共 27 条
- [1] ZHENG J, MIAO C, LI Y, Et al., Investigation on influence factors of mechanical properties of austenitic stainless steels for cold stretched pressure vessels, Journal of Pressure Vessel Technology: Transactions of the ASME, 134, 6, (2012)
- [2] JIN L, CHO H, LEE C, Et al., Experimental research and numerical simulation on cryogenic line chill-down process, Cryogenics, 89, pp. 42-52, (2018)
- [3] DING H, WU Y, LU Q, Et al., Tensile properties and impact toughness of S30408 stainless steel and its welded joints at cryogenic temperatures, Cryogenics, 92, pp. 50-59, (2018)
- [4] OH D, LEE J, NOH B, Et al., Investigation of fatigue performance of low temperature alloys for liquefied natural gas storage tanks, Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science, 229, 7, pp. 1300-1314, (2015)
- [5] FAN Xue-jun, HUI Hu, HUANG Song, Stress analysis of strain-strengthened transportable cryogenic pressure vessels with deformation controlled, Pressure Vessel Technology, 36, 8, pp. 16-22, (2019)
- [6] ZHANG Xiao, Research on temperature of warm stamping formed standard elliptical head made of metastable austenitic stainless steel, pp. 4-6, (2015)
- [7] AKITA M, NAKAJIMA M, TOKAJI K, Et al., Fatigue behaviour of pre-strained type 316 stainless steel, Fracture of Nano and Engineering Materials and Structures, pp. 229-230, (2006)
- [8] JIANG Gong-feng, SUN Liang, CHEN Gang, Experimental study of 304 stainless steel fatigue life considering material pre-strain hardening effect, Journal of Mechanical Strength, 36, 6, pp. 850-855, (2014)
- [9] PENG Kai-ping, CHEN Wen-zhe, QIAN Kuang-wu, Effect of dynamic strain aging on low cycle fatigue behavior of 18-8 austenitic stainless steel, Acta Metallurgica Sinica, 29, 6, pp. 43-48, (1993)
- [10] YURI T, OGATA T, SAITO M, Et al., Effect of welding structure and delta-ferrite on fatigue properties for TIG welded austenitic stainless steels at cryogenic temperatures, Cryogenics, 40, 4, pp. 251-259, (2000)