Rajesh Kumar Verma – författare
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Polymer Nanocomposites: Fabrication to Applications offers readers an up-to-date interpretation of various polymeric nanocomposite materials and technologies via critical reviews. It covers developments and advancements in various nanomaterials, polymeric materials, biopolymers, and processes. It initiates from nanomaterial synthesis, fabrication, and characterization to the manufacturing aspect and feasible product applications of polymer-based nanocomposites. The prime focus is on polymer matrix nanocomposites and their future trends in the engineering sector.
Features:
Explores synthesis, characterization, properties, fabrication/processing, and applications of polymer nanocomposite materials Elaborates on polymer manufacturing phase challenges using various control methods and statistical tools and modules Includes machining and micro (μ) machining investigation on the polymer nanocomposites Discusses modeling, simulation, and optimization of process parameters during the machining processes and applications of additive manufacturing Comprehends the significance of nanomaterials functionalizing synthetic fibrous and biocompatible compositesThis book is aimed at researchers and graduate students in mechanical engineering, materials science, polymers, composites, and nanomaterials.
1 119 kr
Läs direkt efter köp
Polymer Nanocomposites: Fabrication to Applications offers readers an up-to-date interpretation of various polymeric nanocomposite materials and technologies via critical reviews. It covers developments and advancements in various nanomaterials, polymeric materials, biopolymers, and processes. It initiates from nanomaterial synthesis, fabrication, and characterization to the manufacturing aspect and feasible product applications of polymer-based nanocomposites. The prime focus is on polymer matrix nanocomposites and their future trends in the engineering sector.
Features:
Explores synthesis, characterization, properties, fabrication/processing, and applications of polymer nanocomposite materials Elaborates on polymer manufacturing phase challenges using various control methods and statistical tools and modules Includes machining and micro (μ) machining investigation on the polymer nanocomposites Discusses modeling, simulation, and optimization of process parameters during the machining processes and applications of additive manufacturing Comprehends the significance of nanomaterials functionalizing synthetic fibrous and biocompatible compositesThis book is aimed at researchers and graduate students in mechanical engineering, materials science, polymers, composites, and nanomaterials.
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992 kr
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The progress of composite materials and material science has transformed several sectors, including aviation, biomedicine, aerospace and automotive industry, medicine, and manufacturing. These advancements have opened the path for the creation of innovative hybrid materials and biomaterials that will greatly improve performance, durability, and sustainability. The introduction of 3D printing and additive manufacturing methods, notably Fused Deposition Modeling (FDM), has catapulted these areas to new heights. The book fills a significant vacuum in the existing literature by bringing together disparate but linked topics such as composites, material science, hybrid materials, biomaterials, tribology, machining, optimization, development innovations, synthesis of novel nanomaterials and additive manufacturing. While various publications address specific parts of these domains, this volume is a comprehensive resource that investigates their synergies of the above-mentioned areas. The book will be a useful resource for UG/PG Students, researchers, academics, and industry experts looking to comprehend and use these multidisciplinary breakthroughs to develop novel solutions.
992 kr
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The progress of composite materials and material science has transformed several sectors, including aviation, biomedicine, aerospace and automotive industry, medicine, and manufacturing. These advancements have opened the path for the creation of innovative hybrid materials and biomaterials that will greatly improve performance, durability, and sustainability. The introduction of 3D printing and additive manufacturing methods, notably Fused Deposition Modeling (FDM), has catapulted these areas to new heights. The book fills a significant vacuum in the existing literature by bringing together disparate but linked topics such as composites, material science, hybrid materials, biomaterials, tribology, machining, optimization, development innovations, synthesis of novel nanomaterials and additive manufacturing. While various publications address specific parts of these domains, this volume is a comprehensive resource that investigates their synergies of the above-mentioned areas. The book will be a useful resource for UG/PG Students, researchers, academics, and industry experts looking to comprehend and use these multidisciplinary breakthroughs to develop novel solutions.
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