2012
DOI: 10.1016/j.ijadhadh.2012.06.003
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Three-dimensional modeling of carbon/epoxy to titanium single-lap joints with variable adhesive recess length

Abstract: The objective of this paper was to investigate the performance of recessed single-lap joints with dissimilar adherends through the finite element method. The influence of material and geometric nonlinearity of the adhesive as well as the impact of the recess length was examined in terms of maximum principal stresses. The strength of the joint was obtained as the load to initiate the crack propagation. Results suggested that either adding a spew fillet or considering the adhesive plasticity led to reduced peak … Show more

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Cited by 23 publications
(14 citation statements)
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References 26 publications
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“…This result shows that the failure will start at the edges of the overlap length. The reason of the higher von Misses stresses at the A-B and K-H vertical adhesion areas, as well as the starting of the failure at these areas is that the adhesive at these areas was subjected to highest deformation [14][15][16].…”
Section: Resultsmentioning
confidence: 99%
“…This result shows that the failure will start at the edges of the overlap length. The reason of the higher von Misses stresses at the A-B and K-H vertical adhesion areas, as well as the starting of the failure at these areas is that the adhesive at these areas was subjected to highest deformation [14][15][16].…”
Section: Resultsmentioning
confidence: 99%
“…It can be concluded from the experimental results that the proposed novel design can enhance the strength of the dissimilar SLJ as much as 90.67% (Model-II). This novel design for dissimilar SLJ has superior advantages over available designs in the literature such as notches (38.33% improvement in Ref [30]), spew fillet (36.3% improvement [31]), bi-adhesive (41% and 50% improvement in Ref [30] and [32], respectively) and surface treatment (Improvement of 46.87% in Ref [33], 35% in Ref [34] and 32% in Ref [35]).…”
Section: Joint Strengthmentioning
confidence: 99%
“…As seen from Figure 2, high peel and shear stress concentrations develop at the overlap ends. There have been many atempts to reduce the stress concentrations of SLJ and improve its failure loads [10][11][12]. …”
Section: Mono-adhesive Bondlinementioning
confidence: 99%