Poly (Acrylonitrile-co-1-Vinylimidazole): A New Carbon Fiber Precursor: Melt Processable and Thermally Crosslinkable Carbon Fiber Precursor

 
9783659122149: Poly (Acrylonitrile-co-1-Vinylimidazole): A New Carbon Fiber Precursor: Melt Processable and Thermally Crosslinkable Carbon Fiber Precursor
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Carbon fiber polymer composites have attracted worldwide interest in sporting goods and aerospace industries due to their excellent specific strength, stiffness and lightweight. The replacement of solution-spinning process by melt-spinning process is one of the major approaches to make cost effective carbon fiber. In recent years, researchers have explored the possibilities to synthesize melt processable carbon fiber precursors, but their thermal stabilization is still a challenge. The goal for this research project is to prepare melt processable carbon fiber precursors which have the capability of thermal stabilization. Acrylonitrile/1-vinylimidazole (AN/VIM) copolymers containing various mol% of VIM were synthesized by free radical polymerization. 82/18 mol percent of AN/VIM copolymer based carbon fiber precursor was processed by melt spinning at 192 °C and thermal stabilization of the melt-spun fiber was achieved by heating in air at 250 °C. A novel dispersion polymerization of poly (acrylonitrile – co -1-vinylimidazole) by using small amount of protonated copolymer itself as a stabilizer was also introduced in this study.

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Dr. Wenjin Deng earned her master of science in Polymer Chemistry and Physics from Zhejiang University in China and her PhD in Organic Chemistry from Clemson University in USA.Dr. Dennis W. Smith, Jr who was Professor in Chemistry department of Clemson University, is now Robert A. Welch Professor of Chemistry at the University of Texas at Dallas.

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Book Description Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Melt Processable and Thermally Crosslinkable Carbon Fiber Precursor | Carbon fiber polymer composites have attracted worldwide interest in sporting goods and aerospace industries due to their excellent specific strength, stiffness and lightweight. The replacement of solution-spinning process by melt-spinning process is one of the major approaches to make cost effective carbon fiber. In recent years, researchers have explored the possibilities to synthesize melt processable carbon fiber precursors, but their thermal stabilization is still a challenge. The goal for this research project is to prepare melt processable carbon fiber precursors which have the capability of thermal stabilization. Acrylonitrile/1-vinylimidazole (AN/VIM) copolymers containing various mol% of VIM were synthesized by free radical polymerization. 82/18 mol percent of AN/VIM copolymer based carbon fiber precursor was processed by melt spinning at 192 °C and thermal stabilization of the melt-spun fiber was achieved by heating in air at 250 °C. A novel dispersion polymerization of poly (acrylonitrile co -1-vinylimidazole) by using small amount of protonated copolymer itself as a stabilizer was also introduced in this study. | Format: Paperback | Language/Sprache: english | 287 gr | 220x150x11 mm | 180 pp. Seller Inventory # K9783659122149

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Book Description LAP Lambert Academic Publishing Mai 2012, 2012. Taschenbuch. Condition: Neu. Neuware - Carbon fiber polymer composites have attracted worldwide interest in sporting goods and aerospace industries due to their excellent specific strength, stiffness and lightweight. The replacement of solution-spinning process by melt-spinning process is one of the major approaches to make cost effective carbon fiber. In recent years, researchers have explored the possibilities to synthesize melt processable carbon fiber precursors, but their thermal stabilization is still a challenge. The goal for this research project is to prepare melt processable carbon fiber precursors which have the capability of thermal stabilization. Acrylonitrile/1-vinylimidazole (AN/VIM) copolymers containing various mol% of VIM were synthesized by free radical polymerization. 82/18 mol percent of AN/VIM copolymer based carbon fiber precursor was processed by melt spinning at 192 °C and thermal stabilization of the melt-spun fiber was achieved by heating in air at 250 °C. A novel dispersion polymerization of poly (acrylonitrile co -1-vinylimidazole) by using small amount of protonated copolymer itself as a stabilizer was also introduced in this study. 180 pp. Englisch. Seller Inventory # 9783659122149

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Book Description LAP Lambert Academic Publishing Mai 2012, 2012. Taschenbuch. Condition: Neu. Neuware - Carbon fiber polymer composites have attracted worldwide interest in sporting goods and aerospace industries due to their excellent specific strength, stiffness and lightweight. The replacement of solution-spinning process by melt-spinning process is one of the major approaches to make cost effective carbon fiber. In recent years, researchers have explored the possibilities to synthesize melt processable carbon fiber precursors, but their thermal stabilization is still a challenge. The goal for this research project is to prepare melt processable carbon fiber precursors which have the capability of thermal stabilization. Acrylonitrile/1-vinylimidazole (AN/VIM) copolymers containing various mol% of VIM were synthesized by free radical polymerization. 82/18 mol percent of AN/VIM copolymer based carbon fiber precursor was processed by melt spinning at 192 °C and thermal stabilization of the melt-spun fiber was achieved by heating in air at 250 °C. A novel dispersion polymerization of poly (acrylonitrile co -1-vinylimidazole) by using small amount of protonated copolymer itself as a stabilizer was also introduced in this study. 180 pp. Englisch. Seller Inventory # 9783659122149

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Book Description LAP Lambert Academic Publishing. Paperback. Condition: New. 180 pages. Dimensions: 8.7in. x 5.9in. x 0.4in.Carbon fiber polymer composites have attracted worldwide interest in sporting goods and aerospace industries due to their excellent specific strength, stiffness and lightweight. The replacement of solution-spinning process by melt-spinning process is one of the major approaches to make cost effective carbon fiber. In recent years, researchers have explored the possibilities to synthesize melt processable carbon fiber precursors, but their thermal stabilization is still a challenge. The goal for this research project is to prepare melt processable carbon fiber precursors which have the capability of thermal stabilization. Acrylonitrile1-vinylimidazole (ANVIM) copolymers containing various mol of VIM were synthesized by free radical polymerization. 8218 mol percent of ANVIM copolymer based carbon fiber precursor was processed by melt spinning at 192 C and thermal stabilization of the melt-spun fiber was achieved by heating in air at 250 C. A novel dispersion polymerization of poly (acrylonitrile co -1-vinylimidazole) by using small amount of protonated copolymer itself as a stabilizer was also introduced in this study. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Seller Inventory # 9783659122149

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