The effect of surface treatments on interfacial fatigue crack initiation in aluminum/epoxy bonds

被引:0
作者
D.R. Lefebvre
B.K. Ahn
D.A. Dillard
J.G. Dillard
机构
[1] Virginia Polytechnic Institute and State University,Center for Adhesive and Sealant Science
[2] Motorola,undefined
[3] Pacific Northwest National Laboratory,undefined
[4] Department of Engineering Science and Mechanics,undefined
[5] Department of Chemistry,undefined
来源
International Journal of Fracture | 2002年 / 114卷
关键词
Adhesive bonds; aluminum/epoxy bonds; bimaterial interfaces; fatigue crack initiation; phosphoric acid anodization; P2 etch; stress singularities; pre-treatment; sol-gel; sulfuric acid anodization.;
D O I
暂无
中图分类号
学科分类号
摘要
The effect of different substrate surface pre-treatments on the initiation of interfacial fatigue cracks was studied for adhesive bonds. Aluminum-epoxy bimaterial specimens were used to investigate how surface pre-treatment affects resistance to fatigue crack initiation at the interface corner. A stress singularity approach was utilized to assess the effect of four different treatments; P2 etch, phosphoric acid anodization (PAA), sulfuric acid anodization (SAA), and sol-gel. A bimaterial system with a 90° epoxy wedge was tested under sinusoidal cyclic loading. The surface treatment effect was rather significant on the resistance to fatigue crack initiation at the interface. Results show that PAA generated the strongest interface, while SAA led to the weakest for the material system studied here.
引用
收藏
页码:191 / 202
页数:11
相关论文
共 50 条
[41]   Effect of high temperature on crack initiation of super austenitic stainless steel 654SMO in very high cycle fatigue [J].
Li, Xue ;
Zhang, Ruofan ;
Wang, Xiangyu ;
Liu, Yongjie ;
Wang, Chong ;
Zhang, Hong ;
Li, Lang ;
He, Chao ;
Wang, Qingyuan .
MATERIALS & DESIGN, 2020, 193 (193)
[42]   Effect of H2 Gas Environment on Low Cycle Fatigue Crack Initiation and Damage Accumulation of 304 Stainless Steel [J].
Iino, Y. .
ADVANCES IN FRACTURE AND DAMAGE MECHANICS IX, 2011, 452-453 :285-288
[43]   Effect of microstructure on small fatigue crack initiation and early propagation behavior in super austenitic stainless steel 654SMO [J].
Li, Xue ;
Liu, Chang ;
Wang, Xiangyu ;
Dai, Yajun ;
Zhan, Min ;
Liu, Yongjie ;
Yang, Kun ;
He, Chao ;
Wang, Qingyuan .
INTERNATIONAL JOURNAL OF FATIGUE, 2024, 179
[44]   Subsurface fatigue crack initiation and propagation behavior of induction-hardened shafts under the effect of residual and applied bending stresses [J].
Zhang, HY ;
Stephens, RI ;
Glinka, G .
FATIGUE AND FRACTURE MECHANICS: 30TH VOLUME, 2000, 1360 :240-260
[45]   The influence of surface layer microstructure evolution of M2 steel cold-ring rolling mandrel roller on fatigue crack initiation [J].
Jia, G. W. ;
Hua, L. ;
Mao, H. J. .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2007, 187 :562-565
[46]   Effect of crystallographic orientation and geometrical compatibility on fatigue crack initiation and propagation in rolled Ti-6Al-4V alloy [J].
Briffod, Fabien ;
Bleuset, Alexandre ;
Shiraiwa, Takayuki ;
Enoki, Manabu .
ACTA MATERIALIA, 2019, 177 :56-67
[47]   Novel thermoplastic fibre-metal laminates manufactured by vacuum resin infusion: The effect of surface treatments on interfacial bonding [J].
Mamalis, Dimitrios ;
Obande, Winifred ;
Koutsos, Vasileios ;
Blackford, Jane R. ;
Bradaigh, Conchur M. O. ;
Ray, Dipa .
MATERIALS & DESIGN, 2019, 162 :331-344
[48]   The correlation of fractal dimension to fracture surface slope for fatigue crack initiation analysis under bending-torsion loading in high-strength steels [J].
Macek, W. ;
Branco, R. ;
Podulka, P. ;
Nejad, R. Masoudi ;
Costa, J. D. ;
Ferreira, J. A. M. ;
Capela, C. .
MEASUREMENT, 2023, 218
[49]   Effect of microstructure on small fatigue crack initiation and early propagation behavior in Mg-10Gd-3Y-0.3Zr alloy [J].
He, Chao ;
Wu, Yujuan ;
Peng, Liming ;
Su, Ning ;
Chen, Qiang ;
Yuan, Shucheng ;
Liu, Yongjie ;
Wang, Qingyuan .
INTERNATIONAL JOURNAL OF FATIGUE, 2019, 119 :311-319
[50]   Effect of modified gradient fields on the high-cycle fatigue crack initiation mechanism of Ti6Al4V alloy [J].
Yang, Xiaoqian ;
Liang, Yilong ;
Li, Fei ;
Qin, Xinmao .
INTERNATIONAL JOURNAL OF FATIGUE, 2024, 187