Textile reinforcement forms (preforms) play an important role in determining the properties of the final composite and product. The preform formation process provides precise control of the fiber architecture and orientation using a suitable textile manufacturing technique. While the techniques employed for preparing glass and carbon preforms are well-known, there is still a gap in understanding on how to prepare natural preforms for composite reinforcements.
Multiscale Textile Preforms and Structures for Natural Fiber Composites will bridge this gap by presenting unified knowledge on the relevant preform preparation techniques and resulting fiber architectures. Emphasis is on the structural parameters of each preform and their effect on the final composite properties. This book assembles information and knowledge on natural fiber reinforcement forms, including conventional forms, such as spun yarn, woven, knitted, nonwoven, braided, and comingled. These are illustrated and classified into one-, two-, and three-dimensional reinforcements. This book also includes information on nonconventional preform formation techniques such as unidirectional tapes, pre-impregnated preforms, spread tows, and tailored fiber placement.
"synopsis" may belong to another edition of this title.
Mohamad Midani is an assistant professor in the Materials Engineering Department, German University in Cairo, Egypt, and an adjunct assistant professor at Wilson College of Textiles, NC State University, United States.
Tamer Hamouda is currently an associate researcher professor at the Institute of Textiles Research and Technology, National Research Center (NRC), Egypt, and an adjunct assistant professor at Wilson College of Textiles, NC State University, United States.
Ahmed H. Hassanin is an associate professor of textile engineering at Alexandria University, Egypt, and an adjunct assistant professor at Wilson College of Textiles, NC State University, United States.
Abdel-Fattah M. Seyam is Charles A. Cannon Professor of Textiles and the department head of the Textile and Apparel, Technology and Management at Wilson College of Textiles, NC State University, United States.
Textile reinforcement forms (preforms) play an important role in determining the properties of the final composite and product. The preform formation process provides precise control of the fiber architecture and orientation using a suitable textile manufacturing technique. While the techniques employed for preparing glass and carbon preforms are well-known, there is still a gap in understanding on how to prepare natural preforms for composite reinforcements.
Multiscale Textile Preforms and Structures for Natural Fiber Composites will bridge this gap by presenting unified knowledge on the relevant preform preparation techniques and resulting fiber architectures. Emphasis is on the structural parameters of each preform and their effect on the final composite properties. This book assembles information and knowledge on natural fiber reinforcement forms, including conventional forms, such as spun yarn, woven, knitted, nonwoven, braided, and comingled. These are illustrated and classified into one-, two-, and three-dimensional reinforcements. This book also includes information on nonconventional preform formation techniques such as unidirectional tapes, pre-impregnated preforms, spread tows, and tailored fiber placement.
"About this title" may belong to another edition of this title.
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