• 제목/요약/키워드: X-ray tube

검색결과 516건 처리시간 0.029초

Effect of Target Angle and Thickness on the Heel Effect and X-ray Intensity Characteristics for 70 kV X-ray Tube Target

  • Kim, Gyehong;Lee, Rena
    • 한국의학물리학회지:의학물리
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    • 제27권4호
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    • pp.272-276
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    • 2016
  • To investigate the optimum x-ray tube design for the dental radiology, factors affecting x-ray beam characteristics such as tungsten target thickness and anode angle were evaluated. Another goal of the study was to addresses the anode heel effect and off-axis spectra for different target angles. MCNPX has been utilized to simulate the diagnostic x-ray tube with the aim of predicting optimum target angle and angular distribution of x-ray intensity around the x-ray target. For simulation of x-ray spectra, MCNPX was run in photon and electron using default values for PHYS:P and PHYS:E cards to enable full electron and photon transport. The x-ray tube consists of an evacuated 1 mm alumina envelope containing a tungsten anode embedded in a copper part. The envelope is encased in lead shield with an opening window. MCNPX simulations were run for x-ray tube potentials of 70 kV. A monoenergetic electron source at the distance of 2 cm from the anode surface was considered. The electron beam diameter was 0.3 mm striking on the focal spot. In this work, the optimum thickness of tungsten target was $3{\mu}m$ for the 70 kV electron potential. To determine the angle with the highest photon intensity per initial electron striking on the target, the x-ray intensity per initial electron was calculated for different tungsten target angles. The optimum anode angle based only on x-ray beam flatness was 35 degree. It should be mentioned that there is a considerable trade-off between anode angle which determines the focal spot size and geometric penumbra. The optimized thickness of a target material was calculated to maximize the x-ray intensity produced from a tungsten target materials for a 70 keV electron energy. Our results also showed that the anode angle has an influencing effect on heel effect and beam intensity across the beam.

다이오드 검출기를 이용한 초소형 X선관(Miniature X-ray Tube)의 반가층 측정 (HVL Measurement of the Miniature X-Ray Tube Using Diode Detector)

  • 김주혜;안소현;오윤진;지윤서;허장용;강창무;서현숙;이레나
    • 한국의학물리학회지:의학물리
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    • 제23권4호
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    • pp.279-284
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    • 2012
  • X선은 방사선 진단과 치료 분야에 있어서 다양하고 광범위하게 이용되고 있으며, 최근에는 방사선 치료용 초소형 X선관이 개발되었다. 초소형 X선관은 조사 목적 부위에 직접 삽입하여 사용되므로 제작 시준기에 따라 다양한 각도로 X선 조사가 가능하고, 검사 목적 외의 환자 피폭선량을 최소화한다. 이러한 초소형 X선관의 장점을 이용해서 X선 영상을 획득하는데 적용한다면 X선 진단 분야의 새로운 장을 열 것으로 기대된다. 하지만 초소형 X선관은 본래 치료용으로 설계되었기 때문에 진단용 장비에 적합한 시준기, 필터(added filter) 등이 필요하다. 따라서 자체 제작한 시준기와 필터를 적용하여 초소형 X선관의 빔 특성이 진단용에 적합한지 평가 하였고, 이를 위해서 다이오드 검출기를 이용하여 반가층을 측정하고 측정의 가능성을 평가하였다. 본 연구에서는 Si PIN Photodiode type인 Piranha 검출기(Piranha, RTI, Sweden)를 사용하여 필터 적용 유무에 따른 초소형 X선관의 반가층을 측정하고, 알루미늄 필터를 사용한 측정을 통하여 Piranha 검출기의 반가층 측정의 정확성을 평가하였다. 측정 결과에 따르면 초소형 X선관의 반가층은 필터의 장착에 따라 약 1.9배 증가하여 진단용 방사선 발생 장치의 적합성을 확인하였다. Piranha 검출기의 반가층 자동 측정값은 필터를 미장착한 경우에 실제 반가층 측정값에 비해 50% 높게 측정되어 적용이 불가능하나, 필터를 장착한 경우에는 실제 반가층 측정값과 약 15%의 차이로 감소되었다. 따라서 진단용 필터를 적용했을 경우는 Piranha 검출기의 반가층 자동측정이 가능하여 kV-X선 특성평가를 수월하게 수행할 것으로 기대된다.

Irradiation of Intense Characteristic X-rays from Weakly Ionized Linear Plasma

  • Sato, Eiichi;Hayasi, Yasuomi;Tanaka, Etsuro;Mori, Hidezo;Kawai, Toshiaki;Takayama, Kazuyoshi;Ido, Hideaki
    • 한국의학물리학회:학술대회논문집
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    • 한국의학물리학회 2002년도 Proceedings
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    • pp.396-399
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    • 2002
  • Intense quasi-monochromatic x-ray irradiation from the linear plasma target is described. The plasma x-ray generator employs a high-voltage power supply, a low-impedance coaxial transmission line, a high-voltage condenser with a capacity of about 200 nF, a turbo-molecular pump, a thyristor pulse generator as a trigger device, and a flash x-ray tube. The high-voltage main condenser is charged up to 55 kV by the power supply, and the electric charges in the condenser are discharged to the tube after triggering the cathode electrode. The x-ray tube is of a demountable triode that is connected to the turbo molecular pump with a pressure of approximately 1 mPa. As electron flows from the cathode electrode are roughly converged to the molybdenum target by the electric field in the tube, the weakly ionized plasma, which consists of metal ions and electrons, forms by the target evaporating. In the present work, the peak tube voltage was almost equal to the initial charging voltage of the main condenser, and the peak current was about 20 kA with a charging voltage of 55 kV. When the charging voltage was increased, the linear plasma x-ray source grew, and the characteristic x-ray intensities of K-series lines increased. The quite sharp lines such as hard x-ray lasers were clearly observed. The quasi-monochromatic radiography was performed by a new film-less computed radiography system.

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Thermal Characteristics of Rotating Anode X-ray Tube with Emissivity in Aging Process for Digital Radiography

  • Lee, Seok Moon
    • Applied Science and Convergence Technology
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    • 제24권5호
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    • pp.125-131
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    • 2015
  • We investigated the thermal characteristics of rotating anode X-ray tube to develop it for digital radiography by using computer simulation. The target which is the area of the anode struck by electrons is the most important component to get a long life of X-ray tube. So we analyze the thermal characteristics of the target and rotor assembly according to their emissivity by using ANSYS transient thermal simulation and then compare with the measured data of the target temperature operating in aging process of X-ray tube. Especially, keeping the lead coated layer as the role of metal lubricant on ball bearing enables to prevent the noise in rotating anode. The simulation result showed that its temperature was under the melting point of the lead in X-ray tube for digital radiography with 1.2 mm large focal spot 0.6 mm small focal spot and 150 kV tube voltage. We also investigated the relationship between the diameter of the anode shaft and the temperature of the anode and rotor assembly. It has been confirmed that the smaller anode shaft could be good for the rotor thermal characteristics.

전자기 유한요소법 전자빔 시뮬레이션을 이용한 정전기장 제거용 연한 X-선관 설계 특성 연구 (Design of Soft X-ray Tube and Simulation of Electron Beam by Using an Electromagnetic Finite Element Method for Elimination of Static Electric Field)

  • 박태영;이상석;박래준
    • 한국자기학회지
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    • 제24권2호
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    • pp.66-69
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    • 2014
  • 유한요소법으로 분할 표시한 연한 X-선 퍼짐관을 설계하였다. 연한 X-선관의 모양설계 및 구체적인 좌표를 설정하고 전자빔 궤적을 OPERA-3D SW 프로그램을 이용하여 시뮬레이션하였다. 음극과 양극인 텅스텐 필라멘트와 타겟에 인가한 전압, 온도, 열전자 일함수 등을 고정하였다. 필라멘트 십자형 모양을 구비한 퍼짐관의 구조에 따른 전자빔의 분포와 초점변화를 분석하여 반도체 공정상의 정전기장 제거용 연한 X-선 퍼짐관 설계를 최적화하였다.

발꿈치뼈를 관찰하기 위한 최적의 X-ray 각도에 대한 고찰 (A Study on the Optimal X-ray Angle to Observe Calcaneus)

  • 신상민;서보문;전해인;임경한;전민철
    • 미래기술융합논문지
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    • 제2권1호
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    • pp.17-21
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    • 2023
  • 본 연구에서는 X-ray장치(Drgem사 TS-CSP)와 foot phantom(SFT-1556)을 이용하여 발꿈치뼈 후전 축방향 촬영에서 X-ray 튜브의 각도를 30°, 35°, 40°, 45°, 50°로 변화를 주어 각 각도에 해당하는 영상을 흭득한 뒤 정량적 평가와 정성적 평가로 나누어 영상을 평가하였다. 블라인드 테스트에서는 40°에서 4.34점으로 가장 높았으며 Image J 프로그램을 이용한 면적 계산에서는 각도가 50°에서 1750으로 가장 큰 값으로 나타났다. 또한 겹치는 부위를 제외한 면적 평가에서는 X-ray 튜브가 40°일 때 가장 큰 값을 보였다. 그러므로 발꿈치뼈를 관찰하기 위한 촬영법으로는 X-ray tube 각도가 40°일 때가 적합하다는 결과를 얻었다.

고주파 공진형 인버터식 X선 발생장치의 설계 (Design of High Frequency Resonant Inverter Type X-Ray Generator)

  • 이성길;박수강;백형래;정수복
    • 대한전기학회논문지:전기기기및에너지변환시스템부문B
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    • 제51권1호
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    • pp.34-39
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    • 2002
  • Most X-ray generator had been used do rectifier type transformer high tension generator which is supplied in a clinical diagnosis. But it is difficult to miniaturize and become light weight. Also, because the ripple rate of tube voltage is high, X-ray generating efficiency is very low. Therefore, it is supplied gradually from abroad being developed high tension generator for inverter type X-ray generator which use semi-conductor switching element for electric power that have high speed switching ability to solved these problem. But, semi-conductor element of big capacity are used by X-ray tube's big consumption power and diffusion is difficult in the small size hospital because production cost is ascending by doing digital control through DSP and product price becomes expensive. Therefore, in this paper, design and manufactured CR type voltage divider for feedback control of tube voltage of high frequency resonance type inverter and high tension transformer for high frequency to apply economical diffusion type X-ray generator which have wide output voltage and load extent. It is Proved do X-ray generator and stability of X-ray tube's output characteristics through an experiment.

병원 규모별 진단용 X선 발생장치의 성능 평가 (A Performance Evaluation of Diagnostic X-ray Unit Depends on the Hospitals Size)

  • 박주훈;임인철;동경래;강세식
    • Journal of Radiation Protection and Research
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    • 제34권1호
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    • pp.31-36
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    • 2009
  • 일부지역의 병원에 설치, 운영되고 있는 진단용 X선 발생장치틀 의원, 병원, 종합병원별로 관 전압, 관 전류/량, 조사기간, 조사선량 성능을 평가하여 측정방법과 기술을 배우고 중요성을 알리고자 한다. 진단용 X선발생장치를 그룹별로 10대씩 총 30대에 대하여 관전류/량, 조사시간측정기를 사용하여, 백분율평균오차로 평가하였고 그에 따른 조사선량의 재현성은 변동계수를 계산하여 평가하였다. 진단용 X선 발생장치 30대 중 부적합한 장치는 관전압정확도 시험에서 5대(16.7%), 관전류정확도시험에서 3대(10,0%), 관전류량정확도 시험에서는 4대(13.3%), 조사시간정확도 시험에서는 5대(16.7%), 조사선량의 재현성 시험에서는 7대(23.3%)로 조사되었다. 진단용 X선 발생장치를 관리규정에 의거하여 성능검사 결과에 의해 성능관리의 심각성을 알 수 있었고, 이에 주기적으로 실시하여야 함은 물론 안전하게 관리함으로써 환자 및 방사선관계종사자에 대하여 방사선으로 인한 방사선 피폭경감, 화질영상관리, 재촬영 감소 둥에 의해 환자에게 양질의 의료서비스를 제공하게 될 것이다. 따라서 정기적인 성능검사가 필요하다고 사료된다.

PC기반 치과 CT용 고전압 펄스 발생장치 개발 (Development of PC based High Voltage Generator for Dental CT)

  • 김학성;오준용;송상훈;원충연
    • 전력전자학회:학술대회논문집
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    • 전력전자학회 2008년도 하계학술대회 논문집
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    • pp.580-582
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    • 2008
  • The object of this paper is develope the PC based controlled high voltage power supply and studies 1.2kW(120kV, 10mA) pulse power X-ray generator possible to adapt fluoroscopy of Dental CT X-ray generator and industrial X-ray pulse power equipment. The developed pulse power X-ray generator consisted of mono-block tank include X-ray tube and high voltage X-ray power supply circuit and high voltage control unit with RS232C/422 communication port. The PC control program of pulse power X-ray generator uses LabVIEW, and the size of high voltage transformer and high voltage generator is minimized by high voltage high frequency inverter has 100kHz switching frequency. Also this paper shows result of X-ray tube voltage and tube current correspond to variable load.

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경사조사(傾斜照射) 강판튜브 방사선 관측영상의 수직 방향 공간분석 (Vertical Space Analysis for Gradient Radiating Steel-tube Radiographic Image)

  • 황중원;황재호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2007년도 심포지엄 논문집 정보 및 제어부문
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    • pp.29-31
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    • 2007
  • In this paper we propose an directional analytic approach in image data space for X-ray image which is detected from the X-ray projection system. Such a radiographic nondestructive testing has long been used for steel-tube inspection and weld monitoring. The welded area and thickness of steel-tube are detected from gradient radiating mechanism based on the evaluation of biased X-ray source position. The welded area is an ellipse type on low contrast X-ray image including noise. Noise originates from most of elements of the system. such as shielding CCD camera, imaging screen, X-ray source, inspected object, electronic circuits and etc.. Projection incorrectness and noise influence on imaging quality is to be represented by vertical pixels' distribution. Space analysis due to vertical direction also shows the segmental possibility between regions by visual edge evaluation.

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