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首页> 外文期刊>Welding in the World: Journal of the International Institute of Welding: Journal of the International Institute of Welding >Application of hybrid friction stir channeling technique to improve the cooling efficiency of electronic components
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Application of hybrid friction stir channeling technique to improve the cooling efficiency of electronic components

机译:混合摩擦搅拌通道技术在提高电子元件冷却效率的应用

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摘要

Hybrid friction stir channeling (HFSC) is a new friction stir-based method for producing internal, closed channels created simultaneously during welding of multiple metal plates. Differently from conventional friction stir channeling, that is only able to produce channels in a monolithic component, HFSC can be applied to complex structural systems involving multiple components made of similar or dissimilar materials. In this study, the channels manufactured by HFSC were open in a structural system made of AA5083, with one base plate of 5?mm thick, and one overlapping plate of 8?mm thick, used as a rib, containing the channel along conformal cooling path. The thermal performance of the HFSC channel is compared with a conventional channel, with similar shape and path, produced by milling. The channels being tested are part of an electronic device containing multiple heat sources. The HFSC channel presents 30 to 40% lower steady-state temperature and 33% higher cooling rate during the transient period than those of the milled version. Compared with the milled channel, the heat extraction capacity, per unit of mechanical pumping power, is higher for the HFSC channel. Surface roughness, microhardness, and microstructural analysis of HFSC channels are investigated to characterize the HFSC channel.
机译:杂交摩擦搅拌沟槽(HFSC)是一种新的摩擦搅拌的基于摩擦方法,用于在多个金属板焊接期间同时产生的内部闭合通道。与传统的摩擦搅拌沟槽不同,即只能能够在整体组分中产生通道,HFSC可以应用于涉及由类似或不同材料制成的多个部件的复杂结构系统。在该研究中,HFSC制造的通道在由AA5083制成的结构系统中打开,一个底板为5?mm厚,一个重叠板,8Ω·厚,用作肋,沿着沿着共形冷却的通道。小路。将HFSC通道的热性能与传统通道进行比较,其具有类似的形状和路径,通过研磨产生。正在测试的信道是包含多个热源的电子设备的一部分。 HFSC通道在瞬态温度下呈30至40%,瞬态温度下的冷却速度高出33%,比铣削版本的冷却速度较高。与铣削通道相比,HFSC通道的机械泵浦功率的热提取容量较高。研究了HFSC通道的表面粗糙度,微硬度和微观结构分析以表征HFSC通道。

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