• 제목/요약/키워드: fiber length distribution

검색결과 117건 처리시간 0.027초

연속파 파이버 레이저를 이용한 SS400의 절단 특성에 관한 연구 (A Study on SS400 Cutting Characteristics using Continuous Wave Fiber Laser)

  • 오용석;이가람;박은경;유영태
    • 한국생산제조학회지
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    • 제21권4호
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    • pp.644-650
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    • 2012
  • This paper show the 2kW fiber laser cutting properties of SS400. The study was comparison of traditional 4kW $CO_2$ Laser cutting and 2kW Fiber laser cutting characteristics for the application of Industrial 2D Laser Cutting Machine. The laser used in this investigation was an IPG YLU-2000 multi-mode Ytterbium Fiber machine with a maximum power of 2000W and a wave length of 1070 nm. The laser was used in its Continuous Wave (CW) mode with an approximately top hat beam intensity distribution. Fiber laser high quality cuts at a large range of speeds (ranging from 2000 to 3800 mm/min) which has been obtained for the 2.3mm Sheet of SS400. 2kW power Fiber laser cut was able to max. 20mm sheets of SS400 (speed range from 650 to 850 mm/min). Fiber laser cutting used in conventional hole nozzle could cut 12mm SS400 but used in special dual cutting nozzle could cut 20mm SS400.

SMF와 DCF의 길이와 분산 계수가 불규칙하게 분포하는 분산 제어 링크 (Dispersion-managed Links with the Irregular Distribution of the Lengths and Dispersion Coefficients of the SMFs and the DCFs)

  • 이성렬
    • 한국항행학회논문지
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    • 제22권3호
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    • pp.240-245
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    • 2018
  • 전체 광 중계 구간 모두 불규칙한 분산 계수를 갖는 단일 모드 광섬유와 분산 보상 광섬유 (DCF; dispersion compensating fiber)를 이용한 융통적인 분산 제어 링크 구조를 제안하였다. 링크의 융통적 구성은 각 전송 반 구획에서 DCF의 분산 계수를 기준으로 이들을 인위적으로 분포시켜서 가능하게 하였다. 광 위상 공액기 전의 전송 반 구획에서는 DCF의 분산 계수를 점진적으로 증가시키고, 광 위상 공액기 다음의 전송 반 구획에서는 DCF의 분산 계수를 점진적으로 감소시키는 'AD' 분포에서 왜곡된 파장 분할 다중(WDM; wavelength division multiplexed) 신호가 최상으로 보상되는 것을 확인하였다. 따라서 왜곡된 WDM 채널의 보상 효과를 더욱 증가시키기 위해서는 광섬유의 길이, 중계 구간 당 잉여 분산뿐만 아니라 광섬유의 분산 계수에 상관없이 'AD' 분포를 선택할 필요가 있다는 것을 확인하였다.

평균변형률을 이용한 3경간 이상 연속 철골보의 안전성 평가 기법 (Mathematical model for assessment of the safety of over three-span steel beams based on average strains from long gage optic sensor)

  • 정성문;이홍민;박효선
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2006년도 정기 학술대회 논문집
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    • pp.159-166
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    • 2006
  • Although the strain distribution along the length of a beam in buildings or infrastructures is non-uniform, most fiber optic sensors are point sensors that can measure the strain only at a local point of a beam. Long gage fiber optic sensors that measure integrated strain over a relatively long length can consider strain variation. This type of sensor was found to be efficient and useful for monitoring large-scale structures. On the other hand, the maximum strain or stress in a beam can not be measured with long gage optic sensors. However, for the assessment of the safety of multi-span steel beams subjected to various vertical loads, the maximum strain or stress measured during monitoring is required for comparison with the allowable stress of the beam calculated by a design code. Therefore, in this paper, mathematical models are presented for determination of the maximum values of strains in more three-span steel beams based on the average strains measured by long gage optic sensors.

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Investigation of elasto-plastic seismic response analysis method for complex steel bridges

  • Tang, Zhanzhan;Xie, Xu;Wang, Yan;Wang, Junzhe
    • Earthquakes and Structures
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    • 제7권3호
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    • pp.333-347
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    • 2014
  • Multi-scale model can take both computational efficiency and accuracy into consideration when it is used to conduct elasto-plastic seismic response analysis for complex steel bridges. This paper proposed a method based on pushover analysis of member sharing the same section pattern to verify the accuracy of multi-scale model. A deck-through type steel arch bridge with a span length of 200m was employed for seismic response analysis using multi-scale model and fiber model respectively, the validity and necessity of elasto-plastic seismic analysis for steel bridge by multi-scale model was then verified. The results show that the convergence of load-displacement curves obtained from pushover analysis for members having the same section pattern can be used as a proof of the accuracy of multi-scale model. It is noted that the computational precision of multi-scale model can be guaranteed when length of shell element segment is 1.40 times longer than the width of section where was in compression status. Fiber model can only be used for the predictions of the global deformations and the approximate positions of plastic areas on steel structures. However, it cannot give exact prediction on the distribution of plastic areas and the degree of the plasticity.

극저온 액화가스 화물창 2차방벽 구조 열 응력 취약 부 Prolonged 길이 고려 유리섬유 강화 복합재 기계적 물성 평가 (Evaluation of Mechanical Performance Considering Prolonged Length of Glass Fiber-Reinforced Composite on Structure Weakness by Thermal Stress at Secondary Barrier in Cryogenic Liquified Gas Storage)

  • 정연제;김희태;김정대;김정현;김슬기;이제명
    • Composites Research
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    • 제36권4호
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    • pp.246-252
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    • 2023
  • 멤브레인 형 LNG 화물창시스템(Cargo containment system, CCS) 내 유리섬유 강화 복합재료 기반 2차 방벽 설치 시 본딩 자동화 머신(automatic bonding machine, ABM) 활용한 prolonged 구조임과 동시에 양단 접착 고정 사이 비 접착(non-bonding, N-B) 영역의 복합재에서 극저온 열 수축 기인한 상당한 열 응력이 발생하기 때문에 이를 고려한 구조 안전성평가 관점에서 수행된 연구가 있으나 실제로 무한히 긴 길이 고려한 기계적 물성 평가를 수행한 연구는 찾아볼 수가 없었다. 해당 복합재는 파단강도 분산이 큰 세라믹 재료 취성 파괴임을 고려하여 2-파라미터 Weibull 통계분석을 통해 실제 길이 대상 신뢰도 있는 기계적 물성치 값을 표준화 하였으며 LNG 운반 환경을 고려한 극저온 환경까지의 특정 온도별 단축 인장실험을 수행하였다. 실험결과, -70℃에서 기계적 강도가 -20℃에 비해 약 1.5배 급증하고 초기 권축 섬유 신장의 비선형 거동이 억제되었다. 또한, 극저온 환경까지 온도가 낮아질수록 기계적 강도는 계속해서 증가하였으나 반대로 연신은 줄어드는 저온 취성의 현상이 확인되었다. 본 연구에서 제시하는 기계적 물성치 데이터는 멤브레인 형 LNG 화물창 구조 안전성 평가 시 신뢰도 높은 해석 지원 물성치 확보 측면에서 유용하게 적용되어지리라 사료된다.

EFFECTS OF CHOPPED GLASS FIBER ON THE STRENGTH OF HEAT-CURED PMMA RESIN

  • Lee Sang-Il;Kim Chang-Whe;Kim Yung-Soo
    • 대한치과보철학회지
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    • 제39권6호
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    • pp.589-598
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    • 2001
  • The fracture of acrylic resin dentures remains an unsolved problem. Therefore, many investigations have been performed and various approaches to strengthening acrylic resin, for example, the reinforcement of heat-cured PMMA resin using glass fibers, have been suggested over the years. The aim of the present study was to investigate the effect of short glass fibers treated with silane coupling agent on the transverse strength of heat-polymerized PMMA denture base resin. To avoid fiber bunching and achieve even fiber distribution, glass fiber bundles were mixed with PMMA powder in conventional mixer whose blade was modified to be blunt. Composite of glass fiber($11{\mu}m$ diameter, 3mm & 6mm length, silane treated) and PMMA resin was made. Transverse strength and Young's modulus were estimated. Glass fibers were incorporated with 1%, 3%, 6% and 9% by weight. Plasticity and workability of dough was evaluated. Fracture surface of specimens was investigated by SEM. The results of this study were as follows 1. 6% and 9% incorporation of 3mm glass fibers in the PMMA resin enhanced the transverse strength of the test specimens(p<0.05). 2. 6% incorporation of 6mm glass fibers in the PMMA resin increased transverse strength, but 9% incorporation of it decreased transverse strength(p<0.05). 3. When more than 3% of 3mm glass fibers and more than 6% of 6mm glass fibers were incorporated, Young's modulus increased significantly(p<0.05). 4. Workability decreased gradually as the percentage of the fibers increased. 5. Workability decreased gradually as the length of the fibers increased. 6. In SEM and LM, there was no bunching of fibers and no shortening of fibers.

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Dispersion Management and Optical Phase Conjugation in Optical Transmission Links with a Randomly Distributed Single-Mode Fiber Length

  • Lee, Seong-Real
    • Journal of information and communication convergence engineering
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    • 제11권1호
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    • pp.1-6
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    • 2013
  • Suppressing or mitigating signal distortion due to group velocity dispersion and optical Kerr effects is necessary in ultra-high speed and long-haul wavelength division multiplexing (WDM) transmission systems. Dispersion management (DM), optical phase conjugation (OPC), and the combination of these two are promising techniques to compensate for signal distortion. In this paper, to implement a flexible optical WDM network, a new optical link configuration with a randomly distributed single-mode fiber (SMF) length and fixed residual dispersion per span in the combination of DM and OPC is proposed and investigated. The simulation results show that the best net residual dispersion (NRD) in the proposed optical links is +10 ps/nm, which is independent of pre- and postcompensation. The effective launch power of the WDM channel is increased more in the optical links with NRD = +10 ps/nm controlled by only precompensation. Furthermore, the system performance difference between the proposed optical link configuration with the best NRD and the conventional optical link with uniform distribution of the SMF length had little significance. Consequently, it is confirmed that the proposed optical link configuration with the best NRD is effective and useful for implementing a reconfigurable long-haul WDM network.

Experimental Study on Leak-induced Vibration in Water Pipelines Using Fiber Bragg Grating Sensors

  • Kim, Dae-Gil;Lee, Aram;Park, Si-Woong;Yeo, Chanil;Bae, Cheolho;Park, Hyoung-Jun
    • Current Optics and Photonics
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    • 제6권2호
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    • pp.137-142
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    • 2022
  • Leak detection is one of the most important challenges in condition monitoring of water pipelines. Fiber Bragg grating (FBG) sensors offer an attractive technique to detect leak signals. In this paper, leak measurements were conducted on a water distribution pilot plant with a length of 270 m and a diameter of 100 mm. FBG sensors were installed on the pipeline surface and used to detect leak vibration signals. The leak was demonstrated with 1-, 2-, 3-, and 4-mm diameter leak holes in four different pipe types. The frequency response of leak signals was analyzed by fast Fourier transform analysis in real time. In the experiment, the frequency range of leak signals was approximately 340-440 Hz. The frequency shifts of leak signals according to the pipe type and the size of the leak hole were demonstrated at a pressure of 1.8 bar and a flow rate of 25.51 m3/h. Results show that frequency shifts detected by FBG sensors can be used to detect leaks in pipelines.

CLSM을 이용한 어저귀 섬유의 형태학적 특성과 물성 연구(제1보) -인피 및 목질부 섬유를 이용한 한지제조- (Study of Morphology and Physical Properties of Indian Mallow(Abutilon avicennae Gaertner) Fibers by CLSM( I ))

  • 정선화;조남석
    • 펄프종이기술
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    • 제34권2호
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    • pp.61-66
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    • 2002
  • This study was carried out to investigate sheet properties of Indian mallow hanji, made by different pulping methods such as alkali and sulfomethylated pulpings, and different stock compositions, various mixing ratios of bast fiber and woody core fibers. Effect of morphological properties of pulp stocks on the sheet formation and their optical properties were also evaluated using an image analyzer and confocal laser scanning microscope(CLSM). In addition, the effect of fiber distribution index(FDI), which was calculated based on the image in a z-direction of a sheet from CLSM, on the sheet properties of Indian mallow hanji was discussed. The proposed FDI had a good correlation with various properties of paper, such as apparent density, opacity, tear index, breaking length and zero-span tensile strength. Especially, sulfomethylated pulp sheets'FDI was higher than alkali pulp sheets.

외연적 시간적분법을 이용한 복합재료 섬유 파단 시 음향방출의 3차원 유한요소 해석 (Tree-dimensional FE Analysis of Acoustic Emission of Fiber Breakage using Explicit Time Integration Method)

  • 백승훈;박시형;김승조
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 춘계학술발표대회 논문집
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    • pp.172-175
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    • 2005
  • The numerical simulation is performed for the acoustic emission and the wave propagation due to fiber breakage in single fiber composite plates by the finite element transient analysis. The acoustic emission and the following wave motions from a fiber breakage under a static loading is simulated to investigate the applicability of the explicit finite element method and the equivalent volume force model as a simulation tool of wave propagation and a modeling technique of an acoustic emission. For such a simple case of the damage event under static loading, various parameters affecting the wave motion are investigated for reliable simulations of the impact damage event. The high velocity and the small wave length of the acoustic emission require a refined analysis with dense distribution of the finite element and a small time step. In order to fulfill the requirement for capturing the exact wave propagation and to cover the 3-D simulation, we utilize the parallel FE transient analysis code and the parallel computing technology.

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