• 제목/요약/키워드: beam width

검색결과 1,145건 처리시간 0.03초

횡하중을 받는 RC 무량판 구조의 슬래브 모델링 기법 (Modeling Method of Slabs in RC Flat-Plate Structures Under Lateral loading)

  • 최정욱;송진규;이수곤;김진상
    • 콘크리트학회논문집
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    • 제14권4호
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    • pp.615-622
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    • 2002
  • 철근콘크리트 무량판 구조의 내력 및 변위를 합리적으로 예측하기 위해서는 슬래브의 휨 강성을 고려한 해석모델이 필요하다. FEMA 273과 ACI 318-99에서는 횡 하중에 대한 슬래브의 해석모델들을 제시하고 있으나 실제적인 적용 방법론은 언급하고 있지 않다. 본 연구에서는 무량판 슬래브의 모델링 방법론을 정립하고 이를 내진설계에 어떻게 적용할 것인가에 대하여 연구하였다. 연구결과는 다음과 같다. 1) 무량판 구조의 3차원 해석시 슬래브의 휨 강성을 적절히 고려하기 위해서는 본 연구진이 제시하는 유효보폭 모델을 적용하는 것이 바람직하다. 2) 예제 무량판 건물 해석에서 슬래브의 균열효과를 고려한 유효보폭을 이용할 경우 해석결과는 횡변위에 대하여 상한값을 나타낸 반면 유효보폭 계수만을 고려한 모델은 접합부 불균형 모멘트에 대하여 상한값의 결과를 나타냈다.

분배 브래그 반사기가 집적된 실리콘 기반 격자 구조를 이용한 광학 빔 방사 효율 및 조향 선폭 성능 향상 (A High Radiation Efficiency and Narrow Beam Width of Optical Beam Steering Using a Silicon-based Grating Structure Integrated with Distributed Bragg Reflectors)

  • 홍유승;조준형;성혁기
    • 한국정보통신학회논문지
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    • 제23권3호
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    • pp.311-317
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    • 2019
  • 먼저 광학 신호를 이용한 다양한 응용 분야에서의 핵심 요소인 광학 빔 조향 성능 향상을 위하여 실리콘 기반 격자 구조의 특성을 해석하였다. 이를 기반으로 높은 방사 효율과 좁은 빔 폭을 얻기 위해서 기존의 격자 구조 방사기에 분배 브래그 반사기(Distributed Bragg Reflector, DBR)를 집적한 구조를 제안한다. 분배 브래그 반사기의 위치에 따른 방사 효율과 방사 각도의 전치 반폭을 분석하고 이를 토대로 최적화 구조를 제안한다. 제안한 격자 구조는 상보형 금속산화 반도체(complementary metal-oxide semiconductor, CMOS) 공정과 호환 가능하며, 최대 방사 효율 87.1% 및 최소 방사 각도의 반치 전폭 $4.68^{\circ}$를 가진다.

Shear strengthening of reinforced concrete beams with minimum CFRP and GFRP strips using different wrapping technics without anchoring application

  • Aksoylu, Ceyhun
    • Steel and Composite Structures
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    • 제44권6호
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    • pp.845-865
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    • 2022
  • In this study, the performance of shear deficient reinforced concrete (RC) beams with rectangular cross-sections, which were externally bonded reinforced (EBR) with high strength CFRP and GFRP strips composite along shear spans, has been experimentally and analytically investigated under vertical load. In the study, the minimum CFRP and GFRP strips width over spacing were considered. The shear beam with turned end to a bending beam was investigated by applying different composite strips. Therefore various arising in each of strength, ductility, rigidity, and energy dissipation capacity were obtained. A total of 12 small-scaled experimental programs have been performed. Beam dimensions have been taken as 100×150×1000 mm. Four beams have been tested as unstrengthened samples. This paper focuses on the effect of minimum CFRP and GFRP strip width on behaviours of RC beams shear-strengthened with full-wrapping, U-wrapping, and U-wrapping+longitudinal bonding strips. Strengthened beams showed significant increments for flexural ductility, energy dissipation, and inelastic performance. The full wrapping strips applied against shear failure have increased the load-carrying capacity of samples 53%-63% interval rate. Although full wrapping is the best strengthening choice, the U-wrapping and U-wrapping+longitudinal strips of both CFRP and GFRP bonding increased the shear capacity by 53%~75% compared to the S2 sample. In terms of ductility, the best result has been obtained by the type of strengthening where the S5 beam was completely GFRP wrapped. The experimental results were also compared with the analytically given by ACI440.2R-17, TBEC-2019 and FIB-2001. Especially in U-wrapped beams, the estimation of FIB was determined to be 81%. The estimates of the other codes are far from meeting the experimental results; therefore, essential improvements should be applied to the codes, especially regarding CFRP and GFRP deformation and approaches for longitudinal strip connections. According to the test results, it is suggested that GFRP, which is at least as effective but cheaper than CFRP, may be preferred for strengthening applications.

다중균열분산특성을 고려한 HPFRCC부재의 휨해석 (Flexural Analysis of HPFRCC Beam Considering Multiple Cracks)

  • 장균현;신경준;신용석
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계 학술발표회 논문집(II)
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    • pp.369-372
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    • 2006
  • In this paper, analysis method of HPFRCC is proposed as predicting properties flexural behavior. For analyzing HPFRCC beam, properties of strain-hardening, multiple cracking, and crack spacing control are considered as non-homogeneous material properties of the beam. This paper focused on the deflection, maximum moment of the flexural beam, distribution of crack width with the monte carlo simulation.

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FIB를 이용한 다이아몬드 기판 위의 나노급 미세 패턴의 형상 가공 (Nano-scale Patterning on Diamond substrates using an FIB)

  • 송오성;김종률
    • 한국산학기술학회논문지
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    • 제7권6호
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    • pp.1047-1055
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    • 2006
  • 필드이온빔(FIB) 가공기를 써서 초고강도의 벌크다이아몬드를 가공하기 위해 이온 소오스의 종류와 가공 조건에 따른 나노급 미세 선폭의 최적조건을 알아보고 이에 근거한 2차원적인 텍스트의 가공과 3차원적인 박막요소의 가공을 시도하였다. 다이아몬드 기판과 실리콘 기판을 Ga과 $H_2O$ 소오스를 이용하는 FIB를 써서 30 kV 빔 전류를 10 pA $\sim$ 5 nA로 변화시키면서 패터닝하고 이때 각각 20 ${\mu}m$ 길이로 생성되는 선형 패턴의 선폭, 깊이, 에치속도, 에치형상, 깊이선폭비 (aspect ratio)를 확인하였다. 다이아몬드도 실리콘 기판과 마찬가지로 나노급 패턴의 형성이 가능하였다. $H_2O$ 소오스를 채용한 경우가 에치 깊이가 2배 정도 증가하였으며 동일한 가공 조건에서는 실리콘에 비해 다이아몬드의 에치 선폭이 감소는 경향이 있었다. 특히 다이아몬드는 절연성 때문에 차지가 축적되어 가공 중 이온빔이 불안정해지는 문제가 있었으나 차지 중화 모드를 이용하여 성공적으로 sub-100 nm급 선폭의 미세 가공이 가능하였다. 확인된 선폭가공 조건에 근거하여 2차원적으로 0.3carat의 보석용 다이아몬드의 거들부에 300여개의 글자를 FIB를 활용하여 선폭 240 nm정도로 명확히 기록하는 것이 가능하였다. $Ga^+$이온과 30 eV-30 pA로 조건에서 비교적 넓은 선폭과 Z축 depth 고정범위에서 많은 개인정보의 기록이 영구적으로 가능하였으며 전자현미경으로 재생이 가능하였다. 3차원적으로 두께 $1{\mu}m$의 박막요소를 FIB가공과 백금 용접으로 떼어낸 후 FIB가공으로 두께가 100 nm가 되도록 한 후 투과전자현미경을 이용하여 성분 분석을 하는 것이 성공적으로 수행될 수 있었다.

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Simultaneous Optimization of Multiple Quality Characteristics in Laser Beam Cutting Using Taguchi Method

  • Dubey, Avanish Kumar;Yadava, Vinod
    • International Journal of Precision Engineering and Manufacturing
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    • 제8권4호
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    • pp.10-15
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    • 2007
  • Taguchi methods have been used for a long time to improve the product quality and process performance of a manufacturing system, Few researchers have applied this methodology in laser beam cutting (LBC) of sheet metals and found the considerable improvement in cut qualities. In all experimental investigations of LBC so far, the objective was to optimize the single quality characteristic at a time. In this paper the simultaneous optimization of multiple quality characteristics such as Kerf width and material removal rate (MRR) during pulsed Nd:YAG LBC of thin sheet of magnetic material (high Silicon-steel) has been presented using Taguchi's quality loss function. The results show the considerable improvement in multiple S/N ratio as compared to initial cutting condition. Also, the comparison of results from single and multi-objective optimization have been presented and it was found that the loss in quality is always possible shifting from single quality to multiple quality optimization.

직사각형 어레이를 위한 공간체감 방법 (A Space-Tapering Approach for a Rectangular Array)

  • 장병건
    • 한국음향학회지
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    • 제14권1호
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    • pp.115-122
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    • 1995
  • 균일한 소자 (안테나 또는 감지기) 간격으로 계수치를 체감하는 것보다 균일한 계수치로 소자의 간격을 체감하는 것이 실용적이며, 직사각형 어레이에서는, 삼각형 격자 구조가 직사각형 격자구조 보다 소자 수를 줄이는데 더 경제적이다. 접지판 위에 설치된 삼각형 격자 구조를 가진 직사각형 위상어레이의 성능을 향상시키기 위하여 소자간격 체감 방법을 제안하였다. 소자간격 체감이 주빔(main beam)의 폭과 측면로브(sidelobe)의 높이에 미치는 영향을 논의하였다. 제안된 방법을 사용한 결과 측면로브의 성능이 향상되었으나 주빔폭은 약간 넓어지는 것이 밝혀졌다.

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레이저 표면경화에서 경화깊이 예측 (Pridiction of Case Depth in Laser Beam Hardening)

  • 김재도;조종두;서정원;조용무
    • 한국정밀공학회지
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    • 제12권6호
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    • pp.87-95
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    • 1995
  • In order to predict the case depth and case width in laser transformation hardening, a finite element method was used to analyze the temperature distribution on the material. Laser hardening of the specimens of SM45C and STE11steels was experimented by using the continuous wave CO$_{2}$ laser with the various travel speeds and the defocused Gaussian beam mode. Phosphate coating was adopted on the surface of SM45C to increase the absorption of 10.6 .mu. m laser energy. Experimental data show good agreement with the theoretical predictions. The maximum possible case depth can be predicted for the given laser hardening conditions, such as laser power, and travel speed.

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High-resolution Spectroscopy of the Nickel-like Molybdenum X-ray Laser Toward the Generation of Circularly Polarized X-ray Laser

  • Hasegawa, Noboru;Sasaki, Akira;Yamatani, Hiroshi;Kishimoto, Maki;Tanaka, Momoko;Ochi, Yoshihiro;Nishikino, Masaharu;Kunieda, Yuichi;Kawachi, Tetsuya;Yoneda, Hitoki;Iwamae, Atsushi
    • Journal of the Optical Society of Korea
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    • 제13권1호
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    • pp.60-64
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    • 2009
  • We attempted the first measurement of the spectral width of the nickel-like molybdenum x-ray laser (${\lambda}\;=\;18.895\;nm$) by use of a high-resolution spectrometer in order to determine the strength of the magnetic field required for the generation of a circularly polarized x-ray laser. The spectral width was measured to be ${\Delta}{\lambda}\;=\;18\;m{\AA}$ under the substantial lasing condition. The magnetic field required for the generation of a circularly polarized x-ray laser was 40 T. The splitting of the x-ray laser line was clearly obtained under 15 T external magnetic field. The strength of the magnetic field estimated from the splitting of the x-ray laser line was large compared with the external magnetic field. It implies that there might be an alternative mechanism for enhancement of the magnetic field in the gain medium plasma.

Analysis of Dose Distribution According to the Initial Electron Beam of the Linear Accelerator: A Monte Carlo Study

  • Park, Hyojun;Choi, Hyun Joon;Kim, Jung-In;Min, Chul Hee
    • Journal of Radiation Protection and Research
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    • 제43권1호
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    • pp.10-19
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    • 2018
  • Background: Monte Carlo (MC) simulation is the most accurate for calculating radiation dose distribution and determining patient dose. In MC simulations of the therapeutic accelerator, the characteristics of the initial electron must be precisely determined in order to achieve accurate simulations. However, It has been computation-, labor-, and time-intensive to predict the beam characteristics through predominantly empirical approach. The aim of this study was to analyze the relationships between electron beam parameters and dose distribution, with the goal of simplifying the MC commissioning process. Materials and Methods: The Varian Clinac 2300 IX machine was modeled with the Geant4 MC-toolkit. The percent depth dose (PDD) and lateral beam profiles were assessed according to initial electron beam parameters of mean energy, radial intensity distribution, and energy distribution. Results and Discussion: The PDD values increased on average by 4.36% when the mean energy increased from 5.6 MeV to 6.4 MeV. The PDD was also increased by 2.77% when the energy spread increased from 0 MeV to 1.019 MeV. In the lateral dose profile, increasing the beam radial width from 0 mm to 4 mm at the full width at half maximum resulted in a dose decrease of 8.42% on the average. The profile also decreased by 4.81% when the mean energy was increased from 5.6 MeV to 6.4 MeV. Of all tested parameters, electron mean energy had the greatest influence on dose distribution. The PDD and profile were calculated using parameters optimized and compared with the golden beam data. The maximum dose difference was assessed as less than 2%. Conclusion: The relationship between the initial electron and treatment beam quality investigated in this study can be used in Monte Carlo commissioning of medical linear accelerator model.