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首页> 外文期刊>International Journal of Mechanical Sciences >Transitions of nanostructure-induced bistable disks actuated by line forces
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Transitions of nanostructure-induced bistable disks actuated by line forces

机译:纳米结构诱导的双稳态盘的过渡通过线力致动

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摘要

The transition processes of nanostructure-induced bistable disks triggered by line forces are analytically and experimentally investigated. An analytical model based on the Ritz method is formulated to optimise the placement of axisymmetric line forces for converting the bistable disks between the two stable configurations. Different transition paths are captured for the bistable disks upon applying the line forces at different locations. The transition features, including the snapping forces and transition types, of the bistable disks under different line forces are analysed with respect to the design parameters, such as the nanostructured region ratio, accumulated plastic deformation and disk slenderness. Strategies for placing the line forces to achieve the shape transitions using small line forces or small total forces are proposed. Transition tests of manufactured bistable disks reveal a local buckling phenomenon when the line forces are placed around the disk centre, which is also predicted by numerical modelling. The experimental investigation validates the analytical studies, which are also verified by numerical models. This study provides information for the design of mechanical actuations to achieve the shape reconfiguration of bistable disks.
机译:通过线力触发的纳米结构诱导的双稳态盘的过渡过程分析和实验研究。配方基于RITZ方法的分析模型,优化轴对称线力的放置在两个稳定配置之间转换双稳态磁盘的位置。在在不同位置处的线力时捕获不同的转换路径。相对于设计参数分析不同线力下的双稳态盘的过渡特征,包括捕捉力和过渡类型,例如纳米结构尺寸,累积的塑性变形和圆筒细长。提出了将线力放置达到使用小线力或小总力实现形状过渡的策略。制造的双稳态盘的过渡试验显示当线力放置在盘中心周围时局部屈曲现象,这也通过数值建模预测。实验研究验证了分析研究,也通过数值模型验证。本研究提供了用于设计机械致动的信息以实现双稳态盘的形状重新配置。

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