Li Yingxue, Zhao Yulong, Fei Jiyou, Qin Yafei, Zhao You, Cai Anjiang, Gao Song
The State Key Laboratory for Manufacturing Systems Engineering, Xi'an Jiaotong University, Xi'an 710049, China.
School of EMU Application and Maintenance Engineering, Dalian Jiaotong University, Dalian 116028, China.
Sensors (Basel). 2017 Apr 25;17(5):949. doi: 10.3390/s17050949.
A strain-type three-component table dynamometer is presented in this paper, which reduces output errors produced by cutting forces imposed on the different milling positions of a workpiece. A sensor structure with eight parallel elastic beams is proposed, and sensitive regions and Wheastone measuring circuits are also designed in consideration of eliminating the influences of the eccentric forces. To evaluate the sensor decoupling performance, both of the static calibration and dynamic milling test were implemented in different positions of the workpiece. Static experiment results indicate that the maximal deviation between the measured forces and the standard inputs is 4.58%. Milling tests demonstrate that with same machining parameters, the differences of the measured forces between different milling positions derived by the developed sensor are no larger than 6.29%. In addition, the natural frequencies of the dynamometer are kept higher than 2585.5 Hz. All the measuring results show that as a strain-type dynamometer, the developed force sensor has an improved eccentric decoupling accuracy with natural frequencies not much decreased, which owns application potential in milling process monitoring.
本文提出了一种应变式三分量表式测力计,它可减少施加在工件不同铣削位置上的切削力所产生的输出误差。提出了一种具有八个平行弹性梁的传感器结构,并考虑消除偏心力的影响设计了敏感区域和惠斯通电桥测量电路。为评估传感器的解耦性能,在工件的不同位置进行了静态校准和动态铣削试验。静态实验结果表明,测量力与标准输入之间的最大偏差为4.58%。铣削试验表明,在相同加工参数下,所研制传感器在不同铣削位置测得的力的差异不大于6.29%。此外,测力计的固有频率保持高于2585.5Hz。所有测量结果表明,作为一种应变式测力计,所研制的力传感器具有提高的偏心解耦精度,且固有频率下降不多,在铣削过程监测中具有应用潜力。