Spalling failure is a typical failure phenomenon after excavation and unloading of a deep, hard brittle rock mass, which seriously threatens the safe construction of deep roadways (tunnels) and other projects. From the engineering viewpoint, it is essential to accurately evaluate the range and depth of surrounding rock spalling failure. From the perspective of the laboratory and engineering site, the strength and formation mechanism of hard rock spalling failure were statistically summarized and analyzed. Under uniaxial and low confining pressure conditions, when the load reached the rock damage stress, cracks in the rock penetrated to form a failure plane approximately parallel to the axial loading direction, and the strength of rock mass spalling was much smaller than that of intact rock spalling. A triaxial compression test was conducted to analyze the dilatation axial strain and dilatation lateral strain characteristics of gneiss. The results showed that dilatation axial strain gradually increased with the increase of confining pressure, whereas dilatation lateral strain was almost unchanged. Therefore, a safety factor (FS) based on dilatation lateral strain was developed. Through comparison with other strain-based spalling criteria, the establishment and physical meaning of the method were described in detail. In addition, FS was applied to analyze the deep roadway of the Hongtoushan Copper Mine in China and the Rm415 test tunnel in Canada. The results showed that the spalling criterion could accurately indicate the range and depth of the surrounding rock spalling failure, which verified the rationality and applicability of the new spalling criterion. Thus, FS can be utilized as a new theory and analysis tool for the assessment and prevention of spalling failure in deep hard rock roadways.
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http://dx.doi.org/10.1021/acsomega.4c02572 | DOI Listing |
PLoS One
December 2024
School of Architecture and Civil Engineering, Xi'an University of Science and Technology, Xi'an, China.
Understanding he impact of dry-wet and freeze-thaw cycles on the mechanical properties of unloaded damaged rock masses in reservoir bank slopes is crucial for revealing the deformation and failure mechanisms in artificially excavated slope rock masses within fluctuation zones. To address, the study focuses on unloaded damaged samples subjected to excavation disturbances, conducting various cycles of dry-wet and freeze-thaw treatment along with uniaxial and triaxial re-loading tests. A damage statistical constitutive model was established based on the experimental results and validated using numerical simulation methods.
View Article and Find Full Text PDFMaterials (Basel)
November 2024
School of Resource & Environment and Safety Engineering, Hunan University of Science and Technology, Xiangtan 411201, China.
Underground surrounding rock engineering displays unique mechanical properties after being subjected to disturbance loads. In this study, the self-developed CX-8568 impact-disturbance surrounding rock test system was utilized to conduct dynamic tests on gypsum specimens subjected to different lateral pressures. The results show that the presence of lateral pressure enhances the specimen's ability to withstand disturbance loads, which shows higher lateral pressure results in a greater number of disturbance cycles required for specimen failure.
View Article and Find Full Text PDFCirc Cardiovasc Qual Outcomes
November 2024
Divisions of Internal Medicine and Palliative Care, Department of Medicine, Temmy Latner Centre for Palliative Care, Sinai Health, Toronto, Ontario, Canada (G.G.A., A.A., B.S., M.M., J.M.L., S.M., K.L.Q.).
Background: There is limited international agreement on defining care quality for the millions of people hospitalized with heart failure worldwide. Our objective was to compare and measure agreement across existing internationally published quality indicators (QIs) for the care of adults hospitalized for heart failure.
Methods: Systematic review and evidence gap map of internationally published articles reporting on QIs for adults hospitalized for heart failure, using PubMed, MEDLINE, EMBASE, and TRIP from inception to July 18, 2022.
Eur J Heart Fail
November 2024
Population Health Research Institute, Hamilton, ON, Canada.
Aims: Heart failure (HF) is a leading cause of hospitalization, and sex differences in care have been described. We assessed sex-specific clinical outcomes and healthcare resource utilization following hospitalization for HF.
Methods And Results: This was an exploratory analysis of patients hospitalized for HF across 10 Canadian hospitals in the Patient-Centered Care Transitions in HF (PACT-HF) cluster-randomized trial.
Sci Rep
October 2024
College of Energy and Safety Engineering, Anhui University of Science and Technology, Huainan, 232001, China.
Ultra-high performance concrete (UHPC) is becoming a prevailing construction material in protective engineering. However, an insufficient research basis causes difficulty in the anti-explosion structural design of UHPC. To investigate the blast resistance of the UHPC slab (UHPCS), contact explosion tests were carried out.
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