4.7 Article

Experimental study on development characteristics and size effect of rock fracture process zone

期刊

ENGINEERING FRACTURE MECHANICS
卷 241, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.engfracmech.2020.107377

关键词

Semi-circular bend specimen; Digital image correlation; Crack opening displacement; Fracture process zone; Size effect

资金

  1. National Natural Science Foundation of China [51674101]

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The investigation on rock fracture process zone (FPZ) using SCB sandstone specimens of different sizes showed a three-stage crack opening mode and accelerated FPZ development as load increased. The FPZ length at peak is approximately 2-2.5 times the width for specimens of different sizes.
In order to investigate the development characteristics and size effect of rock fracture process zone (FPZ), the GCTS RTX-3000 rock mechanics testing machine was used to carry out on semicircular bend (SCB) sandstone specimens with diameters of 50 mm, 100 mm, 150 mm and 200 mm, respectively. Combined with the digital image correlation (DIC) method, the variations of the displacement field at the crack tip of specimens with different sizes were analyzed. The results show that the crack opening mode of the SCB sandstone specimen has experienced three stages of slow, linear and accelerated growth. Its critical crack opening displacement is about 20 mu m. When the load reaches around 65% pre-peak, the FPZ begins to develop. The range of the FPZ reaches the maximum at the peak. The closer to the peak, the faster the development of the FPZ, and the length of the FPZ that increases from 90% pre-peak to peak accounts for 50% of the total FPZ length. The FPZ length of specimens of different sizes at the peak is about 2-2.5 times of the width. As the size of the specimen increases, the length and width of the FPZ increase. The thickness of the specimen has a significant effect on the width of the FPZ.

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