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Highly bright X-ray generator using heat of fusion with a specially designed rotating anticathode

机译:高亮度X射线发生器利用聚变热和特殊设计的旋转阳极

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摘要

A new type of rotating anticathode X-ray generator has been developed, in which the electron beam irradiates the inner surface of a U-shaped anticathode (Cu). A high-flux electron beam is focused on the inner surface by optimizing the shape of the bending magnet. The power of the electron beam can be increased to the point at which the irradiated part of the inner surface is melted, because a strong centrifugal force fixes the melted part on the inner surface. When the irradiated part is melted, a large amount of energy is stored as the heat of fusion, resulting in emission of X-rays 4.3 times more brilliant than can be attained by a conventional rotating anticathode. Oscillating translation of the irradiated position on the inner surface during use is expected to be very advantageous for extending the target life. A carbon film coating on the inner surface is considered to suppress evaporation of the target metal and will be an important technique in further realization of highly bright X-ray generation.
机译:已经开发出一种新型的旋转阴极X射线发生器,其中电子束照射U形阴极(Cu)的内表面。通过优化弯曲磁体的形状,高通量电子束聚焦在内表面上。因为强的离心力将熔化的部分固定在内表面上,所以电子束的功率可以增加到内表面的被照射部分熔化的点。当被照射的部分熔化时,大量的能量作为聚变热被存储,导致X射线的发射比传统的旋转阳极具有4.3倍的亮度。预期在使用期间内表面上的照射位置的振荡平移对于延长目标寿命是非常有利的。认为内表面上的碳膜涂层可抑制目标金属的蒸发,这将是进一步实现高亮度X射线生成的重要技术。

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