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Generalized strain energy density-based fatigue indicator parameter
DOI:10.1016/j.ijmecsci.2023.108427.png)
摘要
En 中文
In the history of fatigue study, the potentialities of strain energy density (SED) based approaches were extensively discovered; however, there was limited usage in engineering practice, largely due to the lacking of a widely accepted fatigue model and operating instruction. Accordingly, referring to previous studies, a normative form of total strain energy density (TSED) based fatigue life equation with two power function terms is given, together with a standard flow to determine the corresponding SED-related material fatigue parameters, intending to popularize its application in engineering practice. In particular, the positive elastic and plastic SEDs play the dominant role in high and low cycle fatigue domains, respectively. Strain-controlled fatigue tests of virgin Al 7075-T6511 alloy and an in-service puddle iron are conducted to check the effectiveness of the TSED as the fatigue indicator parameter to correlate fatigue life. Results show that the TSED formula works better than the strain-based Coffin-Manson-Basquin equation.
Keyword:
Total strain energy density
Fatigue indicator parameter
Life prediction
Model standardization
Al 7075-T6511 alloy
Puddle iron
期刊
IF:
9.4
论文数:
1.0W
被引数:
4.5W
机构
引用论文
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LEUKOS
IF0
Is stored energy density the primary meso-scale mechanistic driver for fatigue crack nucleation?储能密度是乏力裂纹成核的主要中尺度机械驱动因素吗?

