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Titlebook: Composite Materials and Joining Technologies for Composites, Volume 7; Proceedings of the 2 Eann Patterson,David Backman,Gary Cloud Confere

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https://doi.org/10.1007/978-2-287-72094-9To verify the current work, comprehensive comparison is made between previous theories, experimental data, and current model. Result shows that the current model is better than previous theories in regards to the coincidence with experimental data. The effect of each key parameter on the prediction is also discussed in this paper.
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Evaluating Bolted Joint Strength at High Strain Rates,ique are selected. The challenges of the setup, the role of equilibrium and the occurrence of buckling are all studied critically to understand what is the best method to evaluate the joint strength under impact/high strain rate loading conditions.
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2191-5644 First International Symposium on Joining Technologies for Composites, Volume 7.: Proceedings of the 2012 Annual Conference on Experimental and Applied Mechanics. represents one of seven volumes of technical papers presented at the Society for Experimental Mechanics SEM 12th International Congress &
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https://doi.org/10.1007/978-2-287-72094-9eloped takes into account the transverse shear deformation in the composite and adhesive layers; the adhesive layers are normally much more vulnerable to cracking. The validity and accuracy of the proposed model is investigated by comparing the results with finite element prediction for various loading scenarios.
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Evaluating Bolted Joint Strength at High Strain Rates,oint is studied using a Split Hopkinson Bar Pressure setup. The objective of the study is to understand the effect of variable geometrical parameters in the single lap bolted joint experimentally. Subsequently, only those aspects of these parameters that can confine to the dynamic experimental techn
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Inter-cellular Joining for Amorphous Honeycombs,otherwise impractical or even impossible. However, the alloys are generally high density and brittle, limiting their use in low density, high toughness applications. To reduce density, cellular solids offer promise as a mechanism to employ high strength base materials. Recent research has led to the
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