论文标题
基于手性超材料的纵向扭转波转换器
Longitudinal-Twist Wave Converter based on Chiral Metamaterials
论文作者
论文摘要
材料体系结构的进步已使材料具有传统机械工程领域不常见的异国属性。这项研究特别感兴趣的扭曲是一种将超材料用于将静态轴向载荷转化为扭曲运动的机制。在此,采用了基于有限元方法的计算,该计算是通过将拉格朗日方程应用于单原子弹簧质量系统所带来的分析方法来证实的,用于探索纵向扭转(L-T)转换,该纵向扭转(L-T)转换是通过手性四方光膜质量的纵向转换。首先,我们考虑了极化状态,以突出纵向模式在L-T转换中的潜在贡献。我们将手性细胞的扭曲行为与其他同质培养基,八角管和非手动细胞的扭曲行为进行了对比。此外,我们使用时间域和频域研究证明了细胞手性对L-T转化的影响。研究结果表明,纵向传播波的至少一部分被转变为扭曲的扭曲,甚至以不同的频率转换了准全面转换。
Advances in material architectures have enabled endowing materials with exotic attributes not commonly available in the conventional realm of mechanical engineering. Twisting, a mechanism whereby metamaterials are used to transform static axial load into twist motion, is of particular interest to this study. Herein, computations based on the finite element method, corroborated by an analytical approach derived from applying Lagrange's equations to a monoatomic spring-mass system, are employed to explore the longitudinal-twist (L-T) conversion exhibited by a chiral tetragonal-beam metamaterial. Firstly, we perform an eigenvalue analysis taking into account the polarization states to highlight the potential contribution of the longitudinal mode in the L-T conversion. We contrast the twisting behavior of the chiral cell with that of other homogeneous medium, octagonal-tube, and non-chiral cells. Moreover, we demonstrate the influence of the cell's chirality on the L-T conversion using both time-domain and frequency-domain studies. The findings indicate that at least a portion of the longitudinally propagating wave is transformed into twist throughout a broad frequency range and even quasi-totally converted at distinct frequencies.