Buzzin Alessio, Giannini Lorenzo, Bocchetta Gabriele, Notargiacomo Andrea, Giovine Ennio, Scorza Andrea, Asquini Rita, de Cesare Giampiero, Belfiore Nicola Pio
Department of Information Engineering, Electronics and Telecommunications, Sapienza University of Rome, Via Eudossiana 18, 00184 Rome, Italy.
Department of Industrial, Electronic and Mechanical Engineering, Roma Tre University, Via Della Vasca Navale 79, 00146 Rome, Italy.
Micromachines (Basel). 2023 Dec 12;14(12):2229. doi: 10.3390/mi14122229.
This paper investigates how the electromechanical response of MEMS/NEMS devices changes when the geometrical characteristics of their embedded flexural hinges are modified. The research is dedicated particularly to MEMS/NEMS devices which are actuated by means of rotary comb-drives. The electromechanical behavior of a chosen rotary device is assessed by studying the rotation of the end effector, the motion of the comb-drive mobile fingers, the actuator's maximum operating voltage, and the stress sustained by the flexure when the flexure's shape, length, and width change. The results are compared with the behavior of a standard revolute joint. Outcomes demonstrate that a linear flexible beam cannot perfectly replace the revolute joint as it induces a translation that strongly facilitates the pull-in phenomenon and significantly increases the risk of ruptures of the comb-drives. On the other hand, results show how curved beams provide a motion that better resembles the revolute motion, preserving the structural integrity of the device and avoiding the pull-in phenomenon. Finally, results also show that the end effector motion approaches most precisely the revolute motion when a fine tuning of the beam's length and width is performed.
本文研究了微机电系统(MEMS)/纳机电系统(NEMS)器件中嵌入式挠性铰链的几何特性发生改变时,其机电响应如何变化。该研究特别针对通过旋转梳齿驱动器驱动的MEMS/NEMS器件。通过研究末端执行器的旋转、梳齿驱动器活动指的运动、致动器的最大工作电压以及当挠性件的形状、长度和宽度发生变化时挠性件承受的应力,来评估所选旋转器件的机电行为。将结果与标准旋转关节的行为进行比较。结果表明,线性柔性梁不能完美替代旋转关节,因为它会引起平移,这极大地促进了吸合现象,并显著增加了梳齿驱动器断裂的风险。另一方面,结果表明弯曲梁提供的运动更类似于旋转运动,保持了器件的结构完整性并避免了吸合现象。最后,结果还表明,当对梁的长度和宽度进行微调时,末端执行器的运动最接近旋转运动。