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Plastics, Rubber and Composites
Macromolecular Engineering
Volume 29, 2000 - Issue 2
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Regular Papers

Synthesis and characterisation of rigid polyurethanes based on hydroxyalkylated cardanol formaldehyde resin

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Pages 63-69 | Published online: 19 Jul 2013

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T. Jothy Stella, K. Sathiyalekshmi & G. Allen Gnana Raj. (2012) Synthesis and Characterization of Interpenetrating Biopolyester Networks Using Naturally Available Renewable Resources. International Journal of Polymeric Materials and Polymeric Biomaterials 61:6, pages 466-482.
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Articles from other publishers (8)

Ayman M. Atta & Hamad A. Allohedan. 2017. Cashew Nut Shell Liquid. Cashew Nut Shell Liquid 57 91 .
Coline Voirin, Sylvain Caillol, Nilakshi V. Sadavarte, Bhausaheb V. Tawade, Bernard Boutevin & Prakash P. Wadgaonkar. (2014) Functionalization of cardanol: towards biobased polymers and additives. Polym. Chem. 5:9, pages 3142-3162.
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S GOPALAKRISHNAN & T LINDA FERNANDO. (2012) Influence of polyols on properties of bio-based polyurethanes. Bulletin of Materials Science 35:2, pages 243-251.
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Sharad Rajendran, Bronwen W. Cribb, Aaron Stewart, Myron Zalucki, Barry Noller & Rowan W. Truss. (2010) The molecular arrangement of Bifenthrin® in ether based polyurethane: Designing a synthetic termite barrier. Journal of Applied Polymer Science 116:3, pages 1635-1639.
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Pietro Campaner, Daniele D'Amico, Luigia Longo, Cristina Stifani & Antonella Tarzia. (2009) Cardanol-based novolac resins as curing agents of epoxy resins. Journal of Applied Polymer Science 114:6, pages 3585-3591.
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C. V. Mythili, A. Malar Retna & S. Gopalakrishnan. (2005) Physical, mechanical, and thermal properties of polyurethanes based on hydroxyalkylated cardanol–formaldehyde resins. Journal of Applied Polymer Science 98:1, pages 284-288.
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C. V. Mythili, A. Malar Retna & S. Gopalakrishnan. (2004) Synthesis, mechanical, thermal and chemical properties of polyurethanes based on cardanol. Bulletin of Materials Science 27:3, pages 235-241.
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K. Sathiyalekshmi & S. Gopalakrishnan. (2004) Evaluation of performance of polyurethanes based on hydroxy alkylated cardanol formaldehyde resins under aging conditions. Advances in Polymer Technology 23:2, pages 91-102.
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