Fatigue Strength as a Function of Preloading in Dynamic Fatigue Testing of Glass and Ceramics
Author:
Affiliation:
1. Cleveland State University, Cleveland, OH 44115; NASA Lewis Research Center, Cleveland, OH 44135
2. NASA Lewis Research Center, Cleveland, OH 44135
Abstract
Publisher
ASME International
Subject
Mechanical Engineering,Energy Engineering and Power Technology,Aerospace Engineering,Fuel Technology,Nuclear Energy and Engineering
Link
http://asmedigitalcollection.asme.org/gasturbinespower/article-pdf/119/3/493/5615795/493_1.pdf
Reference23 articles.
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2. Evans A. G. , and WiederhornS. M., “Crack Propagation and Failure Prediction in Silicon Nitride at Elevated Temperatures,” J. Mater. Sci., Vol. 9, 1974, pp. 270–278.
3. Hubner H. , and JillekW., “Subcritical Crack Extension and Crack Resistance in Polycrystalline Alumina,” J. Mater. Sci., Vol. 12, 1977, pp. 117–125.
4. Sakaguchi S. , SawakiY., AbeY., and KawasakiT., “Delayed Failure in Silica Glass,” J. Mater. Sci., Vol. 17, 1982, pp. 2878–2886.
5. Dauskardt R. H. , JamesM. R., PorterJ. R., and RitchieR. O., “Cyclic Fatigue-Crack Growth in SiC-Whisker-Reinforced Alumina Ceramic Composite: Long- and Small-Crack Behavior,” J. Am. Ceram. Soc., Vol. 75, 1992, pp. 759–771.
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