Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading

Tension-torsion high-cycle fatigue experiments with solid cylindrical bar specimens of 30CrMnSiA steel were carried out under different phase angles. And the experiment data, characteristics of stresses with plane orientation and fracture appearance under different loading conditions were analyzed a...

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Main Authors: Liu Tianqi, Shi Xinhong, Zhang Jianyu
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20167708001
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spelling doaj-b8102d2db64c42a1bfba5c26b6a00f322021-03-02T09:39:50ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01770800110.1051/matecconf/20167708001matecconf_icmmr2016_08001Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue LoadingLiu Tianqi0Shi Xinhong1Zhang Jianyu2School of Aeronautic Science and Engineering, Beijing University of Aeronautics and AstronauticsSchool of Aeronautic Science and Engineering, Beijing University of Aeronautics and AstronauticsSchool of Aeronautics and Astronautics, Chongqing UniversityTension-torsion high-cycle fatigue experiments with solid cylindrical bar specimens of 30CrMnSiA steel were carried out under different phase angles. And the experiment data, characteristics of stresses with plane orientation and fracture appearance under different loading conditions were analyzed and investigated. Experiment results show that fatigue life increases gradually with the increase of phase angle. The fatigue life is shortest for 0° phase angle, while the fatigue life is longest for 90° out-of-phase angle. It could be found from analysis of stress parameters that as the phase angle increases, the shear stress amplitude decreases and the maximum normal stress increases gradually, which are on the maximum shear stress amplitude plane close to the axial of specimen. Macro-analysis of the fracture appearances show that when the phase angle increases, the angel between crack initiation plane and specimen axial decreases, and cracks are inclined to initial and propagate on or near the maximum shear stress amplitude plane with larger maximum normal stress under proportional loading as well as non-proportional loading.http://dx.doi.org/10.1051/matecconf/20167708001
collection DOAJ
language English
format Article
sources DOAJ
author Liu Tianqi
Shi Xinhong
Zhang Jianyu
spellingShingle Liu Tianqi
Shi Xinhong
Zhang Jianyu
Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
MATEC Web of Conferences
author_facet Liu Tianqi
Shi Xinhong
Zhang Jianyu
author_sort Liu Tianqi
title Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
title_short Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
title_full Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
title_fullStr Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
title_full_unstemmed Effect of Phase Angle on Fatigue Failure of 30CrMnSiA Steel under Tension-torsion Fatigue Loading
title_sort effect of phase angle on fatigue failure of 30crmnsia steel under tension-torsion fatigue loading
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description Tension-torsion high-cycle fatigue experiments with solid cylindrical bar specimens of 30CrMnSiA steel were carried out under different phase angles. And the experiment data, characteristics of stresses with plane orientation and fracture appearance under different loading conditions were analyzed and investigated. Experiment results show that fatigue life increases gradually with the increase of phase angle. The fatigue life is shortest for 0° phase angle, while the fatigue life is longest for 90° out-of-phase angle. It could be found from analysis of stress parameters that as the phase angle increases, the shear stress amplitude decreases and the maximum normal stress increases gradually, which are on the maximum shear stress amplitude plane close to the axial of specimen. Macro-analysis of the fracture appearances show that when the phase angle increases, the angel between crack initiation plane and specimen axial decreases, and cracks are inclined to initial and propagate on or near the maximum shear stress amplitude plane with larger maximum normal stress under proportional loading as well as non-proportional loading.
url http://dx.doi.org/10.1051/matecconf/20167708001
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AT shixinhong effectofphaseangleonfatiguefailureof30crmnsiasteelundertensiontorsionfatigueloading
AT zhangjianyu effectofphaseangleonfatiguefailureof30crmnsiasteelundertensiontorsionfatigueloading
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