4.7 Article

The influence of temperatures on mixed-mode (I plus II) and mode-II fracture toughness of sandstone

Journal

ENGINEERING FRACTURE MECHANICS
Volume 189, Issue -, Pages 51-63

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.engfracmech.2017.07.007

Keywords

Sandstone; Heat treatment; Mixed-mode (I plus II) fracture toughness; Mode-II fracture toughness; Semi-circular bend

Categories

Funding

  1. National Key Basic Research Development Program of China (973 Program) [2014CB239202]
  2. National Natural Science Foundation of China [51504166]
  3. Fundamental Research Funds for the Central Universities [2042017KF0227]

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To study the fracture toughness of sandstone, this study investigated the influence of temperature on the mixed-mode (I + II) and mode-II fracture toughness of sandstone using semi-circular bend (SCB) specimens. The results showed that temperatures above 500 degrees C significantly influenced mixed-mode (I + II) and mode-II fracture behavior. A comparison of experimental results with pure mode-I fracture toughness showed that the impact of temperature variations on the mixed-mode (I + II) and mode-II fracture toughness was similar to the impact of temperature variations on pure mode-I fracture toughness. The mixed-mode (I + II) and mode-II fracture toughness of sandstone increased slowly from 20 to 100 degrees C and decreased slowly from 100 to 500 degrees C. The mixed-mode (I + II) and mode-II fracture toughness of sandstone decreased sharply from 500 to 600 degrees C. The effective stress intensity factor of mixed-mode (I + II) at artificial pre-crack angles of 15 degrees and 30 degrees decreased by 41.02% and 42.55%, respectively. Mode-II fracture toughness decreased by 54.30%. From 500 degrees C to 600 degrees C, the change of the sandstone structure is the main reason for the sharp decrease of the mixed-mode (I + II) and mode-II fracture toughness. The threshold temperature range for this sharp decrease is 500-600 degrees C for the mixed-mode (I + II) and mode-II fracture toughness are identical to pure mode-I fracture toughness. (C) 2017 Elsevier Ltd. All rights reserved.

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