Miao Bing, Li Yunwang, Guo Yinan, You Xiusong, Ge Shirong
School of Mechanical and Electrical Engineering, China University of Mining and Technology (Beijing), Beijing 100083, China.
Key Laboratory of Intelligent Mining Robotics, Ministry of Emergency Management, Beijing 100083, China.
Sensors (Basel). 2023 Nov 30;23(23):9521. doi: 10.3390/s23239521.
The main focus of this work is the design and development of a three-dimensional force sensor for the cutting pick of a coal mining shearer's simulated drum. This sensor is capable of simultaneously measuring the magnitude of force along three directions of the cutting pick during the cutting sample process. The three-dimensional force sensor is built based on the strain theory of material mechanics, and reasonable structural design is implemented to improve its sensitivity and reduce inter-axis coupling errors. The strain distribution of the sensor is analyzed using finite element analysis software, and the distribution of the strain gauges is determined based on the analysis results. In addition, a calibration test system is designed for the sensor, and the sensitivity, linearity, and inter-axis coupling errors of the sensor are calibrated and tested using loading experiments in three mutually perpendicular directions. Modal simulation analysis and actual cutting pick testing of the coal mining machine's simulated drum are conducted to study the dynamic characteristics and functionality of the sensor in practical applications. The experimental results depict sensitivities of 0.748 mV/V, 2.367 mV/V, and 2.83 mV/V for the newly developed sensor, respectively. Furthermore, the cross-sensitivity error was lower than 5.02%. These findings validate that the sensor's structure satisfies the measurement requirements for pick-cutting forces.
这项工作的主要重点是为采煤机模拟滚筒的截齿设计和开发一种三维力传感器。该传感器能够在截割样本过程中同时测量截齿沿三个方向的力的大小。三维力传感器基于材料力学的应变理论构建,并进行了合理的结构设计,以提高其灵敏度并减少轴间耦合误差。使用有限元分析软件分析传感器的应变分布,并根据分析结果确定应变片的分布。此外,为该传感器设计了一个校准测试系统,并通过在三个相互垂直方向上的加载实验对传感器的灵敏度、线性度和轴间耦合误差进行校准和测试。对采煤机模拟滚筒进行模态仿真分析和实际截齿测试,以研究该传感器在实际应用中的动态特性和功能。实验结果表明,新开发的传感器的灵敏度分别为0.748 mV/V、2.367 mV/V和2.83 mV/V。此外,交叉灵敏度误差低于5.02%。这些结果验证了该传感器的结构满足截齿截割力的测量要求。