2000Plastics Rubber and Composites Macromolecular EngineeringRequires access

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

K. Sathiyalekshmi, S. Gopalakrishnan

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Abstract

Rigid polyurethanes have been synthesised using 4,4′-dicyclohexylmethane diisocyanate reacted with either hydroxyalkylated cardanol formaldehyde or hydroxyalkylated dimerised cardanol formaldehyde resins. These polyurethanes are crosslinked. Polyurethanes prepared from linear hydroxyalkylated cardanol formaldehyde resin have better thermal and mechanical properties than polyurethanes prepared from branched hydroxyalkylated resins. The polyurethanes prepared from hydroxyalkylated dimerised cardanol formaldehyde resins excel over the polyurethanes from hydroxyalkylated cardanol formaldehyde resins.

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What this paper is about

Rigid polyurethanes have been synthesised using 4,4′-dicyclohexylmethane diisocyanate reacted with either hydroxyalkylated cardanol formaldehyde or hydroxyalkylated dimerised cardanol formaldehyde resins. These polyurethanes are crosslinked. Polyurethanes prepared from linear hydroxyalkylated cardanol formaldehyde resin have better thermal and mechanical properties than polyurethanes prepared from branched hydroxyalkylated resins. The polyurethanes prepared from hydroxyalkylated dimerised cardanol formaldehyde resins excel over the polyurethanes from hydroxyalkylated cardanol formaldehyde resins.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Rigid polyurethanes have been synthesised using 4,4′-dicyclohexylmethane diisocyanate reacted with either hydroxyalkylated cardanol formaldehyde or hydroxyalkylated dimerised cardanol formaldehyde resins. These polyurethanes are crosslinked. Polyurethanes prepared from linear hydroxyalkylated cardanol formaldehyde resin have better thermal and mechanical properties than polyurethanes prepared from branched hydroxyalkylated resins. The polyurethanes prepared from hydroxyalkylated dimerised cardanol formaldehyde resins excel over the polyurethanes from hydroxyalkylated cardanol formaldehyde resins.

Key concepts: Cardanol, Formaldehyde, Materials science, Polyurethane, Polymer chemistry, Organic chemistry, Composite material, Chemistry

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