Cargando…

Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase

In situ microfibrillation and multiflow vibrate injection molding (MFVIM) technologies were combined to control the phase morphology of blended polypropylene (PP) and poly(ethylene terephthalate) (PET), wherein PP is the majority phase. Four kinds of phase structures were formed using different proc...

Descripción completa

Detalles Bibliográficos
Autores principales: Mi, Dashan, Wang, Yingxiong, Kuzmanovic, Maja, Delva, Laurens, Jiang, Yixin, Cardon, Ludwig, Zhang, Jie, Ragaert, Kim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419086/
https://www.ncbi.nlm.nih.gov/pubmed/30960231
http://dx.doi.org/10.3390/polym11020248
_version_ 1783403872662847488
author Mi, Dashan
Wang, Yingxiong
Kuzmanovic, Maja
Delva, Laurens
Jiang, Yixin
Cardon, Ludwig
Zhang, Jie
Ragaert, Kim
author_facet Mi, Dashan
Wang, Yingxiong
Kuzmanovic, Maja
Delva, Laurens
Jiang, Yixin
Cardon, Ludwig
Zhang, Jie
Ragaert, Kim
author_sort Mi, Dashan
collection PubMed
description In situ microfibrillation and multiflow vibrate injection molding (MFVIM) technologies were combined to control the phase morphology of blended polypropylene (PP) and poly(ethylene terephthalate) (PET), wherein PP is the majority phase. Four kinds of phase structures were formed using different processing methods. As the PET content changes, the best choice of phase structure also changes. When the PP matrix is unoriented, oriented microfibrillar PET can increase the mechanical properties at an appropriate PET content. However, if the PP matrix is an oriented structure (shish-kebab), only the use of unoriented spherical PET can significantly improve the impact strength. Besides this, the compatibilizer polyolefin grafted maleic anhydride (POE-g-MA) can cover the PET in either spherical or microfibrillar shape to form a core–shell structure, which tends to improve both the yield and impact strength. We focused on the influence of all composing aspects—fibrillation of the dispersed PET, PP matrix crystalline morphology, and compatibilized interface—on the mechanical properties of PP/PET blends as well as potential synergies between these components. Overall, we provided a theoretical basis for the mechanical recycling of immiscible blends.
format Online
Article
Text
id pubmed-6419086
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64190862019-04-02 Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase Mi, Dashan Wang, Yingxiong Kuzmanovic, Maja Delva, Laurens Jiang, Yixin Cardon, Ludwig Zhang, Jie Ragaert, Kim Polymers (Basel) Article In situ microfibrillation and multiflow vibrate injection molding (MFVIM) technologies were combined to control the phase morphology of blended polypropylene (PP) and poly(ethylene terephthalate) (PET), wherein PP is the majority phase. Four kinds of phase structures were formed using different processing methods. As the PET content changes, the best choice of phase structure also changes. When the PP matrix is unoriented, oriented microfibrillar PET can increase the mechanical properties at an appropriate PET content. However, if the PP matrix is an oriented structure (shish-kebab), only the use of unoriented spherical PET can significantly improve the impact strength. Besides this, the compatibilizer polyolefin grafted maleic anhydride (POE-g-MA) can cover the PET in either spherical or microfibrillar shape to form a core–shell structure, which tends to improve both the yield and impact strength. We focused on the influence of all composing aspects—fibrillation of the dispersed PET, PP matrix crystalline morphology, and compatibilized interface—on the mechanical properties of PP/PET blends as well as potential synergies between these components. Overall, we provided a theoretical basis for the mechanical recycling of immiscible blends. MDPI 2019-02-02 /pmc/articles/PMC6419086/ /pubmed/30960231 http://dx.doi.org/10.3390/polym11020248 Text en © 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/).
spellingShingle Article
Mi, Dashan
Wang, Yingxiong
Kuzmanovic, Maja
Delva, Laurens
Jiang, Yixin
Cardon, Ludwig
Zhang, Jie
Ragaert, Kim
Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title_full Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title_fullStr Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title_full_unstemmed Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title_short Effects of Phase Morphology on Mechanical Properties: Oriented/Unoriented PP Crystal Combination with Spherical/Microfibrillar PET Phase
title_sort effects of phase morphology on mechanical properties: oriented/unoriented pp crystal combination with spherical/microfibrillar pet phase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6419086/
https://www.ncbi.nlm.nih.gov/pubmed/30960231
http://dx.doi.org/10.3390/polym11020248
work_keys_str_mv AT midashan effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT wangyingxiong effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT kuzmanovicmaja effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT delvalaurens effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT jiangyixin effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT cardonludwig effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT zhangjie effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase
AT ragaertkim effectsofphasemorphologyonmechanicalpropertiesorientedunorientedppcrystalcombinationwithsphericalmicrofibrillarpetphase