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Isothermal and Thermomechanical Fatigue of Type 316 Stainless Steel
1996Discussed is the thermomechanical fatigue (TMF) life of Type 316 stainless steel under in-phase and out-of-phase cycling and a comparison with the isothermal fatigue case. The TMF tests were conducted in air over a temperature range of 399‡C (750‡F) to 621‡C (1150‡F) at several mechanical strain ranges: δεm = 0.4% through 1.0%.
SY Zamrik, DC Davis, LC Firth
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Effect of helium on microstructure in type 316 stainless steel
Journal of Nuclear Materials, 1983Abstract Solution annealed Type 316 stainless steel samples with 14 and 640 wt ppm boron were irradiated with thermal neutron fluences of 3.9×10 24 and 1.2×10 24 n/m 2 at 340 and 523 K. On post-irradiation annealing for 30 min at 1023 K, Frank loops and helium bubbles formed in the samples containing transmuted helium of ...
K. Shiraishi, K. Fukaya, K. Fukai
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Desensitization of type 316 stainless steel by laser surface melting
Anti-Corrosion Methods and Materials, 2000Laser surface melting (LSM) on sensitized austenitic stainless steel of cold‐work 25 per cent was carried out by using a continuous wave CO2 laser of power 5kW and traverse speed 20mm/sec of the beam. The stainless steel was sensitized at 898K for 10, 20 and 50hr durations.
Sanjay Kumar, Mihir Kumar Banerjee
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Shock Hardened and Annealed Type 316 Stainless Steel
Proceedings, annual meeting, Electron Microscopy Society of America, 1971The structure of shock hardened Type 316 stainless steel has been examined by transmission electron microscopy in a number of different conditions involving variations in shock pressure, temperature, and post-shock annealing in an effort to correlate changes in mechanical properties with structural changes.
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Corrosion behaviour of 316 stainless steel in NaCl-KCl-MgCl2 salt vapour at 700°C
Corrosion Science, 2022Hongxia Xu, Huiqin Yin, Linfan Li
exaly
Tritium decontamination of stainless steel type 316 (VII)
Proceedings of Annual / Fall Meetings of Atomic Energy Society of Japan, 2006Torikai, Yuji +5 more
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