材料科学
可塑性
极限抗拉强度
拉伤
压力(语言学)
复合材料
应力松弛
振幅
磁滞
低周疲劳
疲劳极限
结构工程
蠕动
医学
内科学
物理
工程类
哲学
量子力学
语言学
作者
Seung-Kee Koh,R. I. Stephens
标识
DOI:10.1111/j.1460-2695.1991.tb00672.x
摘要
Abstract— ASTM A723 Q & T steel with a yield strength and ultimate strength of 1170 and 1262 MPa respectively was evaluated for mean stress‐strain effects under smooth specimen axial strain controlled low cycle fatigue conditions with strain ratios R of −2, −1, 0, 0.5 and 0.75. Cycles to failure ranged from 15 to 10 5 . Cyclic stress‐strain response based upon half‐life hysteresis loop peaks were similar for all R ratios. Mean stress relaxation occurred for R ≠−1 only when plastic strain amplitudes were present and this occurred above total strain amplitudes of 0.005. Thus, mean stress relaxation was completely dependent upon cyclic plasticity. Mean strains did not affect low cycle fatigue life unless accompanied by half‐life mean stress. Tensile mean stress was detrimental and compressive mean stress was beneficial and these effects only occurred at strain ampltidues below 0.005. Three different mean stress models were used to evaluate the low cycle fatigue data and the SWT log‐log linear model best represented the data. These results can be used with the local notch strain fatigue life prediction methodology.
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