• Title/Summary/Keyword: 운동 마찰계수

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마찰계수에 관하여

  • 신효철
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1986.11a
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    • pp.29-41
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    • 1986
  • 마찰계수는 서로 접촉하여 운동하는 두 물체간의 특성으로 간주되며 일반적으로 상대속도나 작용하중에 별로 영향을 받지 않는 것으로 알려져 있다. 화학적으로나 물리적으로 오염되지 않은 깨끗한 금속간의 마찰실험의 경우, 이 실험이 불활성 가스나 진공내에서 행해질 경우 상당히 큰 마찰저항을 경험하게 되나, 공기중에서의 실험에서는 작은 마찰저항이 기록되어 산화막이나 다른 오염물에 의해 형성된 막이 마찰저항을 감소시킨다고 보고 있다.

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저마찰 표면 텍스쳐링 기술의 연구개발 동향

  • Jo, Min-Haeng
    • Proceedings of the Korean Vacuum Society Conference
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    • 2012.08a
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    • pp.124-124
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    • 2012
  • 접촉운동기구 계면에서의 마찰력은 요소 혹은 시스템의 효율과 직접적으로 연관이 있으며 이로 해 마찰계수를 낮추기 위한 저마찰 표면처리는 Tribology 연구에 있어 기초적이면서도 동시에 매우 중요한 부분으로 오래 전부터 인식되어오고 있다. 또한 대부분의 습동기구 표면이 경화 처리되어 마모에 강한 특성을 보이나 이는 마찰계수가 일정 이하로 낮게 유지될 경우에만 해당되는 것으로 마찰계수의 조절은 매우 중요하다고 할 수 있다. 과거 자동차 엔진의 실린더 라이너 표면에 가공된 사선 형태의 패턴들이 저마찰 기능을 하는 것은 이미 잘 알려진 사실이며 최근에는 이러한 패턴 혹은 형상을 인위적으로 조절하여 저마찰 기능과 성능을 더욱 높이고자 하는 연구가 활발히 진행되고 있다. 이와 같은 미세한 패턴은 다양한 가공기술의 발전에 의해 가능하게 되었으며 그 결과 마찰계수는 패턴의 형상과 분포 등과 매우 밀접한 관계가 있는 것으로 보고되어 있다. 본 연구에서는 최근 활발한 연구가 진행되고 있는 표면 텍스쳐링 분야에 대한 전반적인 연구 동향과 미래의 가능성에 대해 살펴보고자 한다.

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Friction-dependent Slip Behavior of Imgok Fault under the Present-day Stress Field (현생 응력하에서 단층 마찰계수에 따른 임곡단층의 거동 가능성 해석)

  • Na, Hyun-Woo;Chang, Chandong;Chang, Chun-Joong
    • The Journal of Engineering Geology
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    • v.23 no.3
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    • pp.217-225
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    • 2013
  • We carried out geometrical, kinematic, and geomechanical analyses on a lineament (the Imgok fault) near Gangneung, observed in ASTER images and aerial photographs, and field surveys. Earthquake focal mechanism solutions, used to estimate the present-day stress state, revealed that the direction of maximum compression is approximately N$70^{\circ}$E and that the stress condition is in favor of either strike-slip or reverse movement on the fault. The strike of the fault is not ideal for slip under the present-day stress field and thus the fault has a low slip tendency. However, the fault may be able to slip if the frictional coefficient (${\mu}$), representing the resistance of the fault to slip, is sufficiently low (e.g., ${\mu}$ < 0.25).

Rockfall Analysis on slopes using Discrete Element Method (개별요소법을 이용한 사면의 낙석운동해석)

  • 김대상;엄기영;신민호
    • Proceedings of the KSR Conference
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    • 2002.10a
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    • pp.648-653
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    • 2002
  • 2차원 개별요소법을 이용하여 철도사면에 있어서 낙석이 발생되었을 경우 낙석에 의한 운동에너지, 위치에너지 및 마찰에 의한 에너지변화를 사면과 낙석사이의 마찰계수를 매개변수로 하여 분석하였다. 낙석의 낙하양태(미끄러짐과 회전)에 따라 변화하는 1차지면 충돌시간, 2차지면 충돌시간, 2차충돌까지의 비산거리, 1차지면 충돌 후 도약높이, 사면 운동 동안의 낙석 회전횟수 등을 구하였다.

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The Mechanical Sensitivity at Interfaces between Bone and Interbody Cage of Lumbar Spine Segments (Lumbar spine 의 뼈와 Interbody cage의 접촉면에서 기계공학적 민감성 고찰)

  • Kim Y.
    • Journal of Biomedical Engineering Research
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    • v.21 no.3 s.61
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    • pp.295-301
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    • 2000
  • It is known that among many factors, relative micromotion at bone/implant interfaces can hinder bone ingrowth into surface pores of an implant. Loading conditions, mechanical properties of spinal materials, friction coefficients at the interfaces and geometry of spinal segments would affect the relative micromotion and spinal stability. A finite clement model of the human lumbar spine segments (L4-L5) was constructed to investigate the mechanical sensitivity at the interfaces between bone and cage. Relative micromotion. Posterior axial displacement. bone stress, cage stress and friction force were predicted in changes of friction coefficients, loading conditions. bone density and age-related material/geometric properties of the spinal segments. Relative micromotion (slip distance in a static loading means relative micromotion in routine activity) at the interfaces increased significantly as the mechanical properties of cancellous bone, annulus fibers or/and ligaments decrease or/and as the friction coefficient at the interfaces decreases. The contact normal force at the interfaces decreased as cancellous bone density decreases or/and as the friction coefficient increases A significant increase of slip distance at anterior annulus occurred with an addition of torsion to compressive preload. Relative micromotion decreased with an increase of disc area. In conclusion. relative micromotion, stress response. Posterior axial displacement and contact normal force are sensitive to the friction coefficient of the interfaces, bone density, loading conditions and age-related geometric/material changes.

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Bottom Friction of Surface Waves and Current Flow (천해파와 해류에 의한 해저면 마찰력)

  • 유동훈;김지웅
    • Journal of Korean Society of Coastal and Ocean Engineers
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    • v.12 no.3
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    • pp.130-138
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    • 2000
  • The friction factor equation of open channel flow is developed by using Prandtl's mixing length theory and considering the flow characteristics of smooth or rough turbulent flow. BYO model considers vertical velocity profile for the (:omputation of bottom friction of surface waves and current flow. The model computes the mean bottom friction of combined wave-current flow by the vectorial summation of wave velocity and current velocity at Bijker point. The near bottom flow is discriminated by three flow regimes; smooth, transitional and rough turbulent flow. The model, BYO, has been further refined considering the combination of smooth turbulent flow and rough turbulent flow.

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A Study on the prediction of braking time for rotor brake system considering the friction coefficient variation with temperature (마찰계수의 변화를 고려한 로터 브레이크 시스템의 제동시간 예측)

  • Choi, Jang-Hun;Oh, Min-Hwan;Cho, Jin-Yeon
    • Journal of the Korean Society for Aeronautical & Space Sciences
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    • v.37 no.7
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    • pp.653-660
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    • 2009
  • A helicopter rotor brake system stops or reduces the speed of the rotor by transforming the kinetic energy into the heat energy. The frictionally generated heat has a considerable effect on the frictional property of material itself and causes the change of the friction coefficient which may affect the breaking time significantly. In this paper, to take into account the effect of change of friction coefficient according to temperature on braking time, thermo-mechanically coupled analysis is carried out by commercial software ABAQUS. Further, simple theoretical equation is derived considering thermo-mechanical behaviors. The predicted braking times both from theoretical and numerical methods are compared and validity of proposed theoretical equation is investigated.

Study on Correlation of Outsole Pattern of Sports Shoes and Frictional Coefficient (운동화 바닥창 무늬형태와 마찰계수의 상관관계 연구)

  • Lee, Jong-Nyun
    • Korean Journal of Applied Biomechanics
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    • v.18 no.3
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    • pp.1-10
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    • 2008
  • One of the major factors affecting maneuverability of an athlete is frictional force caused at an outsole of his shoe. The magnitude of the frictional force is closely related to pattern and hardness of outsole and roughness of ground or floor. This study then focuses on the effect of outsole pattern of sports shoes on the frictional force. After surveying outsole patterns of sports shoes in markets, we select 4 types of outsole patterns, such as straight, W, O, and wave as primary outsole patterns of sports shoe and we also select depth, pitch and slope as design parameters of each pattern. Corresponding to those patterns and design parameters, various outsole specimen are prepared for frictional experiments. After performing frictional tests with those specimen, coefficients of friction(COF) are collected and analyzed with a statistical tool to draw useful conclusion.

Friction Characteristics of DLC and WC/C (DLC와 WC/C의 마찰특성)

  • Kim, Dong-Wook;Kim, Kyung-Woong
    • Tribology and Lubricants
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    • v.27 no.6
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    • pp.308-313
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    • 2011
  • In this study, friction tests were performed in order to investigate the effect of sliding velocity and normal load on the friction characteristics of DLC (a-C:H) and WC/C (a-C:H:W) using a ball-on-disk type friction tester. DLC and WC/C were deposited on AISI 52100 steel balls. Friction tests against carburized SCM 415 Cr-Mo steel disks were carried out under various sliding velocity (0.1, 0.78, 1.56, 3.13, 6.25, 12.5, 25, 50 and 100 mm/s) and normal load (2.4, 4.8 and 9.6 N) conditions while the relative humidity was 20~40 % R.H. and air temperature was $16{\sim}24^{\circ}C$. As results, kinetic friction coefficients of DLC and WC/C were obtained under each test condition. The results show that the kinetic friction coefficients of DLC and WC/C generally increase with the increase in sliding velocity. And, under the same sliding velocity condition, the kinetic friction coefficients are almost constant regardless of normal load. In addition, the kinetic friction coefficients of DLC are lower than those of WC/C under the same test conditions.

A study on the sliding rigid indentor over the viscoelastic layer supported by the elastic half-space (탄성체로 기대된 점잔성체층에서의 강성체의 운동해석)

  • Nam, J. W.
    • Journal of the korean Society of Automotive Engineers
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    • v.5 no.3
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    • pp.56-63
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    • 1983
  • 강성체로된 견인물체가 탄성무한경면으로 지지된 점탄성층 위를 미끄러져 갈 때 접촉구간에서의 압력분포와 마찰 특성을 고찰하였다. 즉, 접촉구간에서의 강성체의 모양과 압력분포에 관한 적분 방정식을 구하고, 점탄성층의 두께가 접촉구간에 비하여 충분히 두꺼울 때 압력분포와 마찰계 수의 근사해를 구하였다. 압력분포의 모양은 점탄성층의 물성을 표시하는 지수값, 즉 .alpha.<1/2, .alpha.=1/2, .alpha.>1/2에 따라서 크게 다르다. 한편, 수치해석에 의하면 마찰 계수에 대한 근 사해는 강성체의 미끄럼 속도, 점탄성 층의 두께, 탄성체의 영율 (E$_{o}$ )과 점탄성층의 시효 성탄성계수 (E$_{v}$ )의 차, 즉 E$_{o}$ /E$_{v}$ 에 따라 변화함을 알 수 있다. 즉, 탄성체가 점탄성층에 비하여 딱딱하면 할수록, 또 강성체 속도가 느리면 느릴수록 마찰계수는 작아진다. 그리고 불성의 지수(.alpha.)가 커지면 커질수록 근사해의 수렵 속도는 느려지게 되고 지 수(.alpha.)가 1에 가까워지면 점탄성층의 탄성효과는 점성효과에 비하여 거의 무시할 수 있으며 근사해는 의미가 없어지게 된다.

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