• 제목/요약/키워드: section load

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반도체 라인의 효율적 계측을 위한 자동 계측 샘플링 방식에 관한 연구 (Efficient Auto Measure Sampling Method for Semiconductor Line)

  • 김태엽;선동석;이지형
    • 전기학회논문지
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    • 제58권12호
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    • pp.2505-2510
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    • 2009
  • Semiconductor processes need measurement to confirm where there are problems in quality after progresses manufacturing process. This paper suggests equipment and automatic measure sampling method that control monitoring ratio according to change point occurrence availability of process that is not measure method by the existent simple ratio rate. This paper defines measure section as ailment section, metastable section and stability section by change point standard and create statistical model of each section and developed suitable measure rate model by section. As a result, we have accomplished maximum throughput and minimum sampling number that needs to maintain constant level of quality. Proposed method minimizes load of measure process by brings production quality sophistication and decrease of process badness and lowers measure rate in stable section making perception about problem occurrence quick heightening measure rate at change point occurrence.

Dynamic Response Analysis of Open Section Structures with Warping Restraint Conditions and Impact Load Durations

  • Chun, Dong-Joon
    • International Journal of Advanced Culture Technology
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    • 제8권2호
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    • pp.159-164
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    • 2020
  • The response analysis of frame structure with open section beams considering warping conditions and short duration load have been performed. When a beam of frame structure is subjected under torsional moment, the cross section will deform a warping as well as twist. For some thin-walled sections warping will be large, and accompanying warping restraint will induce axial and shear stresses and reduce the twist of beam which stiffens the beam in torsion. Because of impact or blast loads, the wave propagation effects become increasingly important as load duration decreases. This paper presents that a warping restraint in finite element model effects the behavior of beam deformation, dynamic mode shape and response analysis. The computer modelling of frame is discussed in linear beam element model and linear thin shell element model, also presents a correlation between computer predicted and actual experimental results for static deflection, natural frequencies and mode shapes of frame. A method to estimate the number of normal modes that are important is discussed.

파괴 거동을 고려한 FRP-콘크리트 합성 바닥판의 단면 설계에 관한 연구 (A Study on the Section Design of FRP-Concrete Composite Slabs Considering Failure Behaviors)

  • 조근희;김병석;이영호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 가을 학술발표회 논문집
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    • pp.641-646
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    • 2002
  • FRP-concrete composite slab is consisted of brittle materials and then shows brittle failure mechanism. This study suggests a new design approach that FRP-concrete composite slab leads to ductile failure, and investigates their failure behaviors for two types of section by numerical analysis. Box-type section is higher than I-type section in load capacity to required FRP quantity. Each section was designed so that the strain of FRP plate is 50% to its ultimate strain on initiation of concrete crushing, and it is verified that displacement ductility is more than two. Ductility capacity can be improved by reducing the strain of FRP on initiation of concrete crushing, but as the strain of FRP is reduced load capacity to required FRP quantity is also reduced. Therefore section optimization study is needed considering safety and economical efficiency.

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항공기용 외부연료탱크 정하중시험을 위한 비행하중의 시험하중으로의 변환 (Transformation of Flight Load to Test Load for the Static Load Test of External Fuel Tank for Aircraft)

  • 김현기;김성찬;박성환;하병근;안수홍;김준태
    • 항공우주시스템공학회지
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    • 제15권1호
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    • pp.80-85
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    • 2021
  • 본 연구에서는 항공기용 외부연료탱크의 정하중시험을 수행하기 위해서 외부연료탱크에 작용하는 비행하중을 시험하중으로 변환하고 변환된 시험하중들의 적합성을 검증하였다. 비행하중으로부터 시험하중을 계산하기 위해서 외부연료탱크를 몇 개의 구간으로 나누고, 각 구간별로 단위하중과 단위모멘트에 의해 발생하는 전단하중과 모멘트를 계산하였다. 그리고, 산출된 전단하중과 모멘트 그리고 비행하중 조건과의 연산을 통해 각 구간별 시험하중을 계산하였다. 실제 구조시험에서는 물리적 제약 등으로 시험하중을 계산 지점과 동일한 위치에 부과할 수 없는 경우가 많기 때문에 실제 시험에서 하중을 부과할 수 있는 위치들을 결정한 후, 각 구간에서 계산된 시험하중을 선정된 위치로 재분포시켰다. 그리고, 시험수행의 효율성을 높이면서 작동기 운용이 용이하도록 휘플트리를 적용하여 최종 시험하중 계획을 수립하였고, 비행하중 조건과의 비교를 통해 수립된 시험하중 계획의 신뢰성을 확인하였다.

Partial sectional confinement in a quasi-encased steel-concrete composite beam

  • Hassanzadeh, Amir Masoud;Dehestani, Mehdi
    • Computers and Concrete
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    • 제22권3호
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    • pp.269-278
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    • 2018
  • In the recent decades, the application of composite materials, due to their desirable properties, has increased dramatically. In the present study, a quasi-encased trapezoidal section composite steel beam encased with concrete is thoroughly examined. Calculation of the load bearing capacity is carried out by finite element modeling of concrete and FRP beams with trapezoidal section under the effect of controlled displacement loading. The results are then validated comparing to the existing experimental results obtained from similar studies. Further on, the materials are changed to steel and concrete, and the section is de-signed in such a way that both concrete and steel reach a high percent-age of their load bearing capacity. In the last step, the parameters affecting the bending capacity and the behavior of the semi-confined composite beam are investigated. Results revealed that the beam diagonal web thickness plays the most effective role in load bearing capacity amongst other studied parameters. Furthermore, by analyzing the results on the effect of different parameters, an optimal model for primary beam section is presented, which exhibits a greater load bearing capacity compared to the initial design with the same amount of materials used for both sections.

Experimental study on the compression of concrete filled steel tubular latticed columns with variable cross section

  • Yang, Yan;Zhou, Jun;Wei, Jiangang;Huang, Lei;Wu, Qingxiong;Chen, Baochun
    • Steel and Composite Structures
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    • 제22권3호
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    • pp.663-675
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    • 2016
  • The effects of slenderness ratio, eccentricity and column slope on the load-carrying capacities and failure modes of variable and uniform concrete filled steel tubular (CFST) latticed columns under axial and eccentric compression were investigated and compared in this study. The results clearly show that all the CFST latticed columns with variable cross section exhibit an overall failure, which is similar to that of CFST latticed columns with a uniform cross section. The load-carrying capacity decreases with the increase of the slenderness ratio or the eccentricity. For 2-m specimens with a slenderness ratio of 9, the ultimate load-carrying capacity is increased by 3% and 5% for variable CFST latticed columns with a slope of 1:40 and 1:20 as compared with that of uniform CFST latticed columns, respectively. For the eccentrically compressed variable CFST latticed columns, the strain of the columns at the loading side, as well as the difference in the strain, increases from the bottom to the cap, and a more significant increase in strain is observed in the cross section closer to the column cap.

목조건축문화재에 있어서 변위 및 손상 유형에 관한 연구 (A Study on the Types of the Displacement and Damage of Wooden Architectural Cultural Assets)

  • 신병욱
    • 한국농촌건축학회논문집
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    • 제21권3호
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    • pp.25-32
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    • 2019
  • This study is to derive the types of displacement and damage that occur in wooden architecture cultural assets. Although the wooden architectural cultural assets are being repaired through continuous maintenance, secondary problems frequently occur. This is because the root cause of the problem has yet to be solved. The types of displacement and damage that occur in the wooden architecture cultural asset are classified into three parts: the foundation section, the gagu section, and the roof section. In turn, the three main factors that lead to displacement and damages are the structures' load impact, the durability deterioration, and the imbalance. Load impact is a phenomenon in which the member is subjected to a load that causes deformation or cracks. Durability decline is a natural phenomenon that reduces the performance of lumber as a result of check shake, termite damage, and decay. The imbalance is a condition in which the lumber is twisted and the force balance is lost, due to either drying shrinkage or displacement of the gagu section.

운전자 작업부하를 고려한 최장 허용 직선길이 결정에 관한 연구 (A Study on Evaluating Length Limit in Tangent Section of Highway Based on Driver's Workload)

  • 정봉조;강정규;김주영;장명순
    • 대한교통학회지
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    • 제20권2호
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    • pp.17-26
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    • 2002
  • 본 연구에서는 직선도로와 일반도로 구간을 운전하는 운전자의 각성변화비교와 적정한 도로의 직선길이를 알아보기 위하여 10명의 피실험자를 대상으로 실제 운전 중에 운전자의 좌우측 전두엽과 후두염의 뇌파를 측정하였다. 수집된 Data를 FFT(Fast Fourier Transform)분석에 대해 상대 파워스펙트럼 값을 구하였으며 $\beta$파의 값을 중심으로 분석하였다. 본 연구에서 얻은 결과를 요약하면 다음과 같다. 첫째 운전자의 각성수준 치를 측정하여 새로운 최대 허용 직선길이 기준정립에 활용가능한 방법론을 제시하였다. 둘째 직선구간을 주행하는 경우 일반구간 주행보다 각성정도가 낮은 것으로 나타났다 특히, 운전 중 운전자의 각성을 가장 잘 설명하는 것으로 알려진 후두염에서는 현저한 각성의 감소가 일어났다. 일반구간은 0.821, 직선구간은 2.219로 직선구간에서 약 3배정도의 각성치가 낮아져서 운전자의 운전능력이 현저하게 떨어지는 것으로 평가되었다. 셋째, 운전자 각성수준은 직선도로 진입 후 4.2km지점에 0.428로 나타나 통계적으로 유의한 수준으로 각성이 크게 감소되었으나 3.6km가지는 운전자의 각성수준이 유의한 수준으로 감소하지 않고 있다. 넷째 따라서 20~30대 남성을 대상으로 한 실험조건에서 직선구간의 최장 허용 길이를 기존의 설계속도의 20배로 규정한 2.0km 값보다는 설계속도의 30배인 3.0km로 완화하여도 운전자의 운전능력에 부정적인 영향이 없을 것으로 판단되었다.

점용접된 차체구조용 모자형 단면부재의 축방향 압궤특성 (Collapse Characteristics of vehicle Members with Spot Welded Hat-Shaped Section under Axial Compression)

  • 차천석;양인영;전형주;김용우;김정호
    • 한국안전학회지
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    • 제15권4호
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    • pp.20-27
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    • 2000
  • The hat shaped section members, spot welded strength resisting structures are the most energy absorbing ones of automobile components during the front-end collision. Under the static axial collapse load in velocity of 10mm/min and quasi-static collapse load in velocity of 1000mm/min, the collapse characteristics of the hat shaped section and double hat shaped section member have been analyzed by axial collapse tests with respect to the variations of spot weld pitches on the flanges. In addition, the quasi-static collapse simulations have been implemented in the same condition to the experiment's using FEM package, LS-DYNA3D. The simulated results have been verified in comparison with these from the quasi-static axial collapse tests. With the computational approaches the optimal energy absorbing structures can be suggested. Simulations are so helpful that the optimized data be supplied in designing vehicles in advance.

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Beam-column behavior of concrete filled steel tubes

  • Campione, G.;Scibilia, N.
    • Steel and Composite Structures
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    • 제2권4호
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    • pp.259-276
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    • 2002
  • In the present investigation the experimental and theoretical flexural and compressive behavior of short tubular steel columns filled with plain concrete and fiber-reinforced concrete (FRC) was examined. For a given length of the members, the effects of different geometry and dimensions of the transverse cross-section (square and circular) were investigated. Constituent materials were characterized through direct tensile tests on steel coupons and through compressive and split tension tests on concrete cylinders. Load-axial shortening and load-deflection curves were recorded for unfilled and composite members. Finally, simplified expressions for the calculus of the load-deflection curves based on the cross-section analysis were given and the ultimate load of short columns was predicted.