Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres
In this work, a series of phthalonitrile/hollow glass microsphere (HGM) composite foams for applications in the high temperature and flame retardant fields were prepared and characterized. First, Blends of bisphthalonitrile (CN) and alicyclic imide compounds synthesized from tetrahydrophthalic anhyd...
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2020-01-01
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doaj-6bc6c1e0ca0a4ee5947d54be6d06a0b72021-04-02T16:20:25ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012130203410.1051/e3sconf/202021302034e3sconf_acic2020_02034Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheresYuan Ping0Qiu Yong1Huang Yuhong2Wu Juying3Fan Jinghui4Zhang Kai5He Ren6Xing Tao7China Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering PhysicsChina Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering Physics, Institute of Systems EngineeringChina Academy of Engineering Physics, Institute of Systems EngineeringIn this work, a series of phthalonitrile/hollow glass microsphere (HGM) composite foams for applications in the high temperature and flame retardant fields were prepared and characterized. First, Blends of bisphthalonitrile (CN) and alicyclic imide compounds synthesized from tetrahydrophthalic anhydride (CC) were prepared and sieved (>100 mesh), based on the Thermal Synergistic Polymerization (TSP) effect between phthalonitrile and the alicyclic imide compounds, namely, the -C≡N of the phthalonitrile compound could be completely and rapidly consumed. Then thermogravimetric analysis and rheological behaviors of different molar ratios of CC/CN blend at different temperatures were investigated. HGM were modified using a silane coupling agent (KH550) to improve the interface interaction between HGM and the resin, thereby improving the properties of composite foam. Finally, a series of composite foams were fabricated and characterized. The performance of the foam prepared by BMC method is much better than that of the foam prepared by “RTM” method. The foam (BMC) shows a density of 0.47 g/cm3 with no obvious volume change and little voids, also exhibits good thermal stability up to 400 °C and low thermal conductivity, and provides UL94 V0-rated flame retardancy with total HR of 21.5 KJ/g.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/73/e3sconf_acic2020_02034.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yuan Ping Qiu Yong Huang Yuhong Wu Juying Fan Jinghui Zhang Kai He Ren Xing Tao |
spellingShingle |
Yuan Ping Qiu Yong Huang Yuhong Wu Juying Fan Jinghui Zhang Kai He Ren Xing Tao Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres E3S Web of Conferences |
author_facet |
Yuan Ping Qiu Yong Huang Yuhong Wu Juying Fan Jinghui Zhang Kai He Ren Xing Tao |
author_sort |
Yuan Ping |
title |
Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
title_short |
Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
title_full |
Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
title_fullStr |
Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
title_full_unstemmed |
Preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
title_sort |
preparation and physical properties of phthalonitrile composite foam filled with hollow glass microspheres |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2020-01-01 |
description |
In this work, a series of phthalonitrile/hollow glass microsphere (HGM) composite foams for applications in the high temperature and flame retardant fields were prepared and characterized. First, Blends of bisphthalonitrile (CN) and alicyclic imide compounds synthesized from tetrahydrophthalic anhydride (CC) were prepared and sieved (>100 mesh), based on the Thermal Synergistic Polymerization (TSP) effect between phthalonitrile and the alicyclic imide compounds, namely, the -C≡N of the phthalonitrile compound could be completely and rapidly consumed. Then thermogravimetric analysis and rheological behaviors of different molar ratios of CC/CN blend at different temperatures were investigated. HGM were modified using a silane coupling agent (KH550) to improve the interface interaction between HGM and the resin, thereby improving the properties of composite foam. Finally, a series of composite foams were fabricated and characterized. The performance of the foam prepared by BMC method is much better than that of the foam prepared by “RTM” method. The foam (BMC) shows a density of 0.47 g/cm3 with no obvious volume change and little voids, also exhibits good thermal stability up to 400 °C and low thermal conductivity, and provides UL94 V0-rated flame retardancy with total HR of 21.5 KJ/g. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/73/e3sconf_acic2020_02034.pdf |
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