Modelling and response analysis of multibody large-scale displacement of boom-type roadheader

Author:

Zong Kai1ORCID,Fu Shichen2,Li Xu34,Wu Miao2,Chu Fulei2

Affiliation:

1. Department of Mechanical Engineering, Tsinghua University, Beijing, China

2. School of Mechanical Electronic and Information Engineering, China University of Mining and Technology, Beijing, China

3. Tiandi Science & Technology Co., Ltd, Beijing, China

4. Storage & Loading Branch, China Coal Research Institute, Beijing, China

Abstract

Boom-type roadheader is the most widely used equipment in the fully mechanized excavation face of coal mine. Under complicated operation conditions of underground coal mine, multibody large-scale displacement phenomenon of roadheader will occur during cutting process. Specifically, the position and attitude of the body are changing continuously, and radial runout phenomenon of the cutting arm will take place, which will seriously reduce the overall stability of roadheader and drivage efficiency of the roadway. Focused on the vertical cutting condition, the coupling dynamical model of position and attitude of the body is established based on Lagrange equation. Combined with the calculated cutting load, the dynamical model is solved through Simulink simulation method, and the solving results are analysed under different influence factors. Consequently, the response regularities of position and attitude of the body under influence of different factors are obtained. In the similar way, the dynamical model of radial runout quantity of the cutting arm is established, and the dynamic response of radial runout of the cutting arm during vertical cutting process is obtained as well. Finally, the simulation analysis results are validated through field experiments. The research work of this paper provides useful theoretical basis for deviation rectification control of the multibody structures of roadheader, fills the vacancy of theoretical study in this aspect, and contributes to improving the dynamics theory of mining machinery.

Funder

Tiandi Science and Technology Co., LTD. Science and technology innovation and start-up funding general project, China

National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Mechanical Engineering,Condensed Matter Physics

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1. Compensation control for roadheader’s pitch and yaw position pose deviation based on cutting boom motion;Tunnelling and Underground Space Technology;2024-08

2. Application of Probabilistic Damage Based Algorithm in Nondestructive Testing of Special Equipment;2023 2nd International Conference on Artificial Intelligence and Autonomous Robot Systems (AIARS);2023-07

3. Cutting Mechanism Rotor System Dynamic Characteristics of Cantilever Roadheader under Random Hard Rock Load;Actuators;2022-03-09

4. Rock hardness identification based on optimized PNN and multi-source data fusion;Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science;2021-08-26

5. Modeling and response analysis of the attitude angles of roadheader for steep coal seam;SN Applied Sciences;2021-07-12

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