• 제목/요약/키워드: vibration prevention

검색결과 161건 처리시간 0.025초

공압제진대용 이중챔버형 공압스프링의 복소강성 모형화 (Amplitude-dependent Complex Stiffness Modeling of Dual-chamber Pneumatic Spring for Pneumatic Vibration Isolation Table)

  • 이정훈;김광준
    • 한국소음진동공학회논문집
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    • 제18권1호
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    • pp.110-122
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    • 2008
  • Pneumatic vibration isolator typically consisting of dual-chamber pneumatic springs and a rigid table are widely employed for proper operation of precision instruments such as optical devices or nano-scale equipments owing to their low stiffness- and high damping-characteristics. As environmental vibration regulations for precision instruments become more stringent, it is required to improve further the isolation performance. In order to facilitate their design optimization or active control, a more accurate mathematical model or complex stiffness is needed. Experimental results we obtained rigorously for a dual-chamber pneumatic spring exhibit significantly amplitude dependent behavior, which cannot be described by linear models in earlier researches. In this paper, an improvement for the complex stiffness model is presented by taking two major considerations. One is to consider the amplitude dependent complex stiffness of diaphragm necessarily employed for prevention of air leakage. The other is to employ a nonlinear model for the air flow in capillary tube connecting the two pneumatic chambers. The proposed amplitude-dependent complex stiffness model which reflects dependency on both frequency and excitation amplitude is shown to be very valid by comparison with the experimental measurements. Such an accurate nonlinear model for the dual-chamber pneumatic springs would contribute to more effective design or control of vibration isolation systems.

TMD 제어성능 개선을 위한 ETMD 개발 (Development of ETMD for Improving TMD Control Performance)

  • 전승곤
    • 한국지진공학회논문집
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    • 제26권4호
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    • pp.157-164
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    • 2022
  • The TMD has a simpler structure than other vibration control devices and shows excellent control performance for the standardized vibration occurring in the structure. However, when the vibration cycle of the structure coincides with the vibration cycle of the TMD due to the sudden external loads, the off-tuning occurs, which threatens the structure while increasing the vibration width of the TMD. Therefore, Electromagnetic Tuned Mass Damper (ETMD) was developed as a semi-active TMD that prevents off-tuning while exhibiting excellent control performance like TMD. To verify the control performance of the developed ETMD, the bending behavior control performance evaluation experiment using a simple beam bridge was performed. The experimental method compared the mutual control power by experimenting with the existing TMD method and the developed ETMD under nine excitation frequency conditions. As a result, it was confirmed that the control effect of ETMD was about 4.85% higher than that of TMD at 3.02Hz, which generates the maximum displacement in the simple beam bridge. Also, the off-tuning occurred in some excitation conditions when using TMD, although the off-tuning did not occur when using ETMD. Therefore, the excellent control performance of the ETMD developed in this study was verified.

전자뇌관과 비전기뇌관을 조합한 터널발파 시공사례 (Tunnel Blasting case by Combination of Electronic Detonator and Non-electric Detonator)

  • 이민수;김희도;이효;이준원
    • 화약ㆍ발파
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    • 제36권1호
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    • pp.34-38
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    • 2018
  • 철도터널 발파 시 근접한 보안물건에 대하여 발파진동 및 소음을 제어하고, 여굴방지를 목적으로 전자뇌관과 비전기뇌관을 조합한 발파시스템(Supex Blasting Method)을 적용하여 보성~임성리 ${\bigcirc}{\bigcirc}$ 철도건설공사에서 시험발파를 실시하였다. 그 결과 발파진동과 소음은 허용기준치 이내로 측정된 것으로 나타났다. 결과적으로 전자뇌관과 비전기뇌관을 조합한 터널발파 시스템은 공사비 절감, 발파진동 및 소음제어를 통한 민원방지 효과 및 여굴제어로 굴착예정선 주변의 암반손상권을 최소화하는 것으로 나타났다.

조화성분이 베어링 덮개 구조물의 공진에 미치는 영향 (Effect of Harmonic Components on the Resonance of Bearing Casing Structures in a Turbine Rotor System)

  • 송오섭;양경현
    • 한국소음진동공학회논문집
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    • 제17권9호
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    • pp.847-852
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    • 2007
  • Design aspects of a bearing casing system of a power plant are mainly focused on the strength and weight of itself to have a more stable system. Since the rotor speed often passes through the critical speed region when the operation begins, the relation between the rotating frequency of the rotor and natural frequency of the casing is very important for a prevention of resonance. However, harmonic components above the rotating frequency have often been overlooked the design for the resonance avoidance. In this paper, it is revealed that resonance vibration is generated when the natural frequency of a bearing casing is close to the one of harmonics of basic rotating frequency(1x), and as a consequence, sensing qualify of seismoprobes attached to the bearing casing structure can be seriously damaged. In order to reduce the resonance vibration, some stiffeners are added to the casing structures. Significant reduction in the magnitude of vibration corresponding to 2x harmonic of basic rotating frequency is observed from both FE analysis and experiment.

Vibration control for serviceability enhancement of offshore platforms against environmental loadings

  • Lin, Chih-Shiuan;Liu, Feifei;Zhang, Jigang;Wang, Jer-Fu;Lin, Chi-Chang
    • Smart Structures and Systems
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    • 제24권3호
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    • pp.403-414
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    • 2019
  • Offshore drilling has become a key process for obtaining oil. Offshore platforms have many applications, including oil exploration and production, navigation, ship loading and unloading, and bridge and causeway support. However, vibration problems caused by severe environmental loads, such as ice, wave, wind, and seismic loads, threaten the functionality of platform facilities and the comfort of workers. These concerns may result in piping failures, unsatisfactory equipment reliability, and safety concerns. Therefore, the vibration control of offshore platforms is essential for assuring structural safety, equipment functionality, and human comfort. In this study, an optimal multiple tuned mass damper (MTMD) system was proposed to mitigate the excessive vibration of a three-dimensional offshore platform under ice and earthquake loadings. The MTMD system was designed to control the first few dominant coupled modes. The optimal placement and system parameters of the MTMD are determined based on controlled modal properties. Numerical simulation results show that the proposed MTMD system can effectively reduce the displacement and acceleration responses of the offshore platform, thus improving safety and serviceability. Moreover, this study proposes an optimal design procedure for the MTMD system to determine the optimal location, moving direction, and system parameters of each unit of the tuned mass damper.

실대형 진동대 시험을 통한 복층터널 중간 슬래브 진동 감쇠 고무받침 내진성능 평가 (Seismic performance evaluation of middle-slab vibration damping rubber bearings in multi-layer tunnel through full-scale shaking table)

  • 장동인;박인준
    • 한국터널지하공간학회 논문집
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    • 제22권4호
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    • pp.337-346
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    • 2020
  • 도심권의 교통 집중과 정체로 인하여 지하 공간 활용성이 필요함에 따라 지하구조물에 대한 연구가 늘어나고 있다. 그 중 복층터널은 지하구조물을 대표 할 수 있다. 복층터널은 중간슬래브를 기준으로 상, 하부 차도를 구분하여 운영하고 있다. 중간슬래브는 차량의 하중 및 지진하중에 의하여 동적거동을 한다. 특히 지진의 의한 응답특성은 하중의 크기 및 작용 메커니즘이 매우 복잡하고 이론적 접근이 어려워 실험적 연구가 필요하다. 본 연구에서는 붕괴방지 내진 1등급의 복층터널 중간슬래브에 진동 감쇠 고무받침 유무에 따른 안정성 평가를 실시하는데 목적을 두고 있다. 본 진동대 실험에서는 상사율 1/4을 적용하였으며, 모형실험에서 지반과 모형의 일체거동을 묘사하기 위하여 라이닝과 진동대판을 고정시켰으며 이를 통해서 상대거동을 최소화 하였다. 실험대상은 가상복층터널 TBM 표준단면으로 정했다. 기반암에 가해지는 지반운동 수준을 0.154 g (붕괴방지 수준 내진 1등급 인공지진파)이며 이 가속도를 최대로 하는 지진파를 진동대 입력(기반암)에 작용시켜 모형에 증폭현상을 분석하고 진동 감쇠 고무받침 유무에 따른 중간슬래브의 내진 안정성에 대해 평가 분석 하였다. 그 결과, 지진 감쇠 고무받침 유무에 따라서 지진 가속도 감쇠 효과가 최대 40% 이상 있음을 알 수 있었다.

고속철도 파일슬래브공법 적용구간에서의 파전파해석 (Wave Propagation Analysis for Pile-Slab Section on High Speed Railway)

  • 이강명;이일화
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2011년도 정기총회 및 추계학술대회 논문집
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    • pp.3201-3207
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    • 2011
  • This paper reviewed wave propagation of train vibration based on the study of high speed railway soft ground section with pile slab construction. In a filed of railway, concrete track has been adapted in a railway construction. And in order to maintain its track, soil improving method was required to control residual settlement. Within many soft ground settlement prevention techniques, pile slab method has an effect of minimizing residual settlement of soft ground. This is possible using support embankment load method by construct pile slab or cap the upper soft ground. This paper reviewed vibration wave characteristic of soft ground section with pile slab using numerical analysis application through finite element analysis. Pile slab method is established between high stiffened soft ground and embankment this creates a possibility of vibration block or slab amplification. Thus analyzed of wave propagation was done with roadbed and structure property to confirm application performance of pile slab method of high speed railway structure.

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Long term monitoring of a cable stayed bridge using DuraMote

  • Torbol, Marco;Kim, Sehwan;Shinozuka, Masanobu
    • Smart Structures and Systems
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    • 제11권5호
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    • pp.453-476
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    • 2013
  • DuraMote is a remote sensing system developed for the "NIST TIP project: next generation SCADA for prevention and mitigation of water system infrastructure disaster". It is designed for supervisory control and data acquisition (SCADA) of ruptures in water pipes. Micro-electro mechanical (MEMS) accelerometers, which record the vibration of the pipe wall, are used detect the ruptures. However, the performance of Duramote cannot be verified directly on a water distribution system because it lacks an acceptable recordable level of ambient vibration. Instead, a long-span cable-stayed bridge is an ideal test-bed to validate the accuracy, the reliability, and the robustness of DuraMote because the bridge has an acceptable level of ambient vibration. The acceleration data recorded on the bridge were used to identify the modal properties of the structure and to verify the performance of DuraMote. During the test period, the bridge was subjected to heavy rain, wind, and a typhoon but the system demonstrates its robustness and durability.

종류별 이륜차 프레임에 대한 구조해석 (Structural Analysis for Bicycle Frame by Type)

  • 한문식;조재웅
    • 한국자동차공학회논문집
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    • 제20권6호
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    • pp.146-155
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    • 2012
  • This study aims to analyze durability by comparing displacement on vibration at driving bicycle frame models of 1, 2, 3 and 4. Among maximum equivalent stresses at 4 kinds of models, model 1 has highest value with 410.39 MPa and becomes 30 times than model 4 with lowest value. The natural frequency number at Model 4 increases more than the other models. Among four models, the number of frequency at model 1 becomes lowest at harmonic vibration with real loading condition. In cases of four kinds of models, the maximum stress is shown near the assembly of rear wheel and the maximum displacement is shown near saddle assembly at this harmonic condition. The structural result about this study can be effectively utilized on the design of bicycle frame by investigating durability and prevention against its damage.

타이로드의 구조적 내구성 해석 (Structural Durability Analysis of Tie Rod)

  • 한문식;조재웅
    • 한국기계가공학회지
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    • 제11권5호
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    • pp.68-75
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    • 2012
  • This study aims at the structural analysis of vibration and fatigue according to the tie rod configuration. The maximum displacement amplitude is happened at 156Hz by harmonic vibration analysis, this tie rod model can be broken as the weakest state. Among the cases of nonuniform fatigue loads, 'SAE bracket history' with the severest change of load becomes most unstable but 'Sine wave' becomes most stable. In case of 'Sine wave' with the average stress of 0MPa and the amplitude stress of 570MPa, the possibility of maximum damage becomes 70%. This stress state can be shown with 140 times more than the damage possibility of 'SAE bracket history' or 'SAE transmission'. The structural result of this study can be effectively utilized with the design on tie rod by investigating prevention and durability against its damage.