Influence of Severe Plastic Deformation and Aging on Low Cycle Fatigue Behavior of Al-Mg-Si Alloys. [PDF]
Kim W, Kim K, Kim K.
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Low-Cycle Fatigue Behavior and the Combined Cyclic Hardening Material Model of Plate-Shaped Zn-22Al Alloy for Seismic Dampers. [PDF]
Liu Z, Han J, Yang P.
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Research on the Properties and Low Cycle Fatigue of Sc-Modified AA2519-T62 FSW Joint. [PDF]
Kosturek R +5 more
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The Influence of Heat Treatment on Low Cycle Fatigue Properties of Selectively Laser Melted 316L Steel. [PDF]
Kluczyński J +8 more
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Strain-Controlled Low Cycle Fatigue
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Effect of Thermal Shock Conditions on the Low-Cycle Fatigue Performance of 3D-Printed Materials: Acrylonitrile Butadiene Styrene, Acrylonitrile-Styrene-Acrylate, High-Impact Polystyrene, and Poly(lactic acid). [PDF]
Głowacki M +5 more
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Characterization of Low-cycle Fatigue Parameters
S Kabir, Tae-In Yeo
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Description The symposium on Low Cycle Fatigue: Directions for the Future was held in Bolton Landing (on Lake George), New York, 30 September to 4 October 1985. It was sponsored by ASTM Committee E09 on Fatigue, with support from the Hudson-Mohawk Chapter of AIME and the Eastern New York Chapter of ASM.
HD Solomon +3 more
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Modeling Very Low Cycle Fatigue
International Journal of Damage Mechanics, 1995The damage mechanics allows the formulation of a three-dimensional kinetic law of damage evolution adapted to very low cycle fatigue where the number of cycles are as low as one to twenty. Its applicability is shown by an identification on an Inconel 718 alloy at 630°C and by an application as a post processor after a finite element analysis of an ...
J. Dufailly, J. Lemaitre
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A solution annealed type 316 stainless steel exhibits a uniaxial cyclic stress-strain curve at 550°C ...
J. Yates, M. W. Brown
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