Vui lòng dùng định danh này để trích dẫn hoặc liên kết đến tài liệu này: http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18482
Nhan đề: Experimental Investigation on Fracture Evolution in Sandstone Containing an Intersecting Hole under Compression Using DIC Technique
Tác giả: Wu, Hao
Zhao, Guoyan
Liang, Weizhang
Wang, Enjie
Ma, Shaowei
Từ khoá: Roofing
Mechanical properties
Digital imaging
Mines
Intersections
Underground structures
Stress concentration
Crack propagation
Strain analysis
Compression tests
Traffic control
Engineering
Mining
Sandstone
Stress analysis
Fracture mechanics
Coalescing
Năm xuất bản: 2019
Nhà xuất bản: Hindawi Limited
Tóm tắt: Failure of underground structures, especially intersections, becomes more severe as the depth increases, which poses a new challenge for the safe construction and operation of deep rock engineering. To investigate the mechanical properties and fracture behavior of rock with an intersecting hole under compressive loads, a series of uniaxial compression tests was carried out on cuboid red sandstone specimens containing an intersecting hole with three types of shapes by digital image correlation (DIC) technique. The results showed that the existing hole inside specimens leads to almost a 50% reduction of mechanical parameters from that of intact ones, and this weakening effect is associated with the shapes of holes. Failure of specimens is a progressive process in which cracks, i.e., primary tensile cracks, secondary tensile cracks, and shear cracks, initiate from stress concentration zones, propagate along certain direction, and coalesce with each other into macrofractures. Both the real-time principal strain fields and horizontal displacement fields of specimens under compression could be visually displayed by DIC system, and they were in good consistency in characterizing the fracture behavior. Moreover, the propagation characteristics of primary tensile cracks were studied further by quantitatively analyzing the strain variation during the loading process, and the propagation mechanism of “open-close-reopen” of primary tensile cracks was explained in detail.
Mô tả: Advances in Civil Engineering; New York Vol. 2019, (2019). DOI:10.1155/2019/3561395
Định danh: http://thuvienso.vanlanguni.edu.vn/handle/Vanlang_TV/18482
ISSN: 1687-8086
1687-8094 (eISSN)
Bộ sưu tập: Bài báo_lưu trữ

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