Article ID Journal Published Year Pages File Type
1579113 Materials Science and Engineering: A 2010 4 Pages PDF
Abstract
▶ This study shows first that temperature and yield stress dependences of crack growth rate in zirconium alloys can analytically be understood not by the Dutton-Puls model but by Kim's new DHC model. ▶ It is demonstrated that the driving force for DHC is ΔC, not the stress gradient, which is the core of Kim's DHC model. ▶ The Dutton-Puls model reveals the invalidity of Puls' claim that the crack tip solubility would increase to the cooling solvus.
Related Topics
Physical Sciences and Engineering Materials Science Materials Science (General)
Authors
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