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

By S. Kumar, K. L. Mittal


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

Adhesively bonded structures have came across functions in a large spectrum of industries (e.g., aerospace, electronics, building, send development, biomedical, etc.) for numerous reasons. rising adhesive fabrics with more advantageous mechanical homes have allowed adhesion energy impending that of the bonded fabrics themselves. because of advances in adhesive fabrics and the numerous power benefits that adhesive bonding deals, adhesive bonding has changed different becoming a member of tools in lots of applications.

Containing 9 articles written by way of world-renowned specialists, the publication bargains with the advances in theoretical and computational modeling in addition to the layout and experimental facets of adhesively bonded structural platforms. tension research and energy prediction of adhesively bonded structural structures, contemplating a number fabric versions less than quite a few loading stipulations, are mentioned. Finite point modeling utilizing macro-elements is elaborated on. contemporary advancements in modeling and experimental features 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 become aware of disbonding and delamination in composite joints is usually discussed.

The publication is critical to a number engineers together with mechanical, reliability, building and floor engineers in addition to fabrics scientists who're engaged within the mechanics of structural adhesive joints. Industries that may use this publication contain aerospace, electronics, biomedical, automobile, send construction, and construction.

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Morton, Intl. J. Solids Structures, 35, 1163-1185 (1998). 10. F. Delale, F. Erdogan, and M. N. Aydinoglu, J. Composite Materials 15, 249-271 (1981). 11. C. Yang and S. Pang, J. Eng. Mater. Technol. 118, 247-255 (1996). 12. D. A, Bigwood and A. D. Crocombe, Intl. J. Adhesion Adhesives 9, 229–242 (1989). 13. Z. J. Wu, A. Romeijn, and J. Wardenier, Composite Structures 38, 273-280 (1997). 14. L. P. V. M. van Rijn, Composites Part A, 27A, 915-920 (1996). 15. Engineering Sciences Data Unit, Stress Analysis of Single Lap Bonded Joints.

Mathias, M. Grediac, and X. Balandraud, Intl. J. Solids Structures 43, 69216947 (2006). 20. R. D. Adams and N. A. Peppiatt, J. Strain Anal. Eng. Design 8, 134-139 (1973). 21. H. Kim and K. T. Kedward, J. Adhesion 76, 1-36 (2001). 22. M. Y. Tsai and J. Morton, Composite Structures 32, 123-131 (1995). 2 Finite Element Modeling of Viscoelastic Behavior and Interface Damage in Adhesively Bonded Joints Feifei Cheng, Ö. N. Reddy Advanced Computational Mechanics Laboratory, Department of Mechanical Engineering,Texas A&M University, Texas, USA Abstract This paper presents a study on viscoelastic behavior of the adhesive and damage analysis of adhesive-adherend interfaces in adhesively bonded joints.

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