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Advanced Design of Columnar-conical Feeler-type Optical Three-axis Tactile Sensor

机译:圆柱圆锥形触角式光学三轴触觉传感器的先进设计

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Although the three-axis tactile sensor is capable of delicate measurement, it is weak for heavy contact force. In order to enhance resistance to a high degree of applied force, we attached a rubber skin onto the sensor surface to protect the sensing element. FEM analyses found that sensitivity is not significantly reduced and that the skin induces subsidiary effects such as the disappearance of insensible areas and the enhancement of stability of the columnar feeler. If the skin is substantially softer than the columnar-conical feeler, the sensor can measure three-axis force without reduction of sensitivity. Based on these simulated results, we produced a columnar-conical feeler-type three-axis tactile sensor with rubber skin. The experimental results show, as demonstrated by FEM analyses, that the sensor possesses three-axis sensing capability and that the insensible area vanishes.
机译:尽管三轴触觉传感器能够进行精确的测量,但对于较大的接触力而言却很弱。为了增强对高施加力的抵抗力,我们在传感器表面上贴了一层橡胶皮以保护传感元件。有限元分析发现,敏感度并未显着降低,并且皮肤会引起副效应,例如不敏感区域的消失和柱状触角稳定性的增强。如果皮肤比圆柱状触角明显柔软,则传感器可以测量三轴力而不会降低灵敏度。基于这些模拟结果,我们生产了带有橡胶蒙皮的圆柱圆锥形触角式三轴触觉传感器。实验结果表明,如有限元分析所示,该传感器具有三轴感应功能,并且该感应区域消失了。

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