DATA ACQUISITION TECHNIQUES IN PHOTOELASTICITY

[1]  Banshidhar Pant A method for determining integral fringe orders in photoelastic analysis , 1963 .

[2]  M. Ramji,et al.  Assessment of autonomous phase unwrapping of isochromatic phase maps in digital photoelasticity , 2008 .

[3]  Sandro Barone,et al.  A method for reducing the influence of quarter-wave plate errors in phase stepping photoelasticity , 1998 .

[4]  Sandro Barone,et al.  A review of automated methods for the collection and analysis of photoelastic data , 1998 .

[5]  K. T. Ramesh,et al.  Three fringe photoelasticity ‐ use of colour image processing hardware to automate ordering of isochromatics , 1996 .

[6]  V. Iyengar,et al.  The measurement of the complete photoelastic fringe order using a spectral scanner , 1985 .

[7]  Eann A. Patterson,et al.  A robust approach to demodulating and unwrapping phase-stepped photoelastic data , 2005 .

[8]  M. Solaguren-Beascoa Fernández,et al.  Stress-separation techniques in photoelasticity: A review , 2010 .

[9]  B. Zuccarello,et al.  The influence of the quarter wave plates in automated photoelasticity , 2002 .

[10]  Photoelastic-fringe multiplication—For tenfold increase in sensitivity , 1970 .

[11]  S. Redner New automatic polariscope system , 1974 .

[12]  Lei Zhenkun,et al.  Whole-field determination of isoclinic parameter by five-step color phase shifting and its error analysis , 2003 .

[13]  M. Scafidi,et al.  RGB Photoelasticity: Review and Improvements , 2010 .

[14]  Manuel Servin,et al.  Regularized phase tracking technique for demodulation of isochromatics from a single tricolour image , 2002 .

[15]  Jonathan Y. Yao Digital image processing and isoclinics , 1990 .

[16]  A D Nurse Full-field automated photoelasticity by use of a three-wavelength approach to phase stepping. , 1997, Applied optics.

[17]  Steve Haake,et al.  Photoelastic analysis of frozen stressed specimens using spectral-contents analysis , 1992 .

[18]  Hisao Kikuta,et al.  Simultaneous observation of phase-stepped photoelastic fringes using a pixelated microretarder array , 2006 .

[19]  K. Ashokan,et al.  A novel approach for ambiguity removal in isochromatic phasemap in digital photoelasticity , 2006 .

[20]  Giovanni Petrucci,et al.  Phase shifting photoelasticity in white light , 2007 .

[21]  Anand Asundi,et al.  Determination of isoclinic and isochromatic parameters using the three-load method , 2000 .

[22]  Terry Yuan-Fang Chen A simple method for the digital determination of the photoelastic fringe order , 2000 .

[24]  A Asundi,et al.  Phase-shifting method with a normal polariscope. , 1999, Applied optics.

[25]  Eann A. Patterson Automated photoelastic analysis , 1988 .

[26]  K. T. Ramesh,et al.  Automatic ordering of isochromatic fringes - a new methodology , 1995 .

[27]  Masahisa Takashi,et al.  Photoelastic Analysis with a Single Tricolor Image , 1998 .

[28]  J A Quiroga,et al.  Phase measuring algorithm for extraction of isochromatics of photoelastic fringe patterns. , 1997, Applied optics.

[29]  K. T. Ramesh,et al.  Digital Photoelasticity: Advanced Techniques and Applications , 2000 .

[30]  David P. Towers,et al.  New approaches to the full-field analysis of photoelastic stress patterns , 1996 .

[31]  R. K. Müller,et al.  Complete automatic analysis of photoelastic fringes , 1979 .

[32]  K. T. Ramesh,et al.  Digital image processing of fringe patterns in photomechanics , 1992 .

[33]  Warren C. Young,et al.  An automated process for three-dimensional photoelastic analysis , 1969 .

[34]  Terry Yuan-Fang Chen Digital determination of photoelastic birefringence using two wavelengths , 1997 .

[35]  Eann A. Patterson,et al.  Towards full field automated photoelastic analysis of complex components , 1991 .

[36]  Terry Yuan-Fang Chen,et al.  Computerized fringe analysis in photomechanics , 1989 .

[37]  C. P. Burger,et al.  Half-fringe photoelasticity: A new approach to whole-field stress analysis , 1983 .

[38]  S. K. Mangal,et al.  Use of multiple loads to extract continuous isoclinic fringes by phase shifting technique , 1999 .

[39]  Hui Pih,et al.  15 – THE USE OF PHOTOMETRIC DEVICES IN THE SOLUTION OF THE GENERAL THREE-DIMENSIONAL PHOTOELASTIC PROBLEM* , 1969 .

[40]  Angel García-Botella,et al.  Improved method for isochromatic demodulation by RGB calibration. , 2002, Applied optics.

[41]  G. Petrucci Full-field automatic evaluation of an isoclinic parameter in white light , 1997 .

[42]  Eisaku Umezaki,et al.  Measurement of Principal-Stress Directions from Photoelastic Experiment Using Generalized Phase-Shift Method , 1997 .

[43]  Eann A. Patterson,et al.  Integration of spectral and phase-stepping methods in photoelasticity , 1999 .

[44]  T. R. Judge,et al.  Photoelasticity stress analysis using carrier fringe and FFT techniques , 1993 .

[45]  Eann A. Patterson,et al.  A novel instrument for transient photoelasticity , 2003 .

[46]  K. T. Ramesh,et al.  Adaptive Quality Guided Phase Unwrapping Algorithm for Whole‐Field Digital Photoelastic Parameter Estimation of Complex Models , 2010 .

[47]  A. Lagarde,et al.  Two-wavelength method for full-field automated photoelasticity , 1999 .

[48]  Eisaku Umezaki,et al.  Full-Field Determination of Principal-Stress Directions Using Photoelasticity with Plane-Polarized RGB Lights , 2005 .

[49]  A. D. Nurse,et al.  Absolute determination of the isochromatic parameter by loadstepping photoelasticity , 1998 .

[50]  Krishnamurthi Ramesh,et al.  Comparative performance evaluation of various fringe thinning algorithms in photomechanics , 1995, J. Electronic Imaging.

[51]  Terry Yuan-Fang Chen Digital fringe multiplication of photoelastic images—A new approach , 1994 .

[52]  Anand Asundi,et al.  Full field automated photoelasticity using two- load-step method , 2001 .

[53]  Arkady S. Voloshin,et al.  Automated measurement of birefringence: Development and experimental evaluation of the techniques , 1989 .

[54]  Venketesh N. Dubey,et al.  Noise removal in three-fringe photoelasticity by median filtering , 2009 .

[55]  T. K. Varadan,et al.  Computerized image processing for whole-field determination of isoclinics and isochromatics , 1992 .

[56]  B. Zuccarello,et al.  Photoelastic stress pattern analysis using Fourier transform with carrier fringes: influence of quarter-wave plate error , 2002 .

[57]  Philip Siegmann,et al.  Robust approach to regularize an isochromatic fringe map. , 2009, Applied optics.

[58]  J. R. Lesniak,et al.  Design and evaluation of the poleidoscope: A novel digital polariscope , 2004 .

[59]  Motoharu Fujigaki,et al.  Real-time analysis of isochromatics and isoclinics using the phase-shifting method , 2003 .

[60]  Y. Seguchi,et al.  Computer-aided fringe-pattern analyzer—A case of photoelastic fringe , 1979 .

[61]  K. T. Ramesh,et al.  Improved determination of retardation in digital photoelasticity by load stepping , 2000 .

[62]  V. M. Hickson,et al.  Improvements in Photoelastic Technique Obtained by the Use of a Photometric Method , 1950 .

[63]  Sandro Barone,et al.  Computer aided photoelasticity by an optimum phase stepping method , 2002 .

[64]  F. W. Hecker,et al.  Computer-Aided Measurement of Relative Retardations in Plane Photoelasticity , 1986 .

[65]  Whole-field digital measurements of isochromatics and isoclinics in photoelastic coatings , 1999 .

[66]  S. Tang,et al.  Computerized photoelastic fringe multiplication , 1990 .

[67]  Sandro Barone,et al.  Towards RGB photoelasticity: Full-field automated photoelasticity in white light , 1995 .

[68]  I. A. Jones,et al.  Complete Fringe Order Determination in Digital Photoelasticity Using Fringe Combination Matching , 2003 .

[69]  B. Zuccarello,et al.  Limitation of fourier transform photoelasticity: Influence of isoclinics , 2000 .

[71]  Eann A. Patterson,et al.  Digital Photoelasticity: Principles, Practice and Potential , 2002 .

[72]  I. M. Allison,et al.  Interactive control for an automatic polariscope , 1979 .

[73]  R. Heywood Designing by photoelasticity , 1952 .

[75]  K. T. Ramesh,et al.  Towards effective phase unwrapping in digital photoelasticity , 2004 .

[76]  Eisaku Umezaki,et al.  Digitally whole-field analysis of isoclinic parameter in photoelasticity by four-step color phase-shifting technique , 2007 .

[77]  Eann A. Patterson,et al.  Simultaneous observation of phase-stepped images for automated photoelasticity , 1998 .

[78]  Susumu Takahashi,et al.  Automatic stress analysis of photoelastic experiment by use of image processing , 1989 .

[79]  T. W. Ng,et al.  Photoelastic stress analysis using an object step-loading method , 1997 .

[80]  Masanori Idesawa,et al.  Automatic Fringe Analysis Using Digital Image Processing Techniques , 1982 .

[81]  Dwayne Arola,et al.  Automatic determination of parameters in photoelasticity , 2007 .

[82]  K. T. Ramesh,et al.  Automation of white light photoelasticity by phase-shifting technique using colour image processing hardware , 1997 .

[83]  Hisao Kikuta,et al.  Phase-Stepping Photoelasticity by Use of Retarders with Arbitrary Retardation , 2006 .

[84]  Steve Haake,et al.  The application of evolutionary and maximum entropy algorithms to photoelastic spectral analysis , 1999 .

[85]  J A Quiroga,et al.  Separation of isoclinics and isochromatics from photoelastic data with a regularized phase-tracking technique. , 2000, Applied optics.

[86]  Eann A. Patterson,et al.  Use of phase-stepping with demodulation and fuzzy sets for birefringence measurement , 1995 .

[87]  Y. C. Chou,et al.  On the Use of Different Wavelengths to Digitally Determine the Isochromatic Fringe Order , 2002 .

[88]  Venketesh N. Dubey,et al.  Isochromatic Demodulation by Fringe Scanning , 2006 .

[89]  G. M. Brown,et al.  The computer-aided holophotoelastic method , 1990 .

[90]  K. T. Ramesh,et al.  Data acquisition techniques in digital photoelasticity: a review , 1998 .

[91]  André J. Robert New methods in photoelasticity , 1967 .

[92]  Steve Haake,et al.  The determination of principal stresses from photoelastic data , 1992 .

[93]  Eann A. Patterson,et al.  On image analysis for Birefringence measurements in photoelasticity , 1997 .

[94]  B. Zuccarello,et al.  Limitation of carrier fringe methods in digital photoelasticity , 2007 .

[95]  Alex S. Redner Photoelastic measurements by means of computer-assisted spectral-contents analysis , 1985 .