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Eshwaran Subramani Bhagavatheswaran
Researcher at Leibniz Institute for Neurobiology
Publications - 10
Citations - 191
Eshwaran Subramani Bhagavatheswaran is an academic researcher from Leibniz Institute for Neurobiology. The author has contributed to research in topics: Natural rubber & Elastomer. The author has an hindex of 7, co-authored 10 publications receiving 120 citations. Previous affiliations of Eshwaran Subramani Bhagavatheswaran include Dresden University of Technology & Leibniz Association.
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Journal ArticleDOI
Construction of an Interconnected Nanostructured Carbon Black Network: Development of Highly Stretchable and Robust Elastomeric Conductors
Eshwaran Subramani Bhagavatheswaran,Meenali Parsekar,Amit Das,Amit Das,Hai Hong Le,Sven Wiessner,Klaus Werner Stöckelhuber,Gerd Schmaucks,Gert Heinrich +8 more
TL;DR: In this paper, a strong filler-filler network of conductive carbon black was strategically established in an elastomer matrix, which leads to a unique combination of electrical and mechanical properties.
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Viscoelastic and self-healing behavior of silica filled ionically modified poly(isobutylene-co-isoprene) rubber
Aladdin Sallat,Aladdin Sallat,Amit Das,Jana Schaber,Ulrich Scheler,Eshwaran Subramani Bhagavatheswaran,Klaus Werner Stöckelhuber,Gert Heinrich,Gert Heinrich,Brigitte Voit,Brigitte Voit,Frank Böhme +11 more
TL;DR: In this paper, bromobutyl rubber (BIIR) was prepared by mixing bromine groups of BIIR with silica particles in the presence of 1-butylimidazole.
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The Taste of Waste: The Edge of Eggshell Over Calcium Carbonate in Acrylonitrile Butadiene Rubber
Eshwaran Subramani Bhagavatheswaran,Eshwaran Subramani Bhagavatheswaran,Amit Das,Hadi Rastin,Hoda Saeidi,Seyed Hassan Jafari,Henri Vahabi,Henri Vahabi,Farhood Najafi,Hossein Ali Khonakdar,Krzysztof Formela,Maryam Jouyandeh,Payam Zarrintaj,Payam Zarrintaj,Mohammad Reza Saeb +14 more
TL;DR: In this article, composites based on acrylonitrile butadiene rubber (NBR) reinforced with chicken eggshell (ES) and CaCO3 microfillers at various loading levels were prepared and characterized.
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High-performance elastomeric strain sensors based on nanostructured carbon fillers for potential tire applications
Eshwaran Subramani Bhagavatheswaran,Eshwaran Subramani Bhagavatheswaran,Sankar Raman Vaikuntam,Sankar Raman Vaikuntam,Klaus Werner Stöckelhuber,Sven Wießner,Sven Wießner,Gert Heinrich,Gert Heinrich,Amit Das,Amit Das +10 more
TL;DR: In this paper, the authors evaluate the piezoresistive properties of a composite developed from tire rubber, taking into account the morphology (distribution and dispersion of the fillers), filler network structure, crosslinking density and the stiffness (hardness) of the rubber matrix.
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Friction, Abrasion and Crack Growth Behavior of In-Situ and Ex-Situ Silica Filled Rubber Composites.
Sankar Raman Vaikuntam,Sankar Raman Vaikuntam,Eshwaran Subramani Bhagavatheswaran,Eshwaran Subramani Bhagavatheswaran,Fei Xiang,Fei Xiang,Sven Wießner,Sven Wießner,Gert Heinrich,Gert Heinrich,Amit Das,Klaus Werner Stöckelhuber +11 more
TL;DR: Compared to precipitated silica Composites, in-situ derived silica composites offer better abrasion behavior and improved crack propagation with and without admixture of silane coupling agents.