• 제목/요약/키워드: beam energy distribution

검색결과 327건 처리시간 0.023초

피부암치료를 위한 전자선 전신피부 치료방법과 선량분포 측정 (Dosimetry for Total Skin Electron Beam Therapy in Skin Cancer)

  • 추성실;노준규;김귀언
    • Radiation Oncology Journal
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    • 제10권1호
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    • pp.107-113
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    • 1992
  • 4-5MeV의 전자선은 피부표면의 흡수선량을 증가시키고 표면하 10mm 내외에서 급속히 감소함으로 Mycosis fungoides, Kaposi's sarcoma등 전신피부암에 대한 가장적당한 치료방사선으로 알려져왔다. 그러나 평면이 아니고 굴곡이 심한 인체표면에 균일한 선량을 계획하기는 많은 어려움이 있었다. 연세암센터에서는 1980년부터 시행하여왔던 6MeV 전자선의 마름모형, 네방향 조사방법을 개량하고 많은 문헌을 참고하여 상하 양방향의 조사면과 환자위치를 각각 여섯가지 자세로 나누어 조사(Six-Dual-Field)하는 방법을 사용하였으며 이에따른 전신피부표면의 선량과 선량분포를 측정하였다. 선형가속기에서 발생되는 6MeV 전자선을 0.5 cm 두께의 아크릴판으로 감약시키고 콜리메터가 완전히 열린 조사면을 상하 $19^{\circ}$씩 옮기므로서 타겟트에서 3m 거리에 약 $2m{\times}1m$의 균일한선량의 조사면(평탄도 $+3\%$)과 10 mm 내외의 실효깊이 ($80\%$, 선량지점) 및 산란선에 의한 피부표면선량을 증가시킬 수 있었다. 환자는 일부피부가 가려지지 않도록 팔과 다리를 적당한 자세로 고정시키고 전자선을 여섯방향에서 각각 2회씩 상하로 조사시키므로서 피부표면에 균일한 선량분포(표준편차 $5\%$)가 가능하였으며 $80\%$,의 심부율이 $8\~10mm$에서 측정되었다. 모든 측정은 인체등가팬텀과 폴리스틸렌팬텀을 사용하였으며 필름, 평형전리측정기 및 표준전리측정기를 이용하였다. 특히 환자피부표면의 흡수선량분포를 확인하기 위하여 열형광측정기와 반도체측정기를 이용하였으며 $6\~20$개의 소형 측정기를 환자 피부표면에 부착시킨후 전자선 치료과정 동안 피폭 시켜 측정하였고 그결과 차폐된 부위를 제외하고 평균 $10\%$, 이 내의 균일한 선량분포를 얻을수 있었다.

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비대칭 레이저 빔에 의한 유리 절단 시 파단 효과 (The Fracture Effect of a Non-Symmetric Laser Beam on Glass Cutting)

  • 윤상우;김주한
    • 한국생산제조학회지
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    • 제24권4호
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    • pp.428-433
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    • 2015
  • A non-symmetric laser beam was used for cutting a thin glass substrate and its effect was investigated. In laser cutting of brittle materials, controlling crack initiation on the surface is crucial; however, it is difficult to ensure that crack propagation occurs according to a designed laser path. A lot of deviation in crack propagation, especially at the edge of the substrate, is usually observed. A non-symmetric laser beam generates a non-uniform energy distribution, which enhances directional crack propagation. A 20-W pulsed YAG laser was used for cutting a thin glass substrate. Parametric analysis was carried out and the crack control of the non-symmetric laser beam was improved. A theoretical model was presented and the limitations of the proposed process were also discussed.

공정변수에 따른 레이저표면합금층의 형상 및 성분변화에 관한 연구 (Shape and Chemical Composition of Laser Surface Alloyed Layer under Moving Laser Source)

  • 최정영;이창희
    • 한국레이저가공학회지
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    • 제2권2호
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    • pp.8-17
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    • 1999
  • This study includes a basic feature of laser surface alloying for enhancing the surface properties of materials. Effects of laser processing parameters such as beam power, beam size, scanning speed on the shape and composition of alloyed layer was simulated in case of moving beam conditions (2-dimensional numerical methods). Simulated results were compared with experiments, in which the plasma coating of 80% Ni + 20% Cr deposited on the SS41 substrate was remelted with CO2 laser with Gaussian energy distribution. Simulation and experiments revealed that the shape (dimension)and composition of laser alloyed layer were strongly dependent upon the process parameters, especially interaction time (travel speed) as compared to beam diameter, beam power and absorptivity. The shape and composition of alloyed layervaried more or less exponentially with parameters.

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다중채널 EEG 신호의 Computerized BEAM 구현 (Implementation of Computerized BEAM for Multi-Channel EEG Signals)

  • 이건기;김영일;한석봉;신태민;신상진
    • 대한의용생체공학회:학술대회논문집
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    • 대한의용생체공학회 1993년도 추계학술대회
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    • pp.156-159
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    • 1993
  • In this paper, computerized BEAM (brain electrical activity map) was implemented for objective and quantitative multichannel EEG analysis. BEAM is calculated by 4 point Interpolation method and number of elements are 5140. Representation methods of BEAH are two. One is dot density method which classify brain electrical potential 9 levels by dot density and the other is color method which classify brain electrical 12 levers by different colors. In this BEAM, instantaneous change and average energy distribution over any arbitrary time interval of brain electrical activity could be observed and analyzed easily.

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Analytical Solutions for the Inelastic Lateral-Torsional Buckling of I-Beams Under Pure Bending via Plate-Beam Theory

  • Zhang, Wenfu;Gardner, Leroy;Wadee, M. Ahmer;Zhang, Minghao
    • 국제강구조저널
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    • 제18권4호
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    • pp.1440-1463
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    • 2018
  • The Wagner coefficient is a key parameter used to describe the inelastic lateral-torsional buckling (LTB) behaviour of the I-beam, since even for a doubly-symmetric I-section with residual stress, it becomes a monosymmetric I-section due to the characteristics of the non-symmetrical distribution of plastic regions. However, so far no theoretical derivation on the energy equation and Wagner's coefficient have been presented due to the limitation of Vlasov's buckling theory. In order to simplify the nonlinear analysis and calculation, this paper presents a simplified mechanical model and an analytical solution for doubly-symmetric I-beams under pure bending, in which residual stresses and yielding are taken into account. According to the plate-beam theory proposed by the lead author, the energy equation for the inelastic LTB of an I-beam is derived in detail, using only the Euler-Bernoulli beam model and the Kirchhoff-plate model. In this derivation, the concept of the instantaneous shear centre is used and its position can be determined naturally by the condition that the coefficient of the cross-term in the strain energy should be zero; formulae for both the critical moment and the corresponding critical beam length are proposed based upon the analytical buckling equation. An analytical formula of the Wagner coefficient is obtained and the validity of Wagner hypothesis is reconfirmed. Finally, the accuracy of the analytical solution is verified by a FEM solution based upon a bi-modulus model of I-beams. It is found that the critical moments given by the analytical solution almost is identical to those given by Trahair's formulae, and hence the analytical solution can be used as a benchmark to verify the results obtained by other numerical algorithms for inelastic LTB behaviour.

Effect of geometrical configuration on seismic behavior of GFRP-RC beam-column joints

  • Ghomia, Shervin K.;El-Salakawy, Ehab
    • Advances in concrete construction
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    • 제9권3호
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    • pp.313-326
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    • 2020
  • Glass fiber-reinforced polymer (GFRP) bars have been introduced as an effective alternative for the conventional steel reinforcement in concrete structures to mitigate the costly consequences of steel corrosion. However, despite the superior performance of these composite materials in terms of corrosion, the effect of replacing steel reinforcement with GFRP on the seismic performance of concrete structures is not fully covered yet. To address some of the key parameters in the seismic behavior of GFRP-reinforced concrete (RC) structures, two full-scale beam-column joints reinforced with GFRP bars and stirrups were constructed and tested under two phases of loading, each simulating a severe ground motion. The objective was to investigate the effect of damage due to earthquakes on the service and ultimate behavior of GFRP-RC moment-resisting frames. The main parameters under investigation were geometrical configuration (interior or exterior beam-column joint) and joint shear stress. The performance of the specimens was measured in terms of lateral load-drift response, energy dissipation, mode of failure and stress distribution. Moreover, the effect of concrete damage due to earthquake loading on the performance of beam-column joints under service loading was investigated and a modified damage index was proposed to quantify the magnitude of damage in GFRP-RC beam-column joints under dynamic loading. Test results indicated that the geometrical configuration significantly affects the level of concrete damage and energy dissipation. Moreover, the level of residual damage in GFRP-RC beam-column joints after undergoing lateral displacements was related to reinforcement ratio of the main beams.

Strength and buckling of a sandwich beam with thin binding layers between faces and a metal foam core

  • Magnucki, Krzysztof;Jasion, Pawel;Szyc, Waclaw;Smyczynski, Mikolaj Jan
    • Steel and Composite Structures
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    • 제16권3호
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    • pp.325-337
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    • 2014
  • The strength and buckling problem of a five layer sandwich beam under axial compression or bending is presented. Two faces of the beam are thin aluminium sheets and the core is made of aluminium foam. Between the faces and the core there are two thin binding glue layers. In the paper a mathematical model of the field of displacements, which includes a share effect and a bending moment, is presented. The system of partial differential equations of equilibrium for the five layer sandwich beam is derived on the basis of the principle of stationary total potential energy. The equations are analytically solved and the critical load is obtained. For comparison reasons a finite element model of the beam is formulated. For the case of bended beam the static analysis has been performed to obtain the stress distribution across the height of the beam. For the axially compressed beam the buckling analysis was carried out to determine the buckling load and buckling shape. Moreover, experimental investigations are carried out for two beams. The comparison of the results obtained in the analytical and numerical (FEM) analysis is shown in graphs and figures. The main aim of the paper is to present an analytical model of the five layer beam and to compare the results of the theoretical, numerical and experimental analyses.

전자빔 조사 폴리머의 전자 분포의 축퇴 과정 (Decay Process of Charge Distribution in E-beam Irradiated Polymers)

  • 최용성;김형곤;황종선;이경섭
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2008년도 춘계학술대회 논문집 센서 박막재료연구회 및 광주 전남지부
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    • pp.69-72
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    • 2008
  • Decay processes of accumulated charge in e-beam irradiated polymers during elevating temperature are observed using pulsed electro-acoustic measurement system. Since the polymeric materials have many superior properties such as light-weight, good mechanical strength, high flexibility and low cost, they are inevitable materials for spacecrafts. In space environment, however, the polymers sometimes have serious damage by irradiation of high energy charged particles. When the polymers of the spacecraft are irradiated by high energy charged particles, some of injected charges accumulate and remain for long time in the bulk of the polymers. Since the bulk charges sometimes cause the degradation or breakdown of the materials, the investigation of the charging and the decay processes in polymeric materials under change of temperature is important to decide an adequate material for the spacecrafts. By measuring the charge behavior in e-beam irradiated polymer, such as polyimide or polystyrene, it is found that the various accumulation and decay patterns are observed in each material. The results seem to be useful and be helpful to progress in the reliability of the polymers for the spacecraft.

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빔 구조물의 모달 변형에너지를 이용한 손상탐지 (Damage Detection in a Beam Structure Using Modal Strain Energy)

  • 박수용;최상현
    • 한국전산구조공학회논문집
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    • 제16권3호
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    • pp.333-342
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    • 2003
  • 본 논문의 목적은 빔 구조물에서 발생할 수 있는 손상의 위치를 탐색하고, 그 손상의 정도를 추정할 수 있는 알고리즘을 제안하는 것이다. 제안된 방법은 구조물의 모달 변형에너지의 차이를 이용한다. 구조물 내 발생한 국부적인 손상의 위치를 파악하고 그에 상응하는 손상도를 추정할 수 있는 손상지수를 손상 전과 손상 후 구조물의 모드형상에서 얻을 수 있는 모달 변위로 표현하였고 그 관계식을 정립하였다. 구조물 내 손상의 위치를 결정하는 방법은 기 개발된 손상 지표를 적용하였다. 제안된 방법의 우수성과 효용성은 수치적으로 손상을 모사한 빔 구조물을 이용하여 입증하였다.

고출력 다이오드 레이저(HPDL)를 이용한 탄소강 환봉의 표면변태경화 (Surface Transformation Hardening for Rod-shaped Carbon Steels by High Power Diode Laser)

  • 김종도;길병래;강운주
    • Journal of Advanced Marine Engineering and Technology
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    • 제31권8호
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    • pp.961-969
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    • 2007
  • The laser material processing has replaced a conventional material processing such as a welding, cutting, drilling and surface modification and so on. LTH(Laser Transformation Hardening) is one branch of the laser surface modification process. A lot of energy is needed for the LTH process to elevate workpiece surface to temperature of the austenite transformation($A_3$), which results from utilizing a beam with a larger size and lower power intensity comparatively. The absorptivity of the laser energy with respect to material depends on the wave length of a beam. This study is related to the surface hardening for the rod-shaped carbon steel by the high power diode laser(HPDL) whose beam absorptivity is better than conventional types of lasers such as $CO_2$ or Nd:YAG laser. Because a beam proceeds on the rotating specimen the pretreated hardened-phase can be tempered and softened by the overlapping between hardened tracks. Accordingly, the longitudinal hardness measurement and observation of the micro structure was carried out for an assessment of the hardening characteristics. In addition, a hardening characteristics as a hardenability of materials was compared in the point of view of the hardness distribution and hardening depth and width.