"Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers"
The research progress in chemical crosslinking and filler enhancement of tetrapropyl fluoro elastomer was reviewed at home and abroad with 39 references. The key roles of co-crosslinkers and fillers were elucidated in the construction of crosslinking networks. The aging mechanism of tetrapropyl fluo...
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Format: | Article |
Language: | zho |
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Editorial Office of China Synthetic Rubber Industry
2024-01-01
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Series: | Hecheng xiangjiao gongye |
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Online Access: | http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202401019 |
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author | GONG Zi-qing, LI Bo, YAN Peng-hua, HUANG Xi-dai, XU Dian-hong, ZHAO Hong-guo |
author_facet | GONG Zi-qing, LI Bo, YAN Peng-hua, HUANG Xi-dai, XU Dian-hong, ZHAO Hong-guo |
author_sort | GONG Zi-qing, LI Bo, YAN Peng-hua, HUANG Xi-dai, XU Dian-hong, ZHAO Hong-guo |
collection | DOAJ |
description | The research progress in chemical crosslinking and filler enhancement of tetrapropyl fluoro elastomer was reviewed at home and abroad with 39 references. The key roles of co-crosslinkers and fillers were elucidated in the construction of crosslinking networks. The aging mechanism of tetrapropyl fluoro elastomer was summarized syste-matically under environmental conditions such as heat, oxygen, acid and alkali, and hydrogen sulfide.
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first_indexed | 2024-04-24T17:12:29Z |
format | Article |
id | doaj.art-2350874dc8884c578ca17d5854ad524a |
institution | Directory Open Access Journal |
issn | 1000-1255 |
language | zho |
last_indexed | 2024-04-24T17:12:29Z |
publishDate | 2024-01-01 |
publisher | Editorial Office of China Synthetic Rubber Industry |
record_format | Article |
series | Hecheng xiangjiao gongye |
spelling | doaj.art-2350874dc8884c578ca17d5854ad524a2024-03-28T08:34:11ZzhoEditorial Office of China Synthetic Rubber IndustryHecheng xiangjiao gongye1000-12552024-01-01471798210.19908/j.cnki.ISSN1000-1255.2024.01.0079"Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers"GONG Zi-qing, LI Bo, YAN Peng-hua, HUANG Xi-dai, XU Dian-hong, ZHAO Hong-guo0Lanzhou Petrochemical Research Center of Petrochemical Research Institute, PetroChina/Synthetic Rubber Technology Innovation Center of Gansu Province, Lanzhou 730060, ChinaThe research progress in chemical crosslinking and filler enhancement of tetrapropyl fluoro elastomer was reviewed at home and abroad with 39 references. The key roles of co-crosslinkers and fillers were elucidated in the construction of crosslinking networks. The aging mechanism of tetrapropyl fluoro elastomer was summarized syste-matically under environmental conditions such as heat, oxygen, acid and alkali, and hydrogen sulfide. http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202401019tetrapropyl fluoro elastomer, cross-linking, reinforcement, blending, aging mechanism, review, |
spellingShingle | GONG Zi-qing, LI Bo, YAN Peng-hua, HUANG Xi-dai, XU Dian-hong, ZHAO Hong-guo "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" Hecheng xiangjiao gongye tetrapropyl fluoro elastomer, cross-linking, reinforcement, blending, aging mechanism, review, |
title | "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" |
title_full | "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" |
title_fullStr | "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" |
title_full_unstemmed | "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" |
title_short | "Research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers" |
title_sort | research progress in crosslinking and aging mechanism of tetrapropyl fluoro elastomers |
topic | tetrapropyl fluoro elastomer, cross-linking, reinforcement, blending, aging mechanism, review, |
url | http://hcxjgy.paperopen.com/oa/DArticle.aspx?type=view&id=202401019 |
work_keys_str_mv | AT gongziqingliboyanpenghuahuangxidaixudianhongzhaohongguo researchprogressincrosslinkingandagingmechanismoftetrapropylfluoroelastomers |