Investigating the Fracture Process and Tensile Mechanical Behaviours of Brittle Materials under Concentrated and Distributed Boundary Conditions

Author:

Liang Haozhe1,Fang Xiaozu2,Yu Xinlu3,Fu Yingqian4,Zhou Gangyi4

Affiliation:

1. Xi’an Modern Chemistry Research Institute, Xi’an 710065, China

2. Ningbo Branch of China Academy of Ordnance Science, Ningbo 315103, China

3. College of Science and Technology, Ningbo University, Cixi 315300, China

4. Key Laboratory of Impact and Safety Engineering, Ningbo University, Ministry of Education, Ningbo 315211, China

Abstract

In this study, concrete was selected to investigate the real-time splitting tensile mechanical and fracture behaviours of brittle materials using the Brazilian test under concentrated and distributed boundary conditions. The digital image correlation (DIC) method was adopted to evaluate the tensile strength and failure process in Brazilian tests using a high-resolution camera. The DIC results showed that the position of the crack initiation randomly occurred at the centre of a disc and at the boundary in Brazilian tests with concentrated loads (BTC). Comparatively, the crack initiated at the centre of discs in most Brazilian tests with distributed loads (BTD), as validated by the DIC results. Our results indicated that the average nominal tensile strength of specimens cracking at the boundary was larger than that of specimens cracking at the centre in the BTC, suggesting that the nominal tensile strength measured by the Brazilian test was related to the failure process of the discs. Moreover, this study demonstrated that the tensile strength measured by the Brazilian test was dependent on the boundary conditions. The equation recommended by the ISRM (International Society for Rock Mechanics) might slightly overestimate the tensile strength of brittle materials based on the pure elastic theory and hyperbolic-distributed loading conditions at the boundaries.

Funder

National Natural Science Foundation of China

Key Laboratory of Impact and Safety Engineering (Ningbo University), Ministry of Education

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference47 articles.

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1. Investigation of Phyllite-based Brazilian tests and fracture failure patterns via AE and PFC3D;Bulletin of Engineering Geology and the Environment;2024-03-16

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