SuprakasSinha Ray,RitimaBanerjee
Sustainable Polylactide-Based Blends
Sustainable Polylactide-Based Blends
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- More about Sustainable Polylactide-Based Blends
Sustainable Polylactide-Based Blends is a comprehensive book that provides an overview of the state-of-the-art in polylactide-based blends,addressing advances in processing techniques,structure,morphology,and applications. It utilizes theoretical modeling to establish structure-property relationships and aims to support the selection of processing methods for improved compatibility between phases.
Format: Paperback / softback
Length: 458 pages
Publication date: 18 February 2022
Publisher: Elsevier - Health Sciences Division
Sustainable Polylactide-Based Blends presents a comprehensive and up-to-date examination of the state-of-the-art in polylactide (PLA)-based blends, delving into the latest advancements, innovative processing techniques, and fundamental challenges that persist in this field. The book encompasses various sections, each dedicated to exploring key aspects of sustainable polymeric materials, polylactide and polymer blends, current and emerging processing technologies, structure and morphology characterization techniques for PLA and PLA-based blends, and the processing, morphology development, and properties of polylactide-based blends. In the final chapters, the focus shifts to current and future applications, market potential, key challenges, and future outlooks. Throughout the book, theoretical modeling of immiscible polymer blends plays a pivotal role in establishing structure-property relationships in various PLA-based polymer blends. By providing in-depth coverage of fundamentals and processing techniques, the book aims to serve as a valuable resource for supporting the selection of appropriate processing methods, as well as enhancing understanding of surface chemistry to achieve improved compatibility between phases.
Sustainable Polylactide-Based Blends offers a comprehensive and in-depth exploration of the latest developments in polylactide (PLA)-based blends, encompassing a wide range of topics. The book begins by providing a foundational overview of sustainable polymeric materials, delving into their principles, characteristics, and applications. It then moves on to explore the fundamentals of polylactide and polymer blends, covering topics such as blend composition, phase behavior, and properties.
In the subsequent sections, the book delves into current and emerging processing technologies for PLA and PLA-based blends. It discusses various methods, including extrusion, injection molding, and 3D printing, and their advantages and limitations. The authors provide detailed explanations of these techniques, along with practical examples and case studies to illustrate their application in the manufacturing industry.
Structural and morphological characterization techniques for PLA and PLA-based blends are extensively covered in the book. The authors discuss various methods, such as X-ray diffraction, scanning electron microscopy, and rheology, to analyze the microstructure, morphology, and rheological properties of these blends. This information is crucial for understanding the behavior and properties of these materials, as well as for optimizing their processing and performance.
The processing, morphology development, and properties of polylactide-based blends are further explored in the book. The authors discuss the influence of processing conditions, such as temperature, pressure, and shear rate, on the structure and properties of PLA and PLA-based blends. They also discuss the development of novel processing techniques, such as twin-screw extrusion and reactive blending, that can enhance the compatibility and properties of these blends.
In the final chapters, the book focuses on current and future applications of polylactide-based blends. It discusses the potential use of these materials in various industries, such as packaging, automotive, and medical devices. The authors highlight the advantages of PLA-based blends over traditional plastics, such as their biodegradability and renewable nature, and discuss the challenges and opportunities associated with their commercialization.
Throughout the book, theoretical modeling of immiscible polymer blends is employed to establish structure-property relationships in various PLA-based polymer blends. This modeling helps to understand the behavior and properties of these blends, and provides insights into the optimization of processing conditions and blend composition.
Sustainable Polylactide-Based Blends is an essential resource for researchers, engineers, and professionals involved in the field of polylactide-based blends. It provides a comprehensive and up-to-date overview of the state-of-the-art in this field, covering both fundamental aspects and practical applications. The book is well-organized, with clear and concise explanations, and includes numerous illustrations and tables to enhance understanding.
In conclusion, Sustainable Polylactide-Based Blends is a valuable addition to the literature on polylactide-based blends. It offers a comprehensive and in-depth exploration of the latest advancements, innovative processing techniques, and fundamental issues that persist in this field. The book is well-written, accessible, and informative, and will be of great interest to researchers, engineers, and professionals working in the field of sustainable materials and polymer engineering.
Weight: 450g
Dimension: 235 x 191 (mm)
ISBN-13: 9780323858687
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