期刊文献+
共找到1篇文章
< 1 >
每页显示 20 50 100
Investigation of viscous damping in perforated MEMS devices
1
作者 Zeyu Jia Yuhao Wang +6 位作者 Xiaoxu Wang Xiang Xu Jinshuai Sun Mengqi Sun Jian Bai Wei Huang Qianbo Lu 《Microsystems & Nanoengineering》 2025年第3期551-566,共16页
Perforated structures are widely employed in MEMS devices for dissipation control,energy absorption,and performance optimization.Among these,the damping weakening effect is particularly intriguing,attracting considera... Perforated structures are widely employed in MEMS devices for dissipation control,energy absorption,and performance optimization.Among these,the damping weakening effect is particularly intriguing,attracting considerable attention and widespread application.Evaluating the impact of perforations on damping is crucial for enhancing the performance of MEMS devices.This paper investigates the damping tuning mechanisms of perforations and presents two theoretical models for accurately predicting viscous damping.The two models exhibit unique advantages under high and low perforation ratios,respectively.Both models account for complex boundary conditions and various hole geometries,including cylindrical,conical,prismatic,and trapezoidal holes.Modeling and simulations demonstrate the complementarity of the two models,enabling accurate viscous damping predictions across nearly all perforation ratios.Subsequently,the theoretical models are validated through a series of vibration tests on perforated oscillators,with errors consistently controlled within 10%.Experimental results demonstrate that perforations can easily achieve a damping reduction of more than one order of magnitude.Moreover,compared to normal cylindrical holes,trapezoidal holes are found to achieve superior damping reduction with a smaller sacrifice in surface area,which holds great potential for capacitive,acoustic,and optical MEMS devices.This work lays the foundation for viscous damping design and optimization of MEMS device dynamics,creating new applications. 展开更多
关键词 dissipation controlenergy damping weakening effect enhancing performance mems devices theoretical models impact perforations damping perforated structures damping tuning mechanisms
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部