• 제목/요약/키워드: Squeeze

검색결과 407건 처리시간 0.034초

사용자 독립적 뇌파 운동 심상 분류 성능 향상을 위한 Squeeze-and-Excitation Block 적용 (Application of Squeeze-and-Excitation Block for Improving Subject-Independent EEG Motor Imagery Classification Performance)

  • 한혜원;최원준
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2023년도 춘계학술발표대회
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    • pp.517-518
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    • 2023
  • 최근 뇌-컴퓨터 인터페이스 분야에서는 뇌파 신호를 이용한 운동 심상 분류 연구가 활발히 이루어지고 있다. 뇌파는 개인별 차이가 큰 생체 신호로, 사용자에 독립적인 경우 추론이 어려워지는 문제가 있어 운동 심상 분류에서는 주로 피험자 종속적인 연구가 행해져 왔다. 본 논문에서는 컨볼루션 신경망 기반의 뇌파 분류 모델인 EEGNet 에 새로운 방식으로 개선한 Squeeze-and-Excitation block 을 적용해 피험자에 대해 독립적인 운동 심상 분류 성능을 향상시키는 방법을 제안하며, 제안한 Squeeze-and-Excitation block 을 적용한 모델이 기존 모델보다 높은 분류 성능을 보여주는 것을 실험적으로 확인하였다.

스퀴즈오프에 따른 PE배관의 손상평가 연구 (A Study on the Damage Evaluation of Polyethylene Pipe by Squeeze-off)

  • 서호성;이화영;이재훈
    • 한국가스학회지
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    • 제27권2호
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    • pp.1-6
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    • 2023
  • 시공 편의성 및 경제성 측면에서 장점이 있는 PE배관은 국내 도시가스 분야에서 지하 매설용으로 많이 사용되고 있다. 이러한 PE배관은 유지·보수 공사 중 가스 흐름을 차단하기 위해 많은 현장에서 스퀴즈오프를 활용하고 있다. 스퀴즈오프란 PE배관을 압착하여 유체 흐름을 차단하는 방법을 말하며 물리적인 힘에 의해 배관의 변형이 일어나는 공사의 특성상 손상이 발생할 수 있다. 본 연구에서는 스퀴즈오프에 따른 PE배관의 손상방지를 위해 압축률에 따른 손상평가 및 기밀시험을 통해 적정한 압축의 범위와 사용 압력, 관경 등의 스퀴즈오프 작업 절차에 반영될 주요 사항들을 도출하였다. PE배관 손상평가를 위한 압축 실험은 압축률(20%~40%)과 사용압력 (2.8kPa, 25kPa, 70kPa), 관경(63mm, 90mm, 110mm)을 변화시키면서 실시하였다. 압축률에 따른 손상평가 결과, 과도한 압축에 따른 영향을 분석하기 위한 압축률인 45%(110mm), 73%(63mm)인 배관에서 파손이 발생하였다. 또한, 스퀴즈오프 작업 중 기밀시험은 Ar(아르곤)을 이용하여 진행되었으며, 실험결과 70kPa의 조건과 110mm 의 배관 조건에서 누출이 발생하였다. 본 연구 결과, 기밀유지를 위한 스퀴즈오프는 25kPa이하의 사용압력 및 90mm 배관을 초과하지 않는 범위의 배관에서 작업을 실시해야하며 PE배관의 손상방지를 위한 적정 압축률은 30%임을 확인하였다. 이와같은 내용을 도시가스용 PE배관의 스퀴즈오프 작업 절차에 반영할 예정이다.

100KTPI급 HDD 구현을 위한 DISK DAMPER에 관한 연구 (A Study on the Disk Vibration Control by Disk Damper For 100kTPI Hard Disk Drive Design)

  • 한윤식;강성우;오동호;황태연
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2002년도 추계학술대회논문집
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    • pp.363-368
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    • 2002
  • A practical implementation method of squeeze-film aeroelastic disk vibration damping and its practical design performance are presented to provide a solution method to meet the tight TMR(Track Mis-Registration) design budget of high-TPI HDDs. Most previous research results are mainly based on the component-level study in the 'open-cover state' which is far from the realistic operation HDD condition. In this study, the squeeze-film disk damping effect is widely investigated under the realistic drive-level condition of 'enclosed-cover state.' It is found that the proper aeroelastic gap(s) between disk(s) and adjacent surface(s) to give significant vibration reduction in the enclosed HDD operating conditions can be achieved not only by classical well-known squeeze-film damping gaps such as very small 0.0x-millimeter level gaps which are not practically implementable in mass-production HDDs, but also by a few 0.x millimeter which is possible for designing realistic HDD design. The various experimental results including drive-level PES are also presented to prove feasibility of the optimal disk damper design for 93kTPI HDDs.

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용탕단조법에 의한 휘스커강화 Al합금기 복합재료의 고속초소성 (High Strain Rate Superplasticity of Whisker Reinforced Aluminum Alloy Matrix Composites Fabricated by Squeeze Casting)

  • 임석원;유전의칙
    • 한국주조공학회지
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    • 제21권6호
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    • pp.359-365
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    • 2001
  • The superplastic behavior of whisker reinforced aluminum alloy matrix composites fabricated by squeeze casting as one of high pressure routes was investigated. The preforms of ${\alpha}-Si_3N_4$ and ${\beta}-SiC$ whiskers without any binder as a reinforcement were used. The matrix materials were 2024 and 7075 aluminum alloys. For the purpose of optimum superplastic condition, respectively, the whiskers volume fraction, extrusion temperature, tensile test temperature and initial strain rate were changed. Fracture surface of tested specimens were observed by SEM. By the results, it became possible to produce superplastic composites by applying only a hot extrusion process to composites obtained by the squeeze casting. The superplastic composites developed are ${\alpha}-Si_3N_4w/7075$, ${\alpha}-Si_3N_4w/2024$ and ${\beta}-SiCw/2024$ systems at high strain rate.

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기판에 수직으로 진동하는 다공 평판 미소구조물의 공기감쇠 (Squeeze Film Damping of Perforated Planar Microstructures)

  • 김응삼;조영호;김문언
    • 대한전기학회논문지:전기물성ㆍ응용부문C
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    • 제49권1호
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    • pp.64-69
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    • 2000
  • This paper investigates the equeeze film damping of a perforated planar micromechanical structure that oscillates in the normal direction to the substrate. Special focus has been places on the effect of holes and edges of the perforated planar microstructures on the squeeze film damping of oscillatory motions. Theoretical models and test structures of the squeeze film damping have been developed for the transversely oscillating perforated plates. A set of nine different test structures, having three different sized with three different numbers of perforations, has been fabricated and tested. The experimental Q-factors, measured from the fabricated test structures, are compared with the theoretical values, estimated from finite element analysis. It is found that the finite element analysis overestimates the Q-factors up to 150% of the experimental values. Major discrepancy comes from the inaccuracy of the zero pressure condition, placed by the finite element analysis along the perforated edges.

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Examination of Cavitation-Induced Surface Erosion Pitting of a Mechanical Heart Valve Using a Solenoid-Actuated Apparatus

  • Lee, Hwan-Sung;Hwang, Sung-Won;Katsuyuki Yamamoto
    • Journal of Mechanical Science and Technology
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    • 제17권9호
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    • pp.1339-1348
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    • 2003
  • Several factors, including peak dp/dt of the ventricular pressure and maximum closing velocity of leaflet have been studied as indices of the cavitation threshold. In the present study, just before closing velocity of the leaflet has been studied as indices of the cavitation threshold, and cavitation erosion on the surface of a mechanical valve was examined by focusing on squeeze flow and the water hammer phenomenon during the closing period of the valve. A simple solenoid-actuated test device that can directly control the valve closing velocity was developed, and opening-closing tests of 3,000 and 40,000 cycles were performed at various closing velocities. There was a closing velocity threshold to occur erosion pitting of valve surface, and its value was about 0.4 m/s in this study. Cavitation-induced erosion pits were observed only in regions where squeeze flow occurred immediately before valve closure On the other hand, the number of the pits was found to be closely related to an area of water hammer-induced pressure wave below the critical pressure defined by water vapor pressure. Therefore, it was concluded that cavitation is initiated and augmented by the two pressure drops due to squeeze flow and water hammer phenomenon, respectively.

스퀴즈필름효과를 고려한 인공심장밸브의 닫힘시 동적거동 해석 (Dynamic Behavior Analysis of the Heart Valve Prostheses Considering Squeeze Film Effect During Closing Phase)

  • 천길정
    • 대한기계학회논문집
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    • 제19권2호
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    • pp.443-450
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    • 1995
  • An analysis of the dynamics of a mechanical monoleaflet heart valve prosthesis in the closing phase is presented. Employing the moment equilibrium principles on the occluder motion and the squeeze film dynamics of the fluid between the occluder and the guiding strut at the instant of impact, the velocity of the occluder tip and the impact force were computed. The dynamics of fluid being squeezed between the occluder and the guiding struts is accounted for by Reynold's equation. The effect of the fluid being squeezed between the occluder and the guiding strut was to reduce the velocity of the occluder tip at the instant of valve closure as well as dampen the fluttering of the occluder before coming to rest in the fully closed position. The squeeze film fluid pressure changed rapidly from a high positive value to a relatively large negative value in less than 1 msec. The results of this study may be extended for the analysis of cavitation inception, mechanical stresses on the formed elements and valve components as well as to estimate the endurance limits of the prosthetic valves.

볼 베어링과 스퀴즈 필름 댐퍼로 지지되는 차량용 터보차저의 회전체동역학 해석: 스퀴즈 필름 댐퍼 설계 인자와 회전체 불균형 질량의 영향 (Rotordynamic Analysis of Automotive Turbochargers Supported on Ball Bearings and Squeeze Film Dampers in Series: Effect of Squeeze Film Damper Design Parameters and Rotor Imbalances)

  • 김규만;류근
    • Tribology and Lubricants
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    • 제34권1호
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    • pp.9-15
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    • 2018
  • Modern high-performance automotive turbochargers (TCs) implement ceramic hybrid angular contact ball bearings in series with squeeze film dampers (SFDs) to enhance transient responses, thereby reducing the overall emission levels. The current study predicts the rotordynamic responses of the commercial automotive TCs (compressor wheel diameter = ~53 mm, turbine wheel diameter = ~43 mm, and shaft diameter at the bearing locations = ~7 mm) supported on ball bearings and SFDs for various design parameters of SFDs, including radial clearance, axial length, lubricant viscosity, and rotor imbalance conditions (i.e., amplitudes and phase angles) while increasing rotor speed up to 150 krpm. This study validates the predictive rotor finite element model against measurements of mass, polar and transverse moments of inertia, and free-free mode natural frequencies and mode shapes. A nonlinear rotordynamic model integrates nonlinear force coefficients of SFDs to calculate the transient responses of the TC rotor-bearing system. The predicted results show that SFD radial clearances, as well as phase angles of rotor imbalances, have the paramount effect on the dynamic responses of TC shaft motions.

슬롯 링 형상을 갖는 전기 유변 스퀴즈 필름 댐퍼로 지지된 연성 로터의 동특성 및 최적설계 파라미터 실험 연구 (Experimental Parametric Study on the Rotordynamic Characteristics and Optimal Design of a Flexible Rotor Supported by a Slotted-Ring Electro-Rheological Squeeze Film Damper)

  • 이용복;김창호;이남수;최동훈;정시영
    • Tribology and Lubricants
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    • 제16권3호
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    • pp.157-165
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    • 2000
  • A discharge free Electro-Rheological Squeeze Film Damper (ER-SFD) with predetermined-clearances at leakage ends can inherently eliminate electric discharge problems while still supplying stable leakage control. Test results show that the damping force of the slotted-ring ER-SFD is mainly affected by electric voltage, oil supply pressure, position of the damper and ratio of effective surface area of slotted-rings. As the supply voltage is larger, the amplitudes of both slotted ER-SFD and rotor are decreased at first and second critical speeds. The influence of the oil supply pressure and the effective surface area ratio was shown mainly near the first critical speed. The effective surface area ratio of slotted-rings influences the reduction of flexible rotor vibration. As a result, experimental results confirm that the slotted-ring ER-SFD satisfactorily controls the flexible rotor vibration, while eliminates the inherent electric discharge problems in conventional ER-SFDs.