
- 1,196 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
Advances in Structural Adhesive Bonding
About this book
Advances in Structural Adhesive Bonding, Second Edition reviews developments in adhesive bonding for a range of advanced structural engineering applications. This new edition has been fully revised to include the latest advances in materials, testing and modeling methods, lifecycle considerations, and industrial implementation. Sections review advances in commonly used groups of structural adhesives, covering epoxy, acrylic, anaerobic and cyanoacrylate, polyurethane, and silicone adhesives, along with toughening. Other chapters cover various types of adherends and pre-treatment methods for structural materials, including metals, plastics, composites, wood and joint design and testing, including topics such as fracture mechanics, life prediction techniques, and advanced testing methods.
This is a valuable guide for all those working with structural adhesives, including those in an industrial setting, adhesive specialists, structural engineers, design engineers, R&D professionals, and scientists, as well as academic researchers and advanced students in adhesives, joining technology, materials science and mechanical engineering.
- Provides detailed coverage on the main adhesive groups, including epoxy, acrylic, cyanoacrylate, polyurethane and silicone adhesives
- Includes the latest developments across adherends, pre-treatment methods, joint design and testing, durability and lifecycle related issues
- Addresses environmental challenges, adhesive specification, quality control, and risk mitigation for specific industrial application areas
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Yes, you can access Advances in Structural Adhesive Bonding by David A. Dillard in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Industrial & Technical Chemistry. We have over one million books available in our catalogue for you to explore.
Information
Table of contents
- Cover
- Front Matter
- Table of Contents
- Copyright
- Contributors
- Preface
- List of Illustrations
- List of Tables
- 1 : Advances in epoxy adhesives
- 2 : Advances in acrylic structural adhesives*
- 3 : Advances in polyurethane structural adhesives
- 4 : Advances in cyanoacrylate structural adhesives
- 5 : Advances in anaerobic adhesives
- 6 : Advances in structural silicone adhesives
- 7 : Emerging structural adhesive chemistries and innovations
- 8 : Advances in toughening strategies for structural adhesives
- 9 : What went wrong? Solving bonding challenges through surface science
- 10 : Advances in bonding plastics
- 11 : Structural bonds without an adhesive: Understanding adhesion of semicrystalline thermoplastic interfaces
- 12 : Adhesive joining of thermoplastic composites
- 13 : Advances in structural wood products adhesive bonding
- 14 : Standard test methods and their need to evolve
- 15 : Predicting adhesive bond performance
- 16 : Innovations in fracture testing of structural adhesive bonds
- 17 : Understanding fracture mode-mixity and its effects on bond performance
- 18 : Bondline thickness: Fracture mechanics perspective
- 19 : Evaluating and predicting fatigue behavior in adhesively bonded joints
- 20 : Durability and accelerated characterization of adhesive bonds
- 21 : High-rate testing of structural adhesives
- 22 : Application of high-throughput methodologies and artificial intelligence for adhesion testing
- 23 : Aerospace structural bonding: Qualification, quality control, substantiation, and risk mitigation
- 24 : Automotive adhesives: Specification, qualification, and quality control
- 25 : Construction adhesives: Qualification, specification, quality control, and risk mitigation
- 26 : General industrial adhesive applications: Qualification, specification, quality control, and risk mitigation
- 27 : Biomedical adhesives: Qualification, specification, quality control, and risk mitigation
- 28 : Structural monitoring of adhesive joints using machine learning
- 29 : Sustainable adhesives: Bioadhesives, chemistries, recyclability, and reversibility
- 30 : Accelerated curing of bonded joints
- 31 : Residual stress development in curing processes: Material characterization and modeling
- 32 : Digital image correlation: Advancing mechanical property characterization of adhesive joints
- 33 : Improving joint performance through graded materials and geometries
- 34 : Architected adhesive joints with improved fracture toughness
- 35 : Sensing stresses and damage in adhesive bonds using mechanophores
- Index
- A