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HYBRID DESIGN OF AN ANODE DISK STRUCTURE FOR HIGH POWER X-RAY TUBE CONFIGURATIONS OF THE ROTARY-ANODE TYPE

机译:旋转阳极型高功率X射线管结构的阳极盘结构的混合设计

摘要

The present invention is related to high power X-ray sources, in particular to those ones that are equipped with rotating X-ray anodes capable of delivering a much higher short time peak power than conventional rotating X-ray anodes according to the prior art. The herewith proposed design principle thereby aims at overcoming thermal limitation of peak power by allowing extremely fast rotation of the anode and by introducing a lightweight material with high thermal conductivity (2) in the region adjacent to the focal track material (4). The extremely fast rotation is enabled by providing sections of the rotary anode disk made of anisotropic high specific strength materials with high thermal stability (1, 3, 6) which will be specifically adapted to the high stresses building up when the anode is operated, as for example fiber-reinforced ceramic materials. An X-ray system equipped with a high peak power anode according to the present invention will be capable of high speed image acquisition with high resolution and high coverage. Such a high-speed rotary anode disk can advantageously be applied in X-ray tubes for material inspection or medical radiography, for X-ray imaging applications which are needed for acquiring image data of moving objects in real-time, such as e.g. in the scope of cardiac CT, or for any other X-ray imaging application that requires high-speed image data acquisition. According to a further exemplary embodiment, the invention is directed to a rotary anode disk divided into distinct anode segments (10a, 10b) with adjacent anode segments which may e.g. be limite d to each other by straight radial (14a) or S-shaped slits (14b) ranging from the inner anode bulk (1) to the inner radial edge of the anode disk’s outer frame section (3). Other exemplary embodiments of the present invention relate to a rotary anode disk structure design which comprises liquid metal conductors (16a) between the inner anode bulk (1) and a rotary shaft (12) needed for rotating the rotary anode disk about its rotational axis (5), said liquid metal conductors (16a) providing a liquid metal connection between the rotary anode and its rotary shaft (12), or to a rotary anode disk structure which comprises a sliding radial connection (17) and a flexible heat conductor (18) between the inner anode bulk (1) and the rotary shaft (12). (Fig. 1)
机译:本发明涉及高功率X射线源,特别是涉及那些配备有旋转X射线阳极的光源,该旋转X射线阳极能够提供比根据现有技术的常规旋转X射线阳极高得多的短时峰值功率。因此,本文提出的设计原理旨在通过允许阳极极快地旋转并且通过在与聚焦轨道材料(4)相邻的区域中引入具有高导热率的轻质材料(2)来克服峰值功率的热限制。通过提供由各向异性的高比强度材料制成的具有高热稳定性(1、3、6)的旋转阳极盘的各个部分,可以实现极快的旋转,这将特别适合于阳极运行时产生的高应力。例如纤维增强的陶瓷材料。根据本发明的配备有高峰值功率阳极的X射线系统将能够以高分辨率和高覆盖率进行高速图像采集。这样的高速旋转阳极盘可有利地应用于X射线管中以用于材料检查或医学射线照相,用于实时获取移动物体的图像数据所需的X射线成像应用,诸如例如X射线照相。在心脏CT范围内,或用于需要高速图像数据采集的任何其他X射线成像应用。根据另一示例性实施例,本发明涉及一种旋转阳极盘,该旋转阳极盘被分成不同的阳极段(10a,10b),而相邻的阳极段可以例如是两个。通过从内部阳极块(1)到阳极盘外框部分(3)的内部径向边缘的直的径向(14a)或S形缝(14b)相互限制。本发明的其他示例性实施例涉及一种旋转阳极盘结构设计,该结构包括在内阳极块(1)和旋转轴(12)之间的液态金属导体(16a),该旋转轴用于使旋转阳极盘绕其旋转轴(如图5所示,所述液态金属导体(16a)在旋转阳极与其旋转轴(12)之间提供液态金属连接,或至包括旋转径向连接(17)和柔性导热体(18)的旋转阳极盘结构。 )在内部阳极块(1)和旋转轴(12)之间。 (图。1)

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