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GRAVITY CIRCUIT HEAT PIPE RADIATOR, CONDENSER AND PREPARATION PROCESS

机译:重力式热管散热器,冷凝器和制备工艺

摘要

Disclosed are a gravity circuit heat pipe radiator, a condenser therein and a corresponding preparation process. The condenser in the radiator is prepared by a preparation process including the following steps: a base material of the condenser is extruded to form a condenser base plate and several longitudinal condenser channels parallel to each other and passing through the condenser base plate (SA11); the two ends of the condenser base plate are drilled to form a transverse condenser channel in communication with the longitudinal condenser channels (SB11); and the ends of the longitudinal channels and the transverse channel are plugged according to the determined connecting holes on the condenser in communication with the exterior (SC11). The preparation process makes the longitudinal channels and the transverse channel into an integrated structure, and no welding is required to connect same, thus no welding points exist between the formed longitudinal channels and transverse channel, such that the sealing performance and strength, etc. of the condenser can be guaranteed, providing a relatively high operational reliability. Accordingly, the radiator has a condenser prepared by this preparation process, and the preparation process of the radiator will also comprise the above-mentioned preparation steps.
机译:本发明公开了一种重力回路热管散热器,其中的冷凝器以及相应的制备方法。散热器中的冷凝器通过包括以下步骤的制备过程来制备:挤压冷凝器的基材以形成冷凝器基板和彼此平行并穿过冷凝器基板的多个纵向冷凝器通道(SA11);在冷凝器底板的两端钻出与纵向冷凝器通道(SB11)连通的横向冷凝器通道。根据冷凝器上确定的与外部连通的连接孔,将纵向通道和横向通道的端部塞住(SC11)。制备过程使纵向通道和横向通道成为一体的结构,不需要焊接连接,因此在形成的纵向通道和横向通道之间不存在焊接点,从而达到密封性能和强度等优点。冷凝器可以得到保证,提供相对较高的运行可靠性。因此,散热器具有通过该制备过程制备的冷凝器,并且散热器的制备过程还将包括上述制备步骤。

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