Course On Emerging Techniques For Damage Prediction And Failure Analysis Of Laminated Composite Structures

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Course On Emerging Techniques For Damage Prediction And Failure Analysis Of Laminated Composite Structures

Author: Éditions Cépaduès
language: en
Publisher: Éditions Cépaduès
Release Date: 2008-01-08
The course deals with the crucial central question: how can one predict the evolution of damage up to and including final fracture ?Emerging yet mature answers will be presented. First, a description of today's common approaches in industrial environments will be given, along with their limits regarding the design and calculation of stratified composite structures. The course also emphasizes the damage mesomodel initiated at LMT-Cachan and used today in a number of calculation codes. This advanced yet pragmatic tool for the prediction of damage in stratified materials has become mature thanks particularly to the works of LMT-Cachan on its relation to micromechanics, EADS-Innovation Works on its identification, and DLR on its application to impact and crash problems. The course aims to give engineers and researchers the most complete view possible of the state-of-the-art and emerging techniques in damage prediction and failure analysis of laminated composite structures.
Polymer Composites, Macro- and Microcomposites

The first systematic reference on the topic with an emphasis on thecharacteristics and dimension of the reinforcement. This first of three volumes, authored by leading researchers inthe field from academia, government, industry, as well as privateresearch institutions around the globe, focuses on macro and microcomposites. Clearly divided into three sections, the first offers anintroduction to polymer composites, discussing the state of theart, new challenges, and opportunities of various polymer compositesystems, as well as preparation and manufacturing techniques. Thesecond part looks at macro systems, with an emphasis on fiberreinforced polymer composites, textile composites, and polymerhybrid composites. Likewise, the final section deals with microsystems, including micro particle reinforced polymer composites,the synthesis, surface modification and characterization of microparticulate fillers and flakes as well as filled polymer microcomposites, plus applications and the recovery, recycling and lifecycle analysis of synthetic polymeric composites.
Multiscale Methods in Computational Mechanics

Author: René de Borst
language: en
Publisher: Springer Science & Business Media
Release Date: 2010-10-09
This work gives a modern, up-to-date account of recent developments in computational multiscale mechanics. Both upscaling and concurrent computing methodologies will be addressed for a range of application areas in computational solid and fluid mechanics: Scale transitions in materials, turbulence in fluid-structure interaction problems, multiscale/multilevel optimization, multiscale poromechanics. A Dutch-German research group that consists of qualified and well-known researchers in the field has worked for six years on the topic of computational multiscale mechanics. This text provides a unique opportunity to consolidate and disseminate the knowledge gained in this project. The addition of chapters written by experts outside this working group provides a broad and multifaceted view of this rapidly evolving field.