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    • 2. 发明授权
    • Liquid cooling system for linear beam device electrodes
    • 用于线性束装置电极的液体冷却系统
    • US08872057B2
    • 2014-10-28
    • US11376970
    • 2006-03-15
    • Paul A. KrzeminskiGordon R. Lavering
    • Paul A. KrzeminskiGordon R. Lavering
    • B23K15/00H01J25/10C25B15/00H01J23/033
    • H01J23/033
    • An electrode of an inductive output tube (IOT) is provided with channels for guiding cooling fluid. In one aspect of the invention, the channels are in a confronting relationship with a jacket surrounding the electrode and spaced from the electrode so as to define an interior region. Cooling fluid such as oil is circulated in the channels in fluid communication with the interior region, providing an escape mechanism for trapped bubbles in order to prevent localized heating of the electrode. In another aspect of the invention, the channels form multiple intersecting helical patterns of different pitches, with the steeper-pitched channels providing a more direct escape route for the bubbles.
    • 感应输出管(IOT)的电极设有用于引导冷却液的通道。 在本发明的一个方面,通道与围绕电极并且与电极间隔开的护套处于面对的关系,以便限定内部区域。 诸如油的冷却流体在与内部区域流体连通的通道中循环,为捕获的气泡提供逃逸机构,以防止电极的局部加热。 在本发明的另一方面,通道形成不同间距的多个相交的螺旋图案,其中较陡的通道为气泡提供更直接的逃逸路线。
    • 4. 发明授权
    • Collector structure for a travelling-wave tube having oxide film on
cooling fins
    • 在散热片上具有氧化膜的行波管的收集器结构
    • US5929566A
    • 1999-07-27
    • US829200
    • 1997-03-31
    • Takeshi Azami
    • Takeshi Azami
    • C25D11/04H01B5/00H01J23/033H05K7/20
    • H01J23/033
    • A collector for a travelling-wave tube includes a collector core and a fin structure surrounding the core and having a plurality of fins for heat radiation. An oxide film having a thickness of greater than 50 .mu.m inclusive is formed on the outer periphery of the fin structure by anodization and has the maximum surface roughness of 12 .mu.m inclusive. When the 50 .mu.m or thicker oxide film is sealed or when a 45 .mu.m or thicker oxide film is formed and sealed, the oxide film is provided with the maximum surface roughness of greater than 12 .mu.m inclusive. The collector with any one of such structures achieves an emissivity of 0.90 or above and can efficiently radiate heat generated by the tube in the space.
    • 用于行波管的收集器包括收集器芯和围绕芯的翅片结构,并且具有用于散热的多个翅片。 通过阳极氧化在翅片结构的外周形成厚度大于50μm的氧化膜,其最大表面粗糙度为12μm。 当50μm或更厚的氧化膜被密封时,或当形成45μm或更厚的氧化膜并密封时,氧化膜具有大于12μm的最大表面粗糙度。 具有这种结构中的任何一种的集电体实现0.90或更高的发射率,并且可以有效地辐射由管在空间中产生的热量。
    • 6. 发明授权
    • Cooling apparatus of magnetrons
    • 磁控管冷却装置
    • US5351166A
    • 1994-09-27
    • US998374
    • 1992-12-30
    • Seong T. Kang
    • Seong T. Kang
    • H01J23/00H01J23/033H05B6/80H05K7/20
    • H05B6/642Y10S165/908
    • Cooling apparatus of a magnetron having a plurality of embossed cooling fins for radiating high temperature heat generated by an anode of the magnetron. Each of the cooling fins includes an anode support boss for tightly receiving and supporting the anode, a pair of erected walls being provided at both sides of the cooling fin, and a plurality of embossments for causing cooling airflow to be forced toward the rear surface of the anode and providing a cooling passage. These embossments are provided between the anode and the erected walls in order to symmetrical to each other with respect to the cooling airflow. The embossments comprise a plurality of protruded embossments provided at a side of the cooling fin and a plurality of depressed embossments provided at the other side of the cooling fin. The protruded and depressed embossments have an interval which is gradually shortened such that it is minimized at the rear of the anode. In accordance with this invention, the cooling air is forced toward the rear surface of the anode and, as a result, the separation region of the rear surface of the anode is remarkably reduced. The friction between the cooling air and the cooling fins is increased due to the embossments, thereby improving the cooling effect of the magnetron.
    • 磁控管的冷却装置具有多个用于散射由磁控管的阳极产生的高温热的浮雕散热片。 每个冷却翅片包括用于紧密接收和支撑阳极的阳极支撑凸台,在冷却翅片的两侧设置一对直立的壁,以及用于使冷却空气流被迫朝向后表面的多个压花 阳极并提供冷却通道。 这些凸起设置在阳极和竖立的壁之间,以便相对于冷却气流彼此对称。 凸起包括设置在冷却翅片的一侧的多个凸起的凸起和设置在冷却翅片的另一侧的多个凹陷的压花。 突出和凹陷的压花具有逐渐缩短的间隔,使得其在阳极的后部被最小化。 根据本发明,冷却空气被迫朝向阳极的后表面,因此阳极后表面的分离区显着减小。 冷却空气与散热片之间的摩擦力由于压花而增加,从而提高了磁控管的冷却效果。