• 제목/요약/키워드: Slip surface

검색결과 485건 처리시간 0.026초

압입축에 발생하는 프레팅 마모가 피로수명에 미치는 영향 (The Effect of Fretting Wear on Fatigue Life of Press-fitted Shaft)

  • 이동형;권석진;최재붕;김영진
    • 대한기계학회논문집A
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    • 제31권11호
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    • pp.1083-1092
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    • 2007
  • The objective of the present paper is to evaluate the effect of the evolution of contact surface profile caused by fretting wear on fatigue life of press-fitted shaft by means of an analytical method based on experimental data. A finite element analysis was performed to analyze the stress states of press-fitted shaft, considering the worn contact profiles of shaft. The fatigue lives of the press-fitted shaft reflecting the evolution of contact stress induced by fretting wear were evaluated by stress-life approach using fatigue notch factor. It is found that the stress concentration of contact edge in press-fitted shaft decreases rapidly at the initial stage of total fatigue life, and its location shifts from the contact edge to the inside with increasing number of fatigue cycles. Thus the change of crack nucleation position in press-fitted shaft is mainly caused by the stress change of contact edge due to the evolution of contact surface profile by fretting wear. Furthermore, the estimated fatigue lives by stress-life approach at the end of running-in period of the fretting wear process corresponded well to the experimental results. It is thus suggested that the effect of fretting wear on fatigue life in press fits is strongly related to the evolution of surface profile at the initial stage of total fatigue life.

규소 결정 표면의 구조 결함의 형성에 미치는 기계적 손상의 영향 (The influence of mechanical damage on the formation of the structural defects on the silicon surface during oxidation)

  • 김대일;김종범;김영관
    • 한국결정성장학회지
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    • 제15권2호
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    • pp.45-50
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    • 2005
  • 규소 표면의 기계적 손상은 산화 공정 중에 규소 표면에 여러 가지 형태의 결함들을 발생 시킨다. 규소 표면에 손상을 주는 마모 입자가 커짐에 따라 OISF보다는 etch pit의 형상이 동굴형인 선 결함(line defects)들이 많이 발생된다. 이들 결함들은 실리콘 결정을 성장시키는 단계에서 형성되는 결함들과는 상호 관련이 없다. 방향성 응고법으로 성장된 규소 결정속에 존재하는 결함들은 주로 twin과 stacking fault들이며 응고과정에서 발생이 예상되는 응력에 의한 전위는 거의 발견되지 않았다. 따라서 Czochralski 법으로 성장된 단 결정 규소뿐 아니라 방향성 응고법으로 성장된 다 결정 규소 기판도 표면의 결함들을 이용하여 extrinsic gettering을 통한 규소 결정 내부의 불순물 제거의 가능성이 높다.

Stability assessment of soil slopes in three dimensions: The effect of the width of failure and of tension crack

  • Pantelidis, Lysandros;Gravanis, Elias;Gkotsis, Konstantinos-Paraskevas
    • Geomechanics and Engineering
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    • 제22권4호
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    • pp.319-328
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    • 2020
  • This paper investigates the effect of the width of failure and tension crack (TC) on the stability of cohesive-frictional soil slopes in three dimensions. Working analytically, the slip surface and the tension crack are considered to have spheroid and cylindrical shape respectively, although the case of tension crack having planar, vertical surface is also discussed; the latter was found to return higher safety factor values. Because at the initiation of a purely rotational slide along a spheroid surface no shear forces develop inside the failure mass, the rigid body concept is conveniently used; in this respect, the validity of the rigid body concept is discussed, whilst it is supported by comparison examples. Stability tables are given for fully drained and fully saturated slopes without TC, with non-filled TC as well as with fully-filled TC. Among the main findings is that, the width of failure corresponding to the minimum safety factor value is not always infinite, but it is affected by the triggering factor for failure (e.g., water acting as pore pressures and/or as hydrostatic force in the TC). More specifically, it was found that, when a slope is near its limit equilibrium and under the influence of a triggering factor, the minimum safety factor value corresponds to a near spherical failure mechanism, even if the triggering factor (e.g., pore-water pressures) acts uniformly along the third dimension. Moreover, it was found that, the effect of tension crack is much greater when the stability of slopes is studied in three dimensions; indeed, safety factor values comparable to the 2D case are obtained.

예방적 유지보수를 위한 아스팔트 표면강화공법의 실내 성능 평가 (A Study on Performance Evaluation of New Asphalt Surface Reinforcement Method (ASRM) for Preventive Maintenance)

  • 김경남;조신행;김낙석;이두성
    • 대한토목학회논문집
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    • 제38권2호
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    • pp.311-317
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    • 2018
  • 아스팔트 콘크리트 포장의 예방적 유지보수방법 중 하나인 표면강화공법의 실내 성능 평가를 수행하였다. 표면강화공법과 아스팔트 콘크리트 포장과의 부착력 평가 결과 미끄럼방지 포장 및 교면방수재료 기준을 상회하는 부착성능을 나타내었다. 윤하중재하실험과 박리저항성, UV저항성 실험을 통해 교통 및 환경하중에 대해 충분한 내구성을 확보할 수 있는 것을 확인하였다. 표면강화공법은 내투수성과 내화학성이 뛰어나 포장내로 수분 침투를 막고 화학물질로부터 포장을 보호할 수 있으며, 노화된 아스팔트 바인더의 재생효과가 있어 재생 아스팔트 콘크리트에 적용하였을 때 재래식 가열 아스팔트 콘크리트 혼합물에 비하여 약 5%의 터프니스를 증가시켰다. 아스팔트 표면강화공법은 아스팔트 콘크리트 포장의 내구성을 향상시킬 수 있는 특성을 갖는 것으로 나타났다.

Finite element modeling of corroded RC beams using cohesive surface bonding approach

  • Al-Osta, Mohammed A.;Al-Sakkaf, Hamdi A.;Sharif, Alfarabi M.;Ahmad, Shamsad;Baluch, Mohammad H.
    • Computers and Concrete
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    • 제22권2호
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    • pp.167-182
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    • 2018
  • The modeling of loss of bond between reinforcing bars (rebars) and concrete due to corrosion is useful in studying the behavior and prediction of residual load bearing capacity of corroded reinforced concrete (RC) members. In the present work, first the possibility of using different methods to simulate the rebars-concrete bonding, which is used in three-dimensional (3D) finite element (FE) modeling of corroded RC beams, was explored. The cohesive surface interaction method was found to be most suitable for simulating the bond between rebars and concrete. Secondly, using the cohesive surface interaction approach, the 3D FE modeling of the behavior of non-corroded and corroded RC beams was carried out in an ABAQUS environment. Experimental data, reported in literature, were used to validate the models. Then using the developed models, a parametric study was conducted to examine the effects of some parameters, such as degree and location of the corrosion, on the behavior and residual capacity of the corroded beams. The results obtained from the parametric analysis using the developed model showed that corrosion in top compression rebars has very small effect on the flexural behaviors of beams with small flexural reinforcement ratio that is less than the maximum ratio specified in ACI-318-14 (singly RC beam). In addition, the reduction of steel yield strength in tension reinforcement due to corrosion is the main source of reducing the load bearing capacity of corroded RC beams. The most critical corrosion-induced damage is the complete loss of bond between rebars and the concrete as it causes sudden failure and the beam acts as un-reinforced beam.

자동차 헤드램프내 체결부품사이의 마찰계수 실험장치 개발 (Development of a Measuring Device for Coefficient of Friction between Connection Parts in Vehicle Head Lamps)

  • 백홍;문지승;박상신;박종명
    • Tribology and Lubricants
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    • 제35권1호
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    • pp.59-64
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    • 2019
  • When slipping occurs between two materials, the coefficients of friction must be considered because these values determine the overall efficiency of the machine or slip characteristics. Therefore, it is important to find the coefficient of friction between two materials. This paper focuses on obtaining the coefficient of friction between an aiming bolt and a retainer located in the headlamps of a vehicle. This bolt supports the headlamp, and if the bolt is loosened by external vibration, the angle of the light will change and block the vision of pedestrians or other drivers. In order to study these situations, the coefficient of friction between aiming bolts and retainers needs to be measured. In addition, the coefficient of friction of materials used in the headlamp should be obtained. To determine these two factors, a new device is designed for two cases: surface-surface contact and surface-line contact. To increase reliability of the results, the device is designed using an air-bearing stage which uses compressed air as lubricant to eliminate the friction of the stage itself. Experiments were carried out by applying various vertical forces, and the results show that the coefficient of friction can be measured consistently. The procedure for designing the device and the results are discussed.

Pilot Plant를 이용한 600 MPa급 내진용 철근들의 제조, 미세조직과 기계적 특성 비교 (Microstructure and Mechanical Properties of 600 MPa-Grade Seismic Resistant Reinforced Steel Bars Fabricated by a Pilot Plant)

  • 홍태운;황병철
    • 한국재료학회지
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    • 제29권6호
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    • pp.349-355
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    • 2019
  • This study deals with the microstructure and tensile properties of 600 MPa-grade seismic reinforced steel bars fabricated by a pilot plant. The steel bar specimens are composed of a fully ferrite-pearlite structure because they were air-cooled after hot-rolling. The volume fraction and interlamellar spacing of the pearlite and the ferrite grain size decrease from the center region to the surface region because the surface region is more rapidly cooled than the center region. The A steel bar specimenwith a relatively high carbon content generally has a higher pearlite volume fraction and interlamellar spacing of pearlite and a finer ferrite grain size because increasing the carbon content promotes the formation of pearlite. As a result, the A steel bar specimen has a higher hardness than the B steel bar in all the regions. The hardness shows a tendency to decrease from the center region to the surface region due to the decreased pearlite volume fraction. On the other hand, the tensile-to-yield strength ratio and the tensile strength of the A steel bar specimen are higher than those of the B steel bar with a relatively low carbon content because a higher pearlite volume fraction enhances work hardening. In addition, the B steel bar specimen has higher uniform and total elongations because a lower pearlite volume fraction facilitates plastic deformation caused by dislocation slip.

Zirconia ceramic의 표면처리 방법이 레진시멘트의 결합강도에 미치는 영향 (EFFECT OF SURFACE TREATMENTS OF ZIRCONIA CERAMIC ON THE BOND STRENGTH OF RESIN CEMENTS)

  • 김창훈;전영찬;정창모;임장섭
    • 대한치과보철학회지
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    • 제42권4호
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    • pp.386-396
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    • 2004
  • Statement of problem: It is not clear how to make a stable bonding between zirconia ceramic and resin cement. And the study about surface treatment of zirconia ceramic or bonding resin cement are not enough. Purpose: To measure and compare the shear bond strength of some resin cements on zirconia ceramic after different surface treatments. Material and method: 48 ceramic discs were made of 3 ceramic materials, zirconia ceramics (Zi-Ceram), heat-pressed ceramics (IPS Empress 2) and slip cast alumina ceramics (In-Ceram). According to the surface treatments of ceramic specimens and resin cements, specimens were classified into 6 groups and each group was composed of 8 specimens. For the surface treatment of Zi-Ceram group (test group), sandblasting and diamond bur preparation were applied and Superbond C&B and Panavia F were bonded respectively. For IPS Empress 2 group (control group), Variolink II was bonded after sandblasting, acid etching, silanization and for In-Ceram ALUMINA group (control group), Panavia F was bonded after sandblasting. After storing specimens in distilled water for 24 hours, the shear bond strength was measured by the universal testing machine. Results and conclusion: 1. Zi-Ceram group with Superbond C&B cement showed higher bond strength than with Panavia F cement regardless to the surface treatments (p<0.05). 2. In Zi-Ceram group with Superbond C&B cement, sandblasting treatment group (12.1MPa) showed higher bond strength than diamond bur treatment group (7.7MPa) (p<0.05). In Zi-Ceram group with Panavia F cement, there were no significant differences in the bond strength according to the surface treatments (p>0.05). 3. Zi-Ceram group with sandblasting and Superbond C&B cement (12.1MPa) showed the highest bond strength. The bond strength of this group was not significantly different from In-Ceram ALUMINA group (10.4MPa) (p>0.05) and lower than IPS Empress 2 group (15.9MPa) (p<0.05).

강우에 의한 사면붕괴에 관한 2차원 수치모의 (Two-dimensional Numerical Simulation of Rainfall-induced Slope Failure)

  • 램 크리쉬나 레그미;정관수;이기하
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2012년도 학술발표회
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    • pp.34-34
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    • 2012
  • Heavy storms rainfall has caused many landslides and slope failures especially in the mountainous area of the world. Landslides and slope failures are common geologic hazards and posed serious threats and globally cause billions in monetary losses and thousands of casualies each year so that studies on slope stability and its failure mechanism under rainfall are being increasing attention of these days. Rainfall-induced slope failures are generally caused by the rise in ground water level, and increase in pore water pressures and seepage forces during periods of intense rainfall. The effective stress in the soil will be decreased due to the increased pore pressure, which thus reduces the soil shear strength, eventually resulting in slope failure. During the rainfall, a wetting front goes downward into the slope, resulting in a gradual increase of the water content and a decrease of the negative pore-water pressure. This negative pore-water pressure is referred to as matric suction when referenced to the pore air pressure that contributes to the stability of unsaturated soil slopes. Therefore, the importance is the study of saturated unsaturated soil behaviors in evaluation of slope stability under heavy rainfall condition. In an actual field, a series of failures may occur in a slope due to a rainfall event. So, this study attempts to develop a numerical model to investigate this failure mechanism. A two-dimensional seepage flow model coupled with a one-dimensional surface flow and erosion/deposition model is used for seepage analysis. It is necessary to identify either there is surface runoff produced or not in a soil slope during a rainfall event, while analyzing the seepage and stability of such slopes. Runoff produced by rainfall may result erosion/deposition process on the surface of the slope. The depth of runoff has vital role in the seepage process within the soil domain so that surface flow and erosion/deposition model computes the surface water head of the runoff produced by the rainfall, and erosion/deposition on the surface of the model slope. Pore water pressure and moisture content data obtained by the seepage flow model are then used to analyze the stability of the slope. Spencer method of slope stability analysis is incorporated into dynamic programming to locate the critical slip surface of a general slope.

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영덕단층 북부의 기하와 운동학적 특성 (Geometry and Kinematics of the Northern Part of Yeongdeok Fault)

  • 김광연;하상민;이성준;임보성;김민철;손문
    • 광물과 암석
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    • 제36권1호
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    • pp.55-72
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    • 2023
  • 이번 연구는 영덕단층 일원을 대상으로 실시된 상세 지표지질조사에서 수집된 다양한 구조요소들의 기하와 운동학적 자료 그리고 단층암의 대자율이방성 분석 자료를 바탕으로 영덕단층의 내부구조 그리고 기하와 운동학적 특성을 규명하고자 하였다. 영덕단층은 영덕군 강구면 오포리에서 울진군 매화면 길곡리와 기성면 방율리까지 연장되며, 4.6-5.0 km (평균 4.77 km)의 우수향 수평변위로 고원생대부터 중생대에 이르는 다양한 암종을 절단하거나 암상경계를 이룬다. 영덕단층은 4개의 기하학적 분절로 구분되며, 대부분 노두에서 남-북 내지 북북서 주향에 54° 이상 고각으로 동쪽으로 경사지고 있으나 북쪽으로 갈수록 서쪽으로 54°-82° 경사지는 노두가 증가한다. 영덕단층은 모암의 암종에 따라 0.3-15 m 범위의 다양한 폭을 가진 단층핵과 단층대 내부구조의 차이를 보이는데, 이는 모암의 연성도, 구성광물, 입자크기, 이방성과 같은 물성 차이에 기인하는 것으로 해석된다. 이번 연구에서 새롭게 도출한 고응력장 및 대자율이방성 분석 결과와 기존 연구 결과를 종합하면, 영덕단층은 (1) 백악기말~신생대초에 북서-남동 최대수평응력(σHmax)과 북동-남서 최소수평응력(σHmin) 하에서 좌수향 주향이동운동을 겪은 이후, (2) 신생대 고진기에 북동-남서 최대수평응력과 북서-남동 최소수평응력 하에서 우수향 주향이동운동을 겪었음을 지시한다. 이중 고진기에 발생한 우수향 주향이동운동에 의한 변형이 가장 우세하였으며 이후 지각변형은 미미하였던 것으로 해석된다.