On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends

The aim of this study was to evaluate the various roles of 1,3-DiPhenyl Guanidine (DPG) in silica-reinforced rubber compounds. Two roles of DPG are well known to be: adsorption onto silica surface to reduce the acidic sites and second to boost the silanization reaction as secondary accelerator. Howe...

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Main Authors: Jungmin Jin, Andries P.J. van Swaaij, Jacques W.M. Noordermeer, Anke Blume, Wilma K. Dierkes
Format: Article
Language:English
Published: Elsevier 2021-01-01
Series:Polymer Testing
Subjects:
DPG
Online Access:http://www.sciencedirect.com/science/article/pii/S0142941820320870
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spelling doaj-e006ab21821d473bb2f2ddfbe1ea0d7f2021-03-18T04:30:52ZengElsevierPolymer Testing0142-94182021-01-0193106858On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blendsJungmin Jin0Andries P.J. van Swaaij1Jacques W.M. Noordermeer2Anke Blume3Wilma K. Dierkes4Elastomer Technology and Engineering, Department of Mechanics of Solids, Surfaces and Systems (MS3), Faculty of Engineering Technology, University of Twente, Enschede, P.O. Box 217, 7500AE, the Netherlands; HANKOOKTIRE Co., LTD. Main R&D Center, Material Department, Daejeon, 34127, Republic of KoreaElastomer Technology and Engineering, Department of Mechanics of Solids, Surfaces and Systems (MS3), Faculty of Engineering Technology, University of Twente, Enschede, P.O. Box 217, 7500AE, the NetherlandsElastomer Technology and Engineering, Department of Mechanics of Solids, Surfaces and Systems (MS3), Faculty of Engineering Technology, University of Twente, Enschede, P.O. Box 217, 7500AE, the NetherlandsElastomer Technology and Engineering, Department of Mechanics of Solids, Surfaces and Systems (MS3), Faculty of Engineering Technology, University of Twente, Enschede, P.O. Box 217, 7500AE, the NetherlandsElastomer Technology and Engineering, Department of Mechanics of Solids, Surfaces and Systems (MS3), Faculty of Engineering Technology, University of Twente, Enschede, P.O. Box 217, 7500AE, the Netherlands; Corresponding author.The aim of this study was to evaluate the various roles of 1,3-DiPhenyl Guanidine (DPG) in silica-reinforced rubber compounds. Two roles of DPG are well known to be: adsorption onto silica surface to reduce the acidic sites and second to boost the silanization reaction as secondary accelerator. However, these two roles are in a way conflicting. When DPG molecules occupy the reactive silanol sites on silica by adsorption, then the access of silane molecules needed for silica-rubber coupling is blocked. Therefore, it may be assumed that there is another role DPG plays in silica filled rubber compounds. In order to evaluate another role which can reconcile these contradictory functions of DPG, a series of rubber compound mixings was performed with different DPG concentrations in the masterbatch and final stages. Additionally, a series of model reaction experiments has been done in combination with other ingredients, such as zinc oxide and stearic acid. According to the results a new role of DPG is observed: DPG possibly reacts with the silane coupling agent bis-(triethoxysilylpropyl)tetrasulfide (TESPT) and releases sulfur during the mixing process, which enhances filler-polymer coupling, but reduces cure rate and crosslink density.http://www.sciencedirect.com/science/article/pii/S01429418203208701,3-DiphenylguanidineDPGSilanizationSilicaSilaneTESPT
collection DOAJ
language English
format Article
sources DOAJ
author Jungmin Jin
Andries P.J. van Swaaij
Jacques W.M. Noordermeer
Anke Blume
Wilma K. Dierkes
spellingShingle Jungmin Jin
Andries P.J. van Swaaij
Jacques W.M. Noordermeer
Anke Blume
Wilma K. Dierkes
On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
Polymer Testing
1,3-Diphenylguanidine
DPG
Silanization
Silica
Silane
TESPT
author_facet Jungmin Jin
Andries P.J. van Swaaij
Jacques W.M. Noordermeer
Anke Blume
Wilma K. Dierkes
author_sort Jungmin Jin
title On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
title_short On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
title_full On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
title_fullStr On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
title_full_unstemmed On the various roles of 1,3-DIPHENYL Guanidine in silica/silane reinforced sbr/br blends
title_sort on the various roles of 1,3-diphenyl guanidine in silica/silane reinforced sbr/br blends
publisher Elsevier
series Polymer Testing
issn 0142-9418
publishDate 2021-01-01
description The aim of this study was to evaluate the various roles of 1,3-DiPhenyl Guanidine (DPG) in silica-reinforced rubber compounds. Two roles of DPG are well known to be: adsorption onto silica surface to reduce the acidic sites and second to boost the silanization reaction as secondary accelerator. However, these two roles are in a way conflicting. When DPG molecules occupy the reactive silanol sites on silica by adsorption, then the access of silane molecules needed for silica-rubber coupling is blocked. Therefore, it may be assumed that there is another role DPG plays in silica filled rubber compounds. In order to evaluate another role which can reconcile these contradictory functions of DPG, a series of rubber compound mixings was performed with different DPG concentrations in the masterbatch and final stages. Additionally, a series of model reaction experiments has been done in combination with other ingredients, such as zinc oxide and stearic acid. According to the results a new role of DPG is observed: DPG possibly reacts with the silane coupling agent bis-(triethoxysilylpropyl)tetrasulfide (TESPT) and releases sulfur during the mixing process, which enhances filler-polymer coupling, but reduces cure rate and crosslink density.
topic 1,3-Diphenylguanidine
DPG
Silanization
Silica
Silane
TESPT
url http://www.sciencedirect.com/science/article/pii/S0142941820320870
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