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NOVEL MICROCHANNEL STRUCTURE AND HEAT SINK HAVING THE SAME

机译:相同的新型微通道结构和散热片

摘要

The present invention mainly provides a novel microchannel structure comprising a plurality of first fluid-guiding channels, a plurality of micro fluid-guiding channels and a plurality of second fluid-guiding channels. Particularly, the first fluid-guiding channel has an arc-shaped fluid-guiding end corner communicating with a first channel opening of the micro fluid-guiding channel, and the second fluid-guiding channel has an arc-shaped fluid-guiding start corner communicating with a second channel opening of the micro fluid-guiding channel. Therefore, when a refrigerant fluid flows in the heat sink, the flow speed of the refrigerant fluid would be changed because the cross sectional area of an U-shaped fluid-guiding channel constructed by the arc-shaped fluid-guiding end corner, the micro fluid-guiding channel and the arc-shaped fluid-guiding start corner varies along the flow direction of the refrigerant fluid, such that the heat dissipating ability of the heat sink is enhanced without increasing the power of circulation pump.
机译:本发明主要提供一种新颖的微通道结构,其包括多个第一导液通道,多个微导液通道和多个第二导液通道。特别地,第一导流通道具有与微导流通道的第一通道开口连通的弧形导流端角,第二导流通道具有与导流起始角连通的弧形导流端具有微流体引导通道的第二通道开口。因此,当制冷剂流体在散热器中流动时,由于由弧形的流体引导端角构成的U形的流体引导通道的横截面面积很小,所以制冷剂流体的流速将改变。导流通道和弧形导流起始角沿制冷剂流体的流动方向变化,从而在不增加循环泵功率的情况下提高了散热器的散热能力。

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