Design of a Friction Drive Actuator with Integrated Force and Torque Sensors

T. Moix, D. Ilic, B. Fracheboud, H. Bleuler
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引用次数: 3

Abstract

This paper presents an actuator design with integrated force and torque sensors. The actuator is a friction drive composed of two preloaded cylinders. A rod that has to be axially actuated is guided between the cylinders. The axial force sensor is located on the motorized cylinder while the torque sensor is mounted on the passive cylinder. Both sensors are based on flexible mechanical structures. Deformations of the structures are measured by infrared (IR) reflective sensors, enabling sensing without electrical wiring on moving parts. A ray-optics model for behavior of reflective IR sensor is proposed and validated with experiments. The model enables the study of sensor combination for mechanical unbalance cancellation and coupling rejection. Calibration results and performances of the sensors as well as the complete actuator prototype are presented
集成力与扭矩传感器的摩擦驱动作动器设计
本文提出了一种力和力矩传感器集成的作动器设计。执行器是由两个预加载气缸组成的摩擦驱动器。必须轴向驱动的杆在气缸之间被引导。轴向力传感器安装在电动气缸上,扭矩传感器安装在被动气缸上。这两种传感器都基于柔性机械结构。结构的变形由红外(IR)反射传感器测量,无需在运动部件上布线即可实现传感。提出了反射式红外传感器的射线光学模型,并进行了实验验证。该模型为消除机械不平衡和耦合抑制的传感器组合研究提供了依据。给出了传感器的标定结果和性能,并给出了完整的执行器样机
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