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      Thermo-Mechanical Performance of Polylactide Composites Reinforced with Alkali-Treated Bamboo Fibers

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          Abstract

          In this study, polylactide acid (PLA) is filled with bamboo fibers (BFs) to fabricate a biodegradable natural composite for industrial applications. The influence of pre-treatment of BFs using 4 wt % sodium hydroxide (NaOH) solution at room temperature for 1 h on thermal and mechanical properties of resultant composites is systematically investigated. Differential scanning calorimetry and thermogravimetric analysis demonstrate that the incorporation of treated BFs promotes higher glass transition and crystallization temperatures of the resultant composites relative to untreated fiber composites, whereas alkali treatment results in superior thermal stability. Furthermore, the fracture surfaces are characterized by scanning electron microscopy. The changes in morphology reveal the possible dissolution of hemicellulose and lignin by alkalization with NaOH, indicative of an improved interfacial adhesion. An increment in the tensile strength of composites is achieved through the reinforcement with treated fibers. However, a lower tensile modulus is found for composites reinforced with chemically modified BFs, which might be due to the partial conversion of cellulose I into II. The results highlight that the use of BFs could be a feasible candidate as reinforcements for the development of biodegradable composites.

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          Interface and performance of 3D printed continuous carbon fiber reinforced PLA composites

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            Biodegradable polymers/bamboo fiber biocomposite with bio-based coupling agent

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              Effect of fiber surface-treatments on the properties of laminated biocomposites from poly(lactic acid) (PLA) and kenaf fibers

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                Author and article information

                Journal
                Polymers (Basel)
                Polymers (Basel)
                polymers
                Polymers
                MDPI
                2073-4360
                04 April 2018
                April 2018
                : 10
                : 4
                : 401
                Affiliations
                [1 ]Faculty of Materials and Energy, Southwest University, Chongqing 400715, China; zsj1119@ 123456email.swu.edu.cn (S.Z.); ymq123@ 123456email.swu.edu.cn (M.Y.); chen_zq@ 123456swu.edu.cn (Z.C.)
                [2 ]School of Mathematics and Statistics, Southwest University, Chongqing 400715, China; rsy@ 123456swu.edu.cn
                Author notes
                [* ]Correspondence: wfang@ 123456swu.edu.cn ; Tel.: +86-23-6825-3204; Fax: +86-23-6825-4373
                Author information
                https://orcid.org/0000-0002-3768-4245
                Article
                polymers-10-00401
                10.3390/polym10040401
                6415211
                3796eb72-f57b-48db-97b3-25f5c9de1d32
                © 2018 by the authors.

                Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license ( http://creativecommons.org/licenses/by/4.0/).

                History
                : 20 March 2018
                : 02 April 2018
                Categories
                Article

                polylactic acid,fiber surface treatment,biocomposites,thermo-mechanical properties,interfacial adhesion

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