• 제목/요약/키워드: interface friction

검색결과 498건 처리시간 0.024초

A technique for the identification of friction at tool/chip interface during machining

  • Arrazola, P.;Meslin, F.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.319-320
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    • 2002
  • Numerical simulation of chip formation during high speed machining requires knowing the friction at tool/chip interface. This parameter is hardly identified and generally the loadings (temperature, force) during the identification are not similar to those encountered during machining. Thus, Coulomb friction identified with pin-on-disc device is often used to conduct numerical simulation. The used of this technique cannot leads to good numerical results of chip formation compared to the experimental tests especially in the case of low uncut chip thickness. In this contribution, we propose a new method to evaluate the friction at tool/chip interface. In fact several Coulomb friction parameters are identified corresponding to several parts of the cutting tool. Experimental tests have been conducted allowed us to determinate both the level and the distribution of the Coulomb friction. Experimental results are also compared to the results of orthogonal cutting simulation. We show that this technique allows predicting accuracy results of chip formation.

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조밀한 건조조립토와 건설재료(콘크리트) 사이의 동마찰계수 (Dynamic Friction Behavior of Interfaces Between Dense Dry Granular Soils and Construction Material(Concrete))

  • 김대상
    • 한국지반공학회논문집
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    • 제17권6호
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    • pp.207-213
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    • 2001
  • 조밀한 건조조립토와 건설재료(콘크리트재)사이의 경계에서의 동마찰계수를 구하기 위하여 진동대를 사용하여 동적직접전단시험을 실시하였다. 조밀한 건조조립토와 건설재료사이의 동마찰계수는 본 연구에서 고려한 미끄러짐 속도의 범위안에서는 크게 변하지 않음을 알 수 있었다. 그리고 동마찰계수는 조립토의 평균입경이 증가함에 따라 감소하였고, 이에 대한 관계식을 제안하였다. 또한 이 계수를 같은 조립토에 대하여 실시한 평면변형률시험으로 얻어진 내부마찰각으로부터의 마찰계수와 비교하였다.

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임베디드 서모커플 센서 제조 및 미끄럼 마찰 계면온도 측정에 관한 실험적 연구 (Fabrication of Embedded Thermocouple Sensor and Experimental Study on Measurement of Interface Temperature for Dry Friction)

  • 장범택;임영헌;김석삼
    • Tribology and Lubricants
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    • 제29권6호
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    • pp.372-377
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    • 2013
  • This study investigated the interface temperatures for the sliding friction of three types of pins fabricated with thermocouple wires by the suction casting method. Optical microscopy was used to examine the surrounding material state at the bonding interface with the thermocouple wires. Friction tests were performed under dry sliding conditions against stainless steel 304 at nominal stresses of 1.42-4.25 MPa and sliding speeds of 0.5-1.25 m/s. Tribological data were collected using a custom-made pin-on-disk apparatus that measured the interface temperature and corresponding friction coefficient. Static tests were performed to demonstrate the functionality and reliability of the thermocouple wires-combined temperature sensor (TCTS). Each TCTS showed good linearity and sensitivity and very similar response times for the thermocouple and critical temperature during sliding friction.

강재면과 사질토 사이의 경계면 마찰각 예측식 개발 및 불확실성 평가 (Development and Uncertainty Assessment of Interface Friction Prediction Equation Between Steel Surface and Cohesionless Soils)

  • 이기철;김소연;김동욱
    • 한국지반신소재학회논문집
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    • 제17권2호
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    • pp.33-40
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    • 2018
  • 지반구조물에서는 흙과 구조물 사이의 상호 마찰 특성이 구조물에 작용하는 하중과 저항 분석에 큰 영향을 미친다. 일반적으로 지반구조물의 주재료로서 콘크리트 또는 강재가 많이 사용되며, 흙 입자 크기와 비교하여 마찰면의 거칠기 정도에 따라 경계면 마찰 특성이 큰 차이를 보인다. 특히 비신장성 보강재를 사용하는 보강토 옹벽, 말뚝 주면, 옹벽면 등의 지반구조물에 대해서는 흙과 구조물 사이의 마찰특성을 합리적으로 분석하여 구조물의 안전성을 확보하여야 한다. 구조물면과 사질토 사이의 마찰특성에 대하여 보다 정확한 예측식을 제시하고 이 예측식이 가지고 있는 불확실성을 제시하는 것은 지반-지반구조물의 신뢰성 분석에 필수적이다. 따라서 본 연구에서는 기존 양질의 연구 문헌들에 보고된 흙과 거칠기가 다른 면 사이의 마찰실험결과를 분석하여, 강재와 사질토 사이의 첨두 경계면 마찰각을 구하는 식을 제안하였다. 첨두 경계면 마찰각을 결정하는 주요인자는 경계면의 상대조도, 흙의 상대밀도, 구속압, 한계상태 경계면 마찰각이다. 본 연구에서 개발한 첨두 경계면 마찰각 예측식에 대한 불확실성을 통계적으로 Goodness-of-fit 시험 결과를 반영하여 평가하였다.

동-텅스텐 소결합금(Cu-W)과 동(Cu)의 마찰용접에서 마찰압력이 접합강도와 파단특성에 미치는 영향 (Effects of Friction Pressure on Bonding Strength and a Characteristic of Fracture in Friction Welding of Cu to Cu-W Sintered Alloy)

  • 강성보;민택기
    • Journal of Welding and Joining
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    • 제15권4호
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    • pp.90-98
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    • 1997
  • A copper-tungsten sintered alloy(Cu-W) has been friction welded to a tough pitch copper in order to investigate the effect of friction pressure on bonding strength and a charicteristic of fracture. The tensile strength of the friction welded joint was increased up to 90% of the Cu base metal under the condition of friction time 1.2 sec, friction pressure 4.5kgf/$\textrm{mm}^2$ and upset pressure 10kgf/$\textrm{mm}^2$. From the results of fracture surface analysis, the increase of friction pressure could remarkably decrease the force and the time to be normally acted on weld interface. The W particles which were included in the plastic zone of Cu side could induce fracture adjacent to the weld interface because their existance in Cu induces a decrease in available section area and an increase in notch effect. Therefore, the tensile strength was decreased at high friction pressure (6kgf/$\textrm{mm}^2$) because the destruction of W was increased by an increase in mechanical force and crack was formed at weld interface.

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Tests of the interface between structures and filling soil of mountain area airport

  • Wu, Xueyun;Yang, Jun
    • Geomechanics and Engineering
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    • 제12권3호
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    • pp.399-415
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    • 2017
  • A series of direct shear tests were conducted to investigate the frictional properties of the interface between structures and the filling soil of Chongqing airport fourth stage expansion project. Two types of structures are investigated, one is low carbon steel and the other is the bedrock sampled from the site. The influence of soil water content, surface roughness and material types of structure were analyzed. The tests show that the interface friction and shear displacement curve has no softening stage and the curve shape is close to the Clough-Duncan hyperbola, while the soil is mainly shear contraction during testing. The interface frictional resistance and normal stress curve meets the Mohr-Coulomb criterion and the derived friction angle and frictional resistance of interface increase as surface roughness increases but is always lower than the internal friction angle and shear strength of soil respectively. When surface roughness is much larger than soil grain size, soil-structure interface is nearly shear surface in soil. In addition to the geometry of structural surface, the material types of structure also affects the performance of soil-structure interface. The wet interface frictional resistance will become lower than the natural one under specific conditions.

Effect of the Friction Characteristics of Sliding Contacts on Electrical Signal Transmission

  • Jang, Ho;Park, Hyung Kyu
    • KSTLE International Journal
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    • 제2권1호
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    • pp.22-28
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    • 2001
  • A resin bonded copper-graphite brush was investigated to evaluate the characteristics electrical signal transmission through a sliding contact as a function of the relative amount of graphite and copper in the brush. Particular attention was given to the correlation between electrical signal fluctuation and tribological properties in an electrical sliding contact system. A ring-on-block type tribotester was used for this experiment and the ring was made from pure copper. Results showed that a copper-graphite brush at a particular composition range exhibited the most stable frictional behavior with a minimum voltage drop. The amount of voltage drop at the friction interface was affected by the surface roughness, transfer film formation at the friction interface, and the real area of contact. Microscopic observations and the surface analysis showed a good agreement with the results from this experiment. The results also indicated that the electrical signal flunctuation was directly associated with the oscillation of the coefficient of friction during sliding by nanoscale variation of contacts at the friction interface.

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Friction behavior of controlled low strength material-soil interface

  • Han, WooJin;Kim, Sang Yeob;Lee, Jong-Sub;Byun, Yong-Hoon
    • Geomechanics and Engineering
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    • 제18권4호
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    • pp.407-415
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    • 2019
  • A controlled low strength material (CLSM) is a highly flowable cementitious material used for trench backfilling. However, when applying vertical loads to backfilled trenches, shear failure or differential settlement may occur at the interface between the CLSM and natural soil. Hence, this study aims to evaluate the characteristics of the interface friction between the CLSM and soils based on curing time, gradation, and normal stress. The CLSM is composed of fly ash, calcium sulfoaluminate cement, sand, silt, water, and an accelerator. To investigate the engineering properties of the CLSM, flow and unconfined compressive strength tests are carried out. Poorly graded and well-graded sands are selected as the in-situ soil adjacent to the CLSM. The direct shear tests of the CLSM and soils are carried out under three normal stresses for four different curing times. The test results show that the shear strengths obtained within 1 day are higher than those obtained after 1 day. As the curing time increases, the maximum dilation of the poorly graded sand-CLSM specimens under lower normal stresses also generally increases. The maximum contraction increases with increasing normal stress, but it decreases with increasing curing time. The shear strengths of the well-graded sand-CLSM interface are greater than those of the poorly graded sand-CLSM interface. Moreover, the friction angle for the CLSM-soil interface decreases with increasing curing time, and the friction angles of the well-graded sand-CLSM interface are greater than those of the poorly graded sand-CLSM interface. The results suggest that the CLSM may be effectively used for trench backfilling owing to a better understanding of the interface shear strength and behavior between the CLSM and soils.

직접전단시험에 의한 모래와 인공암석 경계면의 마찰각 특성 연구 (A Study of Characteristic of Friction Angles between Sand and Artificial Rock Interface by Direct Shear Test)

  • 양홍석;이벽규;장승진;이수곤
    • 한국지반환경공학회 논문집
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    • 제13권8호
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    • pp.65-73
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    • 2012
  • 우리나라 화강암 분포지역에서 주로 발견되는 토사-암 경계면은 토사 자체의 전단강도보다 더 작은 값을 갖기 때문에 강우 시 비탈면 붕괴의 중요한 요인 중 하나로 알려져 있다. 그러나 토사-암 경계면이 비탈면의 안정성에 미치는 영향에 대한 연구가 부족한 실정이다. 따라서 본 연구에서는 토사-암 경계면이 비탈면 안정성에 미치는 영향을 파악하기 위한 기초 연구로써 서로 다른 입도를 갖는 세 종류의 모래와 이를 이용한 인공 암석을 제작하여 모래, 모래-인공암석 경계면에서의 전단강도를 얻기 위한 직접전단시험을 실시하였다. 직접전단시험 결과, 경계면 마찰각은 입도와 표면 거칠기에 따라 변화하며, 경계면 마찰각비 ${\mu}(={\delta}/{\Phi})$는 약 0.75 ~ 0.96의 범위를 갖으며, 이러한 시험 결과들은 모래 자체보다 모래-인공암석 경계면의 마찰각이 더 작은 값을 갖는다는 것을 나타낸다.