Examines the initiation and growth of fatigue cracks and the fracture toughness of advanced materials such as silicon nitride, special alloys and steels, thermoplastics, and graphite-epoxy composites; and explains several non-destructive techniques to evaluate such materials for manufacturing defect
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The 50-kW design has been used to good effect in a lengthy series of high temperature, low-cycle fatigue tests conducted ... Superalloy," Cyclic Deformation, Fracture, and Nondestructive Evaluation of Advanced Materials: Second Volume, ...
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_8'3—_ A? Crack growth rate,da/dN,dc/dN [m/cycle] E; 10“” '5 10-10— 10"11 5 ' _12: | 1 f fin—t r 1 1 10 0.6 1 5 ... ASTM STP "2nd Symposium on Cyclic Deformation, Fracture and Nondestructive Evaluation of Advanced Materials", in press.
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Summary Cyclic deformation behavior of a wrought cobalt-base superalloy, Haynes 188, tested under isothermal and ... Superalloy," Cyclic Deformation, Fracture, and Nondestructive Evaluation of Advanced Materials: Second Volume, ...
1992 Sino - Japan Bilateral Symp . High Temp . Strength of Materials , X. Zhang and X. Xie , eds . 172-84 ( 1992 ) . 85. C.-K. J. Lin , T. A. Mayer , and D. F. Socie , " Cyclic Fatigue of Alumina " in Cyclic Deformation , Fracture ...
M. Karayaka, H. Sehitoglu, "Thermo-mechanical Cyclic Deformation of Metal Matrix Composites: Internal Stress-Strain Fields", to appear in ASTM STP, Cyclic Deformation, Fracture and Nondestructive Evaluation of Advanced Materials,1992.
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