Charles J. McMahon

Affiliations: 
University of Pennsylvania, Philadelphia, PA, United States 
Area:
Materials Science Engineering
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"Charles McMahon"
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Kane WM, Krupp U, McMahon CJ. (2009) Part I: Anisotropy of cracking from oxygen-induced dynamic embrittlement in bicrystals of IN718 Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 507: 58-60
Liu X, McMahon CJ. (2009) Quench cracking in steel as a case of hydrogen embrittlement Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 499: 540-541
Kane WM, McMahon CJ. (2009) Part II. Effects of grain-boundary structure on the path of cracking in polycrystals Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 507: 61-65
Liu X-, Kameda J, Anderegg JW, et al. (2008) Hydrogen-induced cracking in a very-high-purity high-strength steel Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 492: 218-220
Liu X, Tham D, Yates D, et al. (2007) Evidence for the intergranular segregation of tin to grain boundaries of a Cu–Sn alloy and its consequences for dynamic embrittlement Materials Science and Engineering a-Structural Materials Properties Microstructure and Processing. 458: 123-125
McMahon CJ. (2006) Comments on ¿Identification of SAGBO-induced damage zone ahead of crack tip to characterize sustained loading crack growth in alloy 783¿ Scripta Materialia. 54: 305-307
Krupp U, Wagenhuber PE-, Kane WM, et al. (2005) Improving resistance to dynamic embrittlement and intergranular oxidation of nickel based superalloys by grain boundary engineering type processing Materials Science and Technology. 21: 1247-1254
Kane W, Krupp U, Jacobs T, et al. (2005) On the mechanism of quench cracking in Rene 95 nickel-based superalloy Materials Science and Engineering: A. 402: 42-46
McMahon CJ. (2004) Brittle Fracture of Grain Boundaries Interface Science. 12: 141-146
Liu XY, Kane W, McMahon CJ. (2004) On the suppression of dynamic embrittlement in Cu–8wt%Sn by an addition of zirconium Scripta Materialia. 50: 673-677
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