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      Fast mold surface temperature evolution: relevance of asymmetric surface heating for morphology of iPP molded samples

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          Abstract

          It is widely accepted that mold temperature has a strong effect on the amount of molecular orientation and morphology developed in a non-isothermal flowing melt.

          Abstract

          It is widely accepted that mold temperature has a strong effect on the amount of molecular orientation and morphology developed in a non-isothermal flowing melt. In this work, this effect was investigated in fast and asymmetric thermal conditions. Therefore, a well-characterized isotactic polypropylene was injected in a rectangular mold cavity conditioned by a purpose developed thin electric heater. Temperature evolution on the mold surface influences the cooling rates near the surface that, in turn, reduces flow stresses and facilitates molecular relaxation. Moreover, asymmetrical thermal conditions have a strong influence on the melt flow field by changing its distribution along the cavity thickness. As a consequence, the morphology distribution of the molded samples was asymmetric and showed complex and peculiar features. It was accurately characterized by optical microscopy and FESEM analysis and compared with the orientation distribution obtained by birefringence measurements.

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          Most cited references39

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          Micro-injection moulding of polymer microfluidic devices

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            Modeling of morphology evolution in the injection molding process of thermoplastic polymers

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              General procedure for evaluating amorphous scattering and crystallinity from X-ray diffraction scans of semicrystalline polymers

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                Author and article information

                Journal
                RSCACL
                RSC Advances
                RSC Adv.
                Royal Society of Chemistry (RSC)
                2046-2069
                2015
                2015
                : 5
                : 46
                : 36434-36448
                Affiliations
                [1 ]Department of Industrial Engineering
                [2 ]University of Salerno
                [3 ]84084 Fisciano
                [4 ]Italy
                [5 ]Institute for Polymers
                [6 ]Composites and Biomaterials (IPCB-CNR)
                [7 ]80055 Portici
                [8 ]Department of Polymer Engineering
                [9 ]The University of Akron
                [10 ]Akron
                [11 ]USA
                Article
                10.1039/C5RA04383B
                1cf1e818-5c6b-4cb1-9882-5076a943bbe3
                © 2015
                History

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