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Smart Intelligent Aircraft Structures (SARISTU)

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Cover of 'Smart Intelligent Aircraft Structures (SARISTU)'

Table of Contents

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    Book Overview
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    Chapter 1 SARISTU: Six Years of Project Management
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    Chapter 2 Morphing Wing Integrated Safety Approach and Results
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    Chapter 3 Development and Validation of a Bird Strike Protection System for an Enhanced Adaptive Droop Nose
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    Chapter 4 Testing Overview of the EADN Samples
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    Chapter 5 Enhanced Adaptive Droop Nose—from Computer Model to Multi-functional Integrated Part
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    Chapter 6 Assessment of the SARISTU Enhanced Adaptive Droop Nose
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    Chapter 7 Adaptive Trailing Edge: Specifications, Aerodynamics, and Exploitation
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    Chapter 8 Structural Design of an Adaptive Wing Trailing Edge for Large Aeroplanes
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    Chapter 9 Distributed Actuation and Control of a Morphing Wing Trailing Edge
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    Chapter 10 Elastomer-Based Skin for Seamless Morphing of Adaptive Wings
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    Chapter 11 Manufacturing and Testing of Smart Morphing SARISTU Trailing Edge
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    Chapter 12 Design, Optimization, Testing, Verification, and Validation of the Wingtip Active Trailing Edge
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    Chapter 13 Winglet Design, Manufacturing, and Testing
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    Chapter 14 Seamless Morphing Concepts for Smart Aircraft Wing Tip
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    Chapter 15 Dynamic Aircraft Model with Active Winglet, Effects of Flight Mechanics and Loads Analysis
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    Chapter 16 Influence of H 2 and $$ {{\mathcal{L}}}_{\infty } $$ Criteria on Feed-Forward Gust Loads Control Optimized for the Minimization of Wing Box Structural Mass on an Aircraft with Active Winglets
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    Chapter 17 Evaluation of the Performance Benefits of the Winglet Active Trailing Edge in AS03
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    Chapter 18 Ribbon Tapes, Shape Sensors, and Hardware
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    Chapter 19 Methodologies for the Damage Detection Based on Fiber-Optic Sensors. Applications to the Fuselage Panel and Lower Wing Panel
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    Chapter 20 Load Monitoring by Means of Optical Fibres and Strain Gages
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    Chapter 21 Shape Sensing for Morphing Structures Using Fiber Bragg Grating Technology
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    Chapter 22 Methodologies for Guided Wave-Based SHM System Implementation on Composite Wing Panels: Results and Perspectives from SARISTU Scenario 5
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    Chapter 23 An Electromechanical Impedance-Based Mobile System for Structural Health Monitoring and Reliability Check of Bonded Piezoelectric Sensors
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    Chapter 24 PAMELA SHM System Implementation on Composite Wing Panels
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    Chapter 25 Toward the Upscaling of Guided Waves-Based NDE and SHM in Aeronautics
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    Chapter 26 Damage Identification in Composite Panels—Methodologies and Visualisation
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    Chapter 27 Manufacturing of CFRP Panels with Integrated Sensor Network and Contacting of the Network
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    Chapter 28 Damage Assessment in Composite Structures Based on Acousto-Ultrasonics—Evaluation of Performance
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    Chapter 29 Path-Based MAPOD Using Numerical Simulations
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    Chapter 30 Flat and Curved Panel Manufacturing
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    Chapter 31 Compression After Multiple Impacts: Modelling and Experimental Validation on Composite Coupon Specimens
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    Chapter 32 Compression After Multiple Impacts: Modelling and Experimental Validation on Composite Curved Stiffened Panels
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    Chapter 33 Multisite Damage Assessment Tool
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    Chapter 34 Piezochromic Compounds Able to be Used in Shock Detecting Paints
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    Chapter 35 Brittle Coating Layers for Impact Detection in CFRP
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    Chapter 36 Coating for Detecting Damage with a Manifest Color Change
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    Chapter 37 Sensitive Coating Solutions to Lower BVID Threshold on Composite Structure
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    Chapter 38 Use of Carbon Nanotubes in Structural Composites
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    Chapter 39 Enhancement of Primary Structure Robustness by Improved Damage Tolerance
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    Chapter 40 Enhancement of Infused CFRP Primary Structure Mechanical Properties Using Interleaving Thermoplastic Veils
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    Chapter 41 Multi-scale-Reinforced Prepregs for the Improvement of Damage Tolerance and Electrical Properties of Aeronautical Structures
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    Chapter 42 Improvement of the Electrical Isotropy of Composite Structures—Overview
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    Chapter 43 Fabrication of Carbon Nanotubes-Doped Veils
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    Chapter 44 Finite Element Modelling of CNT-Doped CFRP Plates for Lightning Strike Damage
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    Chapter 45 Metallic Strip Details for Validation of ESN Technologies
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    Chapter 46 Morphing Value Assessment on Overall Aircraft Level
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    Chapter 47 Implementation of Morphing, Structural Health Monitoring and Nanomaterials on an Outer Wing Box
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    Chapter 48 Implementation of a Structural Health Monitoring System for a Composite Wing Box Skin
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    Chapter 49 Value at Risk for a Guided Waves-Based System Devoted to Damage Detection in Composite Aerostructures
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    Chapter 50 Fuselage Demonstrators: An Overview of the Development Approach
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    Chapter 51 Development of a Door Surround Structure with Integrated Structural Health Monitoring System
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    Chapter 52 Damage Introduction, Detection, and Assessment at CFRP Door Surrounding Panel
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    Chapter 53 Installation of Metallic Strip on CRFP Frames: Assessment of IS13 Mechanical and Electrical Performance
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    Chapter 54 Benefit Analysis Value and Risk Assessment of New SARISTU-Technologies
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    Chapter 55 Manufacturing of Nano-treated Lower Panel Demonstrators for Aircraft Fuselage
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    Chapter 56 Design and Manufacturing of WP135 Side Panel for Validation of Electrical Structure Network (ESN) Technologies
Overall attention for this book and its chapters
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Title
Smart Intelligent Aircraft Structures (SARISTU)
Published by
Springer International Publishing, September 2015
DOI 10.1007/978-3-319-22413-8
ISBNs
978-3-31-922412-1, 978-3-31-922413-8
Editors

Wölcken, Piet Christof, Papadopoulos, Michael

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X Demographics

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Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 95 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
United Kingdom 1 1%
Russia 1 1%
Unknown 93 98%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 24 25%
Student > Master 16 17%
Researcher 13 14%
Student > Bachelor 6 6%
Student > Doctoral Student 5 5%
Other 12 13%
Unknown 19 20%
Readers by discipline Count As %
Engineering 54 57%
Materials Science 5 5%
Physics and Astronomy 5 5%
Mathematics 1 1%
Nursing and Health Professions 1 1%
Other 7 7%
Unknown 22 23%