Mechanical behaviors and failure processes of precracked specimens under uniaxial compression: A perspective from microscopic displacement patterns

2016 ◽  
Vol 672-673 ◽  
pp. 104-120 ◽  
Author(s):  
Ting Liu ◽  
Baiquan Lin ◽  
Quanle Zou ◽  
Chuanjie Zhu ◽  
Fazhi Yan
2019 ◽  
Author(s):  
Anliang Wang ◽  
Zhijun Wei ◽  
Xiaodong Chen ◽  
Shunying Ji ◽  
Yu Liu ◽  
...  

Abstract. We took advantage of digital image correlation to measure the full-field deformation of sea ice in a uniaxial compression experiment in situ. The characteristics of failure mode, nonlinear behavior and crack propagation are all captured by the strain field of specimens. To our knowledge, this is the first attempt to experimentally capture sequential full-field deformations in the mechanical properties of sea ice. This achievement will extend the ability to further explore the complex mechanical behaviors of sea ice.


2019 ◽  
Vol 9 (9) ◽  
pp. 1749 ◽  
Author(s):  
Yong Li ◽  
Weibing Cai ◽  
Xiaojing Li ◽  
Weishen Zhu ◽  
Qiangyong Zhang ◽  
...  

To better understand the evolution of crack propagation in brittle rock mass, the particle velocity field evolution on both sides of secondary crack in rock-like materials (cement mortar specimens) with pre-existing parallel double flaws under uniaxial compression is analyzed based on the discrete element theory. By bringing in strain rate tensor, a new technique is proposed for quantifying the failure mechanism of cracks to distinguish the types and mechanical behaviors of secondary cracks between pre-existing parallel flaws. The research results show that the types and mechanical behaviors of secondary cracks are distinct at different axial loading stages and can be directly identified and captured through the presented approach. The relative motion trend between particles determines the types and mechanical behaviors of secondary cracks. Based on particles movement on both sides of secondary cracks between cracks, the velocity fields of particles can be divided into four types to further analyze the causes of different types of cracks. In different axial loading stages, the velocity field types of particles on both sides of cracks are continuously evolving. According to the particle velocity field analysis and the proposed novel way, the types of macroscopic cracks are not directly determined by the types of dominated micro-cracks. Under uniaxial compression, the particles between secondary cracks and pre-existing parallel flaws form a confined compressive member. Under the confinement of lateral particles, secondary cracks appear as shear cracks between pre-existing parallel flaws at the beginning stage of crack initiation.


2020 ◽  
Vol 2020 ◽  
pp. 1-13
Author(s):  
Futian Zhao ◽  
Jun Liu ◽  
Zhimin Xiao ◽  
Mingqing Liu ◽  
Yue Wang ◽  
...  

The mechanical behaviors of granular materials have high complexity. Since the mechanical behaviors of granular materials are difficult to describe theoretically, in this paper, the flow and fracture characteristics of granular materials were discussed by the experimental method. An experimental method was firstly proposed to identify the mechanical behaviors of granular materials under extra loading. An experimental device, which can be used to monitor force and displacement between particles, was invented. The uniaxial compression experiments of granular particles with different materials and grades were carried out, and the overall and local force between particles was obtained and investigated. Due to the flow of particles, the overall force rises in a fluctuating manner and the local force is not distributed evenly. Then, the particle fragments were sieved layer by layer. It was confirmed that the particles and loading strength have great influences on fractures of granular materials.


2018 ◽  
Vol 2018 ◽  
pp. 1-8 ◽  
Author(s):  
Haijian Su ◽  
Hongwen Jing ◽  
Qian Yin ◽  
Liyuan Yu

High temperature and thermal environment can influence the mechanical properties of building materials worked in the civil engineering, for example, concrete, building rock, and steel. This paper examines standard cylindrical building marble specimens (Φ50 × 100 mm) that were treated with high temperatures in two different thermal environments: vacuum (VE) and airiness (AE). Uniaxial compression tests were also carried out on those specimens after heat treatment to study the effect that the thermal environment has on mechanical behaviors. With an increase in temperature, the mechanical behavior of marble in this study indicates a critical temperature of 600°C. Both the peak stress and elasticity modulus were larger for the VE than they were for the AE. The thermal environment has an obvious influence on the mechanical properties, especially at temperatures of 450∼750°C. The failure mode of marble specimens under uniaxial compression is mainly affected by the thermal environment at 600°C.


2019 ◽  
Vol 220 ◽  
pp. 426-443 ◽  
Author(s):  
Chenchen Huang ◽  
Wendong Yang ◽  
Kang Duan ◽  
Lindong Fang ◽  
Ling Wang ◽  
...  

2021 ◽  
Vol 281 ◽  
pp. 122525
Author(s):  
Nan Zhang ◽  
Ahmadreza Hedayat ◽  
Héctor Gelber Bolaños Sosa ◽  
Juan José González Cárdenas ◽  
Guido Edgard Salas Álvarez ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document