Aging Effects on Natural Fiber-Reinforced Polymer Composites: Durability and Life Prediction
Aging Effects on Natural Fiber-Reinforced Polymer Composites: Durability and Life Prediction
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This book explores the degradation phenomenon of natural fiber-based composites (NFC) under different aging conditions and provides solutions to improve their resistance to moisture, seawater, hygrothermal, and natural and accelerated weathering. It is essential for researchers and scientists interested in the application of natural fiber composites in various fields.
Format: Paperback / softback
Length: 355 pages
Publication date: 02 February 2023
Publisher: Springer Verlag, Singapore
This comprehensive book delves into the intricate phenomenon of degradation in natural fiber-based composites (NFC) across diverse aging conditions. It presents practical solutions to enhance the resilience of natural fiber-reinforced composite materials in the face of various environmental stresses, including moisture, seawater, hygrothermal, and natural and accelerated weathering. The invaluable insights offered by this resource are instrumental in extending the durability and shelf life of composites, thereby expanding their applications in outdoor environments. With its extensive coverage, the book appeals to researchers and scientists actively engaged in exploring the potential of natural fiber composites across a wide range of industries.
This comprehensive book delves into the intricate phenomenon of degradation in natural fiber-based composites (NFC) across diverse aging conditions. It presents practical solutions to enhance the resilience of natural fiber-reinforced composite materials in the face of various environmental stresses, including moisture, seawater, hygrothermal, and natural and accelerated weathering. The invaluable insights offered by this resource are instrumental in extending the durability and shelf life of composites, thereby expanding their applications in outdoor environments. With its extensive coverage, the book appeals to researchers and scientists actively engaged in exploring the potential of natural fiber composites across a wide range of industries.
The degradation of natural fiber-based composites (NFC) under various aging conditions is a significant concern in various industries, including aerospace, automotive, and construction. The primary factors contributing to the degradation of NFCs include moisture, seawater, hygrothermal, and natural and accelerated weathering. Moisture is one of the most detrimental factors, as it can lead to swelling, delamination, and weakening of the composite materials. Seawater exposure can also cause corrosion, swelling, and delamination, while hygrothermal cycling can lead to thermal expansion, shrinkage, and cracking. Natural and accelerated weathering processes, such as UV radiation, rain, and wind, can also cause discoloration, cracking, and loss of strength.
To mitigate the degradation of NFCs, various strategies have been developed. One approach is the use of protective coatings, such as epoxy or polyurethane, to shield the composite materials from environmental stresses. Another approach is the incorporation of additives, such as antioxidants or UV stabilizers, to enhance the resistance of the composite materials to aging. Additionally, proper design and manufacturing techniques, such as proper curing and reinforcement, can help improve the durability and performance of NFCs.
In conclusion, this book provides valuable insights into the degradation phenomenon of natural fiber-based composites and proposes suitable solutions to improve their response to aging conditions. The information provided by this resource is essential for researchers and scientists interested in the application of natural fiber composites in various fields. By understanding the degradation mechanisms and developing effective mitigation strategies, we can enhance the durability and shelf life of natural fiber-based composites, thereby expanding their applications in outdoor environments.
Weight: 575g
Dimension: 235 x 155 (mm)
ISBN-13: 9789811683626
Edition number: 1st ed. 2022
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