• Title/Summary/Keyword: Creep coefficient

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합성단면의 콘크리트 크리프 효과에 대한 일반화 매개변수의 민감도 분석 (Sensitivity Analysis of Generalized Parameters on Concrete Creep Effects of Composite Section)

  • 연정흠;김의헌
    • 콘크리트학회논문집
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    • 제21권5호
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    • pp.629-638
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    • 2009
  • 합성단면을 구성하는 콘크리트 단면에 크리프에 의한 장기변형이 발생되면 합성단면에는 추가의 변형이 발생되며 콘크리트 단면에는 장기변형의 일부구속으로 잔류응력이 발생한다. 이 논문에서는 복잡한 합성단면에서 콘크리트 단면의 장기변형에 대한 반응을 평가하는 기존의 단계별계산법을 보다 효율적으로 적용할 수 있도록 일반화 하였다. 장기변형이 발생하는 콘크리트 단면과 이 변형의 일부를 구속하는 구속단면의 단면특성과 재료특성으로부터 초기 합성단면의 환산단면특성이 유도되고, 각 단계의 크리프계수가 고려된 유효탄성계수가 적용된 환산 단면특성이 유도되었다. 합성단면의 일반화 반응에 대한 5개의 일반화 매개변수로 구성된 단계별계산법의 식이 유도되었다. 각 단계별 계산식에는 크리프계수의 증가가 일정하도록 하여 식의 단순화와 계산시간의 감축 및 균등한 단계별 계산오차가 가능한 균등 크리프 단계별계산법을 제안하였다. 콘크리트 단면의 초기 축방향 탄성 변형률에 대한 일반화 반응은 콘크리트 단면적의 비율에 가장 민감하고, 콘크리트 단면의 단면이차모멘트 비율보다는 구속단면의 단면이차모멘트 비율에 보다 민감하였다. 반면에 콘크리트 단면의 초기 탄성곡률에 대해서는 콘크리트 단면의 단면이차모멘트 비율에 가장 민감하였다.

축력을 받는 철근콘크리트조 부재 장기거동 예측의 불확실성 분석 (Uncertainty Analysis of Long-Term Behavior of Reinforced Concrete Members Under Axial Load)

  • 유재욱;김승남;유은종;하태훈
    • 콘크리트학회논문집
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    • 제26권3호
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    • pp.343-350
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    • 2014
  • 이 연구에서 몬테카를로 시뮬레이션을 이용해 확률론적 시공단계해석을 수행한 이유는 재료 특성, 환경 요인 및 하중에 대한 불확실성의 영향을 고려하기 위해서이다. 지금까지의 연구에서는 크리프 및 건조수축이 완전히 독립적인 확률 변수라고 가정되었다. 그러나 크리프 및 건조수축 추정을 위한 재료모델의 공통적인 영향요인 때문에 크리프 및 건조수축 사이에 강한 상관관계를 추정 할 수 있다. 이 논문에서는 CEB-FIB모델의 크리프 및 건조수축식을 이용하여 몬테카를로 시뮬레이션을 수행하여 실제 두 현상 사이의 상관 계수를 평가 한 후 재료 특성, 환경 요인 및 하중의 확률 변수의 영향을 받는 축방향 변형의 통계적 특성을 평가하기위해 몬테카를로 시뮬레이션을 한번 더 사용하였다. 몬테카를로 시뮬레이션의 결과는 58층 건물의 첫 번째 층의 기둥의 변형률과 비교 했다. 비교 결과는 재료특성에 불확실성에 의한 변화가 가장 큰 것으로 나타났다. 측정된 변형률은 평균+표준 편차 범위 안에 있었다.

Slip Movement Simulations of Major Faults Under Very Low Strength

  • Park, Moo-Choon;Han, Uk
    • 자원환경지질
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    • 제33권1호
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    • pp.61-75
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    • 2000
  • Through modeling fault network using thin plate finite element technique in the San Andreas Fault system with slip rate over 1mm/year, as well as elevation, heat flow, earthquakes, geodetic data and crustal thickness, we compare the results with velocity boundary conditions of plate based on the NUVEL-1 plate model and the approximation of deformation in the Great Basin region. The frictional and dislocation creep constants of the crust are calculated to reproduce the observed variations in the maximum depth of seismicity which corresponds to the temperature ranging from $350^{\circ}C$ to $410^{\circ}C$. The rheologic constants are defined by the coefficient of friction on faults, and the apparent activation energy for creep in the lower crust. Two parameters above represent systematic variations in three experiments. The pattern of model indicates that the friction coefficient of major faults is 0.17~0.25. we test whether the weakness of faults is uniform or proportional to net slip. The geologic data show a good agreement when fault weakness is a trend of an additional 30% slip dependent weakening of the San Andreas. The results of study suggest that all weakening is slip dependent. The best models can be explained by the available data with RMS mismatch of as little as 3mm/year, so their predictions can be closely related with seismic hazard estimation, at least along faults where no data are available.

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Experimental study on long-term behavior of RC columns subjected to sustained eccentric load

  • Kim, Chang-Soo;Gong, Yu;Zhang, Xin;Hwang, Hyeon-Jong
    • Advances in concrete construction
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    • 제9권3호
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    • pp.289-299
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    • 2020
  • To investigate the long-term behavior of eccentrically loaded RC columns, which are more realistic in practice than concentrically loaded RC columns, long-term eccentric loading tests were conducted for 10 RC columns. Test parameters included concrete compressive strength, reinforcement ratio, bar yield strength, eccentricity ratio, slenderness ratio, and loading pattern. Test results showed that the strain and curvature of the columns increased with time, and concrete forces were gradually transferred to longitudinal bars due to the creep and shrinkage of concrete. The long-term behavior of the columns varied with the test parameters, and long-term effects were more pronounced in the case of using the lower strength concrete, lower strength steel, lower bar ratio, fewer loading-step, higher eccentricity ratio, and higher slenderness ratio. However, in all the columns, no longitudinal bars were yielded under service loads at the final measuring day. Meanwhile, the numerical analysis modeling using the ultimate creep coefficient and ultimate shrinkage strain measured from cylinder tests gave quite good predictions for the behavior of the columns.

A Proposal of Wheel/Rail Contact Model for Friction Control

  • Matsumoto Kosuke;Suda Yoshihiro;Komine Hisanao;Nakai Takuji;Tomeoka Masao;Shimizu Kunihito;Tanimoto Masuhisa;Kishimoto Yasushi;Fujii Takashi
    • Journal of Mechanical Science and Technology
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    • 제19권spc1호
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    • pp.437-443
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    • 2005
  • Controlling the friction between wheel and rail is direct and very effective measures to improve the curving performances of railway trucks, because the curving performances depend much on friction characteristics. Authors have proposed a method, 'friction control', which utilizes friction modifier ($KELTRACK^{TM}$ HPF) with onboard spraying system. With the method, not only friction coefficient, but also friction characteristics can be controlled as expected. In this study, MBD simulation is very valuable tool to foresee the effect of the control in advance of experiment with real car. And the creep characteristics of wheel/rail contact with the friction modifier takes very important role in the simulation. In this paper, authors propose a theoretical model of wheel/rail contact condition considering the creep characteristics of friction modifier, which is derived the application of principle tribological theories.

Long-term deflection prediction in steel-concrete composite beams

  • Lou, Tiejiong;Wu, Sishun;Karavasilis, Theodore L.;Chen, Bo
    • Steel and Composite Structures
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    • 제39권1호
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    • pp.21-33
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    • 2021
  • This paper aims to improve the current state-of-the-art in long-term deflection prediction in steel-concrete composite beams. The efficiency of a time-dependent finite element model based on linear creep theory is verified with available experimental data. A parametric numerical study is then carried out, which focuses on the effects of concrete creep and/or shrinkage, ultimate shrinkage strain and reinforcing bars in the slab. The study shows that the long-term deformations in composite beams are dominated by concrete shrinkage and that a higher area of reinforcing bars leads to lower long-term deformations and steel stresses. The AISC model appears to overestimate the shrinkage-induced deflection. A modified ACI equation is proposed to quantify time-dependent deflections in composite beams. In particular, a modified reduction factor reflecting the influence of reinforcing bars and a coefficient reflecting the influence of ultimate shrinkage are introduced in the proposed equation. The long-term deflections predicted by this equation and the results of extensive numerical analyses are found to be in good agreement.

ISDG를 이용한 다결정실리콘 기계적 물성값 측정법 (Techniques for Measuring Mechanical Properties of Polysilicon using an ISDG)

  • 오충석
    • 한국정밀공학회지
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    • 제21권7호
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    • pp.171-178
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    • 2004
  • Techniques and procedures are presented for measuring mechanical properties on thin-film Polysilicon. Narrow platinum lines are deposited 250 ${\mu}{\textrm}{m}$ apart on tensile specimens that are 3.5 ${\mu}{\textrm}{m}$ thick and 600 ${\mu}{\textrm}{m}$ wide. Load is applied by a piezo-actuator and by hanging weights. Strain is measured by an ISDC at temperatures up to 500 $^{\circ}C$. Measurements of the elastic modulus with jig modifications, loading speed and temperature change are presented first. And then, the preliminary data for the coefficient of thermal expansion and creep behavior are presented as a reference.

Experimental Assessment of Mechanical Properties of Geo-grid Reinforced Material and Long-Term Performance of GT/HDPE Composite

  • Seo, Jung-Min;Min, Kyung-Ho;Hwang, Beong-Bok;Lee, In-Chul;Ruchiranga, Jayasekara Vishara;Jeon, Han-Yong;Jang, Dong-Hwan;Lim, Joong-Yeon
    • Advanced Composite Materials
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    • 제17권3호
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    • pp.247-258
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    • 2008
  • This paper is concerned with the long-term performance of geo-textile (GT) composites in terms of creep deformation and frictional properties. Composites of PVA GT and HDPE GM were made to investigate the advanced properties of long-term performance related to waste landfill applications. The same experiments were also performed for typical polypropylene and polyester GT and compared to PVA GT/HDPE GM composites. We also develop high performance GT composites with GM by using PVA GT, which is capable of improving the frictional properties and thus enhances long-term performance of GT composites. Experimental study reveals that the friction coefficient of GT composites is relatively large compared with those of polyester and polypropylene non-woven GT as long as the friction media has similar size to the particles of domestic standard earth. In addition, the geo-composites bonded with geo-grid by a chemical process were investigated experimentally in terms of strain evaluation and creep response values. Geo-grid plays an important role as a reinforcing material. Three kinds of geo-grid were prepared as strong yarn polyester and they were woven type, non-woven type, and wrap knitted type. The sample geo-grids were then coated with PVC. The rib tensile strength tests were conducted to evaluate geo-grid products in terms of tensile strength with regard to single rib. The test was performed according to GRI-GGI. It was concluded again from the experiments that the tensile and creep strains of the geo-grid showed such stable values that the geo-grid prepared in this study could protect geo-textile partially in practical structures.

Prediction Methodology for Reliability of Semiconductor Packages

  • Kim, Jin-Young
    • 한국마이크로전자및패키징학회:학술대회논문집
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    • 한국마이크로전자및패키징학회 2002년도 International Symposium
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    • pp.79-94
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    • 2002
  • Root cause -Thermal expansion coefficient mismatch -Tape warpage -Initial die crack (die roughness) Guideline for failure prevention -Optimized tape/Substrate design for minimizing the warpage -Fine surface of die backside Root cause -Thermal expansion coefficient mismatch - Repetitive bending of a signal trace during TC cycle - Solder mask damage Guideline for failure prevention - Increase of trace width - Don't make signal trace passing the die edge - Proper material selection with thick substrate core Root cause -Thermal expansion coefficient mismatch -Creep deformation of solder joint(shear/normal) -Material degradation Guideline for failure Prevention -Increase of solder ball size -Proper selection of the PCB/Substrate thickness -Optimal design of the ball array -Solder mask opening type : NSMD -In some case, LGA type is better

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콘크리트 장기변형의 구속계수와 선압축력의 손실률 (Restraint Coefficient of Long-Term Deformation and loss Rate of Pre-Compression for Concrete)

  • 연정흠;주낙친
    • 콘크리트학회논문집
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    • 제14권4호
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    • pp.521-529
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    • 2002
  • 콘크리트의 크리프와 건조수축에 의한 장기변형의 일부가 구속되는 합성단면에 대해 콘크리트에 발생되는 잔류응력과 이로 인한 콘크리트 단면에 선압축력의 손실을 계산하기 위해 콘크리트 장기변형의 구속계수가 유도되었으며, 선압축력의 손실률을 계산하기 위한 식을 제안하였다. 제안된 구속계수는 재령수정 유효탄성계수가 적용된 환산단면특성으로부터 계산되며, 복잡한 형태의 합성단면에 대해서도 쉽게 적용될 수 있다. 기존 설계기준에서 콘크리트의 장기변형과 관련된 조항을 검토하기 위해서 도로설계편람의 일반 합성단면에 대해 이 구속계수와 선압축력의 손실 계산식이 적용되었다. 부정정력과 신축이음량의 계산에 적용되는 건조수축변형률 $150 ~ 200$\times$10^{-6}$ 은 장기변형의 구속정도가 적은 경우에 과소 계산될 수 있으며, 잔류응력의 계산에 는 적용되는 $180$\times$10^{-6}$ 은 비정상적으로 작은 값이다. 이 논문에서 적용된 PSC 합성단면에 대한 도로교 설계기준의 손실률 16.3%는 ACI 209에 대해서는 안전측으로 계산되었으나 Eurocode 2에 대해서는 안전을 보장할 수 없었다. 강합성 단면의 콘크리트 바닥판에 일반 보강철근의 긴장에 의해 선압축력이 도입되면 철근비의 증가로 긴장에 의한 경우보다 상당히 큰 손실이 발생되었으며, 강재거더의 구속에 의해 긴장된 보강재 선인장력의 손실은 감소한 반면에, 콘크리트 선압축력의 손실은 증가하였다.