• 제목/요약/키워드: Friction sensitivity

검색결과 133건 처리시간 0.027초

사면안정성 영향인자의 민감도 분석 (Sensitivity Analyses of Influencing Factors on Slope Stability)

  • 박병수;전상현;조광준;유남재
    • 한국방재학회 논문집
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    • 제10권3호
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    • pp.91-100
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    • 2010
  • 본 논문에서는 절 성토 사면의 안정성에 영향을 미치는 영향인자의 민감도 분석을 수행하였다. 사면안정성 해석은 건기 및 우기조건, 지진시로 구별하여 해석하였다. 건기와 우기 조건에 대한 민감도 분석결과, 절토사면에서는 점착력, 내부마찰각, 단위 중량 등이 사면안정성에 미치는 영향은 우기조건 보다 더 큼을 알 수 있고, 성토사면에서는 건기와 우기조건에서 모두 유사한 영향을 주는 것으로 나타났다. 또한 수평지진계수는 전체사면에서 건기와 우기조건에 관계없이 유사한 값의 범위로 영향을 미치는 것으로 분석되었다. 강도정수인 점착력과 내부마찰각은 건기 및 우기조건에 관계없이 사면안정성에 단위중량, 지진계수에 비하여 상대적으로 큰 영향을 미치는 영향인자로 나타났다.

Reliability analysis of external and internal stability of reinforced soil under static and seismic loads

  • Ahmadi, Rebin;Jahromi, Saeed Ghaffarpour;Shabakhty, Naser
    • Geomechanics and Engineering
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    • 제29권6호
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    • pp.599-614
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    • 2022
  • In this study, the reliability analysis of internal and external stabilities of Reinforced Soil Walls (RSWs) under static and seismic loads are investigated so that it can help the geotechnical engineers to perform the design more realistically. The effect of various variables such as angle of internal soil friction, soil specific gravity, tensile strength of the reinforcements, base friction, surcharge load and finally horizontal earthquake acceleration are examined assuming the variables uncertainties. Also, the correlation coefficient impact between variables, sensitivity analysis, mean change, coefficient of variation and type of probability distribution function were evaluated. In this research, external stability (sliding, overturning and bearing capacity) and internal stability (tensile rupture and pull out) in both static and seismic conditions were investigated. Results of this study indicated sliding as the predominant failure mode in the external stability and reinforcing rupture in the internal stability. First-Order Reliability Method (FORM) are applied to estimate the reliability index (or failure probability) and results are validated using the Monte Carlo Simulation (MCS) method. The results showed among all variables, the internal friction angle and horizontal earthquake acceleration have dominant impact on the both reinforced soil wall internal and external stabilities limit states. Also, the type of probability distribution function affects the reliability index significantly and coefficient of variation of internal friction angle has the greatest influence in the static and seismic limits states compared to the other variables.

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

  • 김용
    • 대한의용생체공학회:의공학회지
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    • 제21권3호
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    • pp.295-301
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    • 2000
  • 뼈의 성장에 미치는 많은 요소들 중에서 implant의 상대적인 미세운동(relative micromotion)은 뼈의 implant와의 접합을 방해하는 것으로 알려져 왔다. 그런데 이러한 상대적인 운동 및 spinal stability에 직접적으로 영향을 주는 하중조건, spinal material의 물성치, spinal geometry 및 뼈와 implant의 접촉면에서의 마찰계수를 고려하기 위하여, 하나의 titanium interbody cage 가 삽입된 human lumbar segments (L4-L5)의 유한요소 모델이 개발되었다. 이러한 유한요소 모델의 해석을 통하여 상대적인 미세운동, Posterior의 수직적인 변위, von Mises 응력 및 마찰력이 예측되었다. Cancellous bone. annulus fibers 및 ligaments의 기계적인 물성치의 감소 또는 접촉면에서의 마찰계수의 감소는 상대적인 미세운동 (relative micromotion or slip distance)을 증가 시켰다. 접촉면에서의 normal force는 뼈의 밀도 (cancellous bone density) 가 감소하거나 접촉마찰계수가 증가하면 감소했다. 특히 하중조건에 있어서, compressive preload에 대한 torsion의 추가는 접촉면의 anterior부위에서 상대적인 미세운동을 증가 시켰다. 하지만 디스크면적이 증가할수록 상대적인 미세운동은 감소했다. 결론적으로, 접촉면의 기계공학적 거동 (Relative micromotion, stress response, posterior axial displacement and contact normal force)은 접촉면의 마찰계수 뼈의 밀도, 하중조건 및 노화에 따른 형상/물성의 변화에 매우 민감함을 보이고있다.

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마찰 교반 용접된 철도 차량용 A6005 압출재의 기계적 성능 향상을 위한 최적 공법 설계 (Optimum Design of the Friction Stir Welding Process on A6005 Extruded Alloy for Railway Vehicles to Improve Mechanical Properties)

  • 원시태;김원경
    • Journal of Welding and Joining
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    • 제27권5호
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    • pp.81-87
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    • 2009
  • Recently, extruded aluminium-alloy panels have been used in the car bodies for the purpose of the light-weight of railway vehicles and FSW(Friction Stir Welding), which is superior to the arc weldings, has been applied in the railway vehicles. This paper presents the optimum design of the FSW process on A6005 extruded alloy for railway vehicles to improve its mechanical properties. Rotational speed, welding speed and tilting angle of the tool tip were chosen as design parameters. Three objective functions were determined; maximizing the tensile strength, minimizing the hardness and maximizing the difference between the normalized tensile strength and hardness. The tensile tests and the hardness tests for fifteen FSW experiments were carried out according to the central composite design table. Recursive model functions on three characteristic values, such as the tensile strength, the hardness difference(${\Delta}Hv$) and the difference of normalized tensile strength and ${\Delta}Hv$, were estimated according to the classical response surface analysis methodology. The reliability of each recursive function was verified by F-test using the analysis of variance table. Sensitivity analysis on each characteristic value was done. Finally, the optimum values of three design parameters were found using Sequential Quadratic Programming algorithm.

V 형상을 가지는 원자현미경 Cantilever의 정량적 마찰력 교정 (Quantitative Lateral Force Calibration of V-shaped AFM Cantilever)

  • 이희준;김광희;김현태;강보람;정구현
    • Tribology and Lubricants
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    • 제28권5호
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    • pp.203-211
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    • 2012
  • Atomic force microscopy (AFM) has been used as a tool, not only for imaging surfaces, but also for measuring surface forces and mechanical properties at the nano-scale. Force calibration is crucial for quantitatively measuring the forces that act between the AFM probe of a force sensing cantilever and a sample. In this work, the lateral force calibrations of a V-shaped cantilever were performed using the finite element method, multiple pivot loading, and thermal noise methods. As a result, it was shown that the multiple pivot loading method was appropriate for the lateral force calibration of a V-shaped cantilever. Further, through crosschecking of the abovementioned methods, it was concluded that the thermal noise method could be used for determining the lateral spring constants as long as the lateral deflection sensitivity was accurately determined. To obtain the lateral deflection sensitivity from the sticking portion of the friction loop, the contact stiffness should be taken into account.

바텀 애쉬와 준설 혼합토 적용 제체의 사면 안전율에 대한 토질 정수 민감도 분석 (Sensitivity Analysis of Soil Properties for the Slope Safety Factor in Embankments utilized Bottom Ash and Dredged Soil Mixture)

  • 노수각;손영환;박재성;봉태호
    • 한국농공학회논문집
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    • 제57권1호
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    • pp.99-109
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    • 2015
  • In the construction industry, the interest for recycling aggregates is rising as more people demand for alternatives due to lack of supply of natural aggregates and environmental problems. However, in order for recycled aggregates to be used in infrastructures, stability and other factors need to be verified. Therefore, the objective of this study is to analyze the sensitivity of soil properties to secure slope safety according to various heights of embankment when bottom ash and dredged soil mixture is applied in the embankment. In most cases, all heights were safe for the slide for the embankment whether the water level is full or sudden draw down. The result of the sensitivity analysis revealed that the unit weight of embankments is highest among all factors to be considered. However, the sensitivity of the unit weight became smaller and the sensitivity of the friction angle of embankments increased with the height of embankments. The sensitivity of factors of core materials is very small because the core has weaker physical properties than those of the embankment. The effect of the height for each factor is different for each slope and water levels. The sensitivity of the unit weight of embankments is most affected when the height is 60m in the upstream slope. To conclude, bottom ash and dredged soil mixture can be applied in the embankment and different factors must be considered in different scale because the sensitivity depends highly on the height of embankments.

Surface Mounting Device의 동역학적 모델링 및 상태 민감도 해석 (A Dynamic Modeling & State Sensitivity Analysis of the Surface Mounting Device)

  • 장진희;한창수;김정덕
    • 한국정밀공학회지
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    • 제13권7호
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    • pp.90-99
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    • 1996
  • In the area of assembly process of micro-chips and electronic parts on the printed circuit board, surface mounting device(SMD) is used as a fundamental tool. Generally speaking, the motion of the SMD is based on the ball screw system operated by any type of actuators. The ball screw system is a mechanical transformed which converts the mechanical rotational motion to the translational one. Also, this system could be considered as an efficient motion device against mechanical backlash and friction. Therefore a dynamic modeling and state sensitivity analysis of the ball screw system in SMD have to be done in the initial design stage. In this paper, a simple mathematical dynamic model for this system and the sensit- ivity analysis are mentioned. Especially, the bond graph approach is used for graphical modeling of the dynamic system before analysis stage. And the direct differentiation method is used for the state sensit- ivity analysis of the system. Finally, some trends for the state variables with respect to the design variables could be suggested for the better design and faster operating based on the results of dynamic and state sensitivity.

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Sensitivity Analysis of Thermal Parameters Affecting the Peak Cladding Temperature of Fuel Assembly

  • Ju-Chan Lee;Doyun Kim;Seung-Hwan Yu;Sungho Ko
    • 방사성폐기물학회지
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    • 제21권3호
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    • pp.359-370
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    • 2023
  • The thermal integrity of spent nuclear fuels has to be maintained during their long-term dry storage. The detailed temperature distributions of spent fuel assemblies are essential for evaluating the integrity of their dry storage systems. In this study, a subchannel analysis model was developed for a canister of a single fuel assembly using the COBRA-SFS code. The thermal parameters affecting the peak cladding temperature (PCT) of the spent fuel assembly were identified, and sensitivity analyses were performed based on these parameters. The subchannel analysis results indicated the presence of a recirculation flow, based on natural convection, between the fuel assembly and downcomer region. The sensitivity analysis of the thermal parameters indicated that the PCT was affected by the emissivity of the fuel cladding and basket, convective heat transfer coefficient, and thermal conductivity of the fluid. However, the effects of the wall friction factor of the canister, form loss coefficient of the grid spacers, and thermal conductivities of the solid materials, on the PCT were predominantly ignored.

링 압축시험과 유한요소해석을 이용한 미세성형 공정에서의 마찰특성에 관한 연구 (A Study of Friction in Microfoming Using Ring Compression Tests and Finite Element Analysis)

  • 김홍석;김긍록
    • 대한기계학회논문집A
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    • 제34권10호
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    • pp.1471-1478
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    • 2010
  • 미세성형 공정은 마이크로 크기의 부품 생산에 있어 다양한 재료의 활용, 높은 생산성, 적은 재료의 손실, 고품질 생산을 실현할 수 있는 방법으로 최근 산업계와 학계의 많은 주목을 받고 있다. 하지만 매크로 성형에서 마찰거동을 묘사하기 위한 기존의 모델들은 미세성형에서 많은 오차를 유발하는 것으로 알려져 있다. 따라서 미세성형 공정의 성공적인 개발과 실용화를 위해서는 마찰거동의 크기효과에 대한 심도 있는 연구가 필요하다. 본 연구에서는 다양한 크기의 알루미늄 및 황동 재료를 대상으로 링 압축시험을 실시하여 소재의 크기에 대한 마찰거동의 크기효과를 고찰하였다. 유한요소해석을 이용하여 링 압축 시 접촉면의 마찰력이 링 시편의 변형특성에 미치는 영향을 정량적으로 분석하였다. 또한 미끄럼선장 모델링과 상계해석을 응용한 마찰모델을 활용하여 미세성형에서의 마찰거동 특성을 이론적으로 설명하였다.