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首页> 外文期刊>Medical Physics >Kilovision: thermal modeling of a kilovoltage x-ray source integrated into a medical linear accelerator.
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Kilovision: thermal modeling of a kilovoltage x-ray source integrated into a medical linear accelerator.

机译:Kilovision:集成到医疗线性加速器中的千伏X射线源的热模型。

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The thermal and thermo-mechanical (fatigue) properties of a stationary-anode kilovoltage x-ray source that can be integrated into the head of a medical linear accelerator have been modeled. A finite element program has been used to model two new target designs. The first design makes minor modifications to the existing target assembly of a Varian medical linear accelerator, while the second design adds an additional cooling tube, changes the target angle, and uses a tungsten-rhenium alloy rather than tungsten as the kilovoltage target material. The thermal calculations have been used to generate cyclic stress/strain values from which estimates of fatigue in the target designs have been made. Both kilovoltage and megavoltage operation have been studied. Analysis of the megavoltage operation shows that there are only small differences in the thermal and fatigue characteristics after the target assembly is modified to include a kilovoltage target. Thus, megavoltage operation should not be compromised. The first kilovoltage target design can handle a 900 W heat load (e.g., 120 kVp, 7.5 mA, 2 x 2 mm2 source size); the heat load being limited by the temperature at the surface of the cooling tubes and mechanical fatigue at the surface of the target. The second design can handle a 1250 W heat load (e.g., 120 kVp, approximately 10.4 mA, 2 x 2 mm2 source size). Our calculations show that installation of a kilovoltage x-ray target is practical from thermal and thermo-mechanical perspectives.
机译:已经对可以集成到医用线性加速器头部的固定阳极千伏x射线源的热和热机械(疲劳)特性进行了建模。有限元程序已用于对两个新的目标设计进行建模。第一种设计对Varian医用线性加速器的现有靶组件进行了较小的修改,而第二种设计增加了一个额外的冷却管,改变了靶角,并使用钨hen合金而不是钨作为千伏靶材料。热计算已用于生成循环应力/应变值,据此可以估算出目标设计中的疲劳程度。已经研究了千伏和兆伏操作。对兆伏电压操作的分析表明,在将目标组件修改为包含千伏目标之后,热特性和疲劳特性只有很小的差异。因此,兆伏操作不应受到损害。第一个千伏目标设计可以承受900 W的热负荷(例如120 kVp,7.5 mA,2 x 2 mm2的源尺寸);热负荷受到冷却管表面温度和靶材表面机械疲劳的限制。第二种设计可以承受1250 W的热负荷(例如120 kVp,大约10.4 mA,2 x 2 mm2的源尺寸)。我们的计算表明,从热力学和热力学的角度来看,千伏X射线靶的安装是可行的。

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