S. Voloshin, C.P. Burger (Experimental Mechanics 1983)
216 Automatic stress analysis from photoelastic fringes due to
image processing using a personal computer
Eisaku Umezaki, Tamotsu Tamaki, Susumu Takahashi (in
Applications of Digital Image Processing VII, A.G.
Tescher, editor, 1984)
224 Photoelastic measurements by means of computer-assisted
spectral-contents analysis
Alex S. Redner (Experimental Mechanics 1985)
230 Automated photoelastic analysis
E.A. Patterson (Strain 1988)
236 The computer-aided holophotoelastic method
G.M. Brown, J.L. Sullivan (Experimental Mechanics 1990)
246 A single-valued representative function for determination of
principal stress direction in photoelastic analysis
S. Mawatari, M. Takashi, Y. Toyoda, T. Kunio (in 9th
International Conference on Experimental Mechanics 1990)
256 Toward full field automated photoelastic analysis of complex
components
E.A. Patterson, Z.F. Wang (Strain 1991)
264 Digital dynamic photoelasticity
A. Asundi, M.R. Sajan (Optics and Lasers in Engineering
1994)
269 Digital fringe multiplication in three-dimensional
photoelasticity
T.Y. Chen (Journal of Strain Analysis 1995)
276 Toward RGB photoelasticity: full-field automated
photoelasticity in white light
A. Ajovalasit, S. Barone, G. Petrucci (Experimental
Mechanics 1995)
284 Whole-field automatic measurements of isochromatics and
isoclinics in photoelastic coatings
T.Y. Chen, T.F. Chen (in International Conference on
Experimental Mechanics: Advances and Applications, F.S.
Chau, C.T. Lim, editors, 1997)
290 Automation of white light photoelasticity by phase-shifting
technique using colour image processing hardware
K. Ramesh, S. Deshmukh (Optics and Lasers in Engineering
1997)
304 Digital determination of photoelastic birefringence using
two wavelengths
T.Y. Chen (Experimental Mechanics 1997)
Section Four
Applications of Photoelasticity
Applications of Photoelasticity
311 Quenching stresses in transparent isotropic media and the
photoelastic method
R.C. O'Rourke, A.W. Saenz (Quarterly of Applied
Mathematics 1950)
320 Three-dimensional photoelasticity and its application in
machine design
M.M. Leven, A.M. Wahl (Transactions of the ASME 1958)
332 A three-dimensional photoelastic investigation of stresses
near a reinforced opening in a reactor vessel
C.E. Taylor, J.W. Schweiker (S.E.S.A. Proceedings 1959)
344 A photoelastic approach to transient stress problems
employing low-modulus materials
J.W. Dally, W.F. Riley, A.J. Durelli (Journal of Applied
Mechanics 1959)
352 Stress concentration factors under dynamic loading
conditions
A.J. Durelli, J.W. Dally (Journal of Mechanical
Engineering Science 1959)
361 The use of high-speed photography and photoelastic coatings
for the determination of dynamic strains
Charles A. Cole, Jr., John F. Quinlan, Felix Zandman (in
Fifth International Congress on High-Speed Photography,
J.S. Courtney-Pratt, editor, 1962)
375 A photoelastic analysis of stress wave propagation in a
layered model
W.F. Riley, J.W. Dally (Geophysics 1966)
394 Measurement of elastic-plastic stresses by scattered-light
photomechanics
Robert L. Johnson (Experimental Mechanics 1976)
402 Integrated photoelasticity for axisymmetric problems
J.F. Doyle, H.T. Danyluk (Experimental Mechanics 1978)
408 Three-dimensional strain distributions in upset rings by
photoplastic simulation
H.A. Gomide, C.P. Burger (Experimental Mechanics 1981)
418 A numerical-experimental analysis of the contact stress
problem
A. Shukla, H. Nigam (Journal of Strain Analysis 1985)
423 A micropolariscope for automatic stress analysis
H. Fessler, R.E. Marston, E. Ollerton (Journal of Strain
Analysis 1987)
434 Computer aided photoelastic stress analysis of a variable-
pitch lead screw
T.Y. Chen, J.S. Lin (Journal of Strain Analysis 1997)
Fracture Mechanics
442 Photoelastic stress analysis for an edge crack in a tensile
field
D. Post (S.E.S.A. Proceedings 1954)
460 An investigation of propagating cracks by dynamic
photoelasticity
W.B. Bradley, A.S. Kobayashi (Experimental Mechanics
1970)
468 Use of three-dimensional photoelasticity in fracture
mechanics
C. William Smith (Experimental Mechanics 1973)
474 A photoelastic determination of mixed mode stress-intensity
factors
E.E. Gdoutos, P.S. Theocaris (Experimental Mechanics
1978)
484 A general method for determining mixed-mode stress intensity
factors from isochromatic fringe patterns
Robert J. Sanford, James W. Dally (Engineering Fracture
Mechanics 1979)
495 Half-fringe photoelastic determination of opening mode
stress intensity factor for edge cracked strips
Wei-Chung Wang, Tsai-Lin Chen (Engineering Fracture
Mechanics 1989)
Composite Materials
506 Application of birefringent coatings to glass-fiber-
reinforced plastics
J.W. Dally, I. Alfirevich (Experimental Mechanics 1969)
Sensors
512 Fiber-optic acceleration sensor based on the photoelastic
effect
Shuichi Tai, Kazuo Kyuma, Masahiro Nunoshita (Applied
Optics 1983)
516 Fibre optic photoelastic sensors
G. Martens (International Journal of Optoelectronics
1992)
539 General-purpose photoelastic fiber optic accelerometer
Wei Su, John A. Gilbert, Mark D. Morrissey, Yuehong Song
(Optical Engineering 1997)
Other Related Studies
546 A mathematical theory of photo-viscoelasticity
Raymond D. Mindlin (Journal of Applied Physics 1949)
557 New model materials for photoelasticity and photoplasticity
Katsuhiko Ito (Experimental Mechanics 1962)
561 A theory for photothermoviscoelasticity
Ellis Harold Dill (in Fourth International Congress on
Rheology, E.H. Lee, editor, 1963)
570 Birefringence in viscoelastic materials
Ronald S. Rivlin, Gerald F. Smith (Journal of Applied
Mathematics and Physics [ZAMP] 1971)
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