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Smart metamaterials with tunable auxetic and other properties

机译:具有可调节膨胀性和其他特性的智能超材料

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Auxetic and other mechanical metamaterials are typically studied in situations where they are subjected solely to mechanical forces or displacements even though they may be designed to exhibit additional anomalous behaviour or tunability when subjected to other disturbances such as changes in temperature or magnetic fields. It is shown that externally applied magnetic fields can tune the geometry and macroscopic properties of known auxetics that incorporate magnetic component/s, thus resulting in a change of their macroscopic properties. Anomalous properties which are observed in such novel magneto-mechanical systems include tunable Poisson's ratios, bi-stability or multi-stability, depending on the applied magnetic fields, and other electromagnetic-mechanical effects such as strain dependent induced electric currents and magnetic fields. The properties exhibited depend, amongst other things, on the relative position and orientation of the magnetic insertion/s within the structure, the geometry of the system and the magnetic strength of the magnetic components, including that of the external magnetic field.
机译:辅助材料和其他机械超材料通常在仅承受机械力或位移的情况下进行研究,即使它们可能设计成在遭受其他干扰(例如温度或磁场变化)时表现出其他异常行为或可调性。结果表明,外部施加的磁场可以调节结合了磁性成分的已知膨胀剂的几何形状和宏观特性,从而导致其宏观特性发生变化。在这种新颖的磁-机械系统中观察到的异常特性包括可调节的泊松比,双稳定性或多稳定性(取决于所施加的磁场),以及其他电磁-机械效应,例如应变相关的感应电流和磁场。所展示的特性尤其取决于结构中磁性插入物的相对位置和方向,系统的几何形状以及磁性部件的磁性强度,包括外部磁场的磁性强度。

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