Numerical modeling of shape and topology optimisation of a piezoelectric cantilever beam in an energy-harvesting sensor

被引:0
作者
Chung Ket Thein
Jing-Sheng Liu
机构
[1] Heriot Watt University Malaysia,School of Engineering and Physical Sciences
[2] University of Hull,School of Engineering
来源
Engineering with Computers | 2017年 / 33卷
关键词
Piezoelectric; Multi-disciplinary optimisation; Shape and topology optimisation; Energy harvesting; Bimorph cantilever beam;
D O I
暂无
中图分类号
学科分类号
摘要
Piezoelectric materials are excellent transducers for converting mechanical energy from the environment for use as electrical energy. The conversion of mechanical energy to electrical energy is a key component in the development of self-powered devices, especially enabling technology for wireless sensor networks. This paper proposes an alternative method for predicting the power output of a bimorph cantilever beam using a finite-element method for both static and dynamic frequency analyses. A novel approach is presented for optimising the cantilever beam, by which the power density is maximised and the structural volume is minimised simultaneously. A two-stage optimisation is performed, i.e., a shape optimisation and then a “topology” hole opening optimisation.
引用
收藏
页码:137 / 148
页数:11
相关论文
共 34 条
[1]  
Gilbert JM(2008)Comparison of energy harvesting systems for wireless sensor networks Int J Autom Comput 5 334-347
[2]  
Balouchi F(2004)Power Source for Wireless Sensor Networks Lecture Notes in Computer Science, Springer-Verlag 2920 1-17
[3]  
Roundy S(2008)Strain enhancement within cantilevered. Piezoelectric MEMS vibrational energy scavenging devices, advances in science and technology Smart Mater Mico/Nanosyst 54 405-410
[4]  
Steingart D(2005)On the effectiveness of vibration-based energy harvesting J Intell Mater Syst Struct 16 809-823
[5]  
Frechette L(2005)Optimum piezoelectric bending beam structures for energy harvesting using shoe inserts J Intell Mater Syst Struct 16 835-845
[6]  
Wright P(2013)A new energy harvester design for high power output at low frequencies Sens Actuators 199 344-352
[7]  
Rabaey J(2004)Finite element analysis and design of actively controlled piezoelectric smart structures Finite Element Anal Design 40 241-262
[8]  
Miller LM(2000)Design optimisation of composite panel structures with stiffening ribs under multiple loading cases Comput Struct 78 637-647
[9]  
Emley NC(2004)Multi-objective and multi-loading optimization of ultralightweight truss materials Int J Solids Struct 41 619-635
[10]  
Shafer P(2012)Effective structural sizing/shape optimisation through a reliability-related multifactor optimisation approach Multidiscipline Model Mater Struct 8 159-177