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Analysis of the Dynamic Behavior of Beams Supported by a Visco-Elastic Foundation in Context to Natural Vibrissa

机译:基于天然vibriass的粘弹性地基支持梁的动态行为分析

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Rodents use their mystacial vibrissae, e.g., to recognize the shape or determine the surface texture of an object. The vibrissal sensory system consists of two components: the hair shaft and the follicle-sinus complex (FSC). Both components affect the collection of information, but the impacts of the different properties are not completely clear. Borrowing the natural example, the goal is to design a powerful artificial sensor. The influence of a continuous visco-elastic support is analyzed for an artificial sensor following hypotheses about the FSC. Starting with a theoretical treatment of this scenario, the vibrissa is modeled as an Euler-Bernoulli bending beam with a partially continuous visco-elastic support. The numerical simulations are validated by experiments. Using a steel strip as a technical vibrissa and a magnetosensitive elastomer (MSE) as representation of the artificial continuous visco-elastic support, FSC respectively, the first resonance frequency is determined.
机译:啮齿动物使用它们的神秘vibriassae,例如,识别形状或确定物体的表面纹理。振动感官系统由两个组分组成:毛轴和卵泡 - 窦复合体(FSC)。两个组件都会影响信息的集合,但不同属性的影响并不完全清楚。借用自然的例子,目标是设计一个强大的人工传感器。在关于FSC的假设之后,分析了连续粘弹性载体的影响。从这种情况的理论处理开始,vibrissa被建模为具有部分连续的粘弹性支撑的欧拉-Bernoulli弯曲梁。实验验证了数值模拟。使用钢带作为技术振动和磁敏弹性体(MSE)作为人造连续粘弹性支撑,FSC的表示,确定第一谐振频率。

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