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    • 6. 发明申请
    • CT System
    • CT系统
    • US20150270092A1
    • 2015-09-24
    • US14660189
    • 2015-03-17
    • Herbert GruchatkaUlrich KühnLothar Werner
    • Herbert GruchatkaUlrich KühnLothar Werner
    • H01J35/10G01N23/04H01J35/06
    • H01J35/106A61B6/032A61B6/035A61B6/4488G01N23/046H01J35/06H01J2235/1225H05G1/025
    • The embodiments relate to a CT system with a stationary part and a rotatable part, which is supported rotatably in the stationary part. At least one x-ray tube unit cooled by a cooling fluid, an x-ray detector lying opposite the x-ray tube unit, and a cooling device coupled in terms of fluid technology to the x-ray tube unit via a coolant circuit are disposed in the rotatable part. A cooling air channel, through which cooling air is able to be fed into the rotatable part, and an exhaust air channel, through which heated exhaust air is able to be taken away from the rotatable part, are disposed in the stationary part. In accordance with the embodiments, at least one overpressure relief valve is disposed in the coolant circuit, through which the cooling fluid is able to be conveyed away in the exhaust air channel.
    • 实施例涉及具有固定部分和可旋转部分的CT系统,其可旋转地支撑在固定部分中。 由冷却流体冷却的至少一个X射线管单元,与X射线管单元相对的x射线探测器以及通过冷却剂回路与流体技术耦合到X射线管单元的冷却装置, 设置在可旋转部分中。 冷却空气通道,通过该冷却空气通道可以将冷却空气供给到可旋转部件中;以及排气通道,通过该排气通道,加热的废气能够从可旋转部分中取走,并设置在静止部分中。 根据实施例,至少一个超压安全阀设置在冷却剂回路中,冷却流体能够通过该冷却剂回路在排气通道中被输送。