Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications
Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications
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Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications is a paperback that covers the design, fabrication, and application areas of polymer/carbonaceous nanofiller-based nanocomposites in the aerospace industry. It highlights the potential of these nanocomposites for lightning strike, radiation shielding, anti-corrosion, electronic/optical features, thermal management, antistatic application, self-healing aptitude, and green nanocomposites. It also discusses the modeling of mechanical and essential properties and challenges and future forecasts.
Format: Paperback / softback
Length: 372 pages
Publication date: 14 October 2022
Publisher: Elsevier Science Publishing Co Inc
Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications is a comprehensive paperback that delves into the immense aerospace significance of polymer/carbonaceous nanofiller-based nanocomposites. This manuscript provides a concise summary of all the specialized knowledge related to the design, fabrication, and application domains of the aerospace industry that utilize polymer/carbonaceous nanofiller-based nanocomposites. Furthermore, it highlights the promising potential of aeronautical nanocomposites in areas such as lightning strike resistance, radiation shielding, anti-corrosion, electronic/optical functionalities, thermal management, antistatic applications, self-healing capabilities, and green nanocomposites. The modeling of mechanical and essential properties of aerospace nanocomposites is also explored, along with the challenges and future projections of polymer/carbonaceous nanofiller nanocomposites.
Introduction:
Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications serves as a vital resource for researchers, engineers, and industry professionals seeking to understand and exploit the remarkable properties of polymer/carbonaceous nanofiller-based nanocomposites in the aerospace sector. These materials have gained significant attention due to their exceptional combination of strength, stiffness, and lightweight nature, making them ideal for a wide range of applications, including aircraft components, spacecraft structures, and military equipment.
Design, Fabrication, and Application Areas:
The manuscript comprehensively covers the design principles, fabrication techniques, and application areas of polymer/carbonaceous nanofiller-based nanocomposites in the aerospace industry. It discusses the selection of suitable polymer matrices, the incorporation of carbonaceous nanofillers, and the optimization of their properties to meet the specific requirements of aerospace applications. The authors provide detailed insights into the manufacturing processes, such as compounding, mixing, and processing, employed to produce high-quality nanocomposites. Additionally, they explore the diverse fields where polymer/carbonaceous nanofiller-based nanocomposites are being utilized, including structural components, thermal management systems, and electromagnetic interference shielding.
Potential Applications:
Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications highlights the vast potential of aeronautical nanocomposites in addressing critical challenges faced by the aerospace industry. The manuscript discusses the role of nanocomposites in lightning strike resistance, radiation shielding, anti-corrosion, electronic/optical features, thermal management, antistatic applications, self-healing aptitude, and green nanocomposites. It explores the mechanisms by which carbonaceous nanofillers enhance the mechanical properties, thermal conductivity, and electromagnetic interference shielding of polymer matrices, leading to improved performance and durability of aerospace components.
Mechanical and Essential Properties:
The manuscript delves into the modeling of mechanical and essential properties of aerospace nanocomposites. It discusses the use of experimental methods, such as tensile testing, flexural testing, and impact testing, to evaluate the mechanical properties of nanocomposites. The authors also explore the development of computational models and simulation techniques to predict the behavior of nanocomposites under various operating conditions, enabling the design of optimized aerospace components.
Challenges and Future Forecasts:
While polymer/carbonaceous nanofiller-based nanocomposites offer numerous advantages, there are also challenges that need to be addressed. The manuscript discusses the challenges associated with the synthesis, characterization, and processing of carbonaceous nanofillers. It also highlights the need for further research and development to enhance the durability, reliability, and cost-effectiveness of these materials. The authors provide insights into the future forecasts of polymer/carbonaceous nanofiller nanocomposites, including their potential applications in emerging aerospace technologies, such as electric and hybrid propulsion systems and autonomous vehicles.
Conclusion:
In conclusion, Polymeric Nanocomposites with Carbonaceous Nanofillers for Aerospace Applications is a comprehensive and authoritative resource that provides valuable insights into the aerospace relevance of polymer/carbonaceous nanofiller-based nanocomposites. It serves as a valuable tool for researchers, engineers, and industry professionals seeking to advance the development and application of these materials in the aerospace sector. The manuscript's comprehensive coverage of design, fabrication, application areas, potential applications, mechanical and essential properties, challenges, and future forecasts makes it an essential reference for anyone interested in exploring the exciting world of polymer/carbonaceous nanofiller-based nanocomposites in aerospace applications.
Dimension: 229 x 152 (mm)
ISBN-13: 9780323996570
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