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An improved tactile sensing device for material characterization via friction-induced vibrations

机译:通过摩擦诱导振动改进的材料特性触觉触觉传感装置

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We report an improvement of an instrument used to correlate perceived material surface characteristics to vibrations induced in a transducer via surface profile tracing by addition of stick-slip vibration and stochastic measurements. Our instrument utilizes an inductive transducer and turntable stage to measure and characterize induced vibrations, and additionally incorporates an elastic bead of poly(ethylene-covinyl acetate) (EVA) on the stylus tip to simulate the slight tackiness and elasticity of skin, when in contact with certain types of materials. It is thus able to tease vibrational frequencies out of the measurement through stick-slip friction from the polymer's elasticity and tackiness. The result is a larger range of measurable frequencies of vibration from both normal and tangential forces, for use in classification of selected materials, that vary uniquely with roughness, speed of measurement, contact forces, and material compositions. Additionally, to simulate varying pressure during stroking of a material surface with a finger-tip, the turntable was warped to induce a periodic wobble. This wobble produces variations in contact friction over each period of the measurement by varying contact area and contact force, and thus increases consistency of measurements via statistical distributions of contact force and area. The distributions that manifest are high frequencies over a single period of measurement that can be parsed for classification purposes. The results of this work show that the improved instrument has significantly more data characteristics to utilize and can identify subtle differences between similar materials in identical environments. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们报告了通过添加粘滑振动和随机测量来将用于将感知材料表面特性与换能器诱导振动相关的仪器的改进。我们的仪器利用电感换能器和转盘阶段来测量和表征诱导的振动,并且另外纳入触控笔尖端的聚(乙烯 - 乙烯基乙烯基)(EVA)的弹性珠,以模拟皮肤的轻微粘性和弹性,当接触时具有某些类型的材料。因此,它能够通过来自聚合物的弹性和粘性的粘滑摩擦来梳理测量振动频率。结果是来自正常和切向力的振动的较大范围的振动,用于分类所选材料,其具有粗糙度,测量速度,接触力和材料组合物的唯一变化。另外,为了在用手指尖的材料表面划接期间模拟变化的压力,转盘被翘曲以引起周期性的摆动。这种摆动通过不同的接触面积和接触力产生每周的测量时段的接触摩擦的变化,从而通过接触力和面积的统计分布增加测量的一致性。清单的分布在单个测量期间是高频,可以解析用于分类目的。这项工作的结果表明,改进的仪器具有显着利用的数据特性,可以识别相同环境中类似材料之间的微妙差异。 (c)2020 Elsevier B.v.保留所有权利。

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