Sustainable Biopolymer Composites: Biocompatibility, Self-Healing, Modeling, Repair and Recyclability: Woodhead Publishing Series in Composites Science and Engineering
Editat de Deepak Verma, Mohit Sharma, Kheng-Lim Goh, Siddharth Jain, Himani Sharmaen Limba Engleză Paperback – 16 sep 2021
The composites repair process is extremely complex, hence it is essential to have a comprehensive understanding of damage mechanisms to apply the most suitable repair technique. Damage assessment using onsite inspection, e.g., NDT, THz techniques and the automated repair process for reliability and repeatability, are vital parameters when executing bonded composite repair. Furthermore, overall integrity and structural health monitoring of composites repair is also necessary.
- Features detailed information on damage detection, failure analysis and repair of advanced bio-polymer composites
- Emphasizes biocompatibility, degradation and recyclability of these materials
- Features key chapters on molecular dynamics, multi-scale modeling and self-healing
- Presents a roadmap for materials selection, processing and industrial utilization for a broad range of applications
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Specificații
ISBN-13: 9780128222911
ISBN-10: 0128222913
Pagini: 304
Ilustrații: 235 illustrations (35 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.42 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
ISBN-10: 0128222913
Pagini: 304
Ilustrații: 235 illustrations (35 in full color)
Dimensiuni: 152 x 229 mm
Greutate: 0.42 kg
Editura: ELSEVIER SCIENCE
Seria Woodhead Publishing Series in Composites Science and Engineering
Cuprins
Part I: Sustainable advanced composites materials: biomaterials, fabrication and properties1 An introduction to high-performance advanced polymers composites, their types, processing, and applications in automotive industries2 Biopolymers and sustainable biopolymer-based composites: fabrication, failure, and repairing3 Advanced biopolymer-based green composites: their processing and damage mechanism4 Mechanical and physical performance of the advanced biopolymer-based composites with addition of filler and challenges with additive manufacturing5 Advanced biopolymer-based composites: construction and structural applications6 Roadmap for materials selection, processing, and utilization of biocompatible composites in biomedical sectors
Part II: Sustainable advanced bio-polymer composites and analysis: fracture, repair and modelling, applications7 An introduction to self-healing of polymer composite materials and conventional repairing process8 Different types of self-repairing of composite materials: an overview9 Injection repair of advanced composites: a prospective method for delamination damage repair10 Advanced biopolymer-based composites: an introduction and fracture modeling11 Sustainable biocomposite development using halloysite nanotubes and polylactic acid12 Advanced composite repair technology for aerospace, marine, and automobile applications
Part II: Sustainable advanced bio-polymer composites and analysis: fracture, repair and modelling, applications7 An introduction to self-healing of polymer composite materials and conventional repairing process8 Different types of self-repairing of composite materials: an overview9 Injection repair of advanced composites: a prospective method for delamination damage repair10 Advanced biopolymer-based composites: an introduction and fracture modeling11 Sustainable biocomposite development using halloysite nanotubes and polylactic acid12 Advanced composite repair technology for aerospace, marine, and automobile applications