Experimental and theoretical studies on laser treatment strategies for improving shear bonding strength of structural adhesive joints with cast aluminum

被引:18
作者
Wan, Hailang [1 ]
Min, Junying [1 ]
Lin, Jianping [1 ]
机构
[1] Tongji Univ, Sch Mech Engn, Cao An Rd 4800, Shanghai 201804, Peoples R China
基金
中国国家自然科学基金;
关键词
Laser ablation treatment; Shear bonding strength; Treatment strategy; Numerical simulation; Theoretical calculation; Strength prediction; SURFACE-TREATMENT; FIBER LASER; PRETREATMENT; COMPOSITES; PRESSURE; INCREASE; ALLOYS;
D O I
10.1016/j.compstruct.2021.114831
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Surface physicochemical modifications induced by laser ablation treatment (i.e. rough morphology, removal of surface contaminants and newly-formed aluminum oxides) enhanced joint strength by 374% and improved the fracture mode from interface to cohesive. To acquire desirable joint strength with high processing efficiency, this study further investigates the influence of laser treatment strategies (i.e. distribution and area of laser-treated region) on shear bonding strength of structural adhesive joints with cast aluminum, which is also essential for industrial applications due to incomplete treatment of partial area in bonding region missing laser ablation inevitably occurring when processing complex part surfaces with variable curvatures. Therefore, four typical treatment strategies were designed by assigning laser-treated regions with various areas in different edges of adhesive bonding region, and analyzed through experimental and simulational studies. Moreover, comparative investigations show that the treatment strategy of assigning laser-treated regions on two bonding edges perpendicular to the loading direction more effectively improved the joint strength compared to the other three strategies, which is explained by an asymmetric M-shape distribution of interfacial shear stress from simulations. Furthermore, a theoretical model based on Goland-Reissner equation was established to predict joint strength in four treatment strategies with an overall error less than 10%.
引用
收藏
页数:14
相关论文
共 41 条
[1]   An experimental study of the interfacial fracture behavior of Titanium/CFRP adhesive joints under mode I and mode II fatigue [J].
Adamos, Lucas ;
Tsokanas, Panayiotis ;
Loutas, Theodoros .
INTERNATIONAL JOURNAL OF FATIGUE, 2020, 136
[2]   Surface Patterning of Metal Substrates Through Low Power Laser Ablation for Enhanced Adhesive Bonding [J].
Alfano, Marco ;
Pini, Stefano ;
Chiodo, Giovanni ;
Barberio, Marianna ;
Pirondi, Alessandro ;
Furgiuele, Franco ;
Groppetti, Roberto .
JOURNAL OF ADHESION, 2014, 90 (5-6) :384-400
[3]   Multi-material adhesive joints for automotive industry [J].
Banea, M. D. ;
Rosioara, M. ;
Carbas, R. J. C. ;
da Silva, L. F. M. .
COMPOSITES PART B-ENGINEERING, 2018, 151 :71-77
[4]   Surface machining of Ti6Al4V by means of Micro-Electrical Discharging to improve adhesive joining [J].
Bangash, Muhammad Kashif ;
Casalegno, Valentina ;
Das, Alok Kumar ;
des Ambrois, Stefano De la Pierre ;
Ferraris, Monica .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2020, 286
[5]   Measurement of mixed-mode delamination fracture toughness of unidirectional glass/epoxy composites with mixed-mode bending apparatus [J].
Benzeggagh, ML ;
Kenane, M .
COMPOSITES SCIENCE AND TECHNOLOGY, 1996, 56 (04) :439-449
[6]   Effect of surface treatment on the shear strength of aluminium adhesive single-lap joints for automotive applications [J].
Boutar, Yasmina ;
Naimi, Sami ;
Mezlini, Salah ;
Ali, Moez Ben Sik .
INTERNATIONAL JOURNAL OF ADHESION AND ADHESIVES, 2016, 67 :38-43
[7]   Laser Surface Pre-Treatment of CFRP for Adhesive Bonding in Consideration of the Absorption Behaviour [J].
Fischer, F. ;
Kreling, S. ;
Jaeschke, P. ;
Frauenhofer, M. ;
Kracht, D. ;
Dilger, K. .
JOURNAL OF ADHESION, 2012, 88 (4-6) :350-363
[8]  
Goland M., 1944, J Appl Mech, DOI 10.1115/1.4009336
[9]   Simulating the induction heating of cross-ply C/PEKK laminates - sensitivity and effect of material variability [J].
Grouve, Wouter J. B. ;
Sacchetti, Francisco ;
Vruggink, Evan J. ;
Akkerman, Remko .
ADVANCED COMPOSITE MATERIALS, 2021, 30 (05) :409-430
[10]   Adhesive bonding of carbon fibre/epoxy laminates: Correlation between surface and mechanical properties [J].
Gude, M. R. ;
Prolongo, S. G. ;
Urena, A. .
SURFACE & COATINGS TECHNOLOGY, 2012, 207 :602-607