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Titlebook: Bioepoxy/Clay Nanocomposites; Fabrication Optimisa Haipan Salam,Yu Dong Book 2021 Springer Nature Singapore Pte Ltd. 2021 Biopolymers.Renew

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Theoriebasierte Erfolgsableitungthe optimum conditions. The identification of preferred combination of factors in term of material formulation and processing parameters were investigated via Pareto analysis of variance (ANOVA) and then more details regarding the correlation of optimum mechanical properties and morphological structures were elaborated accordingly.
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is based on the use of Taguchi design of experiments with the consideration of technical and economical point of view. It also elaborates holistic theoretical modelling of tensile properties of such bionanocomposites with respect to the effect of contents of nanoclay fillers and epoxydised soybean oil (ESO). .978-981-16-7299-6978-981-16-7297-2
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Problemstellung und Zielsetzung der ArbeitOn the other hand, the estimation of tensile strength of such bionanocomposites is based on Danusso-Tieghi (D-T) model, Nicolais-Narkis (N–N) model, Lu model and Turcsányi-Pukànszky-Tüdõs (T-P-T) model along with their respective comparisons with corresponding experimental data.
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Theoretical Modelling of Bioepoxy/Clay Nanocomposites,On the other hand, the estimation of tensile strength of such bionanocomposites is based on Danusso-Tieghi (D-T) model, Nicolais-Narkis (N–N) model, Lu model and Turcsányi-Pukànszky-Tüdõs (T-P-T) model along with their respective comparisons with corresponding experimental data.
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Problemstellung und Zielsetzung der Arbeit identified by Fourier transform infrared (FTIR) analysis. Meanwhile, morphological structures of bionanocomposites were characterised via X-ray diffraction (XRD) and transmission electron microscopy (TEM). Additionally, surface fracture morphology of tensile test specimens was observed using scanning electron microscopic (SEM) analysis.
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https://doi.org/10.1007/978-3-8350-9483-3This chapter elaborates the material fabrication of both conventional epoxy/clay nanocomposites and bioepoxy/clay nanocomposites, as well as major characterisation techniques used for the holistic analysis of morphological structures, mechanical and thermal properties of such nanocomposites.
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978-981-16-7299-6Springer Nature Singapore Pte Ltd. 2021
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