Photoelasticity methods to determine stresses in propellant-grain models

A. J. Durelli1, V. J. Parks1
1Mechanics Division, The Catholic University of America, Washington, D. C.

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Durelli, A. J., “Experimental Means of Analyzing Stresses and Strains in Rocket Propellant Grains,”Experimental Mechanics,2 (4),102–110 (1962).

Sampson, R. C., “A Three-dimensional Photoelastic Method for Analysis of Differential-contraction Stresses,”Ibid.,3 (10),225–234, (1963).Discussion by Durelli, A. J., 235–237.

Messner, A., “Propellant Grain Stress Analysis,” Proceedings 17th JANAF-ARPA-NASA Solid Propellant Group, May 1961, Vol. 1 (Confidential).

Paar, C. H., “Deformations and Stresses in Core-Bonded Solid Propellant Grains at Finite Length by Numerical Methods,” Rohm and Haas Quarterly Progress Report No. P 61-17, October 1961.

Durelli, A. J., andParks, V. J., “New Method to Determine Restrained-shrinkage Stresses in Propellant-grain Models,”Experimental Mechanics,3 (11),263–268 (1963).

Daniel, I. M., andDurelli, A. J., “Photothermoelastic Analysis of Bonded Propellant Grains, Ibid.,I (3),97–104 (1961).

Wilson, H. B., “Stresses Owing to Internal Pressure in Solid Propellant Grains”ARS Jnl.,31,309 (1961).

Isibasi, Tadasi., “Form-Factors of Solid of Revolutions in Relation to Those of Plane Plates,” Research Institute for Elasticity Engineering, Kyushu Imperial University, Fukuoka, Japan,IV (1),June 1947.

Meyer, M. L., andOak, A. N., “Two-Dimensional Photoelasticity as a Method of Approximation to the Stresses in Three-Dimensional Problems with a Plane or Axis of Symmetry”Jnl. Roy. Aeron. Soc.,66,193–196 (March1962).

Barriage, J. B., andDurelli, A. J., “Application of a New Deformeter to Two-Dimensional Thermal Stress Problems,”Proc. SESA,XIII-2,97–106 (1956).