Experimental study on the influence of environmental conditions on the fatigue behaviour of adhesive joints
暂无分享,去创建一个
[1] R. Goyal,et al. The role of loading mode on the property degradation of adhesives at high temperatures , 2023, Fatigue & Fracture of Engineering Materials & Structures.
[2] A. Akhavan‐Safar,et al. The interaction of loading mode and humidity on the properties degradation of an epoxy adhesive subjected to strength, fracture, and fatigue tests , 2022, Journal of Applied Polymer Science.
[3] Zheng Feng,et al. Fatigue failure mechanisms and probabilistic S-N curves for CFRP–steel adhesively bonded joints , 2022, International Journal of Fatigue.
[4] Ming Li,et al. A systematic study on the failure behaviors of aluminum alloy /composite bonded joints exposed to various typical aging environments for automobiles , 2022, The Journal of Adhesion.
[5] Zhao Liu,et al. Effect of Hygrothermal Environment on the Fatigue Fracture Mechanism of Single Lap Aluminum-CFRP Hybrid (riveted/bonded) Joints , 2022, International Journal of Fatigue.
[6] A. P. Vassilopoulos,et al. The challenges of quasi-static and fatigue experiments of structural adhesives , 2022, International Journal of Fatigue.
[7] V. Beber,et al. Lifetime calculation of adhesively bonded joints under proportional and non-proportional multiaxial fatigue loading: a combined critical plane and critical distance approach , 2021, The Journal of Adhesion.
[8] M. Wahab,et al. Fatigue crack propagation within Al-Cu-Mg single crystals based on crystal plasticity and XFEM combined with cohesive zone model , 2021 .
[9] K. Schröder,et al. A methodology for detection of crack initiation in adhesively bonded joints under constant and variable amplitude fatigue loading , 2021, The Journal of Adhesion.
[10] K. Houjou,et al. Effect of test temperature on the shear and fatigue strengths of epoxy adhesive joints , 2021, The journal of adhesion.
[11] Wang Guangbin,et al. Effect of temperature on the fatigue performance and failure mechanism of a flexible adhesive butt joint , 2021, The Journal of Adhesion.
[12] R. Carbas,et al. Cyclic fatigue testing: Assessment of polyurethane adhesive joints' durability for bus structures' aluminium assembly , 2021 .
[13] Jingxin Na,et al. The effects of service temperature on the fatigue behavior of a polyurethane adhesive joint , 2021 .
[14] Jingxin Na,et al. Influence of temperature and humidity on the fatigue behaviour of adhesively bonded CFRP/aluminium alloy joints , 2021, The Journal of Adhesion.
[15] R. Carbas,et al. Fatigue life evaluation of adhesive joints in a real structural component , 2021 .
[16] L. F. Silva,et al. The influence of mode mixity and adhesive system on the fatigue life of adhesive joints , 2020 .
[17] L. Silva,et al. Review on the effect of moisture and contamination on the interfacial properties of adhesive joints , 2020 .
[18] R. Moreira,et al. A review on the environmental degradation effects on fatigue behaviour of adhesively bonded joints , 2020 .
[19] L. F. Silva,et al. An investigation on fatigue life evaluation and crack initiation of Al-GFRP bonded lap joints under four-point bending , 2019 .
[20] M. Banea,et al. Mechanical characterization of a modern epoxy adhesive for automotive industry , 2019, Journal of the Brazilian Society of Mechanical Sciences and Engineering.
[21] E. Marques,et al. Fatigue performance of single lap joints with CFRP and aluminium substrates prior and after hygrothermal aging , 2019, Fatigue & Fracture of Engineering Materials & Structures.
[22] LFM da Silva,et al. A review on the temperature and moisture degradation of adhesive joints , 2017 .
[23] R. Campilho,et al. Environmental effect on the fatigue degradation of adhesive joints: A review , 2017 .
[24] M. Brede,et al. Influence of Temperature on the Fatigue Behaviour of a Toughened Epoxy Adhesive , 2016 .
[25] A. Crocombe,et al. The fatigue response of environmentally degraded adhesively bonded aluminium structures , 2013 .
[26] Kevin W Eliceiri,et al. NIH Image to ImageJ: 25 years of image analysis , 2012, Nature Methods.
[27] M. Jiménez,et al. Characterization and material model definition of toughened adhesives for finite element analysis , 2011 .
[28] A. D. Crocombe,et al. An investigation into the crack initiation and propagation behaviour of bonded single-lap joints using backface strain , 2009 .
[29] E. Marques,et al. Joint Strength Optimization of Adhesively Bonded Patches , 2008 .
[30] G. Dean,et al. Prediction of deformation and failure of rubber-toughened adhesive joints , 2004 .
[31] Ian A. Ashcroft,et al. Effect of Temperature on the Quasi-static Strength and Fatigue Resistance of Bonded Composite Double Lap Joints , 2001 .
[32] D. C. Drucker,et al. Soil mechanics and plastic analysis or limit design , 1952 .
[33] A. Akhavan‐Safar,et al. The influence of cyclic ageing on the fatigue performance of bonded joints , 2022, International Journal of Fatigue.
[34] M. Wahab,et al. An improved unified viscoplastic model for modelling low cycle fatigue and creep fatigue interaction loadings of 9–12%Cr steel , 2021, European Journal of Mechanics - A/Solids.
[35] A. Crocombe,et al. Experimental and numerical investigation of the static response of environmentally aged adhesively bonded joints , 2013 .
[36] P. A. Fay,et al. Fatigue life evaluation of structural adhesives for automative applications , 1992 .