Stage I stress corrosion cracking behavior
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference26 articles.
1. Crack tip chemistry modelling of intergranular stress corrosion cracks in nickel containing segregated phosphorus and sulfur
2. Corrosion of nickel-base alloys;Jones;J. Mater. Energy Systems,1986
3. Embrittlement by the Localized Crack Environment;Ford,1984
4. Stress-corrosion cracking of sensitized type 304 stainless steel in thiosulfate solutions
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1. Stress corrosion cracking behavior of magnesium alloys EV31A and AZ91E;Materials Science and Engineering: A;2013-10
2. Stress corrosion cracking of a wrought Mg–Mn alloy under plane strain and plane stress conditions;Engineering Fracture Mechanics;2013-04
3. Use of a dislocation-based boundary element model to extract crack growth rates from depth distributions of intergranular stress corrosion cracks;Acta Materialia;2012-08
4. Measurement of the Effect of Artificial Crack Geometry on the Rate of Bulk H+Transport Using Fiber Optic Chemical Sensors;CORROSION;2001-08
5. Corrosion of Phosphorus‐Implanted 304L Stainless Steel in 1 N H 2 SO 4;Journal of The Electrochemical Society;1999-03-01
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