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Anil K. Bhowmick

Researcher at Indian Institute of Technology Kharagpur

Publications -  597
Citations -  17228

Anil K. Bhowmick is an academic researcher from Indian Institute of Technology Kharagpur. The author has contributed to research in topics: Natural rubber & Elastomer. The author has an hindex of 58, co-authored 584 publications receiving 15555 citations. Previous affiliations of Anil K. Bhowmick include Indian Institutes of Technology & Indian Institute of Technology Patna.

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A review on the mechanical and electrical properties of graphite and modified graphite reinforced polymer composites

TL;DR: In this article, the authors focus on graphite and describe its various modifications for use as modified fillers in polymer matrices for creating polymer-carbon nanocomposites, which is the basic building block of graphite.
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Polymer nanocomposites from modified clays: Recent advances and challenges

TL;DR: In this article, progress in developments on the use of modified natural and synthetic clays for designing polymer nanocomposites is presented, and a synopsis of the applications of these advanced, high-performance polymer nan composites are presented, pointing out gaps to motivate potential research in this field.
BookDOI

Handbook of elastomers

TL;DR: Guayule rubber Hevea natural rubber modified natural rubber chemical modification of synthetic elastomers liquid rubber powdered rubber rubber rubber-rubber blends - part 1 rubber-Rubber blends as mentioned in this paper.
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Modifications of carbon for polymer composites and nanocomposites

TL;DR: A detailed literature survey on the various modifications of the carbon nanostructures for nanocomposite preparation focusing upon the works published in the last decade is presented in this article.
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Preparation and properties of natural nanocomposites based on natural rubber and naturally occurring halloysite nanotubes

TL;DR: In this paper, a green composite based on natural halloysite nanotubes (HNTs) and natural rubber (NR) was prepared by mechanical mixing and a silane coupling agent, bis (triethoxysilylpropyl)-tetrasulphide, was utilized to enhance the properties of these composites.