Thermoplastic Polymer Composites

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Aerospace
Applications of Polymer Composites
Bio-composites of PLA
Bio-composites with Natural Fibers
Bio-composites with PEEK
Bio-composites with PLA
Bio-medical Engineering Applications of Thermoplastic Composites
Bio-mimetics and Polymer Composites
Biomedical Applications of Polymer Composites
Biopolymers in Artificial Ligaments
Cardiovascular Applications of Polymer Composites
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Charms of Graphenes
Continuous Fiber Reinforced Thermoplastic Composites
Critical Fiber Length (Lc) and Composite Properties
Critical Fiber Length in Thermoplastic Composites
Environment vis-à-vis Polymer Waste
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Filled Polymer Composites
Fracture Propagation in PP Composites
Fracture Toughness in Plastics
Future of Polymer Composites
Future of Thermoplastic Polymer Composites
Gecko Effect
Green Composites
Long Fiber Reinforced Polymer Composites
Lotus Effect and Nano Science
Low Temperature Fracture Properties of Filled PP
Marine
Military Applications of Thermoplastic Composites
Nanocomposites of Polymers
Nanocomposites’ Preparation
Natural Fibers and Biocomposites
Natural Fibers and Their Composites
Polymer Applications in Automotives
Polymer Composite Applications
Polymer Composites in Electrical Applications
Processing of Thermoplastics
Properties and Morphology
Recycling FRPs
Recycling Polymer Composites
Recycling Polymer Waste
Recycling Thermoplastic Waste
Self-Healing Polymer Composites
Short Fiber Reinforced Thermoplastic Polymer Composites
Sports Applications in Polymers
Sustainability and Human-health
Temperature Dependent Fracture Properties in PP Composites
Test Methods for Thermoplastic Composites
Thermal Properties of FRPs
Thermoplastic Composites with Agro-Fillers
Thermoplastic Composites with Inorganic Fillers
Thermoplastic composites with Organic Fillers
Thermoplastic Polymer Nanocomposites
Transcrystallinity in Polymer Composites
  Fractography of Filled PP
 Polymers in Construction Applications

Product details

  • ISBN 9781119865056
  • Weight: 2105g
  • Publication Date: 04 Nov 2022
  • Publisher: John Wiley & Sons Inc
  • Publication City/Country: US
  • Product Form: Hardback
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THERMOPLASTIC POLYMER COMPOSITES

The monograph represents a life-long career in industry and academia and creates an exhaustive and comprehensive narrative that gives a complete understanding of important and state-of-the-art aspects of polymer composites including processing, properties, performance, applications & recyclability.

Based on 40 years’ experience in both industry and academia, the author’s goal is to make a comprehensive and up-to-date account that gives a complete understanding of various aspects of polymer composites covering processing, properties, performance, applications & recyclability.

Divided into 8 main chapters, the book treats thermoplastics vs. thermosets and the processing of thermoplastics; filled polymer composites; short fiber reinforced composites; long fiber reinforced composites; continuous fiber reinforced composites; nanocomposites; applications; and recycling polymer composites.

Readers can have confidence that:

  • Thermoplastic Polymer Composites (TPC) gives a comprehensive understanding of polymer composites’ processing, properties, applications, and their recyclability;
  • Provides a complete understanding of man-made as well as natural fiber reinforced polymer (FRP) composites and explores in depth how short fiber, long fiber, and continuous fiber can transform the entire domain of composites’ processing and properties;
  • Provides a deep understanding of nanocomposites with more than 50 examples covering both commodities as well as engineering thermoplastics. It presents conducting composites and several bio-medical applications of composites that are already passed through laboratories.

Audience

This unique reference book will be of great value to researchers and postgraduate students in materials science, polymer science, as well industry engineers in plastics manufacturing. Those working in product development laboratories of polymer and allied industries will also find it helpful.

Sodagudi Francis Xavier worked as a scientist for more than 35 years at the R&D Center of Reliance Industries Ltd., Vadodara Manufacturing Division, which was also known as I.P.C.L. (Indian Petrochemicals Corporation Ltd.). He developed High Impact Polyolefin Blend Technology that was transferred to and used by Maruti Udyog Ltd. in their cars. After he received his PhD from I.I.T. Delhi in 1979, he worked as a temporary faculty member in the Center for Materials Science & Technology, I.I.T. Delhi for over 3 years. He received the award ‘Visionary Inventor 2006’ from MarkPatent.Org, for his patents (2 US Patents and 6 Indian Patents granted), as well as his work at Parul University as Director (R&D), where he led faculty and students to file 150 Patents and Copyrights and took Parul University to seventh position among all Indian Educational Institutes, as declared by the Indian Patent Office, in 2014.