Advances in Modeling and Design of Adhesively Bonded Systems by S. Kumar, K. L. Mittal

By S. Kumar, K. L. Mittal

 

The ebook comprehensively charts a fashion for to hire adhesively bonded joints to make platforms extra effective and cost-effective

Adhesively bonded platforms have discovered functions in a large spectrum of industries (e.g., aerospace, electronics, building, send development, biomedical, etc.) for quite a few reasons. rising adhesive fabrics with more desirable mechanical homes have allowed adhesion energy coming near near that of the bonded fabrics themselves. because of advances in adhesive fabrics and the numerous power benefits that adhesive bonding bargains, adhesive bonding has changed different becoming a member of tools in lots of applications.

Containing 9 articles written through world-renowned specialists, the e-book bargains with the advances in theoretical and computational modeling in addition to the layout and experimental features of adhesively bonded structural structures. tension research and energy prediction of adhesively bonded structural platforms, contemplating various fabric versions lower than quite a few loading stipulations, are mentioned. Finite aspect modeling utilizing macro-elements is elaborated on. fresh advancements in modeling and experimental facets of bonded structures with graded adhesive layers and twin adhesives are defined. Simulation of innovative harm in bonded joints is addressed. a singular vibration-based method of realize disbonding and delamination in composite joints can be discussed.

Readership
The e-book is principal to more than a few engineers together with mechanical, reliability, development and floor engineers in addition to fabrics scientists who're engaged within the mechanics of structural adhesive joints. Industries that might use this ebook contain aerospace, electronics, biomedical, car, send development, and construction.

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Extra info for Advances in Modeling and Design of Adhesively Bonded Systems

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M. Gonçalves, Intl. J. Adhesion Adhesives 25, 313 (2005). C. Yang, H. Huang, J. S. Tomblin and W. Sun, J. Composite Mater. 38, 293 (2004). S. Yadagiri, C. P. Reddy and T. S. Reddy, Computers and Structures 27, 445 (1987). W. C. Carpenter, Computers and Structures 36, 1141 (1990). M. Henriksen, Computers and Structures 18, 133 (1984). R. A. 69-2, Purdue University, W. Lafayette, IN (1969). D. Peretz and Y. Weitsman, J. Rheology 27, 97 (1983). W. G. Knauss and I. J. Emri, Computers and Structures 13, 123 (1981).

Furthermore, it is shown that viscoelasticity has more influence on shear stress than peel stress for time history in the present single lap joint model. 4 Summary and Conclusions In this study, linear viscoelastic behavior and interface failure in adhesively bonded joints have been studied. FM-73 with linear viscoelastic material properties has been used as adhesive, while the materials used for adherend are aluminum and steel. Finite element analysis considering geometric nonlinearity as well as thermal expansion has been carried out.

Chen and D. A. Dillard, Intl. J. Solids Structures 38, 6907 (2001). F. Dubois, C. Chazal and C. Petit, Mech. Time-Dependent Materials 2, 269 (1998). P. Rahulkumar, A. Jagota, S. J. Bennison and S. Saigal, Intl. J. Solids Structures 37, 1873 (2000). A. Muliana and K. A. Khan, Computational Mater. Sci. 41, 576 (2008). J. N. Reddy, An Introduction to Continuum Mechanics, Cambridge University Press, New York (2008). 3. O. Ishai, H. Rosenthal and E. D. N. Sela, Composites 19, 49 (1988). 3 Modeling of Cylindrical Joints with a Functionally Graded Adhesive Interlayer S.

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