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Spatially Dependent Mechanical Properties Of Rat Whiskers For Tactile Sensing

机译:大鼠晶须触觉的空间依赖的力学性能

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A new generation of sensors based on biologically inspired whisking action will help determine the presence and location of solid objects and fluid vortices similar to mechanisms used by whisker bearing animals such as rats and seals. By using nanoindentation, we demonstrate that mechanical properties are essentially uniform by cross section, but vary longitudinally from the whisker base (a 3.9 GPa elastic modulus) to the tip (a 3.1 GPa elastic modulus). Several recent studies show propagation of high frequency information through whiskers that are tuned by their physical properties, In order to fully understand and model these properties, this study demonstrates a more complex whisker structure than previously assumed.
机译:基于受生物启发的搅拌作用的新一代传感器将有助于确定固体物体和流体涡流的存在和位置,类似于携带须须的动物(如大鼠和海豹)所使用的机制。通过使用纳米压痕,我们证明了机械性能在横截面上基本上是均匀的,但是从晶须基部(弹性模量为3.9 GPa)到尖端(弹性模量为3.1 GPa)沿纵向变化。最近的一些研究表明,高频信息通过晶须的传播受到了其物理特性的调节。为了充分理解和建模这些特性,本研究表明晶须的结构比以前假设的更为复杂。

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