Tensile and Fracture Properties of Manganese-Modified AISI 304 Type Stainless Steel

Author:

Tobler R. L.,Reed R. P.

Publisher

Springer US

Reference9 articles.

1. R. H. Espy, “Stainless Steel Alloy Development,” presented at NBS/DoE Workshop on Materials at Low Temperatures, Vail, Colorado, October 16–18, 1979.

2. T. Kato, M. Fujikura, T. Soh, and K. Ishida, Effects of alloying elements on the austenite stability and mechanical properties of austenitic stainless cast steels at cryogenic temperatures, Denki Seiko 48 (3); 179–190 (1977).

3. J. Hochmann, Le role des additions de manganese dans les aciers inoxydables austenitiques, Mater. Tech., Spec. Issue 65: 69 - 87 (1977).

4. A. B. Meade and R. Oppenheim, Tieftemperatureigen schaftor stickstofflegierter austenitische Chrom-Nickel-(Molybdan) sowie Chrom-Mangan-Nickel-Stahle und deren Eignung als kaltzahe Stable, DEW-Techn. Ber. 12: 13–19 (1972).

5. R. L. Tobler and R. P. Reed, Tensile and fracture properties of manganese-modified Fe-18Cr-8Ni type austenitic stainless steels, in: “Materials Studies for Magnetic Fusion Energy Applications at Low Temperatures - IV,” NBSIR 81-1645, R. P. Reed and N. J. Simon, eds., National Bureau of Standards, Boulder, Colorado, (1980), pp. 77–100.

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1. Dynamic fracture behavior of Ti-6Al-4V alloy with various stabilities of βphase;Metallurgical and Materials Transactions A;1994-08

2. The Temperature Dependence of the Tensile Yield Strength of Selected Austenitic Steels;Advances in Cryogenic Engineering Materials;1984

3. Deformation of Metastable Austenitic Steels at Low Temperatures;Advances in Cryogenic Engineering Materials;1982

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