材料科学
脆性
断裂(地质)
复合材料
巴黎法
磁滞
极限抗拉强度
脆性断裂
压力(语言学)
低周疲劳
冶金
断裂力学
疲劳试验
转变温度
裂缝闭合
循环应力
材料性能
应力集中
拉伸试验
疲劳极限
结构工程
作者
Wei Song,Duan-hu Shi,Zhou Guangtao,Min He,Feng Yang,Xiaoxi Wang,Xiao-Lei Xia,Wei Song,Duan-hu Shi,Zhou Guangtao,Min He,Feng Yang,Xiaoxi Wang,Xiao-Lei Xia
摘要
ABSTRACT Basic mechanical and low‐cycle fatigue (LCF) properties of 10CrNi3MoV steel were comprehensively examined by experimental tests at low temperatures in the paper. The variations of yield, tensile strength, and impact values were presented to show their variation tendency. Furthermore, the LCF tests were conducted, and some fatigue indicators under strain‐controlled loadings, such as hysteresis loops, cyclic Masing behavior, and fatigue capacity were characterized. Fatigue crack growth (FCG) tests quantitatively revealed the factors of stress ratio and temperature on the FCG resistances. Results show that the decrease of temperature also improves the capacity of basic mechanical properties, crack initiation, and crack growth of the steel, while the impact properties will deteriorate with variation of temperature. The ductile and brittle fracture transition (DBT) behaviors under different loading conditions were also examined. Results demonstrate that the DBT behavior for LCF properties is consistent with that of FCG performance at low temperatures.
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