Peroxide cross-linking and its role on the rheological, mechanical and thermal properties of poly(butylene adipate-co-butylene terephthalate)

The effects of two different peroxides [di(tert-butylperoxyisopropyl) benzene (DTBP) and bis(tert-butyl dioxy isopropyl) benzene (BIBP)] and a co-agent such as [triallyl isocyanurate (TAIC)], singly and together, were studied through the rheological, mechanical and thermal properties of poly(butylen...

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Veröffentlicht in:Iranian polymer journal 2023-10, Vol.32 (10), p.1271-1280
Hauptverfasser: Hao, Yanping, Chen, Jun, Liu, Yang, Wang, Fan, Chen, Qingkui, Zhang, Weiwei, Zhang, Shengnan, Chen, Wei, Tian, Hongchi
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container_end_page 1280
container_issue 10
container_start_page 1271
container_title Iranian polymer journal
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creator Hao, Yanping
Chen, Jun
Liu, Yang
Wang, Fan
Chen, Qingkui
Zhang, Weiwei
Zhang, Shengnan
Chen, Wei
Tian, Hongchi
description The effects of two different peroxides [di(tert-butylperoxyisopropyl) benzene (DTBP) and bis(tert-butyl dioxy isopropyl) benzene (BIBP)] and a co-agent such as [triallyl isocyanurate (TAIC)], singly and together, were studied through the rheological, mechanical and thermal properties of poly(butylene adipate- co -butylene terephthalate) (PBAT). It was found that a cross-linked PBAT with different gel fractions were obtained by adding small amounts of peroxides and a co-agent. Addition of the peroxides and the co-agent similarly induced bond breakage of PBAT chain during the melting extrusion, which produced high carboxyl end-groups contents. Moreover, cross-linked PBAT exhibited a remarkable improvement in modulus and complex viscosity due to the formation of a gel network. Furthermore, the elongation-at-break decreased with an increase in gel fraction, but the tensile strength was slightly affected. It was interesting that the cross-linked structures could act as nucleating agents which enhanced the crystallization of PBAT. In addition, the thermal stability of PBAT was improved due to the cross-linked structures in PBAT which retarded degradation. According to the above results, cross-linking could extend processing methods of PBAT, like foaming and film blowing. Therefore, the practical applications of PBAT could be widely expanded. Graphical abstract
doi_str_mv 10.1007/s13726-023-01198-1
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It was found that a cross-linked PBAT with different gel fractions were obtained by adding small amounts of peroxides and a co-agent. Addition of the peroxides and the co-agent similarly induced bond breakage of PBAT chain during the melting extrusion, which produced high carboxyl end-groups contents. Moreover, cross-linked PBAT exhibited a remarkable improvement in modulus and complex viscosity due to the formation of a gel network. Furthermore, the elongation-at-break decreased with an increase in gel fraction, but the tensile strength was slightly affected. It was interesting that the cross-linked structures could act as nucleating agents which enhanced the crystallization of PBAT. In addition, the thermal stability of PBAT was improved due to the cross-linked structures in PBAT which retarded degradation. According to the above results, cross-linking could extend processing methods of PBAT, like foaming and film blowing. 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It was found that a cross-linked PBAT with different gel fractions were obtained by adding small amounts of peroxides and a co-agent. Addition of the peroxides and the co-agent similarly induced bond breakage of PBAT chain during the melting extrusion, which produced high carboxyl end-groups contents. Moreover, cross-linked PBAT exhibited a remarkable improvement in modulus and complex viscosity due to the formation of a gel network. Furthermore, the elongation-at-break decreased with an increase in gel fraction, but the tensile strength was slightly affected. It was interesting that the cross-linked structures could act as nucleating agents which enhanced the crystallization of PBAT. In addition, the thermal stability of PBAT was improved due to the cross-linked structures in PBAT which retarded degradation. According to the above results, cross-linking could extend processing methods of PBAT, like foaming and film blowing. Therefore, the practical applications of PBAT could be widely expanded. 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subjects Benzene
Ceramics
Chemistry
Chemistry and Materials Science
Composites
Crosslinking
Crystallization
Elongation
Fractions
Glass
Hydrocarbons
Natural Materials
Original Research
Peroxides
Polymer Sciences
Reagents
Rheological properties
Rheology
Tensile strength
Terephthalate
Thermal stability
Thermodynamic properties
title Peroxide cross-linking and its role on the rheological, mechanical and thermal properties of poly(butylene adipate-co-butylene terephthalate)
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