Liang Qiaokang, Zhang Dan, Wu Wanneng, Zou Kunlin
College of Electric and Information Technology, Hunan University, Changsha 410082, China.
State Key Laboratory of Advanced Design and Manufacturing for Vehicle Body, Hunan University, Changsha 410082, China.
Sensors (Basel). 2016 Nov 16;16(11):1926. doi: 10.3390/s16111926.
Multi-component cutting force sensing systems in manufacturing processes applied to cutting tools are gradually becoming the most significant monitoring indicator. Their signals have been extensively applied to evaluate the machinability of workpiece materials, predict cutter breakage, estimate cutting tool wear, control machine tool chatter, determine stable machining parameters, and improve surface finish. Robust and effective sensing systems with capability of monitoring the cutting force in machine operations in real time are crucial for realizing the full potential of cutting capabilities of computer numerically controlled (CNC) tools. The main objective of this paper is to present a brief review of the existing achievements in the field of multi-component cutting force sensing systems in modern manufacturing.
应用于切削刀具的制造过程中的多分量切削力传感系统正逐渐成为最重要的监测指标。其信号已被广泛用于评估工件材料的可加工性、预测刀具破损、估计刀具磨损、控制机床颤振、确定稳定的加工参数以及改善表面光洁度。具备实时监测机床操作中切削力能力的强大且有效的传感系统对于充分发挥计算机数控(CNC)刀具的切削能力至关重要。本文的主要目的是简要回顾现代制造中多分量切削力传感系统领域的现有成果。