• 제목/요약/키워드: micro force sensor

검색결과 80건 처리시간 0.023초

Changes in force associated with the amount of aligner activation and lingual bodily movement of the maxillary central incisor

  • Li, Xiaowei;Ren, Chaochao;Wang, Zheyao;Zhao, Pai;Wang, Hongmei;Bai, Yuxing
    • 대한치과교정학회지
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    • 제46권2호
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    • pp.65-72
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    • 2016
  • Objective: The purposes of this study were to measure the orthodontic forces generated by thermoplastic aligners and investigate the possible influences of different activations for lingual bodily movements on orthodontic forces, and their attenuation. Methods: Thermoplastic material of 1.0-mm in thickness was used to manufacture aligners for 0.2, 0.3, 0.4, 0.5, and 0.6 mm activations for lingual bodily movements of the maxillary central incisor. The orthodontic force in the lingual direction delivered by the thermoplastic aligners was measured using a micro-stress sensor system for the invisible orthodontic technique, and was monitored for 2 weeks. Results: Orthodontic force increased with the amount of activation of the aligner in the initial measurements. The attenuation speed in the 0.6 mm group was faster than that of the other groups (p < 0.05). All aligners demonstrated rapid relaxation in the first 8 hours, which then decreased slowly and plateaued on day 4 or 5. Conclusions: The amount of activation had a substantial influence on the orthodontic force imparted by the aligners. The results suggest that the activation of lingual bodily movement of the maxillary central incisor should not exceed 0.5 mm. The initial 4 or 5 days is important with respect to orthodontic treatment incorporating an aligner.

진행파의 코리올리효과를 이용한 자가발진형 표면탄성파 초소형 자이로스코프 (A Self-Oscillation Type SAW Microgyroscope Based on the Coriolis Effect of Progressive Waves)

  • 오해관;최기선;이형근;이기근;양상식
    • 전기학회논문지
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    • 제59권2호
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    • pp.390-396
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    • 2010
  • An 80MHz surface acoustic wave (SAW)-based gyroscope utilizing a progressive wave was developed on a piezoelectric substrate. The developed sensor consists of two SAW oscillators in which one is used for sensing element and has metallic dots in the cavity between input and output IDTs. The other is used for a reference element. Coupling of mode (COM) modeling was conducted to determine the optimal device parameters prior to fabrication. According to the simulation results, the device was fabricated and then measured on a rate table. When the device was subjected to an angular rotation, oscillation frequency differences between the two oscillators were observed because of the Coriolis force acting on the metallic dots. Depending on the angular rate, the difference of the oscillation frequency was modulated. The obtained sensitivity was approximately 52.35 Hz/deg.s within the angular rate range of 0~1000 deg/s. The performances of devices with three IDT structures for two kinds of piezoelectric substrates were characterized. Good thermal stability was also observed during the evaluation process.

SAW 소자 응용을 위한 실리콘 기판 위에 AlN 박막의 최적 증착 조건에 관한 연구 (Optimum deposition conditions of AlN thin film on the Si substrate for SAW application)

  • 고봉철;남창우
    • 센서학회지
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    • 제16권4호
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    • pp.301-306
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    • 2007
  • AlN thin film for SAW filter application was deposited on (100) silicon wafers by reactive magnetron sputtering method. The structural characteristics were dependent on the deposition conditions such as sputtering pressure, RF power, substrate temperature, and nitrogen partial pressure. Scanning Electron Microscope (SEM), X-ray Diffraction (XRD), Electron Probe MicroAnalyzer (EPMA) and Atomic Force Microscope (AFM) have been used to find out structural properties and preferred orientation of AlN thin films. Insertion loss of SAW devices was 28.51 dB and out of band rejection was about 24 dB.

강성 불균일이 조화가진을 받는 주기적 구조물의 동특성에 미치는 영향 (The Effects of the Stiffness Mistuning on the Dynamic Response of Periodic Structures under a Harmonic Force)

  • 안태길
    • 한국소음진동공학회논문집
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    • 제15권12호
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    • pp.1355-1360
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    • 2005
  • Periodic structures can be applied as a MEMS(micro-electro-mechanical system) sensor or actuator due to low energy loss and wideband frequency response. The dynamic behavior of a mistuned periodic structure Is dramatically changed from that of a perfectly tuned periodic structure. The effects of mistuning, coupling stiffness, and driving point on the forced vibration responses of a simple periodic structure ate investigate4 through numerical simulations. On the basis of that, one can design effective and reliable MEMS components using periodic structures.

Overview of flexure-based compliant microgrippers

  • Aia, Wenji;Xu, Qingsong
    • Advances in robotics research
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    • 제1권1호
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    • pp.1-19
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    • 2014
  • Microgripper is an essential device in the micro-operation system. It can convert other types of energy into mechanical energy and produce clamp movement with required chucking force, which enables it a broad application prospect in the domain of tiny components' processing and assembly, biomedicine and optics, etc. The performance of a microgripper is dependent on its power supply, type of drive, mechanism structure, sensing components, and controller. This paper presents a state-of-the-art survey of recent development on flexure-based microgrippers. According to the drive type, the existing microgrippers can be mainly classified as electrostatic microgripper, electrothermal microgripper, electromagnetic microgripper, piezoelectric microgripper, and shape memory alloy microgripper. Additionally, some different mechanisms, sensors, and control methods that are used in microgripper system are reviewed. The key issue of how to choose those components in microgripper system design is also addressed.

평판형 MEMS 고체 추진제 추력기 요소 제작 및 성능 평가 (Fabrication, Performance Evaluation of Components of Planar Type MEMS Solid Propellant Thruster)

  • 박종익;권세진
    • 한국항공우주학회지
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    • 제36권6호
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    • pp.581-586
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    • 2008
  • 기존의 수 mN급의 MEMS 고체 추진제 추력기는 실제 마이크로/나노 위성체의 킥모터,지능탄(Smart bomb)의 측추력기로 응용하기에는 추력 레벨이 너무 낮다는 한계가 있었다. 이 연구에서는 고체 추진제의 연소 면적을 증대시킴으로써 추력 레벨이 향상된 MEMS 고체 추진제 추력기의 제작 가능성을 확인하고 연소 실험을 통해서 구조체의 안정성을 확인하였으며 직접 추력을 측정하여 수백 mN급의 단위 추력기를 개발하였다. 연소 챔버와 노즐, 덮개 층은 감광성 유리 기판을 이용하여 제작하였으며 마이크로 점화기는 파이렉스 기판 위에 300 ㎚ 높이의 니켈과 크롬을 페터닝(patterning)하여 제작하였다. 마이크로 점화기의 성능 해석과 실험을 통한 검증을 수행하여 고체 추진제의 점화를 위한 공급 전력을 계산하였으며 힘 센서를 통하여 추력기의 추력을 측정하였다. 측정된 추력은 K=15와 20인 경우에 300, 600 mN 이었다.

평형곤을 모사한 생체모방형 구동부 일체형 각속도 센서 (Biomimetic Gyroscope Integrated with Actuation Parts of a Robot Inspired by Insect Halteres)

  • 정민기;김지수;장서형;이태재;심형보;고형호;조규진;조동일
    • 제어로봇시스템학회논문지
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    • 제22권9호
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    • pp.705-709
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    • 2016
  • Micro-electro-mechanical systems (MEMS) gyroscopes are widely used in various robot applications. However, these conventional gyroscopes need to vibrate the proof mass using a built-in actuator at a fixed resonance frequency to sense the Coriolis force. When a robot is not moving, the meaningless vibration of the gyroscope wastes power. In addition, this continuous vibration makes the sensor vulnerable to external sound waves with a frequency close to the proof-mass resonance frequency. In this paper, a feasibility study of a new type of gyroscope inspired by insect halteres is presented. In dipterous insects, halteres are a biological gyroscope that measures the Coriolis force. Wing muscles and halteres are mechanically linked, and the halteres oscillate simultaneously with wing beats. The vibrating haltere experiences the Coriolis force if the insect is going through a rotational motion. Inspired by this haltere structure, a gyroscope using a thin mast integrated with a robot actuation mechanism is proposed. The mast vibrates only when the robot is moving without requiring a separate actuator. The Coriolis force of the mast can be measured with an accelerometer installed at the tip of the mast. However, the signal from the accelerometer has multiple frequency components and also can be highly corrupted with noise, such that raw data are not meaningful. This paper also presents a suitable signal processing technique using the amplitude modulation method. The feasibility of the proposed haltere-inspired gyroscope is also experimentally evaluated.

디지털 방식의 인접면 접촉강도 측정장치의 개발 및 평가 (EVALUATION AND DEVELOPMENT OF DIGITAL DEVICE FOR MEASURING PROXIMAL TOOTH CONTACT TIGHTNESS)

  • 최우진;김경화;김진아;강동완;오상호
    • 대한치과보철학회지
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    • 제45권5호
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    • pp.687-695
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    • 2007
  • Statement of problem: The proper contact relation between adjacent teeth in each arch plays an important role in the stability and maintenance of the integrity of the dental arches. Proximal contact has been defined as the area of a tooth that is in close association, connection, or touch with an adjacent tooth in the same arch. Purpose: The aim of this study was to develop a digital device for measuring the proximal tooth contact tightness by pulling a thin stainless steel strip (2mm wide, 0.03mm thick) inserted between proximal tooth contact. Material and method: This device consists of measuring part, sensor part, motor part and body part. The stainless steel strip was connected to a stain gauge. The strain gauge was designed to convert the frictional force into a compressive force. This compressive force was detected as a electrical signal and the electrical signal was digitalized by a A/D converter. The digital signals were displayed by a micro-processor. The pulling speed was 8mm/s. Results: For testing reliability of the device in vivo, two healthy young adults (A, B) participated in this experiment. The tightness of proximal tooth contact between the second premolar and the first molar of mandible (subject A) and maxilla (subject B) was measured fifteen times for three days at rest. We double-checked the accuracy of the device with a Universal Testing Machine. Output signals from the Universal Testing Machine and the measuring device were compared. Regression analysis showed high linearity between these two signals. In vivo test, no significant differences were found between measurements. Conclusion: This device has shown to he capable of producing reliable and reproducible results in measuring proximal tooth contact. Therefore, it was considered that this device was appropriate to apply clinically.

FCM 교량 가설 공법에서 주두부의 기울음 특성 (The Inclination Characteristics of PSC BOX in FCM Bridge Construction Method)

  • 강현억;박완신;장영일;김선우;윤현도
    • 한국구조물진단유지관리공학회 논문집
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    • 제27권3호
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    • pp.12-20
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    • 2023
  • 본 연구에서는 영구 교좌장치가 설치되는 교량의 교각 상부에서 FCM에 의한 상부공 시공에 주로 적용하고 있는 "내부 프리스트레싱 긴장재에 의한 임시 고정시스템"에서 강봉에 도입한 긴장력의 변화와 주두부의 기울음 특성을 분석하여 안정성 확보 방안에 대한 기초자료를 제시하였다. 상기 시스템은 시공 중 불균형 모멘트에 의하여 발행하는 상향력에 저항하기 위하여 교각과 교각 상부의 PSC BOX 내부에 연직으로 강봉을 설치한 후 상부에서 인장 및 정착하기 때문에, 그 동안 강봉에 도입한 긴장력의 변화와 주두부의 기울음 정도를 확인하기 어려웠다. 따라서, 강봉의 길이 변화 및 주두부 변위에 대한 계측 및 분석은 미세 측정이 가능한 FBG 센서를 활용하여 각 세그먼트 진행의 전후에 수행하였다. 강봉의 계산 인장력과 잔존 인장력을 비교한 결과 안전율은 모든 교량에서 저하하였다. 그 원인은 주로 강봉의 정착 과정에서부터 1세그먼트 완료까지의 초기 긴장력 손실로 확인되어 이에 대한 대책을 제시하였다. 주두부의 미세 기울음 특성을 분석한 결과 안전율이 충분히 확보된 교량에서도 세그먼트의 진행에 따라 미세 기울음이 증가되는 양상을 보였으며, 세그먼트 진행 단계별로 콘크리트 타설 전,후의 차이도 뚜렸하게 확인되었다. 또한, 모든 교량에서 미세 기울음의 증가는 강봉의 긴장력 손실과 밀접한 관계를 보이며 기울음 측면과 반대 측면의 응력 감소가 더욱 크게 나타났다. 이러한 현상의 원인은 불균형모멘트에 의하여 기울음 측면과의 반대 측면의 강봉에 상향 인장력이 발생하여 강봉의 응력 차이를 유발시킨 때문으로 판단된다.

Vacuum Packaging and Operating Properties of Micro-Tunneling Sensors

  • Park, H.W.;Lee, D.J.;Son, Y. B.;Park, J.H.;Oh, M. H.;Ju, B. K.
    • 한국마이크로전자및패키징학회:학술대회논문집
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    • 한국마이크로전자및패키징학회 2000년도 Proceedings of 5th International Joint Symposium on Microeletronics and Packaging
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    • pp.110-110
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    • 2000
  • Cantilever-shaped lateral field emitters were fabricated and their electrical characteristics were tested. As shown in Fig.1, poly-silicon cantilevers were fabricated by the surface micromachining and they were used to the vacuum magnetic field sensors. The tunneling devices were vacuum sealed with the tubeless packaging method, as shown in Fig.2 and Fig.3. The soda-lime glasses were used for better encapsulation, so the sputtered silicon and the glass layers on the soda-lime glasses were bonded together at 1x10$^{-6}$ Torr. The getter was activated after the vacuum sealing fur the stable emissions. The devices were tested outside of the vacuum chamber. Through vacuum packaging, the tunneling sensors can be utilized. Fig.4 shows that the sensor operates with the switching of the magnetic field. When the magnetic field was applied to the device, the anode currents were varied by the Lorentz force. The difference of anode currents can be varied with the strength of the applied magnetic field.

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