The tensile and low-cycle fatigue behavior of cold worked 316L stainless steel: influence of dynamic strain aging

作者: Seong-Gu Hong , Soon-Bok Lee

DOI: 10.1016/J.IJFATIGUE.2003.12.002

关键词: Work hardeningCyclic stressDynamic strain agingUltimate tensile strengthStrain rateAustenitic stainless steelMetallurgyMaterials scienceHardening (metallurgy)Creep

摘要: … well with the regime of negative strain rate sensitivity. … However, the true UTS was significantly affected by the strain rate… of temperature on material strength (0.2% yield strength and true …

参考文章(16)
J. Nihoul, J. B. Marriott, J. Ward, High temperature alloys : their exploitable potential Elsevier Applied Science. ,(1987)
H Abdel-Raouf, A Plumtree, TH Topper, Effects of temperature and deformation rate on cyclic strength and fracture of low-carbon steel ASTM special technical publications. pp. 28- 57 ,(1971) , 10.1520/STP38023S
JH Driver, C Gorlier, C Belrami, P Violan, C Amzallag, Influence of Temperature and Environment on the Fatigue Mechanisms of Single-Crystal and Polycrystal 316L ASTM special technical publications. pp. 438- 455 ,(1988) , 10.1520/STP24496S
Kenji KANAZAWA, Koji YAMAGUCHI, Satoshi NISHIJIMA, Mapping of Low Cycle Fatigue Mechanisms at Elevated Temperatures for an Austenitic Stainless Steel Tetsu To Hagane-journal of The Iron and Steel Institute of Japan. ,vol. 74, pp. 1097- 1104 ,(1988) , 10.2355/TETSUTOHAGANE1955.74.6_1097
A. Van Den Beukel, On the mechanism of serrated yielding and dynamic strain ageing Acta Metallurgica. ,vol. 28, pp. 965- 969 ,(1980) , 10.1016/0001-6160(80)90114-5
S Ganesh Sundara Raman, KA Padmanabhan, Effect of prior cold work on the room-temperature low-cycle fatigue behaviour of AISI 304LN stainless steel International Journal of Fatigue. ,vol. 18, pp. 71- 79 ,(1996) , 10.1016/0142-1123(95)00078-X
V SRINIVASAN, R SANDHYA, K BHANUSANKARARAO, S MANNAN, K RAGHAVAN, Effects of temperature on the low cycle fatigue behaviour of nitrogen alloyed type 316L stainless steel International Journal of Fatigue. ,vol. 13, pp. 471- 478 ,(1991) , 10.1016/0142-1123(91)90482-E
A. M. Sherman, Fatigue properties of high strength-low alloy steels Metallurgical and Materials Transactions A-physical Metallurgy and Materials Science. ,vol. 6, pp. 1035- 1040 ,(1975) , 10.1007/BF02661357
Seong-Gu Hong, Soon-Bok Lee, Development of a New LCF Life Prediction Model of 316L Stainless Steel at Elevated Temperature Transactions of The Korean Society of Mechanical Engineers A. ,vol. 26, pp. 521- 527 ,(2002) , 10.3795/KSME-A.2002.26.3.521
K. D. Challenger, A. K. Miller, C. R. Brinkman, An Explanation for the Effects of Hold Periods on the Elevated Temperature Fatigue Behavior of 2 1/4 Cr-1 Mo Steel Journal of Engineering Materials and Technology-transactions of The Asme. ,vol. 103, pp. 7- 14 ,(1981) , 10.1115/1.3224979