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SUAS: A Novel Soft Underwater Artificial Skin with Capacitive Transducers and Hyperelastic Membrane

机译:苏斯:一种新型软水下人造皮肤,具有电容传感器和超弹性膜

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The paper presents physical modeling, design, simulations, and experimentation on a novel Soft Underwater Artificial Skin (SUAS) used as tactile sensor. The SUAS functions as an electrostatic capacitive sensor, and it is composed of a hyperelastic membrane used as external cover and oil inside it used to compensate the marine pressure. Simulation has been performed studying and modeling the behavior of the external interface of the SUAS in contact with external concentrated loads in marine environment. Experiments on the external and internal components of the SUAS have been done using two different conductive layers in oil. A first prototype has been realized using a 3D printer. The results of the paper underline how the soft materials permit better adhesion of the conductive layer to the transducers of the SUAS obtaining higher capacitance. The results here presented confirmed the first hypotheses presented in a last work and opened new ways in the large-scale underwater tactile sensor design and development. The investigations are performed in collaboration with a national Italian project named MARIS, regarding the possible extension to the underwater field of the technologies developed within the European project ROBOSKIN.
机译:本文提出了一种用作触觉传感器的新型软水下人造皮肤(SUAS)的物理建模,设计,仿真和实验。 SUAS用作静电电容传感器,它由用作外盖和油内的高速膜组成,用于补偿船用压力。已经进行了研究和建模SUA外部界面与海洋环境中的外部集中载荷的外部界面的行为。在SUA的外部和内部部件的实验已经使用了油的两种不同的导电层进行了。使用3D打印机实现了第一个原型。纸张的结果下平下划线如何允许导电层更好地粘附到苏瓦斯获得更高电容的换能器。这里的结果介绍了最后一项工作中提出的第一个假设,并在大规模的水下触觉传感器设计和开发中开辟了新的方式。该调查是与名为Maris的全国意大利项目进行的调查,了解欧洲项目RoboSkin中发展的技术水下领域的可能延伸。

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