Modeling the Effect of Damage in Composite Structures

Modeling the Effect of Damage in Composite Structures
Author: Christos Kassapoglou
Publsiher: John Wiley & Sons
Total Pages: 252
Release: 2015-05-06
Genre: Technology & Engineering
ISBN: 9781119013211

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Comprehensively covers new and existing methods for the design and analysis of composites structures with damage present Provides efficient and accurate approaches for analysing structures with holes and impact damage Introduces a new methodology for fatigue analysis of composites Provides design guidelines, and step by step descriptions of how to apply the methods, along with evaluation of their accuracy and applicability Includes problems and exercises Accompanied by a website hosting lecture slides and solutions

Modeling the Effect of Damage in Composite Structures

Modeling the Effect of Damage in Composite Structures
Author: Christos Kassapoglou
Publsiher: John Wiley & Sons
Total Pages: 248
Release: 2015-03-11
Genre: Technology & Engineering
ISBN: 9781119013242

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Comprehensively covers new and existing methods for the design and analysis of composites structures with damage present Provides efficient and accurate approaches for analysing structures with holes and impact damage Introduces a new methodology for fatigue analysis of composites Provides design guidelines, and step by step descriptions of how to apply the methods, along with evaluation of their accuracy and applicability Includes problems and exercises Accompanied by a website hosting lecture slides and solutions

Damage Modeling of Composite Structures

Damage Modeling of Composite Structures
Author: Pengfei Liu
Publsiher: Elsevier
Total Pages: 398
Release: 2021-03-10
Genre: Technology & Engineering
ISBN: 9780323853538

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Damage Modeling of Composite Structures: Strength, Fracture, and Finite Element Analysis provides readers with a fundamental overview of the mechanics of composite materials, along with an outline of an array of modeling and numerical techniques used to analyze damage, failure mechanisms and safety tolerance. Strength prediction and finite element analysis of laminated composite structures are both covered, as are modeling techniques for delaminated composites under compression and shear. Viscoelastic cohesive/friction coupled model and finite element analysis for delamination analysis of composites under shear and for laminates under low-velocity impact are all covered at length. A concluding chapter discusses multiscale damage models and finite element analysis of composite structures. Integrates intralaminar damage and interlaminar delamination under different load patterns, covering intralaminar damage constitutive models, failure criteria, damage evolution laws, and virtual crack closure techniques Discusses numerical techniques for progressive failure analysis and modeling, as well as numerical convergence and mesh sensitivity, thus allowing for more accurate modeling Features models and methods that can be seamlessly extended to analyze failure mechanisms and safety tolerance of composites under more complex loads, and in more extreme environments Demonstrates applications of damage models and numerical methods

Multi Scale Modelling of Composite Material Systems

Multi Scale Modelling of Composite Material Systems
Author: C Soutis,P W R Beaumont
Publsiher: Elsevier
Total Pages: 528
Release: 2005-08-29
Genre: Technology & Engineering
ISBN: 9781845690847

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One of the most important and exciting areas of composites research is the development of modelling techniques to predict the response of composite materials to different types of stress. Predictive modelling provides the opportunity both to understand better how composites behave in different conditions and to develop materials with enhanced performance for particular industrial applications. Multi-scale modelling of composite material systems summarises the key research in this area and its implications for industry. The book covers modelling approaches ranging from the micron to the metre in scale, and from the single fibre to complete composite structures. Individual chapters discuss a variety of material types from laminates and fibre-reinforced composites to monolithic and sandwich composites. They also analyse a range of types of stress and stress response from fracture and impact to wear and fatigue. Authors also discuss the strengths and weaknesses of particular models. With its distinguished editors and international team of contributors, Multi-scale modelling of composite material systems is a standard reference for both academics and manufacturers in such areas as aerospace, automotive and civil engineering. Extensive coverage of this important and exciting area of composites research Understand how composites behave in different circumstances Compiled by an expert panel of authors and editors

Damage and Failure of Composite Materials

Damage and Failure of Composite Materials
Author: Ramesh Talreja,Chandra Veer Singh
Publsiher: Cambridge University Press
Total Pages: 315
Release: 2012-06-07
Genre: Science
ISBN: 9780521819428

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Bringing together materials mechanics and modelling, this book provides a complete guide to damage mechanics of composite materials for engineers.

Modeling Damage Fatigue and Failure of Composite Materials

Modeling Damage  Fatigue and Failure of Composite Materials
Author: Ramesh Talreja,Janis Varna
Publsiher: Elsevier
Total Pages: 620
Release: 2023-09-29
Genre: Technology & Engineering
ISBN: 9780443184888

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Modeling Damage, Fatigue and Failure of Composite Materials, Second Edition provides the latest research in the field of composite materials, an area that has attracted a wealth of research, with significant interest in the areas of damage, fatigue, and failure. The book is fully updated, and is a comprehensive source of physics-based models for the analysis of progressive and critical failure phenomena in composite materials. It focuses on materials modeling while also reviewing treatments for analyzing failure in composite structures. Sections review damage development in composite materials such as generic damage and damage accumulation in textile composites and under multiaxial loading. Part Two focuses on the modeling of failure mechanisms in composite materials, with attention given to fiber/matrix cracking and debonding, compression failure, and delamination fracture. Final sections examine the modeling of damage and materials response in composite materials, including micro-level and multi-scale approaches, the failure analysis of composite materials and joints, and the applications of predictive failure models. Provides a comprehensive source of physics-based models for the analysis of progressive and critical failure phenomena in composite materials Assesses failure and life prediction in composite materials Discusses the applications of predictive failure models such as computational approaches to failure analysis Covers further developments in computational analyses and experimental techniques, along with new applications in aerospace, automotive, and energy (wind turbine blades) fields Covers delamination and thermoplastic-based composites

Advanced Residual Strength Degradation Rate Modeling for Advanced Composite Structures

Advanced Residual Strength Degradation Rate Modeling for Advanced Composite Structures
Author: D. E. Pettit
Publsiher: Unknown
Total Pages: 348
Release: 1979
Genre: Composite materials
ISBN: MINN:31951D036985407

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This report presents the results of the first task of a three task program directed at the study of relationship between damage propagation and residual static strength of composite laminates. In Task 1: Preliminary screening, two laminates a 24-Ply 67% 0 deg. fiber and a 32-Ply quasi-isotropic laminate of T300/5208 graphite epoxy material were selected for study. Two damage types were studied, a low velocity impact condition (i.e., simulated tool drop) and a badly drilled hole. An initial study was conducted for each damage type to determine the detailed damage introduction parameters resulting in the selection of one set of impact and one set of poor drilling conditions. Baseline static tension and static compression tests were conducted on each of the four damage/laminate conditions. Stress vs life (S-N) fatigue data were then generated at range ratio R=-1 for each of the four conditions. The damage growth characteristics were monitored on each fatigue specimen using a modified Holscan ultrasonic unit. A subset of the damaged hole specimens was also evaluated in static compression and fatigue (R = -1) using TBE enhanced X-ray methods to monitor damage growth and to assess any detrimental effect of TBE on subsequent behavior of the damage. The results indicate significant reduction in initial static tension and compression strengths for the damaged hole condition in both laminates.

Modelling damage in composite structures

Modelling damage in composite structures
Author: Fahad Almaskari
Publsiher: Unknown
Total Pages: 0
Release: 2010
Genre: Electronic Book
ISBN: OCLC:711962822

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