控制形状,尺寸和表面粗糙度的铝冷板通过单步亚表面摩擦搅拌通道制造的电池包冷却

IF 4.6 2区 工程技术 Q2 ENGINEERING, MANUFACTURING
Pooja Sarkar , Surjya Kanta Pal , Barbara Shollock , Anandaroop Bhattacharya
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引用次数: 0

摘要

电池热管理系统严重依赖于冷板。制造成本效益高,生产效率高的冷板集成通道是热管理的有前途的解决方案。摩擦搅拌槽是一种新发展的、有前途的制造工艺,用于在冷板应用的金属块上形成综合功能通道。本研究提出了控制通道表面粗糙度的解决方案,以满足热管理系统的要求,并表明可以通过操纵热输入、塑化效果和工艺间距(v/ω)等因素来实现。研究建立了重要通道特征与伪热指数(PHI)、流动应力(σf)、热历史变化等次要参数之间的相关性。值得注意的是,该研究通过电化学腐蚀测试强调了通道粗糙度作为通道内腐蚀起始的关键决定因素的关键作用。此外,发现FSC工艺具有较低的压缩残余应力,增加了该工艺的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controlling shape, size, and surface roughness of aluminum cold plate fabricated via single-step sub-surface friction stir channeling for battery pack cooling
The Battery Thermal Management System rely heavily on cold plates. Manufacturing cost effective, highly productive cold plates having integrated channels is promising solution for thermal management. Friction Stir Channeling is a newly developed and promising manufacturing process for the formation of integrated functional channels on metal blocks for cold plate applications. This research presents the solution to control over channel surface roughness, catering to thermal management system requirements, and shows that it is achievable by manipulating factors like heat input, plasticization effect, and process pitch (v/ω). The study establishes the correlations between important channel features and secondary parameters like pseudo heat index (PHI), flow stress (σf), and changes in thermal history. Notably, the study highlights the pivotal role of channel roughness as a key determinant of corrosion initiation within the channel through an electrochemical corrosion test. Additionally, the FSC process is found to impart lower compressive residual stresses adding to the advantages of the process.
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来源期刊
CIRP Journal of Manufacturing Science and Technology
CIRP Journal of Manufacturing Science and Technology Engineering-Industrial and Manufacturing Engineering
CiteScore
9.10
自引率
6.20%
发文量
166
审稿时长
63 days
期刊介绍: The CIRP Journal of Manufacturing Science and Technology (CIRP-JMST) publishes fundamental papers on manufacturing processes, production equipment and automation, product design, manufacturing systems and production organisations up to the level of the production networks, including all the related technical, human and economic factors. Preference is given to contributions describing research results whose feasibility has been demonstrated either in a laboratory or in the industrial praxis. Case studies and review papers on specific issues in manufacturing science and technology are equally encouraged.
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