Tempering of 2.25 Cr-1 Mo Steel and HT-9 Steel to Reduce Liquid-Metal-Induced Embrittlement Susceptibility in 17Li-83Pb Liquid
Author:
Affiliation:
1. Colorado School of Mines, Department of Metallurgical Engineering Center for Welding Research, Golden, Colorado 80401
Publisher
Informa UK Limited
Subject
General Engineering
Link
https://www.tandfonline.com/doi/pdf/10.13182/FST86-A24976
Reference15 articles.
1. The corrosion susceptibility of 21/4 Cr-1 Mo steel in a lithium-17.6 wt pct lead liquid
2. T. L. ANDERSON, “An Evaluation of the Corrosion Resistance of 2.25 Cr-1 Mo Steel in a Lithium-Lead Liquid,” Thesis T-2372, Colorado School of Mines (May 1980).
3. The effect of lead concentration on the corrosion susceptibility of steel in a lead-lithium liquid
4. B. D. WILKINSON, “The Effect of Lead Concentration on the Corrosion Susceptibility of 2.25 Cr–1 Mo Steel in Lead-Lithium Solutions,” Thesis T-2442, Colorado School of Mines (July 1982).
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1. Liquid metal embrittlement (LME) susceptibility of the 8–9% Cr martensitic steels F82H-mod., OPTIFER IVb and their simulated welded structures in liquid Pb–17Li;Journal of Nuclear Materials;2000-12
2. Liquid metal embrittlement susceptibility of welded MANET II (DIN 1.4914) in liquid Pb17Li.;Journal of Nuclear Materials;1996-10
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4. Embrittlement of Steels by Lead;Metallurgical Technologies, Energy Conversion, and Magnetohydrodynamic Flows;1993-01-01
5. LIQUID METAL EMBRITTLEMENT (LME) SUSCEPTIBILITY OF THE LOW ACTIVATION MARTENSITIC STEELS LA7TaLN, LA12TaLN, LA12TaLC, LA13Ta AND THEIR SIMULATED WELDED STRUCTURES IN LIQUID Pb-17Li;Fusion Technology 1992;1993
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