挤压铸造铝合金轻量化电池组件的机器人搅拌摩擦焊接

IF 3.8 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Vivek Patel , Hendrik Wouters , Amir Baghdadchi , Jeroen De Backer , Mattias Igestrand , Saeed Azimi , Joel Andersson
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引用次数: 0

摘要

本研究的重点是开发用于纯电动汽车电池框架组件的两种不同铝合金挤压和高压压铸(HPDC)的轻质组件。目标是生产具有光滑表面光洁度的搭接配置的无缺陷焊缝。采用固定式肩部搅拌摩擦焊接(SSFSW),焊接速度为3–15 mm/s。EBSD分析显示,由于动态再结晶,搅拌区(SZ)中有两组晶粒。此外,与两种合金相比,SZ的晶粒尺寸显著减小。铸造合金含有大的铁颗粒,这些铁颗粒被旋转的探针破碎,搅拌的材料由细小分散的沉淀物组成。拉伸剪切试验发现断裂位置在靠近铸件的弯钩区域,并讨论了表征断裂行为的模型。随着焊接速度从3毫米/秒增加到5毫米/秒,抗拉强度分别为~95和~100兆帕,断裂行为和位置没有任何显著差异。总的来说,这项研究提供了有价值的见解,如材料混合、晶粒细化和使用SSFSW的异种连接中的接头强度。这些发现可能有助于开发优化的焊接参数,提高纯电动汽车电池组组装SSFSW工艺的整体质量和生产率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Robotic friction stir welding in lightweight battery assembly of extrusion-cast aluminium alloys

Robotic friction stir welding in lightweight battery assembly of extrusion-cast aluminium alloys

The present study focuses on developing lightweight assembly of two different aluminium alloys extruded and high pressure die cast (HPDC) for battery frame assembly in BEV. The goal is to produce defect-free welds in lap configuration with smooth surface finish. Stationary shoulder friction stir welding (SSFSW) was employed with welding speeds of 3–15 mm/s. EBSD analysis revealed two groups of grains in the stir zone (SZ) due to dynamic recrystallization. Moreover, the grain size of the SZ significantly decreased compared to both alloys. The cast alloy contains large iron particles, and that were broken by the rotating probe, and the stirred material consisted of fine dispersed precipitates. Tensile-shear test found the fracture location at the hook area near to cast, and a model representing fracture behavior is also discussed. With increasing welding speed from 3 to 5 mm/s, the tensile strength found ∼95 and ∼100 MPa, respectively without any significance difference in the fracture behavior and location. Overall, this study provides valuable insights such as materials mixing, grain refinement, and joint strength in dissimilar joining using SSFSW. The findings could be useful in developing optimized welding parameters and improving the overall quality and productivity of the SSFSW process for battery pack assembly in BEV.

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来源期刊
CiteScore
7.10
自引率
9.80%
发文量
58
审稿时长
44 days
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