Macromolecular Chemistry and Physics · 2004 · 172 citations · 25 references
Materials ScienceEngineeringEpoxy ResinsMechanical PropertiesEpoxy MaterialsEpoxy NetworkDegradable PlasticPolymer ScienceMechanical EngineeringPolymer BlendPolymer ProcessingBio-based MaterialBiocompositeSoft MatterThermal StabilityPolymer Chemistry
Abstract Summary: Biobased epoxy materials were prepared from diglycidyl ether of bisphenol A (DGEBA) and epoxidized castor oil (ECO) initiated by a latent thermal catalyst. The physicochemical and mechanical interfacial properties of the DGEBA/ECO blends were investigated. As a result, the thermal stability of the cured epoxy blends showed a maximum value in the presence of 10 wt.‐% ECO content, which was attributed to the excellent network structure in the DGEBA/ECO blends. The storage modulus and glass transition temperature of the blends were lower than those of neat epoxy resins. The mechanical interfacial properties of the cured specimens were significantly increased with increasing the ECO content. This could be interpreted in terms of the addition of larger soft segments of ECO into the epoxy resins and thus reducing the crosslinking density of the epoxy network, which results in increasing toughness in the blends. K IC values of the DGEBA/ECO blends as a function of ECO content. magnified image K IC values of the DGEBA/ECO blends as a function of ECO content.
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