DocumentCode :
3301247
Title :
Development of low-profile piezoelectric energy harvester for high load application
Author :
Purviance, Thorin ; Wickler, Spencer ; Clayson, Keith ; Barnes, Tiffany ; Changki Mo
Author_Institution :
Sch. of Mech. & Mater. Eng., Washington State Univ. Tri-Cities, Richland, WA, USA
fYear :
2013
fDate :
1-2 Aug. 2013
Firstpage :
120
Lastpage :
125
Abstract :
This paper examines the feasibility of a low-profile piezoelectric energy harvester that is particularly useful in application where it is used as power source from high mechanical load and imbedding it in the limited space. Two low-profile energy harvesting devices - a piezoelectric ring transducer and set of PZT stacks are designed and tested. The first proposed energy harvester is composed of a ring transducer, metal outer ring, and cymbal metal end caps. The top and bottom cymbal metal end caps are placed inside the ring and transfer the applied mechanical load on the apex to the inner circumference of the piezoelectric ring transducer by compressing it. The new design is beneficial because applied load gives rise to compressive stress in the piezoelectric layer. A second design is introduced using an array of piezoelectric stacks arranged around cymbal shaped springs. By using compressive stress to the PZT, energy generating performance of the proposed design can be significantly improved comparing to the previous cymbal design using either PZT mono-layer or unimorph PZT. In addition, for the new design high shear strength of the bonding layer is not required to resist amplified radial stress through metal end caps comparing to the previous design.
Keywords :
compressive strength; energy harvesting; load forecasting; piezoelectric transducers; shear strength; PZT monolayer; compressive stress; cymbal metal end caps; load application; mechanical load; metal outer ring; piezoelectric energy harvester; piezoelectric layer; piezoelectric ring transducer; power source; shear strength; unimorph PZT; Energy harvesting; Metals; Piezoelectric materials; Stress; Transducers; Voltage measurement; Energy harvesting; compressive stress; cymbal-structured; low-profile; piezoelectric; ring and stack transducers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Technologies for Sustainability (SusTech), 2013 1st IEEE Conference on
Conference_Location :
Portland, OR
Type :
conf
DOI :
10.1109/SusTech.2013.6617308
Filename :
6617308
Link To Document :
بازگشت