Handbook of Composites from Renewable Materials, Physico-Chemical and Mechanical Characterization: 3 (Handbook of Composites from Renewable Materials, Volume 3) - Hardcover

9781119223665: Handbook of Composites from Renewable Materials, Physico-Chemical and Mechanical Characterization: 3 (Handbook of Composites from Renewable Materials, Volume 3)
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THE HANDBOOK OF COMPOSITES FROM RENEWABLE MATERIALS COMPRISES A SET OF 8 INDIVIDUAL VOLUMES THAT BRINGS AN INTERDISCIPLINARY PERSPECTIVE TO ACCOMPLISH A MORE DETAILED UNDERSTANDING OF THE INTERPLAY BETWEEN THE SYNTHESIS, STRUCTURE, CHARACTERIZATION, PROCESSING, APPLICATIONS AND PERFORMANCE OF THESE ADVANCED MATERIALS. THE HANDBOOK COVERS A MULTITUDE OF NATURAL POLYMERS/ REINFORCEMENT/ FILLERS AND BIODEGRADABLE MATERIALS. TOGETHER, THE 8 VOLUMES TOTAL AT LEAST 5000 PAGES AND OFFERS A UNIQUE PUBLICATION. THIS 3RD VOLUME OF THE HANDBOOK IS SOLELY FOCUSED ON THE PHYSICO-CHEMICAL AND MECHANICAL CHARACTERIZATION OF RENEWABLE MATERIALS. SOME OF THE IMPORTANT TOPICS INCLUDE BUT NOT LIMITED TO: STRUCTURAL AND BIODEGRADATION CHARACTERIZATION OF SUPRAMOLECULAR PCL/HAP NANO-COMPOSITES; DIFFERENT CHARACTERIZATION OF SOLID BIO-FILLERS BASED AGRICULTURAL WASTE MATERIAL; POLY (ETHYLENE-TEREPHTHALATE) REINFORCED WITH HEMP FIBERS;  POLY (LACTIC ACID) THERMOPLASTIC COMPOSITES FROM RENEWABLE MATERIALS; CHITOSAN -BASED COMPOSITE MATERIALS: FABRICATION AND CHARACTERIZATION; THE USE OF FLAX FIBER REINFORCED POLYMER (FFRP) COMPOSITES IN THE EXTERNALLY REINFORCED STRUCTURES FOR SEISMIC RETROFITTING MONITORED BY TRANSIENT THERMOGRAPHY AND OPTICAL TECHNIQUES; RECYCLING AND REUSE OF FIBER REINFORCED POLYMER WASTES IN CONCRETE COMPOSITE MATERIALS; ANALYSIS OF DAMAGE IN HYBRID COMPOSITES SUBJECTED TO BALLISTIC IMPACTS; BIOFIBER REINFORCED ACRYLATED EPOXIDIZED SOYBEAN OIL (AESO) BIOCOMPOSITES; BIOPOLYAMIDES AND HIGH PERFORMANCE NATURAL FIBER-REINFORCED BIOCOMPOSITES; IMPACT OF RECYCLING ON THE MECHANICAL AND THERMO-MECHANICAL PROPERTIES OF WOOD FIBER BASED HDPE AND PLA COMPOSITES; LIGNOCELLULOSIC FIBERS COMPOSITES: AN OVERVIEW; BIODIESEL DERIVED RAW GLYCEROL TO VALUE ADDED PRODUCTS; THERMO-MECHANICAL CHARACTERIZATION OF SUSTAINABLE STRUCTURAL COMPOSITES; NOVEL PH SENSITIVE COMPOSITE HYDROGEL BASED ON FUNCTIONALIZED STARCH/CLAY FOR THE CONTROLLED RELEASE OF AMOXICILLIN; PREPARATION AND

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Reseña del editor:
The Handbook of Composites From Renewable Materials comprises a set of 8 individual volumes that brings an interdisciplinary perspective to accomplish a more detailed understanding of the interplay between the synthesis, structure, characterization, processing, applications and performance of these advanced materials. The handbook covers a multitude of natural polymers/ reinforcement/ fillers and biodegradable materials. Together, the 8 volumes total at least 5000 pages and offers a unique publication. This 3rd volume of the Handbook is solely focused on the Physico-Chemical and Mechanical Characterization of renewable materials. Some of the important topics include but not limited to: structural and biodegradation characterization of supramolecular PCL/HAP nano-composites; different characterization of solid bio-fillers based agricultural waste material; poly (ethylene-terephthalate) reinforced with hemp fibers; poly (lactic acid) thermoplastic composites from renewable materials; chitosan -based composite materials: fabrication and characterization; the use of flax fiber reinforced polymer (FFRP) composites in the externally reinforced structures for seismic retrofitting monitored by transient thermography and optical techniques; recycling and reuse of fiber reinforced polymer wastes in concrete composite materials; analysis of damage in hybrid composites subjected to ballistic impacts; biofiber reinforced acrylated epoxidized soybean oil (AESO) biocomposites; biopolyamides and high performance natural fiber-reinforced biocomposites; impact of recycling on the mechanical and thermo-mechanical properties of wood fiber based HDPE and PLA composites; lignocellulosic fibers composites: an overview; biodiesel derived raw glycerol to value added products; thermo-mechanical characterization of sustainable structural composites; novel pH sensitive composite hydrogel based on functionalized starch/clay for the controlled release of amoxicillin; preparation and characterization of biobased thermoset polymers from renewable resources; influence of natural fillers size and shape into mechanical and barrier properties of biocomposites; composite of biodegradable polymer blends of PCL/PLLA and coconut fiber - the effects of ionizing radiation; packaging composite materials from renewable resources; physicochemical properties of ash based geopolymer concrete; a biopolymer derived from castor oil polyurethane; natural polymer based biomaterials; physical and mechanical properties of polymer membranes from renewable resources
Biografía del autor:
Vijay Kumar Thakur is a Lecturer in the School of Aerospace, Transport and Manufacturing Engineering, Cranfield University, UK. Previously he had been a Staff Scientist in the School of Mechanical and Materials Engineering at Washington State University, USA. He spent his Postdoctoral study in Materials Science & Engineering at Iowa State University, USA, and his PhD in Polymer Chemistry (2009) at the National Institute of Technology, India. He has published more than 90 SCI journal research articles in the field of polymers/materials science and holds one US patent. He has also published about 25 books and thirty three book chapters on the advanced state-of-the-art of polymers/materials science with numerous publishers, including Wiley-Scrivener. Manju Kumar Thakur has been working as an Assistant Professor of Chemistry at the Division of Chemistry, Govt. Degree College Sarkaghat Himachal Pradesh University, Shimla, India since 2010. She received her PhD in Polymer Chemistry from the Chemistry Department at Himachal Pradesh University. She has rich experience in the field of organic chemistry, bio- polymers, composites/ nanocomposites, hydrogels, applications of hydrogels in the removal of toxic heavy metal ions, drug delivery etc. She has published more than 30 research papers in peer-reviewed journals, 25 book chapters and co-authored five books all in the field of polymeric materials. Michael R. Kessler is a Professor of Mechanical and Materials Engineering at Washington State University, USA as well as the Director of the school. He is an expert in the mechanics, processing, and characterization of polymer matrix composites and nanocomposites. His honours include the Army Research Office Young Investigator Award, the Air Force Office of Scientific Research Young Investigator Award, the NSF CAREER Award, and the Elsevier Young Composites Researcher Award from the American Society for Composites. He has >150 journal papers and 5800 citations, holds 6 patents, published 5 books on the synthesis and characterization of polymer materials, and presented >200 talks at national and international meetings.

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Verlag: WILEY (2017)
ISBN 10: 1119223660 ISBN 13: 9781119223665
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Buchbeschreibung Zustand: Wie neu. Zustand: Wie neu - 2017. | Seiten: 688 | Sprache: Englisch. Artikel-Nr. 27053419/1

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