Reply to comment on “Identification of SAGBO-induced damage zone ahead of crack tip to characterize sustained loading crack growth in alloy 783”
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,Mechanics of Materials,Metals and Alloys,Mechanical Engineering
Reference8 articles.
1. McMahon Jr. CJ. Scripta Mater, 2005, this issue, doi:10.1016/j.scriptamat.2005.09.030.
2. Effect of prolonged isothermal exposure on elevated-temperature, time-dependent fatigue-crack propagation in INCONEL alloy 783
3. Chang K-M. G.E. R&D Report, No: 89CRD116, June 1989, G.E. R&D Center, Schenectady, NY. p. 1–20.
4. Identification of SAGBO-induced damage zone ahead of crack tip to characterize sustained loading crack growth in alloy 783
5. Oxygen-induced intergranular cracking of a Ni-base alloy at elevated temperatures—an example of dynamic embrittlement
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1. Effect of dynamic embrittlement on high temperature fatigue crack propagation in IN718 – experimental characterisation and mechanism-based modelling;Materials at High Temperatures;2016-05-26
2. On the mechanism of dynamic embrittlement and its effect on fatigue crack propagation in IN718 at 650°C;Procedia Structural Integrity;2016
3. Electron microscopy investigation of a cast AlSi9Mg aluminum alloy subjected to friction stir processing with overlapping passes;International Journal of Materials Research;2015-07-04
4. Effects of the Environment on the Crack Propagation Behavior of IN718 in the Temperature Range of the Dynamic Embrittlement;Journal of ASTM International;2011
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