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0006802399
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Thermoelastic Stress Analysis
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Rauch, B.J.1
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3
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Simultaneous Stress Separation, Smoothing of Measured Thermoelastic Isopachic Information and Enhanced Boundary Data
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Huang, Y.M., Rowlands, R.E., and Lesniak, J.R., "Simultaneous Stress Separation, Smoothing of Measured Thermoelastic Isopachic Information and Enhanced Boundary Data," EXPERIMENTAL MECHANICS 30, 398-403 (1990).
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Huang, Y.M.1
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4
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0025399776
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Determination of Individual Stresses Thermoelastically
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Huang, Y.M., AbdelMohsen, H.H., and Rowlands, R.E., "Determination of Individual Stresses Thermoelastically," EXPERIMENTAL MECHANICS, 30, 89-94 (1990).
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Experimental Mechanics
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Huang, Y.M.1
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84970283559
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Quantitative Stress Analysis Based on the Measured Trace of the Stress Tensor
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Huang, Y.M. and Rowlands, R.E., "Quantitative Stress Analysis Based on the Measured Trace of the Stress Tensor," J. Strain Analysis, 26 55-63 (1991).
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Huang, Y.M.1
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Determining Reliable Edge Isopachic Datafrom Interior Thermoelastic Measurements
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Rauch, B.J. and Rowlands, R.E., "Determining Reliable Edge Isopachic Datafrom Interior Thermoelastic Measurements," EXPERIMENTAL MECHANICS, 35, 174-181 (1996).
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Thermoelastic Determination of Individual Stress Components in Loaded Composites
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Feng, Z., Zhang, D., Rowlands, R.E., andSandor, B.I., "Thermoelastic Determination of Individual Stress Components in Loaded Composites," EXPERIMENTAL MECHANICS, 32, 89-95 (1992).
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Experimental Mechanics
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Feng, Z.1
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9
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3342976617
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A Method of Thermographic Stress Separation
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Elsevier, A.R.S. Porter, ed., University of Leicester
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Boyle, J.T. and Hamilton, R., "A Method of Thermographic Stress Separation," Fourth Conf. Applied Solid Mechanics, Elsevier, A.R.S. Porter, ed., University of Leicester (1991).
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Boyle, J.T.1
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Determining Stress Components from Thermoelastic Data - A Theoretical Study
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Ryall, T.G. and Wang, A.K., "Determining Stress Components from Thermoelastic Data - A Theoretical Study," Mech. Mater, 7 205-214 (1988).
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Ryall, T.G., Heller, M., and Jones, R., "Determination of Stress Components from Thermoelastic Data Without Boundary Conditions," (1991).
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Determination of Stress Components from Thermoelastic Data Without Boundary Conditions
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Ryall, T.G.1
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12
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Ryall, T.G., Cox, P.M., and Enke, N.F., "On the Determination of Dynamic and Static Stress Components from Experimental Thermoelastic Data," (1991).
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On the Determination of Dynamic and Static Stress Components from Experimental Thermoelastic Data
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Ryall, T.G.1
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Stress Separation from SPATE Data for a Rotationally Symmetrical Pressure Vessel
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P. Stanley, ed.
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Stanley, P., "Stress Separation from SPATE Data for a Rotationally Symmetrical Pressure Vessel," Stress and Vibration: Recent Developments in Industrial Measurement and Analysis, SPIE 1084, P. Stanley, ed., 72-83 (1987).
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Stanley, P.1
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Hybrid Elastostatic and Thermostatic Analysis from Measured Data
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AbdelMohsen, H.H., Huang, Y.M., and Rowlands, R.E., "Hybrid Elastostatic and Thermostatic Analysis from Measured Data," EXPERIMENTAL MECHANICS, 29, 474-480 (1989).
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Abdelmohsen, H.H.1
Huang, Y.M.2
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Thermoelastic Stress Analysis of Orthotropic Composites
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Lin, S.T. and Rowlands, R.E., "Thermoelastic Stress Analysis of Orthotropic Composites," EXPERIMENTAL MECHANICS, 35, 257-265 (1995).
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Experimental Mechanics
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Lin, S.T.1
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0029772250
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Devices for the Experimental Determination of Individual Stresses from Thermoelastic Data
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Stanley, P. and Dulieu-Smith, J.M., "Devices for the Experimental Determination of Individual Stresses from Thermoelastic Data," Strain Analysis, 31, 53-63 (1996).
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Image Enhancement and Stress Separation of Thermoelastically Measured Data under Random Loading
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Lin, S.T., Miles, J.P., and Rowlands, R.E., "Image Enhancement and Stress Separation of Thermoelastically Measured Data Under Random Loading" EXPERIMENTAL MECHANICS, 37, 225-231 (1997).
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Experimental Mechanics
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Lin, S.T.1
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0022983841
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The Determination of Stress Intensity Factors and Crack-tip Velocities from Thermoelastic Infra-red Emissions
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Stanley, P. and Chan, W.K., "The Determination of Stress Intensity Factors and Crack-tip Velocities from Thermoelastic Infra-red Emissions," Proc. Int. Conf. Fatigue Eng. Mater. Struct., 1, 105-114 (1986).
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Mode II Crack Studies Using the SPATE Technique
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Stress Intensity Factors for Toe Cracks in Fillet Welded Joints-Finite Element Modeling and Thermoelastic Determination
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P. Stanley, ed., London
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Chan, S.W.K. and Tubby, P.J., "Stress Intensity Factors for Toe Cracks in Fillet Welded Joints-Finite Element Modeling and Thermoelastic Determination," Stress and Vibration: Recent Developments in Industrial Measurements and Analysis, Incorporating Third International Conference on Stress Analysis by Thermoelastic Technique, SPIE 1084, P. Stanley, ed., London, 116-118 (1987).
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Chan, S.W.K.1
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23
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3343014340
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Measuring Stress Intensity Factors in Orthotropic Materials Using SPATE
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Vienna
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Hawong, J.S., Suh, J.G., and Rowlands, R.E., "Measuring Stress Intensity Factors in Orthotropic Materials Using SPATE," Int. Conf. Struct. Failure Product Liability Tech. Assurance, Vienna (1995).
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Int. Conf. Struct. Failure Product Liability Tech. Assurance
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Hawong, J.S.1
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0031103527
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Thermoelastic Determination of Stress Intensity Factors in Orthotropic Composites Using the J-integral
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Lin, S.T., Feng, Z., and Rowlands, R.E., "Thermoelastic Determination of Stress Intensity Factors in Orthotropic Composites Using the J-integral," Eng. Fract. Mech.
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Eng. Fract. Mech.
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Lin, S.T.1
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Theoretical Considerations for Determining Stress Intensity Factors via Thermoelastic Stress Analysis
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London
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Pukas, S.R.1
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The Use of SPATE to Measure Residual Stresses and Fatigue Crack Growth
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Filtering of Experimental Data in Plane Stress and Strain Fields
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Lukasiewicz, S.A., Stanuszek, M., and Czyz, J.A., "Filtering of Experimental Data in Plane Stress and Strain Fields," EXPERIMENTAL MECHANICS, 23, 139-147 (1993).
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Lukasiewicz, S.A.1
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