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Piezoceramic d15 shear-induced direct torsion actuation mechanism: a new representative experimental benchmark
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  • Piezoceramic d15 shear-induced direct torsion actuation mechanism: a new representative experimental benchmark
  • Piezoceramic d15 shear-induced direct torsion actuation mechanism: a new representative experimental benchmark
저자명
Berik. Pelin,Benjeddou. Ayech,Krommer. Michael
간행물명
Smart structures and systems
권/호정보
2013년|12권 5호|pp.483-499 (17 pages)
발행정보
테크노프레스
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

A new piezoceramic $d_{15}$ shear-induced torsion actuation mechanism representative benchmark is proposed and its experimentations and corresponding 3D finite element (FE) simulations are conducted. For this purpose, a long and thin smart sandwich cantilever beam is dimensioned and built so that it can be used later for either validating analytical Saint Venant-type solutions or for analyzing arm or blade-based smart structures and systems applications. The sandwich beam core is formed by two adjacent rows of 8 oppositely axially polarized d15 shear piezoceramic patches, and its faces are dimensionally identical and made of the same glass fiber reinforced polymer composite material. Quasi-static and static experimentations were made using a point laser sensor and a scanning laser vibrometer, while the 3D FE simulations were conducted using the commercial software $ABAQUS^{(R)}$. The measured transverse deflection by both sensors showed strong nonlinear and hysteretic (static only) variation with the actuation voltage, which cannot be caught by the linear 3D FE simulations.