• 제목/요약/키워드: Friction experiments

검색결과 646건 처리시간 0.03초

Diagonal Tension Failure Model for RC Slender Beams without Shear Reinforcement Based on Kinematical Conditions (I) - Development

  • 유영민
    • 한국해양공학회지
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    • 제21권6호
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    • pp.7-15
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    • 2007
  • A mechanical model was developed to predict the behavior of point-loaded RC slender beams (a/d > 2.5) without stirrups. It is commonly accepted by most researchers that a diagonal tension crack plays a predominant role in the failure mode of these beams, but the failure mechanism of these members is still debatable. In this paper, it was assumed that diagonal tension failure was triggered by the concrete cover splitting due to the dowel action at the initial location of diagonal tension cracks, which propagate from flexural cracks. When concrete cover splitting occurred, the shape of a diagonal tension crack was simultaneously developed, which can be determined from the principal tensile stress trajectory. This fictitious crack rotates onto the crack tip with load increase. During the rotation, all forces acting on the crack (i.e, dowel force of longitudinal bars, vertical component of concrete tensile force, shear force by aggregate interlock, shear force in compression zone) were calculated by considering the kinematical conditions such as crack width or sliding. These forces except for the shear force in the compression zone were uncoupled with respect to crack width and sliding by the proposed constitutive relations for friction along the crack. Uncoupling the shear forces along the crack was aimed at distinguishing each force from the total shear force and clarifying the failure mechanism of RC slender beams without stirrups. In addition, a proposed method deriving the dowel force of longitudinal bars made it possible to predict the secondary shear failure. The proposed model can be used to predict not only the entire behavior of point-loaded RC slender shear beams, but also the ultimate shear strength. The experiments used to validate the proposed model are reported in a companion paper.

Condensation Heat Transfer and Pressure Drop of R-134a in the Oblong Shell and Plate Heat Exchanger

  • Park Jae-Hong;Kim Young-Soo
    • International Journal of Air-Conditioning and Refrigeration
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    • 제12권3호
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    • pp.158-167
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    • 2004
  • Condensation heat transfer experiments were conducted with a oblong shell and plate heat exchanger without oil in a refrigerant loop using R-134a. An experimental refrigerant loop has been developed to measure the condensation heat transfer coefficient $h_r$ and frictional pressure drop ${\Delta}p_f$ of R-134a in a vertical oblong shell and plate heat exchanger. Four vertical counter flow channels were formed in the oblong shell and plate heat exchanger by four plates having a corrugated sinusoid shape of a $45^{\circ}$ chevron angle. The effects of the refrigerant mass flux, average heat flux, refrigerant saturation temperature and vapor quality were explored in detail. Similar to the case of a plate heat exchanger, even at a very low Reynolds number, the flow in the oblong shell and plate heat exchanger remains turbulent. The results indicate that the condensation heat transfer coefficients and pressure drops increase with the vapor quality. A rise in the refrigerant mass flux causes an increase in the $h_r\;and\;{\Delta}p_f$. Also, a rise in the average heat flux causes an increase in the $h_r$. But the effect of the average heat flux does not show significant effect on the ${\Delta}p_f$. On the other hand, at a higher saturation temperature, both the $h_r\;and\;{\Delta}p_f$. found to be lower. Based on the present data, the empirical correlations are provided in terms of the Nusselt number and friction factor.

층류-난류 천이 모델을 적용한 프로펠러 단독 성능 해석에 관한 CFD 시뮬레이션 (CFD Simulation on Predicting POW Performance Adopting Laminar-Turbulent Transient Model)

  • 김동현;전규목;박종천;신명수
    • 대한조선학회논문집
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    • 제58권1호
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    • pp.1-9
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    • 2021
  • In the present study, the model-scale Propeller Open Water (POW) tests for the propeller of 176K bulk carrier and 8600TEU container ship were conducted through Computational Fluid Dynamics (CFD) simulation. In order to solve the incompressible viscous flow field, the Reynolds-averaged Navier-Stokes (RaNS) equations were employed as the governing equations. The γ-Reθ(gamma-Re-theta) transition model combined with the SST k-ωturbulence model was introduced to describe the laminar-turbulence transition considering the low Reynolds number of model-scale. Firstly, the flow simulation developing over a flat plate was performed to verify the transition modeling, in which the wall shear stresses were compared with experiments and other numerical results. Then, to investigate the effect of the model, the CFD simulation for the POW test was performed and the simulated propeller performance was validated through comparison with the experiment conducted at Korea Research Institute of Ships & Ocean Engineering (KRISO).

Experimental Investigation of Concave and Convex Micro-Textures for Improving Anti-Adhesion Property of Cutting Tool in Dry Finish Cutting

  • Kang, Zhengyang;Fu, Yonghong;Chen, Yun;Ji, Jinghu;Fu, Hao;Wang, Shulin;Li, Rui
    • International Journal of Precision Engineering and Manufacturing-Green Technology
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    • 제5권5호
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    • pp.583-591
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    • 2018
  • Tool-chip adhesion impacts on cutting performance significantly, especially in finish cutting process. To promote cutting tools' anti-adhesion property, the concave micro-grooves texture (MGT) and convex volcano-like texture (VLT) were fabricated separately on lathe tools' rake faces by laser surface texturing (LST). Various orientations of MGT and different area densities (9% and 48%) and regions (partial and full) of VLT were considered in textured patterns designing. The following orthogonal cutting experiments, machining of aluminum alloy 5038, analyzed tools' performances including cutting force, cutting stability, chip shape, rake face adhesion and abrasion. It indicated that under dry finish cutting conditions, MGT contributed to cutting stability and low cutting forces, meanwhile friction and normal force reduced by around 15% and 10%, respectively with a weak correlation to the grooves' orientation. High density VLT tools, on the other hand, presented an obvious anti-adhesion property. A $5{\mu}m$ reduction of crater wear's depth can be observed on textured rake faces after long length cutting and textured rake faces presented half size of BUE regions comparing to the flat tool, however, once the texture morphologies were filled or worn, the anti-adhesion effect could be invalid. The bearing ratio curve was employed to analysis tool-chip contact and durability of textured surfaces contributing to a better understanding of anti-adhesion and enhanced durability of the textured tools.

배관 압력을 이용한 방향제어밸브 위상각 대역폭 주파수 측정에 관한 연구 (A Study on the Phase Bandwidth Frequency of a Directional Control Valve Based on the Hydraulic Line Pressure)

  • 김성동;이정은;신대영
    • 드라이브 ㆍ 컨트롤
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    • 제15권4호
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    • pp.1-10
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    • 2018
  • Spool displacement of a direction control valve is the standard signal to measure the bandwidth frequency of the direction control valve. When the spool displacement signal is not available, it is suggested in this study to use the metering hydraulic line as an alternative way to measure - 90 degree phase bandwidth frequency of the hydraulic direction control valve. Dynamics of the hydraulic line is composed of inertia, capacitance, and friction effects. The effect of oil inertia is dominant in common hydraulic line dynamics and the line dynamics is close to a derivative action in a range of high frequency; such as a range of bandwidth frequency of common directional control valves. Phase difference between spool displacement and line load pressure is nearly constant as a valve close to 90 degree. If phase difference is compensated from the phase between valve input and pressure, compensated phase may be almost same as the phase of spool displacement that is a standard signal to measure phase bandwidth frequency of the directional control valve. A series of experiments were conducted to examine the possibility of using line pressure in to measure phase bandwidth frequency of a directional control valve. Phase bandwidth frequency could be measured with relatively high precision based on metering hydraulic line technique and it reveals consistent results even when valve input, oil temperature, and supply pressure change.

대형 CFRP Plate용 정착구의 설계요소분석 및 최적설계 (An Analysis of Design Parameters and Optimal Design for Anchors with Wide CFRP Plate)

  • 김형준;정흥진
    • 한국구조물진단유지관리공학회 논문집
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    • 제24권6호
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    • pp.102-112
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    • 2020
  • 본 연구에서는 교량구조물에 활용할 수 있는 폭 100mm 이상의 대형 탄소판을 고정할 수 있는 쐐기형 정착구를 설계하기 위해서, 주요설계변수인 쐐기의 각도, 정착블록-쐐기 사이의 마찰계수 등을 기준으로 거동특성을 수치해석방법으로 분석하였다. 설계변수 별로 탄소판의 응력상태를 계산하고, 복합재료 파괴기준에 의하여 정착구의 극한상태에서의 성능을 평가하였고, 이를 바탕으로 정착구의 최적설계 제원을 결정하였다. 실물실험을 통하여 최적설계된 정착구의 성능을 검증하였으며, 본 연구의 결과는 대형 구조물을 보강하기 위한 탄소판 정착구의 최적설계에 활용될 수 있을 것으로 판단된다.

3D 프린팅 기법을 이용한 하모닉 드라이브(Harmonic Drive) 설계 및 응용 분석 (Design of a Novel 3D Printed Harmonic Drive and Analysis of its Application)

  • 김상현;변창섭;이철희
    • Tribology and Lubricants
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    • 제38권1호
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    • pp.27-31
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    • 2022
  • Harmonic drives have attracted increasing attention with the development of materials, parts, and related equipment. Harmonic drives exhibit high deceleration, high accuracy, and light weight. The stiffness of flexible splines according to the radial load is studied using a commercial FEM program to design the structure of the flexible spline and finite element to improve the weight and price competitiveness of harmonic drives. In addition, several studies have measured and compared friction coefficients based on 3D printed tread patterns. However, owing to the characteristics of plastic materials, a decrease in stiffness in the radial direction is inevitable. To prevent a decrease in stiffness in the radial direction, we designed and manufactured flex splines with a wrinkle shape. Through structural analysis, the reaction force and stiffness in the radial direction were determined. In addition, the maximum angle of the mound was derived by theoretical calculations, and the performance of the harmonic drive was compared with the results obtained in the mound experiment. Structural analysis shows that the shape of wrinkles decreased the stress and reaction force and increased the safety factor in comparison with that of the circular shape. During performance verification through continuous experiments, the developed harmonic drive showed continuous performance similar to that of an actual tank model. It is expected that the flex spline with a compliant spring and wrinkle shape will prevent a decrease in the radial stiffness.

Modeling and experimental verification of phase-control active tuned mass dampers applied to MDOF structures

  • Yong-An Lai;Pei-Tzu Chang;Yan-Liang Kuo
    • Smart Structures and Systems
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    • 제32권5호
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    • pp.281-295
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    • 2023
  • The purpose of this study is to demonstrate and verify the application of phase-control absolute-acceleration-feedback active tuned mass dampers (PCA-ATMD) to multiple-degree-of-freedom (MDOF) building structures. In addition, servo speed control technique has been developed as a replacement for force control in order to mitigate the negative effects caused by friction and inertia. The essence of the proposed PCA-ATMD is to achieve a 90° phase lag for a structure by implementing the desired control force so that the PCA-ATMD can receive the maximum power flow with which to effectively mitigate the structural vibration. An MDOF building structure with a PCA-ATMD and a real-time filter forming a complete system is modeled using a state-space representation and is presented in detail. The feedback measurement for the phase control algorithm of the MDOF structure is compact, with only the absolute acceleration of one structural floor and ATMD's velocity relative to the structure required. A discrete-time direct output-feedback optimization method is introduced to the PCA-ATMD to ensure that the control system is optimized and stable. Numerical simulation and shaking table experiments are conducted on a three-story steel shear building structure to verify the performance of the PCA-ATMD. The results indicate that the absolute acceleration of the structure is well suppressed whether considering peak or root-mean-square responses. The experiment also demonstrates that the control of the PCA-ATMD can be decentralized, so that it is convenient to apply and maintain to real high-rise building structures.

매립된 석탄 혼합회의 성토재 및 뒤채움재로서의 활용에 관한 연구 (The Utilization of Pond Ash as Embankment and Backfill Material)

  • 김대현;기완서;김선학
    • 지질공학
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    • 제20권3호
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    • pp.297-310
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    • 2010
  • 본 연구는 태안화력본부 회사장에 비회와 저회가 혼합되어 매립된 혼합회를 건설재료로 활용하기 위한 기초연구로서 대상 혼합회의 물리적 시험 및 역학적 시험을 실시하여 도로성토용 재료 및 구조물 뒤채움용 재료로 활용가능한지 판단하고자 공학적 특성을 검토하였다. 비중, 최대 최소밀도, 액 소성, 입도분석, XRD, 강열감량시험을 통해 물리 화학적 특성을 평가하였고 투수, 다짐, CBR, 삼축압축시험을 실시하여 역학적 특성을 평가하였다. 혼합회의 실험결과 비중은 2.18~2.20, 건조밀도는 $9.38{\sim}13.32\;kN/m^3$, 수정 CBR은 16.5~21%, 투수계수는 $1.32{\times}10^{-4}{\sim}1.89{\times}10^{-4}cm/sec$, 배수마찰각은 $36.43{\sim}41.39^{\circ}$로 나타났다. 물리 역학적 실험결과를 토대로 도로성토용 재료와 구조물 뒤채움용 재료로써의 품질기준과 비교해 본 결과 활용이 가능할 것으로 판단되었다. 그러나 비회의 함유율이 높은 혼합회는 일부 품질기준을 만족하지 못하므로 도로성토용 재료와 구조물 뒤채움용 재료로 활용하기 위해서는 저회와의 배합을 통한 품질개선이 필요할 것으로 판단되었다.

강재 매입형 합성기둥의 합성작용에 관한 실험 (Experiments on the Composite Action of Steel Encased Composite Column)

  • 민진;정인근;심창수;정영수
    • 콘크리트학회논문집
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    • 제17권3호
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    • pp.393-400
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    • 2005
  • 강재 매입형 합성기둥 구조는 주로 건물구조와 교량의 교각구조에 적용되어 왔고, 최근에는 교량의 교각구조에 적용하는 예가 늘어나고 있는 실정이다. 교각은 건물의 기둥에 비해 상당히 큰 규모의 구조물이기 때문에 강재비를 적절한 수준으로 유도하면서 의도하는 성능을 만족하는 단면을 설계해야 한다. 그러나 합성구조의 기본원리가 구조물을 구성하는 구조재료의 일체화된 거동에 근거함으론 강재 매입형 합성기둥 구조의 적용에 앞서, 먼저 콘크리트와 강재 단면의 합성 작용에 대한 명확한 정의가 필요하다. 일반적으로 강재 매입형 합성구조는 부착과 마찰에 의해서 합성작용을 확보한다고 가정하고 설계하는데, 콘크리트 단면 강재 단면 그리고 합성 단면으로 각각 다를 경우, 거동의 차이를 가져올 수 있기 때문에 적절한 합성작용을 위한 규정이 요구된다. 이 논문에서는 횡방향 철근에 의한 콘크리트의 구속 효과, H형 강재 복부의 천공에 의한 기계적 맞물림 그리고 전단 연결재에 의한 영향을 고려하여 실험을 수행하였다. 실험을 통해 계산된 값보다 큰 부착 강도를 얻을 수 있었다. 구속효과, 기계적 맞물림 그리고 전단 연결재를 통해 전단 강도의 증가를 유도할 수 있었고, 이는 강재 매입형 합성 기둥에서 합성 작용을 확보하는데 효과적으로 이용될 수 있다.