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Development of a Tactile Sensor to Measure Tire Friction Coefficients in Arbitrary Directions

机译:可以在任意方向上测量轮胎摩擦系数的触觉传感器的开发

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In order to develop intelligent tires that measures road surface friction coefficients, the present study proposes a simple tactile sensor that measures three-dimensional loads. The sensor is composed of a cantilever called a whisker that is fixed to a base. The base is an elastic plate that has three strain gauges attached to its surface equiangularly around the fixed point of the whisker. The whisker is covered in cylindrical rubber, and the bottom surface is used as a contact. When the sensor touches a surface with the contact and traces it, vertical and horizontal loads are applied to the contact, compressing and bending the whisker so that the base is deformed elastically. Strains induced on the base by this deformation are measured by strain gauges. The study proposes a method obtaining values of vertical load, horizontal load and its direction from measured strains. Accordingly, the proposed sensor measures threedimensional load and obtains the contact surface friction coefficient. In the study, we fabricate a tactile sensor prototype and show its feasibility.
机译:为了开发可测量路面摩擦系数的智能轮胎,本研究提出了一种可测量三维载荷的简单触觉传感器。该传感器由固定在基座上的称为晶须的悬臂组成。基座是一个弹性板,在晶须的固定点周围等角地附着在其表面上,具有三个应变仪。晶须被圆柱形橡胶覆盖,底面用作触点。当传感器接触带有接触点的表面并对其进行追踪时,垂直和水平载荷将施加到接触点上,使晶须压缩并弯曲,从而使基座发生弹性变形。由这种变形在基底上引起的应变通过应变仪测量。该研究提出了一种从测量的应变中获取垂直载荷,水平载荷及其方向值的方法。因此,提出的传感器测量三维载荷并获得接触表面摩擦系数。在研究中,我们制造了触觉传感器原型,并展示了其可行性。

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