Mode-I Stress-Intensity Factors for a Cracked Slab Under an Arbitrary Thermal Shock

Author:

Segall A. E.1,Meeker J.1

Affiliation:

1. Engineering Science and Mechanics, The Pennsylvania State University, University Park, PA 16802

Abstract

A stress intensity factor solution for a cracked slab subjected to an arbitrary thermal shock on one surface has been derived. As a first step, the transient temperature distribution was calculated for an arbitrary surface loading through the use of Duhamul’s integral relationship and the unit response for a slab that is insulated on the other face. The arbitrary nature of the transient surface loading was accommodated by a versatile polynomial containing both integral- and half-order terms. Once the resulting transient stress states were determined via elasticity theory, the resulting stress intensification for an arbitrary crack was approximated using a weight-function approach. The procedure was checked with known stress intensity solutions for an edge-cracked plate subjected to a linear down shock followed by a constant temperature soak. Excellent agreement was observed for this test case for a variety of crack lengths.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference21 articles.

1. Test Methodology for the Thermal Shock Characterization of Ceramics;Vedula;J. Mater. Sci.

2. Analysis of Gas-Fired Ceramic Radiant Tubes During Transient Heating;Segall;J. Test. Eval.

3. Thermal Shock and Fatigue Behavior of Ceramic Tubes;Segall

4. Albrecht, W. , 1969, “How Thickness and Materials Properties Influence Thermal-Stresses in Flat Plates and Cylinders,” ASME Paper No. G9-GT-107.

5. Thermal Stress Resistance Parameters for Brittle Refractory Ceramics: A Compendium;Hasselman;Bull. Am. Ceram. Soc.

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