三轴力传感器的开发、校准和测试

M. M. Deshpande, H. Jawale, H. T. Thorat
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引用次数: 2

摘要

基于应变片的力传感器广泛应用于力和扭矩测量中的仪器仪表和主要传感元件。目前,力传感器必然是力和力矩传感器。三个力和三个力矩的分析是计算三个方向上的力的基础。这些传感器通常作为六轴力/力矩传感器而流行。由于计算三个力和三个力矩,使得数学分析变得复杂。这六个变量保证了传感器的复杂模型(形状),以促进柔性表面在特定方向上感知力/力矩。在典型的机器人装配平台中,这些传感器作为反馈设备发挥作用,可能不需要力矩估计。所提出的传感器忽略力矩(即使它们存在),只考虑力分量。传感器(应变计)粘贴在三个相互垂直的柔顺表面上。传感器是随机加载的,在三个方向上给出力分量。由于交叉灵敏度的关系,其中一个分量会对另外两个分量产生影响。因此,在任何相互垂直的方向上感知的载荷是该方向上的力的代数和,以及作为交叉灵敏度的剩余两个轴力的交叉分量。为了考虑交叉灵敏度的影响,建立了一个简单的数学模型来计算三个方向上的实际力。开发了一种定制的数据采集卡和一种算法来实时感知力。这些传感器具有广泛的应用范围。
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Development, calibration and testing of three axis force sensor
Strain Gauge based force transducers are widely used in instrumentation and primary sensing elements in Force and torque measurements. At present, force transducers are necessarily force and moment transducer. The analysis of three force and three moments is the basis for evaluation of forces in three directions. These transducers are typically popular as six-axis force / moment transducer. Due to evaluation of three forces and three moments, the mathematical analysis becomes complex. These six variables warrant intricate models (shapes) of transducer to facilitate compliant surfaces to sense force / moments in specific direction. The moment estimations may not be required in typical robotic assembly platforms where theses sensors are performing a role as feedback devices. The proposed transducer ignores moments (even though they exists) and considers only force components. The sensors (strain gauge) pasted to three mutually perpendicular compliant surfaces. The transducer is randomly loaded, giving force components in three directions. One of the components will have effect on other two due to cross sensitivity. Thus load sensed in any mutually perpendicular direction is algebraic sum of force in that direction and a cross component of remaining two axis forces as result of cross sensitivity. A simple mathematical model is developed to arrive at actual forces in three directions to factor the effect of cross sensitivity. A tailor-made data acquisition card and an algorithm is developed to sense real-time forces. These transducers have wide range of applications.
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