Green Composites
Materials, Manufacturing and Engineering
Seiten
| Ausstattung: eBook & Hardcover
2017
De Gruyter
978-3-11-043579-5 (ISBN)
De Gruyter
978-3-11-043579-5 (ISBN)
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Composite materials are engineered materials, made from two or more constituents with significantly different physical or chemical properties which remain separate on a macroscopic level within the finished structure. Due to their special mechanical and physical properties they have the potential to replace conventional materials.
Discusses the latest results in academia and industry on green composites. Existing machinability problems like low processability and reduction of the ductility are addressed and discussed in relation to use of adhesion promoters, additives or chemical modification of the filler to overcome these problems. Recent industrial efforts to minimize the environmental impact, e.g. biodegradable polymer matrix, renewable sources complete the approach.
Discusses the latest results in academia and industry on green composites. Existing machinability problems like low processability and reduction of the ductility are addressed and discussed in relation to use of adhesion promoters, additives or chemical modification of the filler to overcome these problems. Recent industrial efforts to minimize the environmental impact, e.g. biodegradable polymer matrix, renewable sources complete the approach.
J. Paulo Davim, University of Aveiro, Aveiro, Portugal.
Reihe/Serie | Advanced Composites ; 7 |
---|---|
Co-Autor | Mehmet Hakki Alma, Zeki Candan, Oktay Gonultas, Tufan Salan, Ayhan Tozluoglu, Samir Kumar Acharya, Suman Kalyan Das, Sahoo Prasanta, D. Lenin Singaravelu, Vijayan Krishnaraj, S. Manoharan, K. Vijay Raghavan, Bheemappa Suresha, Jalumedi Babu, A. Jamrah, Megat Azmi Megat Johari, Norazura Muhamad Bunnori, Majed A. A. Aldahdooh |
Zusatzinfo | Includes a print version and an ebook |
Verlagsort | Berlin/Boston |
Sprache | englisch |
Maße | 170 x 240 mm |
Themenwelt | Technik |
Schlagworte | Materialwissenschaft • Verbundwerkstoff • Werkstoffwissenschaft |
ISBN-10 | 3-11-043579-9 / 3110435799 |
ISBN-13 | 978-3-11-043579-5 / 9783110435795 |
Zustand | Neuware |
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