Topology optimization of a cantilevered piezoelectric energy harvester using stress norm constraints

被引:0
|
作者
Fabian Wein
Manfred Kaltenbacher
Michael Stingl
机构
[1] University of Erlangen-Nuremberg,Applied Mathematics 2, Cluster of Excellence ‘Engineering of Advanced Materials’
[2] Vienna University of Technology,Institute of Mechanics and Mechatronics
关键词
Topology optimization; Energy harvester; Stress constraints;
D O I
暂无
中图分类号
学科分类号
摘要
Vibrational piezoelectric energy harvesters are devices which convert ambient vibrational energy into electric energy. Here we focus on the common cantilever type in which an elastic beam is sandwiched between two piezoelectric plates. In order to maximize the electric power for a given sinusoidal vibrational excitation, we perform topology optimization of the elastic beam and tip mass by means of the SIMP approach, leaving the piezoelectric plates solid. We are interested in the first and especially second resonance mode. Homogenizing the piezoelectric strain distribution is a common indirect approach increasing the electric performance. The large design space of the topology optimization approach and the linear physical model also allows the maximization of electric performance by maximizing peak bending, resulting in practically infeasible designs. To avoid such problems, we formulate dynamic piezoelectric stress constraints. The obtained result is based on a mechanism which differs significantly from the common designs reported in literature.
引用
收藏
页码:173 / 185
页数:12
相关论文
共 50 条
  • [1] Topology optimization of a cantilevered piezoelectric energy harvester using stress norm constraints
    Wein, Fabian
    Kaltenbacher, Manfred
    Stingl, Michael
    [J]. STRUCTURAL AND MULTIDISCIPLINARY OPTIMIZATION, 2013, 48 (01) : 173 - 185
  • [2] Optimization of cantilevered piezoelectric energy harvester with a fixed resonance frequency
    LIANG Zhu
    XU ChunDong
    REN Bo
    DI WenNing
    LI Long
    LUO HaoSu
    CHEN Zhen
    SU Jun
    [J]. Science China Technological Sciences, 2014, 57 (06) : 1093 - 1100
  • [3] Optimization of cantilevered piezoelectric energy harvester with a fixed resonance frequency
    Zhu Liang
    ChunDong Xu
    Bo Ren
    WenNing Di
    Long Li
    HaoSu Luo
    Zhen Chen
    Jun Su
    [J]. Science China Technological Sciences, 2014, 57 : 1093 - 1100
  • [4] Optimization of cantilevered piezoelectric energy harvester with a fixed resonance frequency
    Liang Zhu
    Xu ChunDong
    Ren Bo
    Di WenNing
    Li Long
    Luo HaoSu
    Chen Zhen
    Su Jun
    [J]. SCIENCE CHINA-TECHNOLOGICAL SCIENCES, 2014, 57 (06) : 1093 - 1100
  • [5] Topology Optimization of Miniaturized Piezoelectric Energy Harvester
    Hu, Siyang
    Fitzer, Ulrike
    Bechtold, Tamara
    [J]. 2021 22ND INTERNATIONAL CONFERENCE ON THERMAL, MECHANICAL AND MULTI-PHYSICS SIMULATION AND EXPERIMENTS IN MICROELECTRONICS AND MICROSYSTEMS (EUROSIME), 2021,
  • [6] Topology Optimization of a Folded Beam Piezoelectric Energy Harvester
    Hu, Siyang
    Fitzer, Ulrike
    Stindt, Simon
    Bechtold, Tamara
    [J]. IFAC PAPERSONLINE, 2022, 55 (20): : 379 - 384
  • [7] Cantilevered Piezoelectric Energy Harvester With a Dynamic Magnifier
    Aladwani, A.
    Arafa, M.
    Aldraihem, O.
    Baz, A.
    [J]. JOURNAL OF VIBRATION AND ACOUSTICS-TRANSACTIONS OF THE ASME, 2012, 134 (03):
  • [8] BI-STABLE CANTILEVERED PIEZOELECTRIC ENERGY HARVESTER USING SPRINGS
    Jeong, Sin-Woo
    Yoo, Hong Hee
    [J]. PROCEEDINGS OF THE 23RD INTERNATIONAL CONGRESS ON SOUND AND VIBRATION: FROM ANCIENT TO MODERN ACOUSTICS, 2016,
  • [9] Stochastic bifurcation characteristics of cantilevered piezoelectric energy harvester
    Xu, Jia
    Luan, Ming-Yi
    Zhu, Zhi-Wen
    Guo, Kang-Kang
    [J]. JOURNAL OF VIBROENGINEERING, 2014, 16 (03) : 1240 - 1247
  • [10] Multi-Objective Topology Optimization of a Broadband Piezoelectric Energy Harvester
    Hu, Siyang
    Fitzer, Ulrike
    Nguyen, Khai Chau
    Hohlfeld, Dennis
    Korvink, Jan G.
    Bechtold, Tamara
    [J]. MICROMACHINES, 2023, 14 (02)