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Thermal Shock Properties of 316 Stainless Steel
Sang-Pill Lee, Young-Man Kim, Byung-Hyun Min, Chang-Ho Kim, In-Soo Son, Jin-Kyung Lee
J. Ocean Eng. Technol.. 2013;27(5):22-27.   Published online October 31, 2013

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Shock Waves in Condensed Matter 1983. 1984;419-422   Crossref logo
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Tensile properties of thermal-mechanically pretreated type 316 austenitic stainless steel
Metallurgical Transactions. 1974;5(7):1695-1697   Crossref logo
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Thermal creep properties of alloy D9 stainless steel and 316 stainless steel fuel clad tubes
International Journal of Pressure Vessels and Piping. 2008;85(12):866-870   Crossref logo
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Density, thermal expansion of stainless steel and interfacial properties of UO2-stainless steel above 1690 K
Journal of Nuclear Materials. 1979;82(1):172-178   Crossref logo
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Fe - 316 Stainless Steel
Recommended Values of Thermophysical Properties for Selected Commercial Alloys. 2002;135-142   Crossref logo
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Tensile and fracture properties of type 316 stainless steel after creep
Metallurgical Transactions A. 1982;13(12):2155-2163   Crossref logo
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Mechanical Properties of Controlled-Porosity 316 Stainless Steel
JOM. 1979;31(3):17-20   Crossref logo
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Sliding wear properties of active screen plasma nitrided 316 austenitic stainless steel
Wear. 2004;256(11-12):1144-1152   Crossref logo
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Corrosion properties of active screen plasma nitrided 316 austenitic stainless steel
Corrosion Science. 2004;46(6):1527-1547   Crossref logo
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A comparison of the irradiated tensile properties of a high-manganese austenitic steel and type 316 stainless steel
Journal of Nuclear Materials. 1984;122(1-3):294-298   Crossref logo
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