Advanced Composites Engineering And Its Nano-bridging Technology: Applied Research For Polymer Composites And Nanocomposites

Advanced Composites Engineering And Its Nano-bridging Technology: Applied Research For Polymer Composites And Nanocomposites PDF

Author: Yun-hae Kim

Publisher: World Scientific

Published: 2021-03-15

Total Pages: 329

ISBN-13: 9811235333

DOWNLOAD EBOOK →

This book applies various concepts based on practical experimental considerations to industrial fields: aerospace structure, shipbuilding and marine engineering, automotive, and elevator composites. Written by prominent authors who contribute to the success of advanced composites technology and leading influential laboratories and companies, the book includes unique concept research, recent trends, and further insights. Particular effort is made to deal with notable constituent materials of advanced composites, even nanostructures.This book deals with applied research from the basics of a rare nanomaterial called halloysite nanotube, which is environmentally friendly and leads nanomaterials in advanced industrial composite materials and functional, structural materials with high practical value. This book includes practical nano-bridging techniques on nanostructures, manufacturing, analysis, and advanced composites' applications using the research know-how accumulated over the years by prominent experts in these areas.

Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications

Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications PDF

Author: Ayesha Kausar

Publisher: Woodhead Publishing

Published: 2022-10-06

Total Pages: 369

ISBN-13: 0323996582

DOWNLOAD EBOOK →

Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications offers a comprehensive paperback on the aerospace relevance of polymer/carbonaceous nanofiller-based nanocomposite. This manuscript summarizes all specific information on the design, fabrication and application areas of aerospace industry that employ polymer/carbonaceous nanofiller-based nanocomposites. In addition, it points to the potential of aeronautical nanocomposites towards lightning strike, radiation shielding, anti-corrosion, electronic/optical features, thermal management, antistatic application, self-healing aptitude, and green nanocomposites. The modeling of mechanical and essential properties of aerospace nanocomposites is also discussed, along with challenges and future forecasts of polymer/carbonaceous nanofiller nanocomposites. Focuses on essential aerospace composites, carbonaceous nanofillers, and ensuing polymer/carbonaceous nanofiller-based nanocomposites Explores indispensable properties of aeronautical nanocomposites, modeling of physical properties, and combined influence of carbonaceous nanofillers and carbon fibers on space material properties Includes up-to-date technical applications of polymer/carbonaceous nanofiller-based nanocomposites in design, mechanical robustness, heat resistance, non-flammability, anti-corrosion, radiation shielding, lightning strike prevention, electronic/optical features, antistatic application, self-healing, thermal management, and green nanocomposites for aeronautical relevance

Nanocomposites

Nanocomposites PDF

Author: Tsu-Wei Chou

Publisher: DEStech Publications, Inc

Published: 2012

Total Pages: 241

ISBN-13: 1605950734

DOWNLOAD EBOOK →

A bound edition that contains research papers on using nanomaterials to improve the performance and properties of composites. It covers all phases of nanocomposite synthesis - from design and multiscale modeling to processing and testing. It also offers data on dispersion, alignment and interfacial bonding.

Advanced Composites in Aerospace Engineering Applications

Advanced Composites in Aerospace Engineering Applications PDF

Author: Norkhairunnisa Mazlan

Publisher: Springer Nature

Published: 2022-02-21

Total Pages: 517

ISBN-13: 303088192X

DOWNLOAD EBOOK →

This book presents an authoritative account of the potential of advanced composites such as composites, biocomposites, composites geopolymer, hybrid composites and hybrid biocomposites in aerospace application. It documents how in recent years, composite materials have grown in strength, stature, and significance to become a key material of enhanced scientific interest and resultant research into understanding their behavior for selection and safe use in a wide spectrum of technology-related applications. This collection highlights how their unique combination of superior properties such as low density, high strength, high elastic modulus, high hardness, high temperature capability, and excellent chemical and environmental stability are optimized in technologies within these field.

Hydrothermal Behavior of Fiber- and Nanomaterial-Reinforced Polymer Composites

Hydrothermal Behavior of Fiber- and Nanomaterial-Reinforced Polymer Composites PDF

Author: Ramesh Kumar Nayak

Publisher: CRC Press

Published: 2020-04-23

Total Pages: 180

ISBN-13: 1000045773

DOWNLOAD EBOOK →

Hydrothermal Behavior of Fiber- and Nanomaterial-Reinforced Polymer Composites provides critical information regarding the in-service environmental damage and degradation studies of nano/fiber reinforced polymer (FRP) composites focusing on hydrothermal degradation. Covering hydrothermal properties of a wide range of polymer composites, the book is aimed at graduate students, researchers, and professionals in material engineering, composite materials, nanomaterials, and related fields.

Composite Materials Engineering

Composite Materials Engineering PDF

Author: Alexander V. Vakhrushev

Publisher: Apple Academic Press

Published: 2021-12-13

Total Pages: 0

ISBN-13: 9781774634721

DOWNLOAD EBOOK →

This book provides a compilation of innovative fabrication strategies and utilization methodologies that are frequently adopted in the advanced composite materials community. It addresses developing appropriate composites to efficiently utilize macro- and nanoscale features. It covers a selection of key aspects of composite materials, including history, reinforcements, matrix materials, mechanical properties, physical properties, theory, and applications. The volume reviews the research developments of a number of widely studied composite materials with different matrices. Key features of this book: Contains new coverage of nanocomposites Reflects the latest theoretical and engineering and industrial applications of composite materials Provides design methods with numerical information and technical formulations needed for researchers Presents a critical review of progress in research and development on composite materials Offers comments on future research direction and ideas for product development

Numerical Study on Interfacial Properties of Advanced Composites

Numerical Study on Interfacial Properties of Advanced Composites PDF

Author: Yuan Yuan Jia

Publisher:

Published: 2014

Total Pages: 318

ISBN-13:

DOWNLOAD EBOOK →

Composites, which have been extensively used in broad areas are produced to optimise the material's mechanical, chemical and physical properties. The interfacial properties often influence significantly the composite performance in all types of composites. The main aim of this research is to investigate the interfacial properties of various advanced composites, including carbon fibre-epoxy composites, carbon nanotube (CNT)-epoxy and graphene-polymer nanocomposites, and CNT-hybridized carbon fibre (CNT/CF) composite. In the study of a single carbon fibre pullout from a polymer matrix under the influence of residual thermal stresses, a finite element method was first applied to analyse the residual thermal stress components along the interface between the fibre and the matrix due to curing. Four typical carbon fibres, T300, AS4, T800HB-40B and IM7 with anisotropic properties embedded in epoxy matrix HY6010 were considered. A comparison study indicates that simplified isotropic fibres model would overestimate the compressive residual axial and interfacial radial stress by up to 30%. The cohesive zone model was then used to study the single carbon fibre pullout test. The numerical results indicate that the residual thermal stresses have a significant influence at the stage of frictional sliding after interfacial debonding, which leads a higher specific pullout energy. An interesting finding is that the interfacial shear strength is not a constant, which decreases with the increasing fibre embedded length. In addition, the specific pullout energy increases with the embedded length due to the effect of residual thermal stresses and interfacial friction. But the specific pullout energy does not depend on the fibre radius, which implies that reducing fibre size alone would not enhance the fibre bridging effect.In order to investigate the interfacial behaviour of CNT-epoxy nanocomposite, a numerical simulation of a single CNT pullout using cohesive zone modelling was carried out. The numerical results indicate that the debonding force increases almost linearly with the increase of interfacial crack initiation shear stress, and also slightly increases as the complete tangential separation increases. A saturated debonding force exists corresponding to a critical CNT embedded length. If the interface contains strong chemical bonding, the higher saturated debonding force can be achieved, and the force can approach to the saturated value more rapidly.Carbon nanotube (CNT)-hybridized carbon fibre (CF) composite is a new generation composite. To evaluate the bridging effect of this new reinforcing phase, a numerical method is proposed to theoretically investigate the pullout of a hybrid fibre. There are two finite element models developed in this method, which are applied to simulate a single CNT pullout from the matrix at microscale and the pullout of the hybrid fibre at macroscale. The bridging effect of the CNTs during the hybrid fibre pullout is simulated by spring elements in the macroscale finite element model, where the properties of spring elements are obtained from the microscale finite element simulation. The numerical results indicate that the apparent interfacial shear strength of the hybrid fibre and the specific pullout energy can be significantly increased due to the additional bonding of the CNT-matrix interface. A parametric study indicates that the bridging effect of the hybrid fibre can be further enhanced by improving the interfacial bonding between CNT and matrix and increasing the size or length of CNTs. In order to evaluate the interfacial properties of a flat monolayer graphene-polymer nanocomposite, a plane-strain numerical model is developed to simulate the graphene-polymer peel test, where opening mode of fracture is dominated. The cohesive parameters are characterized by matching the simulated peel force with the experiment result. The numerical result shows that the adhesive fracture energy is slightly dependent on the peel angle. The cohesive parameter determined from a 90° peel test may be used to define the cohesive law for other angles. This study systematically investigated the interfacial behaviours of four various advanced composites. A better understanding of the effect of nano-reinforcement in composite against fracture is gained. The outcome of the study will contribute new knowledge to the further development of the composites and improve their reliability.

MXene-Filled Polymer Nanocomposites

MXene-Filled Polymer Nanocomposites PDF

Author: Soney C. George

Publisher: CRC Press

Published: 2022-12-30

Total Pages: 329

ISBN-13: 1000817253

DOWNLOAD EBOOK →

MXenes are a new family of two-dimensional (2D) metal carbides, having properties such as metallic conductivity and hydrophilicity. Adding polymer binders/spacers between atomically thin MXene layers or reinforcing polymers with MXenes results in composite films that have excellent flexibility, good tensile and compressive strengths, and electrical conductivity. This book covers all advances in the field of MXene-filled polymer nanocomposites to date, illustrating fabrication and characterization, and specific properties like anti-healing, anti-friction, and microwave absorption. It further covers potential applications like energy conversion, storage systems, antibacterial, and drug delivery. The book features: exclusive material on MXene-based polymer nanocomposites; properties and potential applications of polymers upon addition of MXenes; the effect of MXenes on various thermoplastic and elastomer polymers; a focus on the properties, fabrications methods, and applications of relevant polymer matrices; and extensive coverage of the role of MXenes in polymers. This book is aimed at researchers, professionals, and graduate students in material science, polymer engineering, electronic materials, composites, chemical processing, chemical sciences, fire engineering, and biomedicine.

Advances in Nanostructured Composites

Advances in Nanostructured Composites PDF

Author: Mahmood Aliofkhazraei

Publisher: CRC Press

Published: 2019-07-25

Total Pages: 485

ISBN-13: 0429664311

DOWNLOAD EBOOK →

The first volume of this book covered Section I: Introduction to Nanocomposites Fabrication and Section II: CNT and Graphene Nanocomposites. The present second volume covers Section III: Recent Applications of Nanocomposites. The second volume aims to provide a guide for different applications of modern nanocomposites especially those fabricated by carbon nanotubes and graphene. The book makes a comparative study of fiber-reinforced composites which have been embedded into the matrix with nanocomposites containing nanotubes in place of fibers. The main topics of this volume are: Electrochemical Properties of Nanoporous Based Materials, Fabrication and Application of Graphene Oxide-based Metal and Metal Oxide Nanocomposites, Electrochemical Sensors/Biosensors Based on Carbon Aerogels/Xerogels, Advances in Nanobiocatalysis: Strategies for Lipase Immobilization and Stabilization, Metal Oxide Based Heterojunction Nanoscale Materials for Chemiresistive Gas Sensors, Recent Advances in Polymer Nanocomposite Coatings for Corrosion Protection, Recent Advances in the Design of Nanocomposite Materials via Laser Techniques for Biomedical Applications, Carbonaceous Nanostructured Composites for Electrochemical Power Sources: Fuel Cells, Supercapacitors and Batteries, Bismuth Vanadate Based Nanostructured and Nanocomposite Photocatalyst Materials for Water Splitting Application.