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- W2892287187 abstract "A new fiber (x) reinforced Dynamic Covalent epoxy-polyurea Interface (x-DC EP I) shows good mechanical energy transferability of impact and vibration forces. The bonding property of x-DC EP I interface, engendered between curing, or reactive, epoxy and dynamic polyurea, is controlled by epoxy curing time ( t c ). The reaction of curing epoxy, where t c is a thermodynamic processing parameter, and fast-curing/ dynamic aliphatic polyurea, which lacks polyol in its resin chain extender, is linked to bulk mechanical energy transfer, quantified specifically via the loss modulus of x-DC EP I. The parameter t c effectuates designable chemical bond properties within x-DC EP I. Using Generalized Maxwell models, viscoelastic properties of epoxy, polyurea, and x-DC EP I are predicted, and results are verified using Dynamic Mechanical Analysis (DMA). The Maxwell models for x-DC EP I, as a function of t c , are used in a finite element analysis (ABAQUS) to control performance of dynamically loaded structures." @default.
- W2892287187 created "2018-09-27" @default.
- W2892287187 creator A5043916937 @default.
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- W2892287187 date "2018-09-01" @default.
- W2892287187 modified "2023-09-26" @default.
- W2892287187 title "Viscoelasticity of Chemically Bonded Interfacial Epoxy-Polyurea Matrix per Migration of Epoxy Species via Curing Time Parameter" @default.
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- W2892287187 doi "https://doi.org/10.4028/www.scientific.net/kem.779.71" @default.
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