• 제목/요약/키워드: Static Friction Coefficient

검색결과 113건 처리시간 0.024초

Dynamic Elastica에 의한 유연매체의 거동해석 (Analysis of Flexible Media Behavior by Dynamic Elastica)

  • 홍성권;지중근;장용훈;박노철;박영필
    • 한국소음진동공학회논문집
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    • 제15권2호
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    • pp.206-212
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    • 2005
  • In many machines handling lightweight and flexible media, such as magnetic tape drives, xerographic copiers and sewing machines, the media must transit an open space. It is important to predict the static and dynamic behavior of the sheets with a high degree of reliability. The nonlinear theory of the dynamic elastica has often been used to a nonlinear dynamic deflection model. In this paper, the governing equation is derived and simulated by the finite difference method. The parametric cubic curve is applied for defining the guide shape. The dynamic contact conditions suggested by Klarbring is used to predict the direction of the flexible media according to the initial velocity and the friction coefficient. The analysis is also compared to the conventional model, showing that after contacting a $45^{\circ}$ wall, the directions of flexible media of two models are different.

새롭게 개발된 휴대용 미끄럼 저항 측정기의 성능검증 (The Validation of Newly Developed Portable Slipmeter)

  • 김정수
    • 한국안전학회지
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    • 제28권1호
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    • pp.18-23
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    • 2013
  • The purpose of this study were to develop and validate a prototype slipmeter used on-site floor. The developed slipmeter was dreg sled type. It measured static coefficient of friction(SCOF). The developed slipmeter was evaluated with ASTM 2508-11 which use four different standard surfaces(polished granite, glazed porcelain, vinyl composite tile, and ceramic tile). The SCOF was then measured with developed slipmeter under the three different contaminants and seven different floors. The test results of slipmeter were also compared with those of BOT-3000, floor surface roughness, and human perception. The test results revealed that developed slipmeter successfully ranked all four standard surfaces and differentiated among standard surfaces with varying degrees of slipperiness. The developed slipmeter couldn't properly measure slipperiness under the two kind of floors(polished tile, ground steel plate) and one kind of contaminant(glycerol). The test results of developed slipmeter had stronger correlation with those of BOT-3000 and floor roughness under the water and detergent solution than under the glycerol. The test results of developed slipmeter also showed stronger correlation with those of BOT-3000 and surface roughness than those of human perception. The newly developed slipmeter had been found to give consistent results under the test conditions except for two kind of floors(polished tile, ground steel plate) and one kind of contaminant(glycerol).

Behaviour of a plane joint under horizontal cyclic shear loading

  • Dang, Wengang;Fruhwirt, Thomas;Konietzky, Heinz
    • Geomechanics and Engineering
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    • 제13권5호
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    • pp.809-823
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    • 2017
  • This paper describes lab test results of artificial rock-like material samples having a plane joint. Cyclic shear tests were performed under different normal loads and different shear displacement amplitudes. For this purpose, multi-stage normal loading tests (30 kN, 60 kN, 90 kN, 180 kN, 360 kN and 480 kN) with cyclic excitation at frequency of 1.0 Hz and different shear displacement amplitudes (0.5 mm, 1.0 mm, 2.0 mm, 4.0 mm, 5.0 mm, and 8.0 mm) were conducted using the big shear box device GS-1000. Experimental results show, that shear forces increase with the increase of normal forces and quasi-static friction coefficient is larger than dynamic one. With the increase of normal loads, approaching the peak value of shear forces needs larger shear displacements. During each cycle the normal displacements increase and decrease (rotational behavior in every cycle). Peak angle of inclination increases with the increase of normal load. A phase shift between maximum shear displacement and maximum shear force is observed. The corresponding time shift decreases with increasing normal load and increases with increasing shear displacement amplitudes.

Partial safety factors for retaining walls and slopes: A reliability based approach

  • GuhaRay, Anasua;Baidya, Dilip Kumar
    • Geomechanics and Engineering
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    • 제6권2호
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    • pp.99-115
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    • 2014
  • Uncertainties in design variables and design equations have a significant impact on the safety of geotechnical structures like retaining walls and slopes. This paper presents a possible framework for obtaining the partial safety factors based on reliability approach for different random variables affecting the stability of a reinforced concrete cantilever retaining wall and a slope under static loading conditions. Reliability analysis is carried out by Mean First Order Second Moment Method, Point Estimate Method, Monte Carlo Simulation and Response Surface Methodology. A target reliability index ${\beta}$ = 3 is set and partial safety factors for each random variable are calculated based on different coefficient of variations of the random variables. The study shows that although deterministic analysis reveals a safety factor greater than 1.5 which is considered to be safe in conventional approach, reliability analysis indicates quite high failure probability due to variation of soil properties. The results also reveal that a higher factor of safety is required for internal friction angle ${\varphi}$, while almost negligible values of safety factors are required for soil unit weight ${\gamma}$ in case of cantilever retaining wall and soil unit weight ${\gamma}$ and cohesion c in case of slope. Importance of partial safety factors is shown by analyzing two simple geotechnical structures. However, it can be applied for any complex system to achieve economization.

Performance evaluation of plasma nitrided 316L stainless steel during long term high temperature sodium exposure

  • Akash Singh;R. Thirumurugesan;S. Krishnakumar;Revati Rani;S. Chandramouli;P. Parameswaran;R. Mythili
    • Nuclear Engineering and Technology
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    • 제55권4호
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    • pp.1468-1475
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    • 2023
  • Enhancement of wear resistance of components used in fast reactors is necessary for long service life of the components. Plasma nitriding is a promising surface modification technology to impart high hardness and improved wear resistance of various steel components. This study discusses the characterization of chrome nitrided SS316L casing ring used in secondary sodium pump of fast breeder reactor and its stability under long term sodium exposure. Microstructural and hardness analysis showed that stress relieved component could be chrome nitrided successfully to a thickness of about 100 ㎛. Assessment of in-sodium performance of the chrome nitrided casing ring subjected to long term exposure up to 5000h at 550℃, showed retention of chrome nitrided layer with a case depth almost similar to that before sodium exposure. A slight decrease in the hardness was observed due to prolonged high temperature sodium exposure. Tribological studies indicate very low coefficient of friction indicating the retention of good wear resistance of the coating even after long term sodium exposure.

다양한 착륙환경변수를 고려한 달착륙선 착륙안정성 평가 (Evaluation of Landing Stability of Lunar Lander Considering Various Landing Conditions)

  • 정현재;임재혁;김진원
    • 한국항공우주학회지
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    • 제46권2호
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    • pp.124-132
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    • 2018
  • 본 논문에서는 다양한 착륙환경변수를 고려한 달착륙선의 착륙안정성 평가를 수행하였다. 달착륙선의 착륙안정성에 대한 판단 기준을 안정착륙, 미끄러짐(Sliding)으로 인한 조건부 안정착륙, 전복(Tip-over)으로 인한 불안정착륙으로 3가지로 분류하였다. 특히 달착륙선 전복 각도 예측을 위해 달착륙선이 착륙할 때 무게중심이 낮아지고, 착륙장치의 풋패드 간격이 늘어나는 현상을 고려하는 변수를 사용하여 준정적 전복해석식을 정리하였다. 이 결과를 상용유한요소 구조해석 프로그램인 ABAQUS를 사용하여 달착륙선의 유한요소 모델해석을 통해 얻은 결과와 비교하여 타당성 및 정확성을 검증하였다. 검증된 유한요소모델을 착륙자세, 횡방향속도, 지면의 각도, 마찰계수 등 다양한 환경변수에 따른 해석을 실시하고 그 경향성에 관해 검토하였다.

Frictional responses of concrete-to-concrete bedding planes under complex loading conditions

  • Dang, Wengang;Konietzky, Heinz;Li, Xiang
    • Geomechanics and Engineering
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    • 제17권3호
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    • pp.253-259
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    • 2019
  • Concrete-to-concrete bedding planes (CCBP) are observed from time to time due to the multistep hardening process of the concrete materials. In this paper, a series of direct/cyclic shear tests are performed on CCBP under static and dynamic normal load conditions to study the frictional behavior effect by the shear velocities, normal impact frequencies, horizontal shear frequencies, normal impact force amplitudes, horizontal shear displacement amplitudes and normal load levels. According to the experimental results, apparent friction coefficient k ($k=F_{Shear}/F_{Normal}$) shows different patterns under static and dynamic load conditions at the stable shear stage. k is nearly constant in direct shear tests under constant normal load conditions (DCNL), while it is cyclically changing with nearly constant peak value and valley value for the direct shear tests under dynamic normal load conditions (DDNL), where k increases with decreasing normal force and decreases with increasing normal force. Shear velocity has little influence on peak values of k for the DCNL tests, but increasing shear velocity leads to increasing valley values of k for DDNL tests. It is also found that, the valley values of k ascend with decreasing impact normal force amplitude in DDNL tests. The changing pattern of k for the cyclic shear tests under constant and dynamic normal load conditions (CCNL and CDNL tests) are similar, but the peak value of k is smaller in CDNL tests than that in CCNL tests. Normal load levels, shear displacement amplitudes, vertical impact frequencies, horizontal shear frequencies and normal impact force amplitudes have little influence on the changing pattern of k for the cyclic shear tests. The tests of this study provide useful data in understanding the frictional behavior of the CCBP under distinct loadings, and these findings are very important for analyzing the stability of the jointed geotechnical structures under complicated in situ stress conditions.

제주도산 송이의 공학적 특성에 관한 연구 (A Study on the Engineering Characteristic of scoria in Jeju-Do)

  • 천병식;김동훈;김영훈;이동엽
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 추계 학술발표회
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    • pp.1630-1637
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    • 2008
  • Jeju-do is a island formed by the volcanic activity and has more than 360 volcanic cones distributed widely along the long axis of the elliptically shaped island. The volcanic cones consist mainly of scoria, so called "Song-I" in the local dialect. In this study the chemical and soil mechanical properties of scoria being very different from those of the inland were investigated with the various tests. In the sieve-passing test the particle size of scoria had more than 10 of uniformity coefficient and gradation coefficient of 1 ~ 3, showing relatively homogenous distribution. Based on the uniformity classification, scoria was assorted into GW. In the large scale direct shear tested for measuring the mechanical strength of scoria the internal friction angle of red scoria was $37^{\circ}$ and that of black scoria was $36^{\circ}$. This indicated that there was no difference in the mechanical strength between two types of scoria. On the other hand, red and black scoria had $1.24{\times}10^{-3}$ to $3.55{\times}10^{-2}$ cm/sec of k values for the static water level permeability, thus being classified into a coarse or fine sand as compared with that representing the saturated soil. They also had 1.411 to $1.477\;g/cm^3$ of notably low $r_{dmax}$ values for the compaction test as compared with common soil, which was considered to be due to their low specific gravity and high porosity. In conclusion, the soil mechanic properties of scoria obtained from this study are thought to be very helpful for reducing lots of trial and error happening in the civil engineering construction.

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기초슬래브의 밑면이 경사진 캔티레바식 옹벽의 내진설계 (Earthquake-Resistant Design of Cantilever Retaining-Walls with Sloped Base)

  • 김홍택
    • 대한토목학회논문집
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    • 제10권3호
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    • pp.87-98
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    • 1990
  • 본 연구에서는 Elman둥이 상시하중의 경우에 대해 제안한 새로운 형태의 캔키레바식 옹벽 설계방식을 지진하중을 고려한 경우에까지 확대적용하여 예상되는 효율성을 설계예를 통해 분석하였으며, 좀더 안전한 측에서의 셜계검토를 위해 캔티레바식 옹벽의 자체중량 및 뒷채움 일부분의 모래중량에 의한 수평관성력 등을 포함하는 분석법이 제시되었다. 또한 한계 평형상태가 아닌 다양한 토압상태에서의 설계검토를 목적으로 Mononobe-Okabe 동적토압계산식을 변형하였다. 결론적으로, 기초슬래브의 밑면이 경사진 캔티레바식 옹벽형태가 내진설계에 있어서 가장 효율적임을 알 수 있었다. 즉 다른 형태의 캔티레바식 옹벽에 비해, 활동에 대한 안전율은 가장 크면서도 옹벽축조에 관련된 콘크리트량, 굴착량 및 뒷채움 모래의 양은 가장 절감되는 효과가 있음을 알 수 있었다. 후단부분을 $45^{\circ}$만큼 경사지게하는 캔티레바식 옹벽형태는, 상시하중 및 비교적 낮은 수준의 지진에 대해서는 효율성이 예상되나, 수평진도가 커짐에 따라 이와 같은 효율성을 기대할 수 없음을 알 수 있었다. 이에대한 주된 원인은, 옹벽 후단부분에 작용하는 수평발생토압합력의 감소율이 수평진도가 커짐에 따라 점차적으로 작아지는데 있다. 이외에도 기초슬레브의 밑면이 경사진 캔터레바식 옹벽에 관련된 설계도표를, 뒷채움 및 기초지반모래의 내부마찰각 크기, 지진하중시의 활동에 대한 안전율 규정 등을 각각 달리하여 제시하였다.

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인공신경망을 활용한 동적 물성치 산정 연구 (Neural Network-Based Prediction of Dynamic Properties)

  • 민대홍;김영석;김세원;최현준;윤형구
    • 한국지반공학회논문집
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    • 제39권12호
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    • pp.37-46
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    • 2023
  • 동적 물성치는 지반의 상세한 거동을 예측하기 위한 필수인자이나, 샘플 채취와 추가적인 실험이 동반되는 한계가 있다. 본 연구의 목적은 정적 지반 물성치를 기반으로 동적 지반 물성치를 예측하는 것으로 인공신경망을 활용하고자 하였다. 정적 물성치는 점착력, 내부마찰각, 함수비, 비중 그리고 일축압축강도로 선정하였으며 출력 값인 동적물성치는 압축파 속도와 전단파 속도로 결정하였다. 인공신경망 적용시 결과값의 신뢰성을 높이기 위해 Levenberg-Marquardt와 Bayesian regularization 방법을 적용하였으며, 각 최적화 방법에 따른 신뢰성을 비교하였다. 인공신경망 모델의 정확도는 결정계수로 나타냈으며, train과 test 과정 모두 0.9 이상의 값을 보여 해당 연구에서 구축한 인공신경망의 신뢰성이 높은 것으로 나타났다. 또한, 구축된 인공신경망 모델의 검증을 위해 새로운 입력 데이터에 대해서도 출력값의 신뢰성을 검증하였으며, 그 결과 높은 정확도를 보였다.