Liang Qiaokang, Zhang Dan, Coppola Gianmarc, Mao Jianxu, Sun Wei, Wang Yaonan, Ge Yunjian
College of Electric and Information Technology, Hunan University, Changsha 410082, Hunan, China.
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, Hunan, China.
Sensors (Basel). 2016 Jan 7;16(1):70. doi: 10.3390/s16010070.
Multi-component force sensors have infiltrated a wide variety of automation products since the 1970s. However, one seldom finds full-component sensor systems available in the market for cutting force measurement in machine processes. In this paper, a new six-component sensor system with a compact monolithic elastic element (EE) is designed and developed to detect the tangential cutting forces Fx, Fy and Fz (i.e., forces along x-, y-, and z-axis) as well as the cutting moments Mx, My and Mz (i.e., moments about x-, y-, and z-axis) simultaneously. Optimal structural parameters of the EE are carefully designed via simulation-driven optimization. Moreover, a prototype sensor system is fabricated, which is applied to a 5-axis parallel kinematic machining center. Calibration experimental results demonstrate that the system is capable of measuring cutting forces and moments with good linearity while minimizing coupling error. Both the Finite Element Analysis (FEA) and calibration experimental studies validate the high performance of the proposed sensor system that is expected to be adopted into machining processes.
自20世纪70年代以来,多分量力传感器已渗透到各种各样的自动化产品中。然而,在市场上很少能找到用于机械加工过程中切削力测量的全分量传感器系统。在本文中,设计并开发了一种具有紧凑整体弹性元件(EE)的新型六分量传感器系统,用于同时检测切向切削力Fx、Fy和Fz(即沿x、y和z轴的力)以及切削力矩Mx、My和Mz(即绕x、y和z轴的力矩)。通过仿真驱动优化精心设计了EE的最佳结构参数。此外,制造了一个原型传感器系统,并将其应用于五轴并联运动加工中心。校准实验结果表明,该系统能够以良好的线性测量切削力和力矩,同时将耦合误差降至最低。有限元分析(FEA)和校准实验研究均验证了所提出的传感器系统的高性能,该系统有望应用于加工过程。