4.6 Article

Analysis of Mixed-Mode I/II/III Fracture Toughness Based on a Three-Point Bending Sandstone Specimen with an Inclined Crack

期刊

APPLIED SCIENCES-BASEL
卷 11, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/app11041652

关键词

mixed-mode I; II; III; three-point bending specimen with an inclined crack; sandstone; numerical and experimental study; generalized maximum tangential strain energy density factor criterion

资金

  1. National Natural Science Foundation of China [11872042]
  2. Sichuan Science and Technology Program [2018JY0024, 2019YJ0156]
  3. China Postdoctoral Science Foundation [2019M653395]
  4. Postdoctoral Research Foundation of Sichuan University [2019SCU12049]

向作者/读者索取更多资源

This study investigated the coupling effect of multiple variables on fracture parameters and proposed a three-point bending specimen with an inclined crack for mixed-mode fracture research. The fracture parameters were obtained through experiments and finite element analysis, showing that the generalized maximum tangential strain energy density factor criterion considering T-stress can better predict the mixed-mode fracture toughness.
The crack-propagation form may appear as an arbitrary mixed-mode fracture in an engineering structure due to an irregular internal crack. It is of great significance to research the mixed-mode fracture of materials with cracks. The coupling effect of multiple variables (crack height ratio, horizontal deflection angle and vertical deflection angle) on fracture parameters such as the stress intensity factors and the T-stress are the key points in this paper. A three-point bending specimen with an inclined crack was proposed and used to conduct mixed-mode fracture research. The fracture parameters were obtained by finite element analysis, and the computed results showed that the pure mode I fracture and mixed-mode fractures (mode I/II, mode I/III and mode I/II/III) can be realized by changing the deflection angles of the crack. The pure mode I and the mixed-mode fracture toughness of sandstone were obtained by a series of mixed-mode fracture experiments. The experimental results were analyzed with the generalized maximum tangential strain energy density factor criterion considering T-stress. The results showed that the non-singular term T-stress in the fracture parameters cannot be ignored in any mixed-mode fracture research, and the generalized maximum tangential strain energy density factor criterion considering T-stress can better predict the mixed-mode fracture toughness than other criteria.

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