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      Effects of Solid-State Stretching on Microstructure Evolution and Physical Properties of Isotactic Polypropylene Sheets

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          Abstract

          The microstructure evolution of an isotactic polypropylene (iPP) sheet during solid-state stretching was studied. The transition of the spherulites—cylindrites was evaluated using in-situ two-dimensional wide-angle and small-angle X-ray scattering methods. The crystallinity of stretched iPP sheets was characterized by differential scanning calorimetry. The crystal morphology was observed by means of scanning electron microscopy. It was found that the differences of crystal microstructure of the iPP sheet depended on the stretching strain, which promoted the orientation of molecular chains. Amorphous molecular chains in the spherulites oriented and formed into a mesophase near the yield point, and the partially ordered mesophase was further stretched to form an oriented cylindrite structure after the yield point. The highest relative content of cylindrites appeared at 15% strain. Notably, as the amorphous phase embedded into the lamellae layer, the crystal size decreased with the increase of strain, which indicated that the crystallinity of the stretched iPP sheet was much higher than that of unstretched iPP sheet. The induced cylindrites structure played a more important role in improving the mechanical properties and heat resistance of iPP sheets. Compared with the unstretched iPP sheets, the tensile strength increased by 28%, the notch impact toughness significantly increased by 78%, and the vicat softening point increased from 104 to 112 °C.

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          Structure Development during Shear Flow-Induced Crystallization of i-PP:  In-Situ Small-Angle X-ray Scattering Study

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            Die Makromolekulare Chemie, 75(1), 134-158
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              Control of Structural Morphology in Shear-Induced Crystallization of Polymers

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                Author and article information

                Journal
                Polymers (Basel)
                Polymers (Basel)
                polymers
                Polymers
                MDPI
                2073-4360
                03 April 2019
                April 2019
                : 11
                : 4
                : 618
                Affiliations
                School of Mechanical and Power Engineering, East China University of Science and Technology, Shanghai 200237, China; shxiaoji@ 123456163.com (H.J.); 15527377408@ 123456163.com (X.Z.); chenxin198905@ 123456aliyun.com (X.C.); zhl419wsm@ 123456163.com (H.Z.); apirl.1992@ 123456outlook.com (Y.W.); zhhxhhy1994@ 123456126.com (H.Z.); shanxiliang@ 123456hotmail.com (X.S.); sjin@ 123456ecust.edu.cn (J.S.); myl@ 123456ecust.edu.cn (Y.M.)
                Author notes
                [* ]Correspondence: clxw@ 123456ecust.edu.cn ; Tel.: +86-021-6425-2363
                Author information
                https://orcid.org/0000-0001-7034-4720
                Article
                polymers-11-00618
                10.3390/polym11040618
                6523338
                30960603
                d34ecb85-7feb-450f-a1e5-1f7e1f8323a2
                © 2019 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
                : 26 February 2019
                : 26 March 2019
                Categories
                Article

                solid-state stretching,ipp,cylindrites,saxs
                solid-state stretching, ipp, cylindrites, saxs

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