• 제목/요약/키워드: deflection evaluation

검색결과 311건 처리시간 0.024초

Structural Performance Evaluation of a Precast PSC Curved Girder Bridge Constructed Using Multi-Tasking Formwork

  • Kim, Sung-Jae;Kim, Jang-Ho Jay;Yi, Seong-Tae;Noor, Norhazilan Bin Md;Kim, Sung-Chul
    • International Journal of Concrete Structures and Materials
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    • 제10권sup3호
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    • pp.1-17
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    • 2016
  • Recently, advanced transit systems are being constructed to reduce traffic congestions in metropolitan areas. For these projects, curved bridges with various curvatures are required. Many curved bridges in the past were constructed using aesthetically unpleasant straight beams with curved slabs or expensive curved steel box girders with curved slabs. Therefore, many recent studies have been performed to develop less expensive and very safe precast prestressed concrete (PSC) curved girder. One method of reducing the construction cost of a PSC curved girder is to use a reusable formwork that can easily be adjusted to change the curvature and length of a girder. A reusable and curvature/dimension adjustable formwork called Multi-tasking formwork is developed for constructing efficient precast PSC curved girders. With the Multi-tasking formwork, two 40 m precast PSC box girders with different curvatures were constructed to build a two-girder curved bridge for a static flexural test to evaluate its safety and serviceability performance. The static flexural test results showed that the initial cracking load was 1400 kN, exceeding the design cracking load of 450 kN. Also, the code allowed deflection of 50 mm occurred at a load of 1800 kN, verifying the safety and serviceability of the precast PSC curved bridge constructed using the multi-tasking formwork.

유한요소해에 기초한 원뿔형 압입 물성평가법 (A Conical Indentation Technique Based on FEA Solutions for Property Evaluation)

  • 현홍철;김민수;이진행;이형일
    • 대한기계학회논문집A
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    • 제33권9호
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    • pp.859-869
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    • 2009
  • 물성치와 하중-변위곡선을 일대일 대응 시킬 수 있는 함수를 생성함으로써, 미지 재료에 대한 압입시험 데이터로부터 바로 재료물성을 찾는 압입물성평가 기법을 제시했다. 원뿔형 압입 유한요소해석으로 압입자 중심각이 압입 하중-변위 곡선에 주는 영향을 살펴 보았다. 이로부터 한 압입자 중심각에 대해 같은 Kick's law 계수 C를 갖는 두 재료들이 압입자 중심각이 변하면 서로 다른 C 값들을 가짐을 확인했다. 이어 영률, 항복강도, 변형경화지수와 하중-변위곡선 사이의 상관관계들을 분석하고, 항복변형률이 변형경화 지수와 더불어 중요한 변수임을 확인했다. 이 두 특성들을 바탕으로 이중원뿔형 압입 물성평가 수식들을 작성했다. 1회 압입 후 재료의 영률을 평가하고, 두 압입자를 이용해 얻은 하중-변위 곡선들로부터 곡률계수들을 구해 항복변형률과 변형경화 지수를 구했다. 제시된 물성평가법은 압입 하중-변위곡선들로부터, 압입자 물성과 선단반경에 상관없이, 평균오차 2% 내에서 재료 물성값들을 준다.

화재에 노출된 교량하부 강합성 구조물에 대한 열-구조 연성 병렬화재해석 (Thermal-Structure Interaction Parallel Fire Analysis for Steel-Concrete Composite Structures under Bridge Exposed to Fire Loading)

  • 윤성환;길흥배;이일근;김우석;박대효
    • 한국전산구조공학회논문집
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    • 제26권4호
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    • pp.283-292
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    • 2013
  • 본 논문은 교량 하부에서 발생된 화재에 대한 강-콘크리트 합성구조의 전반적 국부적 손상평가를 위한 수치해석적 연구이다. 수치해석의 정확성 및 효율성을 높이기 위해 구성재료의 과도 비선형 열적 열역학적 특성이 고려된 열-구조 연성병렬 화재해석 기법이 제안되고, ANSYS solver와 연결되어 해석이 수행되며, 표준화재시험과 비교 검증된다. 검증된 해석기법을 통해 국내에서 발생된 부천고가교 합성구조에 대한 화재손상해석이 수행된다. 해석결과 강박스 거더의 하부 플랜지 및 복부의 경우 임계온도를 초과하였고 구조적 처짐과 변형 형상이 화재사고 결과와 비교적 잘 일치하였다.

FWD 방향을 고려한 콘크리트 포장 하부 상태 평가 (Evaluation of State of Concrete Pavement Sublayers Considering Direction of FWD)

  • 이재훈;이재훈;손덕수;유주호;정진훈
    • 한국도로학회논문집
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    • 제16권6호
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    • pp.69-78
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    • 2014
  • PURPOSES : The purpose of this paper is showing that the state of pavement sublayers can be evaluated differently according to direction of FWD. METHODS : The concrete pavement slabs above subgrade without anything, subgrade with cavity, and box culvert were modeled by finite element method(FEM). The modeled pavements were analyzed by changing the direction of falling weight deflectometer(FWD). The deflection results obtained from FEM were used to calculate radius of relative stiffness and composite modulus of subgrade reaction using AREA method. Then, the analyzed results were compared to the results of the test performed at the Korea Expressway Corporation(KEC) test road. RESULTS : The composite modulus of subgrade reaction increased with subgrade elastic modulus, while radius of relative stiffness decreased. The pavement sections of pure earth showed the consistent results regardless of FWD direction. In case there was cavity, the radius of relative stiffness was larger and composite modulus of subgrade reaction was smaller when FWD was leaving the cavity than when approaching the cavity. This pattern became clear when the cavity got larger. In case of the section with box culvert, the pattern was opposite to the case of cavity. When the soil cover depth increased, the effect of box culvert got smaller. When the load was applied far from the cavity and box culvert, the effect was also declined. The test performed at the KEC test road showed identical results to those of finite element analysis. CONCLUSIONS : The direction of FWD should be considered in evaluation of the state of pavement sublayers because it can be evaluated differently even under identical condition.

유한요소법에 의한 PC 농업용 사이로의 해석에 관한 연구 -제2보 탄성지반에 놓인 경우- (-An Analysis of Pre-Stressed Concrete Farn Sild by the Finite Element Method-)

  • 조진구;조현영;박병기
    • 한국농공학회지
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    • 제24권3호
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    • pp.73-83
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    • 1982
  • study aims to derive a rational method for the analysis of the farm silo supported on an elastic foundation in which it is assumed that the reaction pressure of the soil at a point is proportional to the deflection at that point. In order to investigate the effects of an elastic foundation on the behaviour of the structures on it, the analysis of the farm silo resting on an elastic foundation was compared with the solution that the ground support may be assumed uniform (which was obtained from part I of this paper). To calculate the deformation of an elastic foundation, Boussinesq's solution which allows an interaction of the various parts of ground was adopted. In this case, the foundation was treated as a superparametric element additionally. In the evaluation of an element stiffness matrix, Gauss quadrature' was used. In above numerical integration, 3-point rule for the farm silo wall and the footing was introduced and 2-point rule for the evaluation of a reaction between the footing and the elastic foundation was adopted. The stresses of a farm silo on an elastic foundation were smaller than those which the distribution of contact pressure between the footing and the soil is assumed uniformly. Since the differences of stresses were remarkable in PS structures than RC structures, it is desirable that designers take into account the effect of an elastic foundation for the case of PS structures. It can be noted that while the effect of an elastic foundation was more conspicuously observed in near of the ground, the value of stresses at far from the soil was little affected by an supported soil.

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콘크리트 포장용 고내구성 대체 다웰바의 실내공용성 평가 (Laboratory Performance Evaluation of Alternative Dowel Bar for Jointed Concrete Pavements)

  • 박성태;박준영;이재훈;김형배
    • 한국도로학회논문집
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    • 제15권1호
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    • pp.23-36
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    • 2013
  • PURPOSES: The problem under this circumstance is that the erosion not only drops strength of the steel dowel bar but also comes with volume expansion of the steel dowel bar which can reduce load transferring efficiency of the steel dowel bar. To avoid this erosion problem, alternative dowers bars are developed. METHODS: In this study, the bearing stresses between the FRP tube dowel bar and concrete slab are calculated and compared with its allowable bearing stress to check its structural stability in the concrete pavement. These comparisons are conducted with several cross-sections of FRP tube dowel bars. Comprehensive laboratory tests including the shear load-deflection test on a full-scale specimen and the full-scale accelerated joint concrete pavement test are conducted and the results were compared with those from the steel dowel bar. RESULTS: In all cross-sections of FRP tube dowel bars, computed bearing stresses between the FRP tube dowel bar and concrete slab are less than their allowable stress levels. The pultrusion FRP-tube dowel bar show better performance on direct shear tests on full-scale specimen and static compression tests at full-scale concrete pavement joints than prepreg and filament-winding FRP-tube dowel bar. CONCLUSIONS: The FRP tube dowel bars as alternative dowel bar are invulnerable to erosion that may be caused by moisture from masonry joint or bottom of the pavement system. Also, the pultrusion FRP-tube dowel bar performed very well on the laboratory evaluation.

Implementation of Smart Automatic Warehouse to Improve Space Utilization

  • Hwa-La Hur;Yeon-Ho Kuk;Myeong-Chul Park
    • 한국컴퓨터정보학회논문지
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    • 제28권10호
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    • pp.171-178
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    • 2023
  • 본 논문은 공간 활용 극대화를 위한 스마트 자동 적재창고를 제안한다. 기존 수직형 적재창고의 트레이 최대 강성 하중이 100kg로 설계되어 공간내에 적재할 수 있는 팔레트가 극히 제한적이라는 문제점을 가진다. 본 논문에서는 최대 수직강성을 300kg으로 설계하여 공간 활용도를 극대화할 수 있는 스마트 적재창고를 설계하고 구현된 결과를 보인다. 구현된 적재창고의 성능평가 결과를 살펴보면, 최대 적재하중은 500.6kg으로 당초 설계 및 요구도를 달성하였으며, 수직강하속도는 0.5m/s, 장치의 작동 소음은 67.1dB, 팔레트의 입출고 시간은 36.92초, 트레이 처짐량은 4mm로 모든 평가항목에서 우수한 성능을 보였다. 또한, 제어부와 조작 패널의 UI를 별도로 설계하는 PLC 방식의 제어방식을 PC 시스템으로 통합하여 다양한 공정관리 시스템과의 연동성과 유지보수성을 증대하였다. 향후 IoT 센서기반의 물류 로봇을 연동하여 완전 자동화된 스마트 적재창고로 발전시키고자 한다.

탄성받침의 강성특성에 대한 실험연구 (A Experimental Study on the Stiffness Characteristics of Elastomeric Bearings)

  • 윤혜진;조창백;김영진;곽임종
    • 대한토목학회논문집
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    • 제28권4A호
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    • pp.475-485
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    • 2008
  • 이 논문은 국내 탄성받침의 성능과 신뢰성 향상을 위한 일환으로, 탄성받침의 설계/제작/품질평가 기준인 KS F 4420의 강성 관련 개선방향을 제안하였다. 이를 위하여 KS F 4420의 압축탄성계수, 강성측정방법, 성능평가방법을 Eurocode, 일본 도로교지승편람, ISO 기준과 비교 분석하였으며, KS F 4420의 강성 제안식과 실측치와의 차이를 알아보기 위하여 국내 일반적인 탄성받침을 대상으로 수직강성과 전단강성 측정 실험을 실시하였다. 실측된 수직강성은 강성정의 방법에 따라 20%정도 차이를 나타냈으며, 전단강성은 13%정도 차이를 나타냈다. 또한 실측된 강성은 KS F 4420의 제안식과의 편차도 큰 것으로 나타났다. 교량받침이 요구되는 수직강성을 가지지 못하는 경우 교량 상부 구조물의 부등침하 및 응력집중 현상을 야기할 수 있다. 따라서 국내 받침이 설계에서 요구되는 성능을 갖기 위해서는 다양한 형상, 형상계수를 갖는 받침의 성능평가를 통하여 국내 실정에 맞는 압축탄성계수식과 성능평가기준의 마련이 필요하다고 판단된다.

동하중 등가 설계압을 받는 고속 경구조선 알루미늄 보강판부재의 구조응답 고찰 (Consideration of the Structural Response of High Speed Aluminum Planning Boat Stiffened Plate Member subjected to the Simplified Equivalent Dynamic Design Pressure)

  • 함주혁;강병윤;추경훈
    • 한국해양공학회:학술대회논문집
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    • 한국해양공학회 2004년도 학술대회지
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    • pp.408-413
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    • 2004
  • High speed planning boats also have been required more and more the rational strength analysis and evaluation for the optimal structural design in respect of the structural lightness according to the high speed trend. Even though the suggestion of the simple type equation for the equivalent dynamic pressure is reasonable to design the scantling of ship structure conveniently, many research activities for more reasonable improvement of the simple design pressure, have been continued to suggest the more accurate equivalent static description of tire structural response such as the deflection and stress of hull structure. In this research, we focus on the aluminum bottom stiffened plate structure in which structural scantling is mainly depend on the local loads such as dynamic or impact pressure without other load effects and structural response for the simple dynamic equivalent pressure was investigated through the structural analysis. In order to investigate the structural response of the bottom stiffened plate structure subjected to the dynamic equivalent design pressure, linear and nonlinear structural analysis of the bottom stiffened plate structure of 4.3 ton aluminum planning boat was performed based on the equivalent static applied loads which were derived from the KR regulation and representative one among various dynamic equivalent pressure equations. From above analysis results, we found that the response such as deflection and stress of plate member was similar with the response results of one plate member model with fixed boundary, which was published previous paper and in case of KR design loading, all response of stiffened plate structure were within elastic limit. Through the nonlinear analysis, nearly elastic behavior including the slight geometrical nonlinear response was dominant but plastic local zone was appeared at $85\%$ limit load. Therefore, we can say that through tire linear and nonlinear analysis, this stiffened plate member has no structural strength problem based on the yield criteria in case within $60\%$ limit load except the other strength point of view such as the fatigue and buckling problem.

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라이닝 재료에 따른 저널 베어링의 압력 분포 특성 (Characteristics of Pressure Distribution of Journal Bearing according to Lining Material)

  • 신상훈;임채환;고대은
    • 한국산학기술학회논문지
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    • 제18권9호
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    • pp.480-485
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    • 2017
  • 저널 베어링인 선미관 후부 베어링의 후방부에 발생하는 발열 사고는 프로펠러 하중이 추진축을 처지게 하여 후방부에 과도한 국부압착압력이 작용하는 것이 주된 원인이다. 선미관 베어링의 라이닝 재료로 사용되는 화이트 메탈보다 영률이 훨씬 작은 재료를 사용한다면 축과의 접촉 면적을 크게 함으로써 발열 사고의 원인이 되는 국부압착압력의 저감이 가능할 것이다. 본 연구의 목적은 영률이 작은 재료로 만들어진 베어링 제품의 적용에 앞서, 축계 해석을 통해 새로운 제품 적용시의 압착압력 분포특성을 파악하고 허용 압력을 결정하는데 있다. 국부압착압력의 계산에 있어서는 접촉 너비를 따라 반 타원형상의 압력 분포를 가정한 Hertzian 접촉 조건을 도입하였으며, 엔진 가동 상태의 프로펠러 하중, 열 효과 및 선체 변형을 고려하였다. 해석 결과를 통해 영률이 작은 제품은 기존 제품을 적용한 실적선에 비해 국부압착압력의 상당한 저감이 가능함을 확인하였고, 또한 하중 조건이 바뀌더라도 압력 분포의 변화가 작아 강건 설계가 가능한 장점이 있음을 알 수 있었다. 본 연구를 통해 제시되는 제품의 성능 사양을 제조사가 보장한다면 영률이 작은 제품의 적용이 가능하리라 판단된다.