Hybrid Finite Element Method For Stress Analysis Of Laminated Composites

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This book has one single purpose: to present the development of the partial hybrid finite element method for the stress analysis of laminated composite structures. The reason for this presentation is because the authors believe that partial hybrid finite element method is more efficient that the displacement based finite element method for the stress analysis oflaminated composites. In fact, the examples in chapter 5 of this book show that the partial hybrid finite element method is about 5 times more efficient than the displacement based finite element method. Since there is a great need for accurate and efficient calculation of interlaminar stresses for the design using composites, the partial hybrid finite method does provide one possible solution. Hybrid finite method has been in existence since 1964 and a significant amount of work has been done on the topic. However, the authors are not aware of any systematic piece of literature that gives a detailed presentation of the method. Chapters of the displacement finite element method and the evolution 1 and 2 present a sununary of the hybrid finite element method. Hopefully, these two chapters can provide the readers with an appreciation for the difference between the displacement finite element method and the hybrid finite element. It also should prepare the readers for the introduction of partial hybrid finite element method presented in chapter 3.

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Genre : Technology & Engineering
Author : Suong Van Hoa
Publisher : Springer Science & Business Media
Release : 2013-11-27
File : 304 Pages
ISBN-13 : 9781461557333


Hybrid And Incompatible Finite Element Methods

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While the theory and application of finite elements methods can be extended to incompatible, hybrid, and mixed element methods, important issues, such as determining the reliability of the solution of incompatible multivariable elements, along with a common perception of impracticality, have hindered the widespread implementation of these methods. Today, however, recent advances--many directly attributable to these authors--have allowed the development of the stability theory and abstract mathematics to useful tools. Hybrid and Incompatible Finite Element Methods introduces these advances in the theory and applications of incompatible and multivariable finite element methods. After an overview of the variation formulation of finite element methods in solid mechanics, the authors discuss the fundamental theory and systematically demonstrate the theoretical foundations of incompatible elements and their application to different problems in the theory of elasticity. They also introduce new ideas in the development of hybrid finite elements, study the numerical stability of the hybrid and mixed element, and establish the theory of zero energy deformation modes. The final chapters, explore applications to fracture problems, present a bound analysis for fracture parameters, and demonstrate an implementation of a finite element analysis program.

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Genre : Mathematics
Author : Theodore H.H. Pian
Publisher : CRC Press
Release : 2005-11-04
File : 395 Pages
ISBN-13 : 9781135442217


Advanced Finite Element Method In Structural Engineering

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Advanced Finite Element Method in Structural Engineering systematically introduces the research work on the Finite Element Method (FEM), which was completed by Prof. Yu-qiu Long and his research group in the past 25 years. Seven original theoretical achievements - for instance, the Generalized Conforming Element method, to name one - and their applications in the fields of structural engineering and computational mechanics are discussed in detail. The book also shows the new strategies for avoiding five difficulties that exist in traditional FEM (shear-locking problem of thick plate elements; sensitivity problem to mesh distortion; non-convergence problem of non-conforming elements; accuracy loss problem of stress solutions by displacement-based elements; stress singular point problem) by utilizing foregoing achievements.

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Genre : Technology & Engineering
Author : Yu-Qiu Long
Publisher : Springer Science & Business Media
Release : 2009-09-29
File : 715 Pages
ISBN-13 : 9783642003165


Analysis And Modelling Of Advanced Structures And Smart Systems

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This book presents selected papers presented at the 8th International Conference "Design, Modeling and Experiments of Advanced Structures and Systems" (DeMEASS VIII, held in Moscow, Russia in May 2017) and reflects the modern state of sciences in this field. The contributions contain topics like Piezoelectric, Ferroelectric, Ferroelastic and Magnetostrictive Materials, Shape Memory Alloys and Active Polymers, Functionally Graded Materials, Multi-Functional Smart Materials and Structures, Coupled Multi-Field Problems, Design and Modeling of Sensors and Actuators, Adaptive Structures.

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Genre : Science
Author : Holm Altenbach
Publisher : Springer
Release : 2017-11-27
File : 380 Pages
ISBN-13 : 9789811068959


Nasa Technical Memorandum

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Genre : Aeronautics
Author :
Publisher :
Release : 1988
File : 230 Pages
ISBN-13 : MINN:319510008456335


Applied Mechanics Reviews

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Genre : Mechanics, Applied
Author :
Publisher :
Release : 1988
File : 384 Pages
ISBN-13 : OSU:32435026160754


Computer Methods In Composite Materials Vi

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The Computer Methods in Composite Materials conferences bring together both engineers and scientists actively interested in this field. Featuring the proceedings of the sixth meeting, this text covers topics relating to simulation, modelling and experimentation of composite materials.

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Genre : Computers
Author : Suong V. Hoa
Publisher :
Release : 1998
File : 624 Pages
ISBN-13 : UOM:39015047449353


Engine Structures

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Genre : Engines
Author :
Publisher :
Release : 1988
File : 232 Pages
ISBN-13 : STANFORD:36105024739075


Scientific And Technical Aerospace Reports

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Genre : Aeronautics
Author :
Publisher :
Release : 1976
File : 978 Pages
ISBN-13 : UIUC:30112057085109


Dissertation Abstracts International

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Genre : Dissertations, Academic
Author :
Publisher :
Release : 2000
File : 992 Pages
ISBN-13 : STANFORD:36105029530305