• 제목/요약/키워드: Longitudinal shrinkage

검색결과 70건 처리시간 0.025초

Fiber Morphology and Physical Characteristics of Gigantochloa atter at Three Different Ages and Heights of Culms for Better Utilization

  • Marsoem, Sri Nugroho;Setiaji, Fajar;Kim, Nam-Hum;Sulistyo, Joko;Irawati, Denny;Nugroho, Widyanto Dwi;Pertiwi, Yus Andini Bekti
    • Journal of the Korean Wood Science and Technology
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    • 제43권2호
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    • pp.145-155
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    • 2015
  • Fiber morphology and basic characteristics of Legi bamboos (Gigantochloa atter) growing on Yogyakarta were studied considering their age and height positions in the culms. Culms of 4, 16, and 40 months were harvested, and their total lengths were measured. The length, diameter, and wall thickness of each internode were measured. All the sample culms were divided into three different parts along the height, and their fiber dimension and physical properties were observed. The data obtained were analyzed by analysis of variance. The results showed that the culms had a diameter of 5.8 to 10.8 cm. The lowest internodes always showed the shortest length and the thickest wall. The culms had an average fiber length of 2.41 mm and Runkel ratio of 0.61. Fiber length was affected by the height, while fiber diameter, lumen diameter, and fiber wall thickness were affected significantly by the age of the culms. The culms had high green moisture content (GMC) of 157.89%, and basic density (BD) of $456.67kg.m^{-3}$, a total longitudinal shrinkage of 0.35%, and relatively low R/T shrinkage ratio. The interactions between age and height were affected GMC and BD.

철도교용 프리케스트 바닥판의 온도변화를 고려한 적정한 종방향 프리스트레스 수준의 산정 (Evaluation of Proper Level of the Longitudinal Prestress for the Precast Deck of Railway Bridges Considering the Temperature Change)

  • 전세진;김영진;김성운;김철영
    • 대한토목학회논문집
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    • 제26권3D호
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    • pp.499-509
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    • 2006
  • 프리캐스트 콘크리트 바닥판은 일반적인 현장타설 바닥판과 비교할 때 많은 장점을 가지고 있으며, 최근 국내에서도 도로교의 노후 바닥판 교체 공사 및 신설 도로교에 성공적으로 적용되고 있다. 하지만, 철도교에 프리캐스트 바닥판을 적용하기 위해서는 활하중, 장대레일 종하중, 시제동하중, 온도변화, 건조수축 등 도로교와 철도교의 하중 특성의 차이를 적절히 반영한 설계가 요구되며, 특히 횡방향 이음부의 연속성을 확보하여 일체화시키기 위해 바닥판 내부에 배치한 종방향 텐던의 적정한 프리스트레스 수준을 평가하는 연구가 요망된다. 따라서 본 연구에서는 철도교에 빈번히 적용되는 PSC 합성거더 철도교에 대하여 정밀한 3차원 유한요소해석을 통해 주요 설계하중이 유발하는 바닥판의 종방향 응력을 산정하였다. 그 결과 종방향 인장응력을 유발하는 지배적인 요인은 활하중보다는 바닥판의 온도 저하나 시동하중으로 나타났으며, 특히 온도의 영향은 설계기준상의 제안식 또는 이론식과도 비교해 가며 중점적으로 분석하였다. 종방향 인장응력을 상쇄하여 올바른 구조거동을 유도하기 위한 프리스트레스의 범위를 고찰한 결과, 대상 철도교에 대해 2.4 MPa 이상의 프리스트레스를 도입하는 것이 적정한 것으로 나타났으며 이는 도로교의 경우와 유사한 수준으로 평가되었다.

N-Methylmorpholine N-Oxide 수용액을 이용한 셀룰로오스 섬유들간의 용제접착에 의한 종이의 물성 변화 (Changes in Physical Properties of Paper by Solvent-Bonding between Cellulose Fibers Using Aqueous Solution of N-Methylmorpholine N-Oxide)

  • 이양헌;박찬헌;이현진;이선희
    • 한국염색가공학회지
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    • 제11권1호
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    • pp.34-41
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    • 1999
  • To examine the increase of paper strength by solvent-bonding using N-methylmorpholine N-oxide (NMMO), a paper was treated with aqueous solutions of NMMO, concentrated at $90^\circ{C}$ for selected periods of time, and pressed for 5 seconds followed by washing and drying. The effect of the increasing NMMO concentration on bonding state and some important properties of samples were mainly investigated. With increasing concentration of NMMO, the degree of bonding between fibers was increased, the fiber cross-sectional shape was changed from 'thin ribbonlike' to 'round rodlike' by swelling with solvent, and the longitudinal waves (crimp) were introduced to fibers, hence the shrinkage, weight per unit area, and thickness of paper were increased. Consequently, the tensile strength and elongation, under standard and wet conditions, and the stiffness were increased, and the water absorption was decreased generally with increasing concentration of NMMO. The moisture regain of treated samples was lower than that of the untreated sample, because of the reduction of space between fibers. But the moisture regain was increased a little with increasing concentration of NMMO due to the fiber swelling with NMMO followed by structural relaxation.

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고속전철 PSC 박스거더교 합성거동의 현장 계측에 관한 연구 (Field Investigation of Composite Behavior in High-speed Railway PSC Box Girder Bridge)

  • 김영진;김병석;강재윤
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 가을 학술발표회 논문집(II)
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    • pp.995-1000
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    • 2000
  • Segmentally erected prestressed concrete box girder bridges have been widely used in Korean high speed railway. Segmental erection has been accomplished along the longitudinal direction and across the depth of cross section. The cross section is similar to a composite cross section, composed of old and new segments. Because these segments have different time-dependent creep and shrinkage properties, a stress redistribution takes place during the construction period. It is the main objective in this research to investigate this behavior. An actual bridge was instrumented with 96 vibrating wire embedded type strain gauges, 6 electronic type steel strain gauges, and 75 thermocouples. Two span continuous high speed railway bridge was selected. Two points of importance, such as the midpoint of the first span and the point of interior support, along the span of the girder were chosen to monitor the time dependent behaviors for an extended period of time. The data collection was starting just after concrete girder were cast and is still going on. According to the measured results, the strain distributions across the depth of the section at midspan and interior support were not continuous and the important redistribution of stresses takes place. Thus, rational design of prestressed concrete composite box girder bridges need.

Improvement of inspection system for common crossings by track side monitoring and prognostics

  • Sysyn, Mykola;Nabochenko, Olga;Kovalchuk, Vitalii;Gruen, Dimitri;Pentsak, Andriy
    • Structural Monitoring and Maintenance
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    • 제6권3호
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    • pp.219-235
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    • 2019
  • Scheduled inspections of common crossings are one of the main cost drivers of railway maintenance. Prognostics and health management (PHM) approach and modern monitoring means offer many possibilities in the optimization of inspections and maintenance. The present paper deals with data driven prognosis of the common crossing remaining useful life (RUL) that is based on an inertial monitoring system. The problem of scheduled inspections system for common crossings is outlined and analysed. The proposed analysis of inertial signals with the maximal overlap discrete wavelet packet transform (MODWPT) and Shannon entropy (SE) estimates enable to extract the spectral features. The relevant features for the acceleration components are selected with application of Lasso (Least absolute shrinkage and selection operator) regularization. The features are fused with time domain information about the longitudinal position of wheels impact and train velocities by multivariate regression. The fused structural health (SH) indicator has a significant correlation to the lifetime of crossing. The RUL prognosis is performed on the linear degradation stochastic model with recursive Bayesian update. Prognosis testing metrics show the promising results for common crossing inspection scheduling improvement.

상태평가 결과 기반 고속도로 PSC Box 거더교 상부플랜지 열화·손상 실태 고찰 (A Review of the Deterioration and Damage of the Top Flange of the Highway PSC Box Girder Bridge based on the Condition Assessment Results)

  • 구영호;한상묵
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권6호
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    • pp.23-32
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    • 2022
  • PSCB 거더교는 고속도로에서 공용중인 교량의 4%로 많은 비중을 차지하고 있지는 않지만, PSCB 거더교의 약 98%가 1·2종 교량이며 전체 교량 연장의 약 16%(192km)를 차지하는 만큼 유지관리가 매우 중요한 교량 형식 중 하나이다. PSCB 거더교의 손상유형을 분석하기 위해 고속도로 공용중 교량의 가설공법, 제설환경 노출등급 비율을 고려한 62개소(477경간) 정밀안전진단 보고서를 선정하여 상세 분석을 수행함과 동시에 실제 열화·손상이 발생한 교량의 현장조사를 수행하였으며, 그 결과 대부분의 열화·손상 원인은 교면포장으로 유입된 우수(염수)가 상부플랜지와 계면 사이에 체수되어 콘크리트가 열화되고, 이후 교면포장의 균열 및 파손, 철근의 부식·팽창으로 인한 콘크리트 박락 등으로 진전되어 나타난 것으로 조사되었다. 또한, 상부플랜지 하면에 발생한 교축방향 균열 원인은 수화열, 건조수축 등으로 인한 균열로 판단된다. 결론적으로 PSCB 거더교의 특성을 고려한 합리적인 유지관리를 위해서는 시공초기 발생되는 상부플랜지 하면 교축방향 균열 제어를 위한 설계측면의 개선 방안이 제시되어야 할 것이며, 공용중 발생되는 열화는 상부플랜지 열화 이전 교면포장의 유지관리를 통한 선제적 대응과 제설환경 노출등급에 따른 차별화된 유지관리 방안이 제시되어야 할 것으로 판단된다.

텐던커플러를 사용한 프리스트레스트 콘크리트 교량부재의 이음부 응력분포 특성 (Stress Distribution on Construction Joint of Prestressed Concrete bridge Members with Tendon Couplers)

  • 오병환;채성태;김병석;이만섭
    • 콘크리트학회논문집
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    • 제13권1호
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    • pp.1-8
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    • 2001
  • 최근 프리스트레스트 콘크리트 연속 교량은 다양한 공법에 의해 시공되어지고 있으며, 특히 세스먼트로 시공되는 ILM(Incremental Launching Method)과 MSS(Movable Scaffolding System) 공법을 사용하는 경우 교량 단면에서 시공이음이 발생하게 된다. 이러한 시공이음부에서 연속적인 트리스트레스 하중을 도입하기 위해서는 텐던을 겹침이음(overlapping)하거나 텐던 커플러를 사용하는 방법이 있다. 본 연구에서는 텐던 커플러를 사용한 프리스트레스트 콘크리트 교량 부재의 텐던 접속이음에 대한 응력 상태를 구명하고자 하였으며, 이를 위해 텐던의 커플링 효과를 고려한 실험과 유한요소 해석을 수행하였다. 유한요소 해석 결과와 실험에서 얻은 접속이음부의 응력 상태는 비교적 잘 일치하는 것으로 잘 나타났으며, 텐던 커플러를 사용한 접속이음부의 응력 상태는 텐던 커플러를 사용하지 않은 경우에 비해 종방향 및 횡방향 응력 상태가 상당히 다르게 나타나고 있다. 특히 구조적으로 문제가 되는 종방향 압축응력은 접속이음부 주위에서 텐던의 접속 비율이 증가함에 따라 크게 감소하는 것으로 나타나고 있다. 이러한 텐던 접속이음부 주위에서의 종방향 압축 응력의 감소는 활하중, 온도하중 및 건조수축으로 인해 프리스트레스트 교량에 인장응력이 작용할 때 균열이 발생할 수 있는 것으로 사료된다. 본 연구에서 얻은 텐던 접속이음부에서의 응력 상태는 향후 텐던 접속이음부의 구조 거동을 평가하고, 해석 및 설계에 유용한 기초 자료를 제시하고 있다.

단면 상세가 변화된 LB-DECK의 균열하중에 대한 실험적 연구 (Experimental Study on the Cracking Loads of LB-DECKs with Varied Cross-Section Details)

  • 윤석구;조규대
    • 콘크리트학회논문집
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    • 제23권5호
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    • pp.657-665
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    • 2011
  • 프리캐스트 콘크리트 페널의 일종인 LB-DECK은 콘크리트 교량 바닥판의 시공시 LB-DECK 위에 현장타설되는 콘크리트와 합성 거동하는 영구 콘크리트 거푸집이다. 현행 LB-DECK은 두께가 60 mm인 콘크리트 슬래브와 슬래브 내부에 높이 125 mm인 lattice-girder들의 일부가 매립되어 있는 구조이다. 이러한 LB-DECK은 시공하중에 의해 종방향 균열이 발생하지 않도록 거더 간격이 충분히 작은 교량 바닥판 시공시 주로 적용되고 있다. 이 논문에서는 최근 강박스 교량과 같이 교량 바닥판의 지간장이 긴 교량에 LB-DECK를 적용할 경우 콘크리트 하부에 발생될 수 있는 종방향 균열을 최소화시키기 위하여, LB-DECK의 균열강도를 평가하기 위한 실험적 연구를 수행하였다. LB-DECK 콘크리트 슬래브의 두께, lattice-girder의 높이, 그리고 top-bar의 지름을 변수로 하는 8종류 24개의 비합성 보부재와 4가지 종류의 합성 보부재 4개를 제작한 후 정적하중 재하실험을 수행하였다. 실험체에 대한 정적하중 재하 실험을 통해 각 실험체의 균열하중과 극한하중을 평가하였으며, 또한 최종 파괴시까지 중앙부 처짐, top-bar의 변형률, 콘크리트 슬래브의 균열 진전 양상 그리고 최종 파괴 형태를 살펴보았다. 각 실험체로부터 얻은 균열하중의 크기는 탄성해석을 통해 얻은 해석치와 비교하였다. 또한 콘크리트 건조수축이 균열강도에 미치는 영향을 파악하기 위하여 AEMM 방법을 이용한 장기 거동 해석을 수행하였다. 실험 결과를 토대로, 지간장이 긴 교량 바닥판에 LB-DECK 적용시, 균열 발생을 예방할 수 있도록 LB-DECK 콘크리트 슬래브의 균열강도와 설계상세를 검토하였다.

Construction stages analyses using time dependent material properties of concrete arch dams

  • Sevim, Baris;Altunisik, Ahmet C.;Bayraktar, Alemdar
    • Computers and Concrete
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    • 제14권5호
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    • pp.599-612
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    • 2014
  • This paper presents the effects of the construction stages using time dependent material properties on the structural behaviour of concrete arch dams. For this purpose, a double curvature Type-5 arch dam suggested in "Arch Dams" symposium in England in 1968 is selected as a numerical example. Finite element models of Type-5 arch dam are modelled using SAP2000 program. Geometric nonlinearity is taken into consideration in the construction stage analysis using P-Delta plus large displacement criterion. In addition, the time dependent material strength variations and geometric variations are included in the analysis. Elasticity modulus, creep and shrinkage are computed for different stages of the construction process. In the construction stage analyses, a total of 64 construction stages are included. Each stage has generally $6000m^3$ concrete volume. Total duration is taken into account as 1280 days. Maximum total step and maximum iteration for each step are selected as 200 and 50, respectively. The structural behaviour of the arch dam at different construction stages has been examined. Two different finite element analyses cases are performed. In the first case, construction stages using time dependent material properties are considered. In the second case, only linear static analysis (not considered construction stages) is taken into account. Variation of the displacements and stresses are obtained from the both analyses. It is highlighted that construction stage analysis using time dependent material strength variations and geometric variations has an important effect on the structural behaviour of arch dams. The maximum longitudinal, transverse and vertical displacements obtained from construction stages and static analyses are 1.35 mm and 0 mm; -8.44 and 6.68 mm; -4.00 and -9.90 mm, respectively. In addition, vertical displacements increase from the base to crest of the dam for both analyses. The maximum S11, S22 and S33 stresses are obtained as 1.60MPa and 2.84MPa; 1.39MPa and 2.43MPa; 0.60MPa and 0.50MPa, respectively. The differences between maximum longitudinal, transverse, and vertical stresses obtained from construction stage and static analyses are 78%, 75%, and %17, respectively. On the other hand, there is averagely 12% difference between minimum stresses for all three directions.

PCTC 박판 블록 용접 변형에 관한 연구 (A Study on Welding Deformation of thin plate block in PCTC)

  • 강성구;양종수;김호경
    • 대한용접접합학회:학술대회논문집
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    • 대한용접접합학회 2009년 추계학술발표대회
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    • pp.97-97
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    • 2009
  • The use of thin plate increases due to the need for light weight in large ship. Thin plate is easily distorted and has residual stress by welding heat. Therefore, the thin plate should be carefully joined to minimize the welding deformation which costs time and money for repair. For one effort to reduce welding deformation, it is very useful to predict welding deformation before welding execution. There are two methods to analyze welding deformation. One is simple linear analysis. The other is nonlinear analysis. The simple linear analysis is elastic analysis using the equivalent load method or inherent strain method from welding experiments. The nonlinear analysis is thermo-elastic analysis which gives consideration to the nonlinearity of material dependent on temperature and time, welding current, voltage, speed, sequence and constraint. In this study, the welding deformation is analyzed by using thermo-elastic method for PCTC(Pure Car and Truck Carrier) which carries cars and trucks. PCTC uses thin plates of 6mm thickness which is susceptible to welding heat. The analysis dimension is 19,200mm(length) * 13,825mm(width) * 376mm(height). MARC and MENTAT are used as pre and post processor and solver. The boundary conditions are based on the real situation in shipyard. The simulations contain convection and gravity. The material of the thin block is mild steel with $235N/mm^2$ yield strength. Its nonlinearity of conductivity, specific heat, Young's modulus and yield strength is applied in simulations. Welding is done in two pass. First pass lasts 2,100 second, then it rests for 900 second, then second pass lasts 2,100 second and then it rests for 20,000 second. The displacement at 0 sec is caused by its own weight. It is maximum 19mm at the free side. The welding line expands, shrinks during welding and finally experiences shrinkage. It results in angular distortion of thin block. Final maximum displacement, 17mm occurs around welding line. The maximum residual stress happens at the welding line, where the stress is above the yield strength. Also, the maximum equivalent plastic strain occurs at the welding line. The plastic strain of first pass is more than that of second pass. The flatness of plate in longitudinal direction is calculated in parallel with the direction of girder and compared with deformation standard of ${\pm}15mm$. Calculated value is within the standard range. The flatness of plate in transverse direction is calculated in perpendicular to the direction of girder and compared with deformation standard of ${\pm}6mm$. It satisfies the standard. Buckle of plate is calculated between each longitudinal and compared with the deformation standard. All buckle value is within the standard range of ${\pm}6mm$.

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