• 제목/요약/키워드: 캔틸레버,외팔보

검색결과 3건 처리시간 0.019초

캔틸레버 구조해석을 통한 압전소자의 최대 전력량 산출 (Cantilever Structural Analysis for Optimal Piezoelectric Power Harvesting)

  • 임근수;조성식;김수현;박우태
    • 마이크로전자및패키징학회지
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    • 제20권4호
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    • pp.31-34
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    • 2013
  • 외팔보의 형상적인 해석과 압전효과에 의거하여, 최대 전력량 산출을 위한 에너지 수확기를 설계하였다. 두가지의 외팔보 형상으로 에너지 수확기의 구조가 설계되었다. 에너지 수확기의 성능을 좌우하는 주요 변수는 외팔보 형상과 끝단에 부착된 질량이다. 수확되는 전하량은 압전재료의 압전상수와 외팔보의 기계적인 변형량에 비례한다.

비접촉 원자간력 현미경의 탐침 캔틸레버 진동 특성 및 측정 성능 평가 (Vibration Characteristics and Performance of Cantilever for Non-contact Atomic Force Microscopy)

  • 박준기;권현규;홍성욱
    • 한국소음진동공학회논문집
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    • 제14권6호
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    • pp.495-502
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    • 2004
  • This paper presents the vibration analysis and the performance evaluation of cantilevers with probing tips for non-contact scanning probe microscopy. One of the current issues of the scanning probe microscopy technology is to increase the measurement speed, which is closely tied with the dynamic characteristics of cantilevers. The primary concern in this research is to investigate the relation between the maximum possible speed of non-contact scanning probe microscopy and the dynamic characteristics of cantilevers. First, the finite element analysis is made for the vibration characteristics of various cantilevers in use. The computed natural frequencies of the cantilevers are in good agreement with measured ones. Then, each cantilever is tested with topographic measurement for a standard sample with the scanning speed changed. The performances of cantilevers are analyzed along with the natural frequencies of cantilevers. Experiments are also performed to test the effects of how to attach cantilevers in the piezo-electric actuator. Finally, measurement sensitivity has been analyzed to enhance the performance of scanning probe microscopy.

정밀 마찰측정을 위한 이중 캔틸레버 구조 마찰시험기의 설계에 관한 연구 (A Study on the Design of a Double Cantilever Structure Friction Tester for Precision Friction Measurement)

  • 강원빈;김현준
    • Tribology and Lubricants
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    • 제34권4호
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    • pp.125-131
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    • 2018
  • A precision tribometer consisting of a cantilever was designed to measure frictional forces in the micro-Newton range. As frictional forces are measured based on the bending of the cantilever, vibration of the cantilever is the most significant factor affecting the quality of the friction measurement. Therefore, improved design of the tribometer with double cantilevers and a connecting plate that united the two cantilevers mechanically was suggested. For the verification of the modified design of the tribometer, numerical analysis and experiments were conducted. Examination using the finite element method revealed that the tribometer with a double cantilever and a connecting plate exhibited faster damping characteristics than the tribometer with a single cantilever. In the experiment, effectiveness of the double cantilever and connecting plate for vibration reduction was also confirmed. Vibration of the tribometer with double cantilever decreased eight times faster than that of the tribometer with a single cantilever. The faster damping of the double cantilever design is attributed to the mechanical interaction at the contacting surfaces between the cantilever and the connecting plate. Tribotesting using the tribometer with a single cantilever resulted in random fluctuation of frictional forces due to the stick-slip behavior. However, using the tribometer with a double cantilever and connecting plate for the tribotest gave relatively uniform and steady measurement of frictional forces. Increased stiffness owing to using a double cantilever and mechanical damping of the connecting plate were responsible for the stable friction signal.