Study conical pick cutting performance and fatigue life in breaking rock plate process with numerical simulation

Author:

Wang Mingyan

Abstract

AbstractThe fatigue life and cutting performance of conical pick is essential for the roadheader machine in the excavation engineering. In rock breaking process, the rock structural conditions has a certain influence on the rock breaking and rock damage with roadheader breaking rock. Established the simulation model of conical pick cutting jointed rock to investigate the influence of the rock joint, rock bedding and confining pressure on the cutting performance and fatigue life of conical pick and rock damage. And the MATLAB is applied to solve the difficulty of rock damage statistical analysis. The research results indicated that the cutting force decreases with the rock joint length increasing, the cutting force increases first and decreases with the rock bedding angle increasing, however, the cutting force decreases first and then increases with the confining pressure increasing. The rock damage has a great relationship with the rock joint, rock bedding and confining pressure. The rock damage increases first and decreases then with the rock joint increasing and the rock bedding angle increasing. However, the influence of confining pressure on rock damage is contrary. Meanwhile, the rock fracture volume is positively correlated with damage value. The research results indicated that the rock structural parameters have an obvious influence on conical pick cutting performance and rock damage.

Funder

Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

Reference15 articles.

1. Jaime, M. C. et al. Finite element modeling of rock cutting and its fragmentation process. Int. J. Rock Mech. Min. Sci. 80(4), 137–146 (2015).

2. Menezes, P. L. Influence of cutter velocity, friction coefficient and rake angle on the formation of discontinuous rock fragments during rock cutting process. Int. J. Adv. Manuf. Technol. 90(9–12), 1–17 (2016).

3. Fourmeau, M., Kane, A. & Hokka, M. Experimental and numerical study of drill bit drop tests on Kuru granite. Philos. Trans. 375(2085), 20160176 (2017).

4. Zhou, Y. & Lin, J. S. Modeling the ductile–brittle failure mode transition in rock cutting. Eng. Fract. Mech. 127, 135–147 (2014).

5. Li, X. Y. et al. Effects of spiral line for pick arrangement on boom type roadheader cutting load. Int. J. Simul. Modell. (IJSIMM) 15(1), 170–180 (2016).

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