Finite Element Analysis of Two Dimensional and Axisymmetric Stress Problems with Linear Strain Elements

Finite Element Analysis of Two Dimensional and Axisymmetric Stress Problems with Linear Strain Elements PDF Author: Handa, S. K
Publisher: Longueuil, Que[bec] : United Aircraft of Canada
ISBN:
Category :
Languages : en
Pages :

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APES--Second Generation Two-Dimensional Fracture Mechanics and Stress Analysis by Finite Elements

APES--Second Generation Two-Dimensional Fracture Mechanics and Stress Analysis by Finite Elements PDF Author: L. Nash Gifford (Jr)
Publisher:
ISBN:
Category :
Languages : en
Pages : 79

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Book Description
Computer program APES utilizes a high order isoparametric finite element and two different singular crack tip elements. It can treat elastic axisymmetric, plane strain, or plane stress problems and is particularly valuable for stress concentration problems and linear fracture mechanics applications. The behavior characteristics of the finite elements are given, and abundance of case studies are included, and detailed preparation of input data is described. Thus the report will enable the designer/analyst to immediately put the program to practical use. It is shown that accurate stress intensity factors for cracked structures under combined Modes I and II loading conditions are calculated directly and need not be inferred later. The manpower associated with finite element analysis is reduced by an order of magnitude, and the accuracy of the method is significantly increased. It is demonstrated that elastic planar and axisymmetric stress and fracture mechanics analysis can now be performed quickly, inexpensively, and very accurately for highly complex structures in a manner that is appealingly simple. This work has direct application to fatigue and fracture problems in which the behavior of full-scale structural details is predicted on the basis of the behavior of simple, controlled laboratory specimens. (Author).

An Extended Modular Finite Element Stress Analysis System for Instruction and Research

An Extended Modular Finite Element Stress Analysis System for Instruction and Research PDF Author: Mohammad S. Kiumarse Zamanian
Publisher:
ISBN:
Category : FACS (Computer program).
Languages : en
Pages : 246

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Structural Analysis with the Finite Element Method. Linear Statics

Structural Analysis with the Finite Element Method. Linear Statics PDF Author: Eugenio Oñate
Publisher: Springer Science & Business Media
ISBN: 1402087438
Category : Technology & Engineering
Languages : en
Pages : 894

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Book Description
STRUCTURAL ANALYSIS WITH THE FINITE ELEMENT METHOD Linear Statics Volume 1 : The Basis and Solids Eugenio Oñate The two volumes of this book cover most of the theoretical and computational aspects of the linear static analysis of structures with the Finite Element Method (FEM). The content of the book is based on the lecture notes of a basic course on Structural Analysis with the FEM taught by the author at the Technical University of Catalonia (UPC) in Barcelona, Spain for the last 30 years. Volume1 presents the basis of the FEM for structural analysis and a detailed description of the finite element formulation for axially loaded bars, plane elasticity problems, axisymmetric solids and general three dimensional solids. Each chapter describes the background theory for each structural model considered, details of the finite element formulation and guidelines for the application to structural engineering problems. The book includes a chapter on miscellaneous topics such as treatment of inclined supports, elastic foundations, stress smoothing, error estimation and adaptive mesh refinement techniques, among others. The text concludes with a chapter on the mesh generation and visualization of FEM results. The book will be useful for students approaching the finite element analysis of structures for the first time, as well as for practising engineers interested in the details of the formulation and performance of the different finite elements for practical structural analysis. STRUCTURAL ANALYSIS WITH THE FINITE ELEMENT METHOD Linear Statics Volume 2: Beams, Plates and Shells Eugenio Oñate The two volumes of this book cover most of the theoretical and computational aspects of the linear static analysis of structures with the Finite Element Method (FEM).The content of the book is based on the lecture notes of a basic course on Structural Analysis with the FEM taught by the author at the Technical University of Catalonia (UPC) in Barcelona, Spain for the last 30 years. Volume 2 presents a detailed description of the finite element formulation for analysis of slender and thick beams, thin and thick plates, folded plate structures, axisymmetric shells, general curved shells, prismatic structures and three dimensional beams. Each chapter describes the background theory for each structural model considered, details of the finite element formulation and guidelines for the application to structural engineering problems Emphasis is put on the treatment of structures with layered composite materials. The book will be useful for students approaching the finite element analysis of beam, plate and shell structures for the first time, as well as for practising engineers interested in the details of the formulation and performance of the different finite elements for practical structural analysis.

Refined Finite Element Analysis of Linear and Nonlinear Two-dimensional Structures

Refined Finite Element Analysis of Linear and Nonlinear Two-dimensional Structures PDF Author: Carlos Alberto Felippa
Publisher:
ISBN:
Category : Elastic plates and shells
Languages : en
Pages : 642

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Structural Analysis with the Finite Element Method. Linear Statics

Structural Analysis with the Finite Element Method. Linear Statics PDF Author: Eugenio Oñate
Publisher: Springer Science & Business Media
ISBN: 1402087330
Category : Technology & Engineering
Languages : en
Pages : 495

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Book Description
STRUCTURAL ANALYSIS WITH THE FINITE ELEMENT METHOD Linear Statics Volume 1 : The Basis and Solids Eugenio Oñate The two volumes of this book cover most of the theoretical and computational aspects of the linear static analysis of structures with the Finite Element Method (FEM). The content of the book is based on the lecture notes of a basic course on Structural Analysis with the FEM taught by the author at the Technical University of Catalonia (UPC) in Barcelona, Spain for the last 30 years. Volume1 presents the basis of the FEM for structural analysis and a detailed description of the finite element formulation for axially loaded bars, plane elasticity problems, axisymmetric solids and general three dimensional solids. Each chapter describes the background theory for each structural model considered, details of the finite element formulation and guidelines for the application to structural engineering problems. The book includes a chapter on miscellaneous topics such as treatment of inclined supports, elastic foundations, stress smoothing, error estimation and adaptive mesh refinement techniques, among others. The text concludes with a chapter on the mesh generation and visualization of FEM results. The book will be useful for students approaching the finite element analysis of structures for the first time, as well as for practising engineers interested in the details of the formulation and performance of the different finite elements for practical structural analysis. STRUCTURAL ANALYSIS WITH THE FINITE ELEMENT METHOD Linear Statics Volume 2: Beams, Plates and Shells Eugenio Oñate The two volumes of this book cover most of the theoretical and computational aspects of the linear static analysis of structures with the Finite Element Method (FEM).The content of the book is based on the lecture notes of a basic course on Structural Analysis with the FEM taught by the author at the Technical University of Catalonia (UPC) in Barcelona, Spain for the last 30 years. Volume 2 presents a detailed description of the finite element formulation for analysis of slender and thick beams, thin and thick plates, folded plate structures, axisymmetric shells, general curved shells, prismatic structures and three dimensional beams. Each chapter describes the background theory for each structural model considered, details of the finite element formulation and guidelines for the application to structural engineering problems Emphasis is put on the treatment of structures with layered composite materials. The book will be useful for students approaching the finite element analysis of beam, plate and shell structures for the first time, as well as for practising engineers interested in the details of the formulation and performance of the different finite elements for practical structural analysis.

Engineering Stress Analysis

Engineering Stress Analysis PDF Author: David N. Fenner
Publisher: Prentice Hall
ISBN:
Category : Technology & Engineering
Languages : en
Pages : 264

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Finite Element Analysis of Solids and Structures

Finite Element Analysis of Solids and Structures PDF Author: Sudip S. Bhattacharjee
Publisher: CRC Press
ISBN: 100041230X
Category : Science
Languages : en
Pages : 341

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Book Description
Finite Element Analysis of Solids and Structures combines the theory of elasticity (advanced analytical treatment of stress analysis problems) and finite element methods (numerical details of finite element formulations) into one academic course derived from the author’s teaching, research, and applied work in automotive product development as well as in civil structural analysis. Features Gives equal weight to the theoretical details and FEA software use for problem solution by using finite element software packages Emphasizes understanding the deformation behavior of finite elements that directly affect the quality of actual analysis results Reduces the focus on hand calculation of property matrices, thus freeing up time to do more software experimentation with different FEA formulations Includes chapters dedicated to showing the use of FEA models in engineering assessment for strength, fatigue, and structural vibration properties Features an easy to follow format for guided learning and practice problems to be solved by using FEA software package, and with hand calculations for model validation This textbook contains 12 discrete chapters that can be covered in a single semester university graduate course on finite element analysis methods. It also serves as a reference for practicing engineers working on design assessment and analysis of solids and structures. Teaching ancillaries include a solutions manual (with data files) and lecture slides for adopting professors.

Advanced Applied Finite Element Methods

Advanced Applied Finite Element Methods PDF Author: Carl T. F. Ross
Publisher: Elsevier
ISBN: 0857099752
Category : Mathematics
Languages : en
Pages : 468

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Book Description
This book is aimed at senior undergraduates, graduates and engineers. It fills the gap between the numerous textbooks on traditional Applied Mechanics and postgraduate books on Finite Element Methods. - Fills the gap between the applied mechanics and finite element methods - Discusses basic structural concepts and energy theorems, the discrete system, in-plane quadrilateral elements, field problems and mathematical modelling, among other topics - Aimed at senior undergraduates, graduates and engineers

TEXTBOOK OF FINITE ELEMENT ANALYSIS

TEXTBOOK OF FINITE ELEMENT ANALYSIS PDF Author: P. SESHU
Publisher: PHI Learning Pvt. Ltd.
ISBN: 8120323157
Category : Mathematics
Languages : en
Pages : 340

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Book Description
Designed for a one-semester course in Finite Element Method, this compact and well-organized text presents FEM as a tool to find approximate solutions to differential equations. This provides the student a better perspective on the technique and its wide range of applications. This approach reflects the current trend as the present-day applications range from structures to biomechanics to electromagnetics, unlike in conventional texts that view FEM primarily as an extension of matrix methods of structural analysis. After an introduction and a review of mathematical preliminaries, the book gives a detailed discussion on FEM as a technique for solving differential equations and variational formulation of FEM. This is followed by a lucid presentation of one-dimensional and two-dimensional finite elements and finite element formulation for dynamics. The book concludes with some case studies that focus on industrial problems and Appendices that include mini-project topics based on near-real-life problems. Postgraduate/Senior undergraduate students of civil, mechanical and aeronautical engineering will find this text extremely useful; it will also appeal to the practising engineers and the teaching community.