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Structural Crashworthiness and Failure

Structural Crashworthiness and Failure
Author: N. Jones
Publisher: CRC Press
Total Pages: 454
Release: 2010-02-25
Genre: Technology & Engineering
ISBN: 0203860454

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This book contains twelve invited lectures from the Third International Symposium on Structural Crashworthiness. Particular emphasis is given to the failure predictions for ductile metal structures under large dynamic loads and to the behaviour of composite and cellular structures.


Crashworthiness

Crashworthiness
Author: Jorge A.C. Ambrosio
Publisher: Springer Science & Business Media
Total Pages: 484
Release: 2001-06-19
Genre: Science
ISBN: 9783211833346

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From the fundamentals of impact mechanics and biomechanics to modern analysis and design techniques in impact energy management and occupant protection this book provides an overview of the application of nonlinear finite elements, conceptual modeling and multibody procedures, impact biomechanics, injury mechanisms, occupant mathematical modeling, and human surrogates in crashworthiness.


Computational Methods for Crashworthiness

Computational Methods for Crashworthiness
Author: Workshop on Computational Methods for Crashworthiness
Publisher:
Total Pages: 288
Release: 1993
Genre: Aeronautics
ISBN:

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Crashworthiness of Composite Thin-Walled Structures

Crashworthiness of Composite Thin-Walled Structures
Author: A.G. Mamalis
Publisher: CRC Press
Total Pages: 270
Release: 2017-11-22
Genre: Technology & Engineering
ISBN: 1351457551

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FROM THE INTRODUCTION Vehicle crashworthiness has been improving in recent years with attention mainly directed towards reducing the impact of the crash on the passengers. Effort has been spent in experimental research and in establishing safe theoretical design criteria on the mechanics of crumpling, providing to the engineers the ability to design vehicle structures so that the maximum amount of energy will dissipate while the material surrounding the passenger compartment is deformed, thus protecting the people inside. During the last decade the attention given to crashworthiness and crash energy management has been centered on composite structures. The main advantages of fibre reinforced composite materials over more conventional isotropic materials, are the very high specific strengths and specific stiffness which can be achieved. Moreover, with composites, the designer can vary the type of fibre, matrix and fibre orientation to produce composites with proved material properties. Besides the perspective of reduced weight, design flexibility and low fabrication costs, composite materials offer a considerable potential for lightweight energy absorbing structures; these facts attract the attention of the automotive and aircraft industry owing to the increased use of composite materials in various applications, such as frame rails used in the apron construction of a car body and the subfloor of an aircraft, replacing the conventional materials used. Our monograph is intended to provide an introduction to this relatively new topic of structural crashworthiness for professional engineers. It will introduce them to terms and concepts of it and acquaint them with some sources of literature about it. We believe that our survey constitutes a reasonably well-balanced synopsis of the topic.


Crashworthiness of Transportation Systems: Structural Impact and Occupant Protection

Crashworthiness of Transportation Systems: Structural Impact and Occupant Protection
Author: Jorge A.C. Ambrósio
Publisher: Springer Science & Business Media
Total Pages: 624
Release: 2012-12-06
Genre: Technology & Engineering
ISBN: 9401157960

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A systematic treatment of current crashworthiness practice in the automotive, railroad and aircraft industries. Structural, exterior and interior design, occupant biomechanics, seat and restraint systems are dealt with, taking account of statistical data, current regulations and state-of-the-art design tool capabilities. Occupant kinematics and biomechanics are reviewed, leading to a basic understanding of human tolerance to impact and of the use of anthropometric test dummies and mathematical modelling techniques. Different types of restraining systems are described in terms of impact biomechanics. The material and structural behaviour of vehicle components is discussed in relation to crash testing. A variety of commonly used techniques for simulating occupants and structures are presented, in particular the use of multibody dynamics, finite element methods and simplified macro-elements, in the context of design tools of increasing complexity, which can be used to model both vehicles and occupants. Audience: An excellent reference for researchers, engineers, students and all other professionals involved in crashworthiness work.