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Fiber Laminate Study for Impact Resistance - H, Joshua
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The book "Fiber Laminate Study for Impact Resistance" authored by Joshua. H is an in-depth analysis of the investigation, analysis, and improvement study of fiber-reinforced composite laminates made up of woven fabric kevlar glass fiber reinforced epoxy matrix for low-velocity impact applications. The book provides a comprehensive understanding of fiber-reinforced composite materials and their impact behavior, focusing on the development and optimization of laminates for low-velocity impact applications. The author's research work is presented in a concise and easy-to-understand language,…mehr

Produktbeschreibung
The book "Fiber Laminate Study for Impact Resistance" authored by Joshua. H is an in-depth analysis of the investigation, analysis, and improvement study of fiber-reinforced composite laminates made up of woven fabric kevlar glass fiber reinforced epoxy matrix for low-velocity impact applications. The book provides a comprehensive understanding of fiber-reinforced composite materials and their impact behavior, focusing on the development and optimization of laminates for low-velocity impact applications. The author's research work is presented in a concise and easy-to-understand language, making it accessible to both academic researchers and industry practitioners. The book covers various topics, including the design of composite laminates, the characterization of the mechanical properties of composite materials, the analysis of impact behavior, and the improvement of impact resistance through various techniques. The author also provides a detailed discussion of the test methods and instrumentation used in impact testing and analysis. Overall, this book is an essential resource for anyone working in the field of composite materials, particularly in the area of impact resistance. It provides valuable insights into the development and optimization of composite laminates for low-velocity impact applications, and the techniques used to improve their impact resistance.