Exact(60)
Increasing the resin layer plasticity will improve the joint strength.
The results divulged that the joint strength increased with increasing adherend thickness; and the sensitivity of adherend thickness on the joint strength depended on the joint material types.
From experimental test results, the effects of different geometric parameters on the joint strength were discussed.
Adhesive joints encounter in-service defects that may have an impact on the joint strength.
A method for estimating the joint strength under static loadings is proposed using interface stress distributions.
Actually, the joint strength decreases gradually when the defect area/overlap area is smaller than 30%.
For the improvement of the joint strength a TiZrCuNiCo filler metal was designed.
In addition, the joint strength is predicted using an elasto-plastic stress analysis.
The joint strength can be significantly improved by selecting appropriate design parameter values.
The joint strength of dissimilar adherends was found to be smaller than that of similar adherends.
Injection molded 20% glass fiber reinforced polypropylene leaf springs were considered for the joint strength evaluation.
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