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Frattura ed Integrità Strutturale: Annals 2012

Frattura ed Integrità Strutturale: Annals 2012
Author: Francesco Iacoviello
Publisher: Gruppo Italiano Frattura
Total Pages: 280
Release: 2012-10-03
Genre: Technology & Engineering
ISBN: 8895940466

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Frattura ed Integrità Strutturale: Annals 2010

Frattura ed Integrità Strutturale: Annals 2010
Author: Francesco Iacoviello
Publisher: Gruppo Italiano Frattura
Total Pages: 314
Release: 2011-12-20
Genre: Reference
ISBN: 8895940415

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Frattura ed Integrità Strutturale - Annals 2013

Frattura ed Integrità Strutturale - Annals 2013
Author: AA.VV.
Publisher: Gruppo Italiano Frattura
Total Pages: 650
Release: 2013-12-31
Genre: Technology & Engineering
ISBN: 8895940482

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Frattura ed Integrità Strutturale (Fracture and Structural Integrity) is the official Journal of the Italian Group of Fracture (ISSN 1971-8993). It is an open-access Journal published on-line every three months (July, October, January, April). Frattura ed Integrità Strutturale encompasses the broad topic of structural integrity, which is based on the mechanics of fatigue and fracture, and is concerned with the reliability and effectiveness of structural components. The aim of the Journal is to promote works and researches on fracture phenomena, as well as the development of new materials and new standards for structural integrity assessment. The Journal is interdisciplinary and accepts contributions from engineers, metallurgists, materials scientists, physicists, chemists, and mathematicians.


Frattura ed Integrità Strutturale: Annals 2014

Frattura ed Integrità Strutturale: Annals 2014
Author: Luca Susmel
Publisher: Gruppo Italiano Frattura
Total Pages: 1208
Release: 2014-09-12
Genre: Technology & Engineering
ISBN: 8895940490

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Sustainable Composites for Aerospace Applications

Sustainable Composites for Aerospace Applications
Author: Mohammad Jawaid
Publisher: Woodhead Publishing
Total Pages: 388
Release: 2018-04-27
Genre: Technology & Engineering
ISBN: 0081021380

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Sustainable Composites for Aerospace Applications presents innovative advances in the fabrication, characterization and applications of LDH polymer nanocomposites. It covers fundamental structural and chemical knowledge and explores various properties and characterization techniques, including microscopic, spectroscopic and mechanical behaviors. Users will find a strong focus on the potential applications of LDH polymer nanocomposites, such as in energy, electronics, electromagnetic shielding, biomedical, agricultural, food packaging and water purification functions. This book provides comprehensive coverage of cutting-edge research in the field of LDH polymer nanocomposites and future applications, and is an essential read for all academics, researchers, engineers and students working in this area. Presents fundamental knowledge of LDH polymer nanocomposites, including chemical composition, structural features and fabrication techniques Provides an analytical overview of the different types of characterization techniques and technologies Contains extensive reviews on cutting-edge research for future applications in a variety of industries


Fatigue Damage

Fatigue Damage
Author: Filippo Berto
Publisher: MDPI
Total Pages: 211
Release: 2018-07-02
Genre: Electronic books
ISBN: 3038426245

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This book is a printed edition of the Special Issue "Fatigue Damage" that was published in Metals


Annales Bogorienses

Annales Bogorienses
Author:
Publisher:
Total Pages: 378
Release: 1997
Genre: Biotechnology
ISBN:

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Smart Composites

Smart Composites
Author: Rani Elhajjar
Publisher: CRC Press
Total Pages: 432
Release: 2013-12-14
Genre: Science
ISBN: 1439895910

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Smart Composites: Mechanics and Design addresses the current progress in the mechanics and design of smart composites and multifunctional structures. Divided into three parts, it covers characterization of properties, analyses, and design of various advanced composite material systems with an emphasis on the coupled mechanical and non-mechanical behaviors. Part one includes analyses of smart materials related to electrically conductive, magnetostrictive nanocomposites and design of active fiber composites. These discussions include several techniques and challenges in manufacturing smart composites and characterizing coupled properties, as well as the analyses of composite structures at various length and time scales undergoing coupled mechanical and non-mechanical stimuli considering elastic, viscoelastic (and/or viscoplastic), fatigue, and damage behaviors. Part two is dedicated to a higher-scale analysis of smart structures with topics such as piezoelectrically actuated bistable composites, wing morphing design using macrofiber composites, and multifunctional layered composite beams. The analytical expressions for characterization of the smart structures are presented with an attention to practical application. Finally, part three presents recent advances regarding sensing and structural health monitoring with a focus on how the sensing abilities can be integrated within the material and provide continuous sensing, recognizing that multifunctional materials can be designed to both improve and enhance the health-monitoring capabilities and also enable effective nondestructive evaluation. Smart Composites: Mechanics and Design is an essential text for those interested in materials that not only possess the classical properties of stiffness and strength, but also act as actuators under a variety of external stimuli, provide passive and active response to enable structural health monitoring, facilitate advanced nondestructive testing strategies, and enable shape-changing and morphing structures.


Shape Memory Alloy Actuators

Shape Memory Alloy Actuators
Author: Mohammad H. Elahinia
Publisher: John Wiley & Sons
Total Pages: 297
Release: 2016-01-19
Genre: Technology & Engineering
ISBN: 1118359445

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This book provides a systematic approach to realizing NiTi shape memory alloy actuation, and is aimed at science and engineering students who would like to develop a better understanding of the behaviors of SMAs, and learn to design, simulate, control, and fabricate these actuators in a systematic approach. Several innovative biomedical applications of SMAs are discussed. These include orthopedic, rehabilitation, assistive, cardiovascular, and surgery devices and tools. To this end unique actuation mechanisms are discussed. These include antagonistic bi-stable shape memory-superelastic actuation, shape memory spring actuation, and multi axial tension-torsion actuation. These actuation mechanisms open new possibilities for creating adaptive structures and biomedical devices by using SMAs.


Pseudoelasticity of Shape Memory Alloys

Pseudoelasticity of Shape Memory Alloys
Author: Andrzej Ziolkowski
Publisher: Butterworth-Heinemann
Total Pages: 271
Release: 2015-03-23
Genre: Technology & Engineering
ISBN: 0128018011

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Pseudoelasticity of Shape Memory Alloys: Theory and Experimental Studies is devoted to the phenomenon of pseudoelasticity (superelasticity) exhibited by shape memory alloy materials. It provides extensive introductory content on the state-of-the-art in the field, including SMA materials development, definition of shape memory effects, and discussions on where shape memory behavior is found in various engineering application areas. The book features a survey of modeling approaches targeted at reliable prediction of SMA materials’ behavior on different scales of observation, including atomistic, microscopic, mezoscopic, and macroscopic. Researchers and graduate students will find detailed information on the modern methodologies used in the process of building constitutive models of advanced materials exhibiting complex behavior. Introduces the phenomenon of pseudoelasticity exhibited by shape memory alloy materials Features a survey of modeling approaches targeted at reliable prediction of SMN materials' behavior on different scales of observation Provides extensive coverage of the state-of-the-art in the field Ideal reference for researchers and graduate students interested in the modern methodologies used in the process of building constitutive models of advanced materials