包括传导涂层的阳极盘元件

    公开(公告)号:CN102804327B

    公开(公告)日:2016-03-23

    申请号:CN201080029019.9

    申请日:2010-06-22

    Abstract: 本发明通常涉及X射线生成技术,特别是,涉及用于X射线生成设备(21)的阳极盘元件(1)。电磁辐射的生成可以被认为是相当无效的,因为施加至焦斑轨道的相当一部分能量的被转换成热而不是X辐射。因而,X射线管的操作中的限制因素是阳极元件且更具体而言焦斑轨道的冷却。在本发明中,提供一种阳极盘元件,其改进从焦斑轨道的散热。因而,阳极盘元件可以在维持结构完整性的同时支持增加的热。阳极盘元件(1)至少包括第一表面(2)和第二表面(3),第一表面(2)包括焦斑轨道(4),并且,第二表面(3)包括传导涂层(5)。阳极盘元件(1)能够围绕旋转轴(6)旋转,焦斑轨道(4)关于旋转轴(6)而旋转对称。包括焦斑轨道(4)的第一表面(2)和包括传导涂层(5)的第二表面(3)相邻地布置。

    包括传导涂层的阳极盘元件

    公开(公告)号:CN102804327A

    公开(公告)日:2012-11-28

    申请号:CN201080029019.9

    申请日:2010-06-22

    Abstract: 本发明通常涉及X射线生成技术,特别是,涉及用于X射线生成设备(21)的阳极盘元件(1)。电磁辐射的生成可以被认为是相当无效的,因为施加至焦斑轨道的相当一部分能量的被转换成热而不是X辐射。因而,X射线管的操作中的限制因素是阳极元件且更具体而言焦斑轨道的冷却。在本发明中,提供一种阳极盘元件,其改进从焦斑轨道的散热。因而,阳极盘元件可以在维持结构完整性的同时支持增加的热。阳极盘元件(1)至少包括第一表面(2)和第二表面(3),第一表面(2)包括焦斑轨道(4),并且,第二表面(3)包括传导涂层(5)。阳极盘元件(1)能够围绕旋转轴(6)旋转,焦斑轨道(4)关于旋转轴(6)而旋转对称。包括焦斑轨道(4)的第一表面(2)和包括传导涂层(5)的第二表面(3)相邻地布置。

    ANODE DISK ELEMENT COMPRISING A CONDUCTIVE COATING
    5.
    发明申请
    ANODE DISK ELEMENT COMPRISING A CONDUCTIVE COATING 有权
    包含导电涂层的阳极盘元件

    公开(公告)号:US20120093296A1

    公开(公告)日:2012-04-19

    申请号:US13376449

    申请日:2010-06-22

    Abstract: The present invention relates to X-ray generating technology in general, in particular, it relates to an anode disk element (1) for an X-ray generating device (21). The generation of electromagnetic radiation may be considered to be quite inefficient, since a substantial part of energy applied to a focal track is converted to heat rather than X-radiation. Thus, a limiting factor in the operation of X-ray tubes is the cooling of the anode element and more specifically the focal track. In the present invention, an anode disk element is provided, with an improved dissipation of heat from the focal track. Thus, the anode disk element may sustain increased heat while maintaining structural integrity. The anode disk element (1) comprises at least a first surface (2) and a second surface (3), with the first surface (2) comprising a focal track (4) and the second surface (3) comprising a conductive coating (5). The anode disk element (1) is rotatable about a rotational axis (6) with the focal track (4) being rotationally symmetrical to the rotational axis (6). The first surface (2) comprising the focal track (4) and the second surface (3) comprising the conductive coating (5) are adjacently arranged.

    Abstract translation: 本发明一般涉及X射线产生技术,特别涉及一种用于X射线产生装置(21)的阳极盘元件(1)。 电磁辐射的产生可能被认为是非常低效的,因为施加到焦点轨道的大部分能量被转换为热而不是X射线。 因此,X射线管的操作的限制因素是阳极元件的冷却,更具体地说是焦点轨迹。 在本发明中,提供了一种阳极盘元件,其具有来自焦点轨迹的热量的改善的散热。 因此,阳极盘元件可以维持增加的热量同时保持结构完整性。 阳极盘元件(1)至少包括第一表面(2)和第二表面(3),第一表面(2)包括焦点轨道(4),第二表面(3)包括导电涂层 5)。 阳极盘元件(1)可绕旋转轴线(6)旋转,其中焦点轨道(4)与旋转轴线(6)旋转对称。 包括焦点轨道(4)的第一表面(2)和包括导电涂层(5)的第二表面(3)相邻布置。

    X-ray module
    7.
    发明授权

    公开(公告)号:US11728121B2

    公开(公告)日:2023-08-15

    申请号:US17572871

    申请日:2022-01-11

    Abstract: An X-ray module includes a housing in which an opening portion is formed; an electron gun that emits an electron beam; a target that transmits an X-ray generated when the electron beam is incident on the target and emits the X-ray from an X-ray-emitting surface; an X-ray-emitting window that seals the opening portion, and that transmits the X-ray and emits the X-ray to a first side in an axial direction; and a heat radiating unit disposed outside the housing. The housing includes a surface on which a protrusion protruding to the first side is formed, the opening portion is formed in the protrusion, and the target is disposed in the opening portion. The heat radiating unit includes a first portion extending along the surface and thermally connected to the surface, and a second portion extending from the first portion to a second side opposite the first side.

    High-performance X-ray generating apparatus with improved cooling system
    8.
    发明授权
    High-performance X-ray generating apparatus with improved cooling system 失效
    具有改进冷却系统的高性能X射线发生装置

    公开(公告)号:US6115454A

    公开(公告)日:2000-09-05

    申请号:US906701

    申请日:1997-08-06

    Abstract: An X-ray generation apparatus has a housing comprising an evacuated envelope with a rotatable anode target surrounded by an all metal grounded exterior structure and a cooling system. The cooling system comprises a coolant circulating system with heat exchanger and means for circulating a fluid coolant through an interior of the X-ray generating apparatus; a hollow shield structure with center aperture for passing and electron beam; and a cooling block which is disposed proximate to the rotatable anode target and comprises a disk with a plurality of concentric annular channels formed by concentric annular partitions. The shield structure and the disk of the cooling block are made of thermally conductive material. An interior of the shield structure is filled with structures such as pins, fins or pack bed which are made of thermally conductive materials. The fluid coolant is circulated through the shield structure, then into the plurality of channels of the cooling block and via an interior of the housing to the heat exchanger for efficient cooling of the X-ray generating apparatus.

    Abstract translation: X射线产生装置具有壳体,该壳体包括具有由全金属接地外部结构和冷却系统包围的可旋转阳极靶的真空外壳。 冷却系统包括具有热交换器的冷却剂循环系统和用于使流体冷却剂循环通过X射线发生装置的内部的装置; 中空屏蔽结构,具有中心孔用于通过和电子束; 以及冷却块,其布置成靠近所述可旋转阳极靶,并且包括具有由同心环形隔板形成的多个同心环形通道的盘。 屏蔽结构和冷却块的盘由导热材料制成。 屏蔽结构的内部填充有由导热材料制成的结构,例如销,翅片或包装床。 流体冷却剂通过屏蔽结构循环,然后循环到冷却块的多个通道中,并且经由壳体的内部到达热交换器,以有效地冷却X射线产生装置。

    X-ray generating apparatus
    10.
    发明授权

    公开(公告)号:US6134299A

    公开(公告)日:2000-10-17

    申请号:US137950

    申请日:1998-08-21

    Abstract: Air cooled x-ray generating apparatus is provided with a unitary vacuum enclosure having a rotating anode target and a cathode assembly for generating x-rays. The cathode assembly may be placed within the vacuum enclosure through an opening in the top wall thereof, and comprises a disk which completely covers this opening. The unitary vacuum enclosure and the disk form a radiation shield. A plurality of fins are disposed on the exterior side wall of the vacuum enclosure, and a shroud is attached to the fins to provide additional protection of ambient against radiation. The cathode assembly may be placed through a side wall of the vacuum enclosure. The additional protection against excessive radiation in this design is provided by a shielding member placed in proximity to the anode target. The shielding member extends from the side wall of the enclosure and is substantially parallel to the top wall.

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