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High Energy Density Nastic Materials: Parameters For Tailoring Active Response

机译:高能量密度的鼻用材料:调整主动响应的参数

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The engineered active material considered mimics bulk deformation similar to nastic movements in the plant kingdom. Controlled transport of charge and fluid across a selectively permeable membrane employing biological processes is employed to achieve bulk deformation. The membrane may contain biological ion pumps, ion channels, and ion exchangers surrounding a spherical inclusion in a polymer matrix; in this study only ion pumps and exchangers are considered. This work examines parameters of significance to designs employing active materials, including free strain, blocked stress, impedance matched work, and rate of response. The effects of varying material design parameters, such as system geometry and membrane permeability are considered to aid in the custom design of an active material appropriate to a given application. Predictions suggest that the rate of initial response may be on the order of msec with impedance matched work in excess of 200 kJ/m~3.
机译:被认为是经过工程改造的活性材料可以模拟类似于植物界中的鼻部运动的整体变形。采用生物过程控制电荷和流体通过选择性渗透膜的传输,以实现整体变形。膜可以包含生物离子泵,离子通道和围绕聚合物基质中球形夹杂物的离子交换剂;在这项研究中,仅考虑离子泵和交换器。这项工作研究了对于采用活性材料进行设计的重要参数,包括自由应变,阻塞应力,阻抗匹配功和响应速度。各种材料设计参数(例如系统几何形状和膜渗透性)的影响被认为有助于定制适合给定应用的活性材料。预测表明,阻抗匹配功超过200 kJ / m〜3时,初始响应速率可能约为msec。

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