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9. Li, A. and Wang, W., “Synthesis and properties of clay-based superabsorbent
composite,” Eur. Polym. J., 41 (2005), p. 1630.
10. Nickel, L., The sky’s limit, Reinforced Plastics, 48 (7) July/August 2004, p. 32.
11. Henkle, http://www. henkel-adhesives. com/aerospace/applications- 32713.
htm?tn=32766.
12. “14 seat civil aircraft, SARAS with the entire wing and empennage developed using composites,” FRP Today, 13 (7), July 2013, p. 17.
13. “This
Old
House,”
http://www. thisoldhouse. com/toh/photos/0,,20337823,00.html.
14. “‘New Bus for London’ Utilizes Composites to Achieve the Necessary Weight
Saving,” FRP Today, 13 (10), October 2013, p. 18.
15. “Application Trends,” FRP Today News, 13 (8), August 2013, p. 23.
16. “Vestas produced most powerful blade in wind industry,” FRP Today, 13 (10),
October 2013, p. 18.
17. ‘Divinycell makes EzyTopper super light and super fast’ , FRP Today, 15 (1),
January 2015, p. 36.
18. “The High Curvature Armour System,” FRP Today, 13 (7), July 2013, p. 25.
19. Krishnan, M., “Biocomposites in Automotive Applications,” FRP Today News,
13 (8), August 2013, p. 21.
20. “efWING- The new railway vehicle truck having CFRP frame wins award,” FRP
Today, 14 (5), May 2014, p. 24.
21. “World’s First Rolling Stock Bogie with a CFRP Frame,” FRP Today, 13 (8),
August 2013, p. 18.
22. “Composite leaf spring for new Volvo SUV XC 90,” FRP Today, 15 (1), January
2015, p. 31.
23. Matweb Data Sheet, 2016.
24. “Future Fibres Completes Work on 76 Meter Mast for Perini Navi’s Latest
Superyacht,” FRP Today, 13 (10) (2013), p.19.
25. Ran, Z., Yan, Y., Li, J., Qi, Z. and Yang, L., “Determination of thermal expansion
coefficients for unidirectional fiber-reinforced composites,” Chinese Journal
of Aeronautics, Volume 27, Issue 5 (2014), p. 1180.
26. Bhandari, Bhaumik A. and Patel, Bhavesh C., “Parametric Analysis Of Composite Leaf Spring,” IJSTE–International Journal of Science Technology & Engineering, Vol.1, Issue 1 (2014) ISSN(online), p. 2349.
27. Sangale, S.S., Kale, K.B., and Dighe, Y.S., “Design Analysis of Carbon/Epoxy
Composite LeafSpring,” International Journal of Research in Advent Technology (E-ISSN: 2321–9637) Special Issue1st International Conference on Advent
Trends in Engineering, Science and Technology- ICATEST 2015, 08 March
2015, p. 172.
28. The Drone race: DRDO Rustom II, Monitoring the 21st Century Asian Arms
Race,
https://21stcenturyasianarmsrace. files. wordpress. com/2015/07/
indian-rustom-2-male-uav1. jpg, 2 July 2015.
29. “Boeing 777X to Deliver Unprecedented Efficiency and Economics,” FRP
Today, 13 (12), December 2013, p. 27.
30. “Automobile natural Gas tanks Take the Pressure with Thermoplastic Composites,” FRP Today, 14 (11), November 2014, p. 34.
31. American Airlines Flight 587, https://en. wikipedia. org/wiki/American_Airlines_Flight_587.
32. Composites repairs, https://en. wikipedia. org/wiki/Composite_repairs.
33. Valavan, M.T., Adverse impact of composite material, America’s Cup Boat
‘Young America, https://www. slideshare. net/manothirumal/composites47072751.
34. Greenhouse, https://en. wikipedia. org/wiki/Greenhouse.
35. Boeing 787 Dreamliner, https://en. wikipedia. org/wiki/Boeing_787_Dreamliner.
36. “‘Robo-Raven’- a major Breakthrough for Micro Air Vehicle,” FRP Today, 13
(7), July 2013, p. 15.
37. Northrop Grumman B-2 Spirit, Wikipedia.
38. Visby class corvette, Wikipedia.
39. “Hyundai Intrado Car with CFRP Chassis Technology Uses Scott Bader
Advanced Materials,” FRP Today, 15 (5), May 2015, p. 28.
Chapter 2 · Advantages and Applications of Polymeric Composites
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