Development and testing of a high-chromium, Ni-based filler metal resistant to ductility dip cracking and solidification cracking

Author:

Hope Adam T.,Lippold John C.

Funder

Electric Power Research Institute

Publisher

Springer Science and Business Media LLC

Subject

Metals and Alloys,Mechanical Engineering,Mechanics of Materials

Reference22 articles.

1. Andresen PL, Morra MM (2008) Stress corrosion cracking of stainless steels and nickel alloys in high-temperature water. Corrosion 64(1):15

2. Frederick G, Lu B, King C (2008) Technical basis for preemptive weld overlays for alloy 82/182 butt welds in PWRs. (EPRI, 2008)

3. Fredette L, Scott P (2010) Evaluation of full structural and optimized weld overlays as mitigation strategies for primary water stress corrosion cracking in pressurized water reactors. (Battelle, 2010)

4. Jacko RJ, Gold RE, Kroes A (2003) Accelerated corrosion testing of alloy 52M and alloy 182 weldments. 11th Int. Conf. Environmental Degradation of Materials in Nuclear Systems

5. Kiser SD, Hinshaw EB (2005) Nickel alloy welding requirements for nuclear service. Focus on Nuclear Power Generation, pp 21–26

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