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A2-piece six-axis force/torque sensor capable of measuring loads applied to tools of complex shapes

机译:A2件六轴力/扭矩传感器,其能够测量载荷应用于复杂形状的工具

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Measuring forces and torques applied to tools of unconventional shapes can be challenging due to difficulties in connecting commercially available force/torque sensors. We propose an innovative, customizable six-axis force/torque sensor which can be clamped around a tool or end-effector to minimize the proximity between tool tip and sensor structure. The sensor is fabricated using 3d printing technology and consists of two pieces which together form an 8-legged Stewart platform. Each leg is designed as a cantilever beam to allow for a measurable displacement under an external load. The displacements of the legs are measured with 8 light intensity-based optoelectronic sensors, which exhibit high sensitivities and low noise levels without the need for external amplification circuitry. A customized printed circuit board and peripheral hardware are proposed to allow for efficient analog-to-digital conversion of the force/torque measurement. A calibration process is proposed which makes use ofa commercial ATI Mini40 sensor and custom hardware to allow for fast calibration routines. Finally, the calibrated sensor design is compared to the ATI Mini40 sensor by measuring sequences of forces and torques, and the maximum errors of force/torque components (F_x, F_y, F_z, M_x, M_y, M_z) are 16.3%, 20.0%, 27.5%, 20.5%, 21.6%, 14.9% respectively.
机译:由于连接市售的力/扭矩传感器的困难,施加到非常规形状的工具的测量力和扭矩可能是具有挑战性的。我们提出了一种创新的可定制六轴力/扭矩传感器,其可以围绕工具或末端执行器夹紧,以最小化工具尖端和传感器结构之间的接近度。传感器使用3D打印技术制造,包括两个件,它们一起形成一个8腿的斯图尔特平台。每个腿被设计为悬臂梁,以允许在外部负载下进行可测量的位移。用基于8个光强的光电传感器测量腿的位移,其表现出高敏感性和低噪声水平,而不需要外部放大电路。提出了一种定制的印刷电路板和外围硬件,以允许力/扭矩测量的高效模数转换。提出了一种校准过程,它利用商用ATI MINI40传感器和自定义硬件来允许快速校准程序。最后,将校准的传感器设计与ATI Mini40传感器进行比较,通过测量力和扭矩序列,以及力/扭矩分量(F_X,F_Y,F_Z,M_X,M_Y,M_Z)的最大误差为16.3%,20.0%, 27.5%,20.5%,21.6%,分别为14.9%。

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