铜业工程Issue(3):1-30,30.DOI:10.3969/j.issn.1009-3842.2024.03.001
增材制造技术在散热器件研制中的应用与最新进展
Application and Recent Progress of Additive Manufacturing Technology in De-velopment of Heat Dissipation Components
摘要
Abstract
With the rapid development of 5G technology and high-performance computing,the power density of electronic devices in-creases abruptly.This leading to an increased demand for effective heat dissipation.Structure optimization is key to enhance heat dissi-pation efficiency of those devices.However,conventional manufacturing techniques have limitations when dealing with complex struc-tures.These limitations hinder the exploration of superior heat dissipation components.Additive manufacturing technology,employing a layer-by-layer accumulation approach,enables the creation of structures with complex internal geometries and,thus,facilitates the production of high-performance heat dissipation components.This paper provided a comprehensive overview of the recent progress of heat dissipation structure fabrication based on additive manufacturing.Firstly,the methods and fundamental materials of additive man-ufacturing technology were introduced.Secondly,the latest progress in development of microfluidic heat sinks,heat pipes/homogenized plates,heat sinks,and other heat sinks using additive manufacturing technologies was reviewed.Finally,the design methods for opti-mizing heat dissipation structures were summarized.This paper emphasized the heat dissipation structure optimization using additive manufacturing technology.It provided useful reference value to cope with the increasing heat dissipation demand in electronic devices,aerospace,5G communication,mobile devices,automotive,phased radar,flexible wearable and other fields.关键词
增材制造/散热器件/微流道散热器/热管/均热板/热沉/散热结构优化Key words
additive manufacturing/heat dissipation components/microchannel heat sinks/heat pipes/vapor chambers/heat sinks/heat dissipation structure optimization分类
能源科技引用本文复制引用
薛亚辉,张金超,高洁,郭明,陈杰睿,段慧玲..增材制造技术在散热器件研制中的应用与最新进展[J].铜业工程,2024,(3):1-30,30.基金项目
广东省自然科学基金面上项目(2023A1515012592)资助 (2023A1515012592)