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A New Multifunctional Tactile Sensor for Detection of Material Hardness

机译:用于检测材料硬度的新型多功能触觉传感器

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This paper proposes a new multifunctional tactile sensor for detection of material hardness. The proposed sensor is the semielliptic structure imitating the human finger and consists of several piezoelectric ceramic transducers arranged on the surface part and a parallel plate condenser on the upper side. Capacitance values are simultaneously measured by the front electrodes of piezoelectric ceramic transducers and the parallel plate condenser. They depend on material hardness, and their values exhibit different characteristics versus the hardness. Therefore, higher detection ability is provided from two types of capacitance values. In the experiment, three kinds of materials—aluminum, acrylic resin, and silicone rubbers with four grades of hardness—were prepared. The detection of hardness was demonstrated by two types of capacitance measurements: the front electrodes and the parallel plate condenser. The results indicated that the proposed tactile sensor was useful for detection of material hardness although there are some problems that must be clearly addressed.
机译:本文提出了一种用于检测材料硬度的新型多功能触觉传感器。提出的传感器是模仿人手指的半椭圆形结构,由布置在表面部分的几个压电陶瓷换能器和上侧的平行平板电容器组成。电容值由压电陶瓷换能器的前电极和平行板电容器同时测量。它们取决于材料的硬度,其值相对于硬度表现出不同的特性。因此,从两种类型的电容值提供更高的检测能力。在实验中,准备了三种材料,分别是铝,丙烯酸树脂和具有四个等级硬度的硅橡胶。硬度的检测通过两种类型的电容测量来证明:前电极和平行板电容器。结果表明,尽管存在一些必须明确解决的问题,但所提出的触觉传感器可用于检测材料的硬度。

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