Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend

Heat healable devulcanized EPDM waste-NR (DEPDMw-NR) blends with nano-chitin (0–7 phr) loading were successfully prepared with insertion of dry milling chitin. The cure characteristic of DEPDMw-NR shown no significant changes of ts2 and t90 for all nano-chitin loading except at 7 phr nano-chitin fou...

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Published in:Springer Proceedings in Materials
Main Author: Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
Format: Book chapter
Language:English
Published: Springer 2023
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163728349&doi=10.1007%2f978-981-99-2015-0_21&partnerID=40&md5=fdae597864345dfa59081522bc9c2c1c
id 2-s2.0-85163728349
spelling 2-s2.0-85163728349
Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
2023
Springer Proceedings in Materials
24

10.1007/978-981-99-2015-0_21
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163728349&doi=10.1007%2f978-981-99-2015-0_21&partnerID=40&md5=fdae597864345dfa59081522bc9c2c1c
Heat healable devulcanized EPDM waste-NR (DEPDMw-NR) blends with nano-chitin (0–7 phr) loading were successfully prepared with insertion of dry milling chitin. The cure characteristic of DEPDMw-NR shown no significant changes of ts2 and t90 for all nano-chitin loading except at 7 phr nano-chitin found at 1.39 min and 6.73 min, respectively. The effect of nano-chitin addition was evaluated on its tensile properties before and after self-heat healable. The utilization of nano-chitin as self-healing agent shown a comparable tensile strength at 1phr at 9.6 MPa as compared to control at 9.9 MPa due to enhanced interaction between chitin and DEPDMw-NR as supported by FTIR. On contrary, after the heat healable process, chitin plays a major role in self-healing mechanism with increment of its loading up to 7 phr at 0.835 MPa as compared to 0.269 MPa in control. The tensile strain before the heat healable process was found decrement trend up to 5 phr of nano-chitin compared to control owing to the restriction mobility of rubber molecular chain. However, slightly increment depicted in strain after heat healable up to 5 phr showing the addition of chitin improve the elastic properties of DEPDMw-NR. © 2023, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.
Springer
26623161
English
Book chapter

author Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
spellingShingle Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
author_facet Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
author_sort Abdul Wahab N.M.; Samsudin D.; Jamaluddin S.J.S.; Ahmad Z.; Mustafa M.S.; Sarip M.N.; Hayeemasae N.; Saiwari S.
title Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
title_short Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
title_full Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
title_fullStr Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
title_full_unstemmed Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
title_sort Characterization and Tensile Properties of Self-healing Chitin-Devulcanized Ethylene Propylene Rubber (EPDM)—Waste Natural Rubber Blend
publishDate 2023
container_title Springer Proceedings in Materials
container_volume 24
container_issue
doi_str_mv 10.1007/978-981-99-2015-0_21
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85163728349&doi=10.1007%2f978-981-99-2015-0_21&partnerID=40&md5=fdae597864345dfa59081522bc9c2c1c
description Heat healable devulcanized EPDM waste-NR (DEPDMw-NR) blends with nano-chitin (0–7 phr) loading were successfully prepared with insertion of dry milling chitin. The cure characteristic of DEPDMw-NR shown no significant changes of ts2 and t90 for all nano-chitin loading except at 7 phr nano-chitin found at 1.39 min and 6.73 min, respectively. The effect of nano-chitin addition was evaluated on its tensile properties before and after self-heat healable. The utilization of nano-chitin as self-healing agent shown a comparable tensile strength at 1phr at 9.6 MPa as compared to control at 9.9 MPa due to enhanced interaction between chitin and DEPDMw-NR as supported by FTIR. On contrary, after the heat healable process, chitin plays a major role in self-healing mechanism with increment of its loading up to 7 phr at 0.835 MPa as compared to 0.269 MPa in control. The tensile strain before the heat healable process was found decrement trend up to 5 phr of nano-chitin compared to control owing to the restriction mobility of rubber molecular chain. However, slightly increment depicted in strain after heat healable up to 5 phr showing the addition of chitin improve the elastic properties of DEPDMw-NR. © 2023, The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd.
publisher Springer
issn 26623161
language English
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