SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method
Stress intensity factors (SIF) and crack mouth opening displacements (CMOD) for three-point bending beams with arbitrary span-to-width ratios (S/W) were calculated by using the Wu-Carlsson analytical weight function for edge-cracked finite-width plate and the analytical solution of un-cracked stress...
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Journal of Aeronautical Materials
2020-06-01
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doaj-bd55e3d3128d4fd880b3a7eda6770c0b2020-12-18T09:30:39ZzhoJournal of Aeronautical MaterialsJournal of Aeronautical Materials1005-50531005-50532020-06-0140312713610.11868/j.issn.1005-5053.2020.000052a2020-0052SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function methodTONG Dihua0WU Xueren1ZHAO Xiaochen2XU Wu3HU Benrun4AECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaSchool of Aeronautics and Astronautics, Shanghai Jiao Tong University, Shanghai 200240, ChinaAECC Beijing Institute of Aeronautical Materials, Beijing 100095, ChinaStress intensity factors (SIF) and crack mouth opening displacements (CMOD) for three-point bending beams with arbitrary span-to-width ratios (S/W) were calculated by using the Wu-Carlsson analytical weight function for edge-cracked finite-width plate and the analytical solution of un-cracked stress by Filon. Based on the analytical weight function and tabulated SIF and CMOD data for power-law crack-line stresses, SIF and CMOD for general polynomial crack face loadings could be rapidly determined by simple arithmetic. The results obtained for several span-to-width ratios determined by using fundamentally different methods are in excellent agreement with those in literature. A brief discussion is made for calculating cohesive fracture toughness by analytical weight function method. The present study provides a high efficient and accurate method for fracture mechanics analysis of the three-point bending beam with arbitrary span-to-width ratio.http://jam.biam.ac.cn/article/doi/10.11868/j.issn.1005-5053.2020.000052three-point bending beamstress intensity factorscrack mouth opening displacementsanalytical weight functioncohesive fracture toughness |
collection |
DOAJ |
language |
zho |
format |
Article |
sources |
DOAJ |
author |
TONG Dihua WU Xueren ZHAO Xiaochen XU Wu HU Benrun |
spellingShingle |
TONG Dihua WU Xueren ZHAO Xiaochen XU Wu HU Benrun SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method Journal of Aeronautical Materials three-point bending beam stress intensity factors crack mouth opening displacements analytical weight function cohesive fracture toughness |
author_facet |
TONG Dihua WU Xueren ZHAO Xiaochen XU Wu HU Benrun |
author_sort |
TONG Dihua |
title |
SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
title_short |
SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
title_full |
SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
title_fullStr |
SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
title_full_unstemmed |
SIF and CMOD for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
title_sort |
sif and cmod for three-point bending beams with arbitrary span-to-width ratios by using analytical weight function method |
publisher |
Journal of Aeronautical Materials |
series |
Journal of Aeronautical Materials |
issn |
1005-5053 1005-5053 |
publishDate |
2020-06-01 |
description |
Stress intensity factors (SIF) and crack mouth opening displacements (CMOD) for three-point bending beams with arbitrary span-to-width ratios (S/W) were calculated by using the Wu-Carlsson analytical weight function for edge-cracked finite-width plate and the analytical solution of un-cracked stress by Filon. Based on the analytical weight function and tabulated SIF and CMOD data for power-law crack-line stresses, SIF and CMOD for general polynomial crack face loadings could be rapidly determined by simple arithmetic. The results obtained for several span-to-width ratios determined by using fundamentally different methods are in excellent agreement with those in literature. A brief discussion is made for calculating cohesive fracture toughness by analytical weight function method. The present study provides a high efficient and accurate method for fracture mechanics analysis of the three-point bending beam with arbitrary span-to-width ratio. |
topic |
three-point bending beam stress intensity factors crack mouth opening displacements analytical weight function cohesive fracture toughness |
url |
http://jam.biam.ac.cn/article/doi/10.11868/j.issn.1005-5053.2020.000052 |
work_keys_str_mv |
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