• Title/Summary/Keyword: 마찰 속도

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A Long-Term Friction Test of Bridge Bearings Considering Running Speed of Next Generation Train (차세대 고속철 주행속도를 대비한 교량받침의 장기마찰시험법)

  • Oh, Soon-Taek;Lee, Dong-Jun;Jun, Sung-Min;Jeong, Shin-Hyo
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.20 no.2
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    • pp.34-39
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    • 2016
  • Structural behaviour of PSC box bridge, on which KTX train runs, is analysed up to 500 km/h speed considering 12 stages track irregularity and interaction between bridge and vehicle. To evaluate wheel forces and rotations of vehicle, lateral wheel forces, derail factor and offload factor calculated on the track combining the bridge and 170 m normal track are compared with existing allowed limits. Maximum longitudinal displacement and accumulated sliding distance of the brige bearings for simply supported and 2 span continuous PSC bridges are presented by each running speeds. Long-term friction tests based on EN-1337-2 are conducted between PTFE and DP-mate plates. Finally, the long-term friction tests are proposed to consider the increasing speed of next generation high-speed train.

Change of Velocity Profile due to Introduction of Suspended-Sediment Particles in Turbulent Open-Channel Flow (부유사 입자에 의한 개수로 난류 유속 분포의 변화)

  • Yu, Kwon-Kyu;Yoon, Byung-Man
    • Proceedings of the Korea Water Resources Association Conference
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    • 2005.05b
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    • pp.357-361
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    • 2005
  • 부유사 입자를 난류 흐름 중에 투입하면 유속의 연직 분포를 다소간 변화시키는 것으로 알려져 왔다. 1946년에 Vanoni가 Karman 상수의 감소를 제안한 이후 이것은 상당한 논쟁을 불러 왔다. 본 연구에서는 입자 추적유속계(PTV)를 이용하여 개수로 중의 난류와 유사의 속도를 직접 측정하고, 이 자료를 분석하여 부유사 입자가 개수로 난류의 유속 분포에 어떻게 영향을 미치는 가를 구명하였다. 또한 기존의 연구의 측정 자료들과 그들의 주장을 재검토하였다. 분석 결과 부유사 입자는 Karman 상수를 다소 감소시키는 것으로 나타났다. 이 감소 현상은 물과 유사의 상대적인 속도 분포로 설명할 수 있다. 다만 Karman상수의 감소 정도는 종래의 연구자들이 주장한 것보다 상당히 작다. 이처럼 차이가 나는 이유는 종래의 연구들이 Karman 상수의 산정 방법이나 이용한 자료의 선택에서 문제가 있었기 때문이다. 또한, 난류 중에 투입된 부유사는 마찰 속도에는 그다지 영향을 미치지 않는 것으로 나타났다.

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Velocity and Friction Force Distribution in Rotary CMP Equipment (회전형 CMP장비의 속도 및 마찰력 분포 해석)

  • Kim, Hyeong Jae;Jeong, Hae Do;Lee, Eung Suk;Sin, Yeong Jae
    • Journal of the Korean Society for Precision Engineering
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    • v.20 no.5
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    • pp.39-39
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    • 2003
  • As the design rules in semiconductor manufacturing process become more and more stringent, the higher degree of planarization of device surface is required for a following lithography process. Also, it is great challenge for chemical mechanical polishing to achieve global planarization of 12” wafer or beyond. To meet such requirements, it is essential to understand the CMP equipment and process itself. In this paper, authors suggest the velocity distribution on the wafer, direction of friction force and the uniformity of velocity distribution of conventional rotary CMP equipment in an analytical method for an intuitive understanding of variation of kinematic variables. To this end, a novel dimensionless variable defined as “kinematic number” is derived. Also, it is shown that the kinematic number could consistently express the velocity distribution and other kinematic characteristics of rotary CMP equipment.

Velocity and Friction Force Distribution in Rotary CMP Equipment (회전형 CMP장비의 속도 및 마찰력 분포 해석)

  • 김형재;정해도;이응숙;신영재
    • Journal of the Korean Society for Precision Engineering
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    • v.20 no.5
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    • pp.29-38
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    • 2003
  • As the design rules in semiconductor manufacturing process become more and more stringent, the higher degree of planarization of device surface is required for a following lithography process. Also, it is great challenge for chemical mechanical polishing to achieve global planarization of 12” wafer or beyond. To meet such requirements, it is essential to understand the CMP equipment and process itself. In this paper, authors suggest the velocity distribution on the wafer, direction of friction force and the uniformity of velocity distribution of conventional rotary CMP equipment in an analytical method for an intuitive understanding of variation of kinematic variables. To this end, a novel dimensionless variable defined as “kinematic number” is derived. Also, it is shown that the kinematic number could consistently express the velocity distribution and other kinematic characteristics of rotary CMP equipment.

Friction and It's Nonlinear Compensation for Rotor Position Control (회전축계 위치제어에 대한 마찰과 비선형 보상)

  • 장용훈;최연선
    • Proceedings of the Korean Society for Noise and Vibration Engineering Conference
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    • 1990.10a
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    • pp.157-162
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    • 1990
  • 기계의 정밀도 향상을 위하여는 기계에 대한 보다 정확한 해석을 요구한다. 그러나 실제 기계 시스템은 마찰, Backlash, Saturation등과 같은 비서형 특 성을 가지고 있어 시스템의 해석 및 제어가 어렵게 된다. 특히, 축, 링크, 기 어, 풀리, 베어링등의 기계요소에서는 마찰로 인해 정밀도가 크게 덜어지고 있어, 마찰에 의한 동특성 및 제어는 많은 연구자들에 의해 관심의 대상이 되어 왔다. 마찰력을 고려한 기계시스템의 운동은 정지상태 근처에서 마찰력 의 변화가 심한 비선형 동특성을 보이고 있어 그 해석에 어려움을 겪고 있 다. 실제 마찰이 저속에서 고급 비선형임에도 불구하고 가장 널리 사용되는 형태의 모델로서 쿨통 마찰을 고려한 운동방정식 조차 비선형성으로 인하여 해석에 어려움이 따르고 있다. 마찰은 오랜동안 연구되어 오면서 Fig.1, Fig2 와 같이 등가선형점성 감쇠, 쿨통마찰, 정적마찰로 모델화되거나 이들의 조 합으로 나타내었다[1-5]. 마찰력은 시간영역에서도 연구되어 Walrath[7]는 Fig.3-a의 속도가 역전되는 지점에서 마찰토오크가 .+-.Tf를 공유하는 문제 를 고려하기 위해, Fig.3-b와 같이 동적마찰모델을 사용하였다. 최근의 연구 로서 Armstrong[7]은 마찰의 위치의존성을 고려한 정확한 마찰모델을 설정 하여 개루프제어에 적용, 좋은 제어특성을 확인하였고, Canudas[8]는 저속영 역에서 overcompensation시 limit cycle과 gain의 관계를 해석하였다.

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내부마찰 측정장치의 소개

  • 김재환
    • 전기의세계
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    • v.32 no.3
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    • pp.142-149
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    • 1983
  • 지금까지 알려진 내부마찰측정방법으로는 자유감쇄법(free decay method), 강제진동법(forced vibration method), 비공진강제진동법(non-resonance forced vibration method) 및 초음파법(ultrasoni method) 등이 있다. 이상의 모든 내부마찰실험방법에 관한 실험장치는 그 기계의 동작특성에 따라 실험주파수가 극히 한정되어 있어 연속적인 변화를 시킬 수 없으므로 완화효과를 연속적으로 추적하기 위하여 온도를 변화시키는 방법이 널리 사용되고 있다. 이상에서 소개한 방법들중 본인들이 국산제작실험에 성공한 바 있는 장치는 자유감쇄법에 속하는 염회진자장치(torsion pendulum device) 이므로 이 장치를 중심으로 내부마찰측정원리와 그의 장치에 관하여 소개하고저 한다.

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Measurement of Journal Bearing Friction Loss of Turbocharger in a Passenger Vehicle (승용차용 터보과급기의 저널 베어링 마찰 손실 측정)

  • Chung, in-Eun;Jeon, Se-Hun
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.7
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    • pp.9-15
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    • 2018
  • The turbochargers, which are used widely in diesel and gasoline engines, are an effective device to reduce fuel consumption and emissions. On the other hand, turbo-lag is one of the main problems of a turbocharger. Bearing friction losses is a major cause of turbo lag and is particularly intense in the lower speed range of the engine. Current turbochargers are mostly equipped with floating bearings: two journal bearings and one thrust bearing. This study focused on the bearing friction at the lower speed range and the experimental equipment was established with a drive-motor, load-cell, magnetic coupling, and oil control system. Finally, the friction losses of turbochargers were measured considering the influence of the rotating speed from 30,000rpm to 90,000rpm, oil temperature from $50^{\circ}C$ to $100^{\circ}C$, and oil supply pressure of 3bar and 4bar. The friction power losses were increased exponentially to 1.6 when the turbocharger speed was increased. Friction torques decreased with increasing oil temperature and increased with increasing oil pressure. Therefore, the oil temperature and pressure must be maintained at appropriate levels.

Study on Friction Energy of Rubber Block Under Vertical Load and Horizontal Velocity (고무블록의 수직 하중 및 수평 속도에 따른 마찰에너지 연구)

  • Kim, Jin Kyu;Yoo, Sai Rom;Lee, Il Yong;Kim, Doo Man
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.37 no.7
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    • pp.905-912
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    • 2013
  • Rubber is one of the most commonly used materials in various fields because of its unique viscoelastic properties. Friction occurs when a tire constantly makes contact with the ground. As a result, friction causes wear. The frictional energy caused by friction is a primary factor in the wear mechanism. The frictional energy is affected by various conditions (temperature, roughness of ground, shape of rubber, load, and materials). In this study, the analysis was preceded by considering the vertical load and the horizontal velocity to the rubber using ABAQUS/explicit. The contact pressure, and friction energy are derived using the shear force and slip distance. The actual behavior of the rubber test data were compared with the analysis results.

The Estimation of Friction Velocity in an Open Channel by the Entropy Concept (엔트로피 개념을 활용한 개수로 마찰속도 산정)

  • Choo, Tai Ho;Son, Hee Sam;Yun, Gwan Seon;Noh, Hyun Seok;Ko, Hyun Soo
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.16 no.2
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    • pp.1533-1540
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    • 2015
  • In order to demonstrate the flow properties of the river bed and the design of hydraulic structures, the estimation of friction velocity is essentially required. However, existing friction velocity equations such as Log method and Power law have trouble to estimate the friction velocity because a boundary condition and various hydraulic properties are changed constantly in near the wall. In the present study, therefore, a new friction velocity equation that can minimize the parameters and reduce an error was suggested. To verify accuracy and reliability for the proposed equation, Clauser method, $\sqrt{gRI}$ method, reynolds stress method by Dr. Song were compared with the proposed method by estimated entropy parameter M for each channel. Consequently, the results show that uniform flow condition as well as non-uniform flow condition with highly accuracy nearly matched in case of accelerating non-uniform condition of $R^2=0.9621$, Decelerating Non Uniform condition of $R^2=0.9274$, Uniform condition of $R^2=0.8865$.