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Achieving strong friction lap joints of carbon-fiber reinforced plastic and metals by modifying metal surface structure via laser-processing pretreatment

DOI:10.1016/j.compstruct.2020.112167 期刊:Composite Structures 出版年份:2020 更新时间:2025-09-23 15:21:01
摘要: Strong dissimilar joints of metals and carbon fiber reinforced plastic (CFRP) are highly demanded for the lightweight design in many fields, which, however, are rather challenging to achieve directly via welding. In this study, 5052 Al alloy and plain carbon steel were first pretreated by a laser-processing method to create rather coarse porous metal surfaces, which were then welded to polyamide 6 based CFRP using friction lap joining. The maximum tensile shear force of the dissimilar joints of CFRP-Al alloy and CFRP-steel achieved 4.9 kN, and 3.9 kN, respectively, and the joint efficiency achieved 78% and 62%, respectively, which were more than three times as those of the CFRP- as-received metal joints. This is the first report on the strengthening of the metal-CFRP friction based joints via the assisting laser treatment technique. The significant improvement of the joint strength could be attributed to a great increase of the mechanical anchors and the chemical bonding area at the metal-CFRP interface.
作者: L.H. Wu,K. Nagatsuka,K. Nakata,Z.Y. Ma,B.L. Xiao
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To explore the feasibility of largely enhancing the strength of the metal-CFRP hybrid joints by modifying the metal surface structure via laser processing pretreatment.

The study successfully achieved strong lap joints of CFRTP to Al alloy and steel by modifying the metal surface structure via laser processing pretreatment. The maximum tensile shear force of the joints was significantly improved, attributed to the increase in mechanical anchors and chemical bonding area at the interface. The findings suggest that laser processing pretreatment is an effective method for enhancing the strength of metal-CFRP joints.

The study is limited by the need to control bubbles in the joints and optimize the morphology, depth, distance, and size of the laser processed pores. Additionally, the focus was primarily on Al alloys and plain carbon steel, with limited exploration of other metals and CFRPs.

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