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By Dario Croccolo

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Extra resources for Adhesives: Mechanical Properties, Technologies and Economic Importance

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Polymer Engineering and Science, 49(8), 1461–1476. American Iron and Steel Institute. (2004). Steelworks, the online resource for steel. Astm D1002-01. (2001). Standard test method for apparent shear strength of single-lap-joint adhesively bonded metal specimens by tension loading (metal-to-metal). Astm D5656-01. (2001). Standard test method for thick-adherend metal lapshear joints for determination of the stress-strain behavior of adhesives in shear by tension loading. The Hybrid Press-Fitted Adhesive Bonded Joint 45 Bowden, F.

2007). Handbook of Adhesive and Sealants. New york: Mc Graw Hill. , & Motegi, Y. (2001). Stress analysis and strength evaluation of bonded shrink fitted joints subjected to torsional loads. Journal of Adhesion Science and Technology, 15(1), 23–42. Sekercioglu, T. (2005). Shear strength estimation of adhesively bonded cylindrical components under static loading using the genetic algorithm approach. International Journal of Adhesion and Adhesives, 25(4), 352– 357. , & Rende, H. (2005). The effects of bonding clearance and interference fit on the strength of adhesively bonded cylindrical components.

It could be noted that the hybrid joints underwent the total amount of the fatigue cycles up to a amplitude of about 85 % of their static strength. For higher amplitudes, the samples did not pass the test, failing at about half million of cycles at a maximum amplitude of 90 % and at the beginning of the test for an amplitude amounting to 95 %. On the other hand, the adhesive joints in clearance condition failed around 105 cycles if stressed with a max amplitude equal to only 80 % of their static strength, and underwent the million cycles at 60 %.

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