Rubber in particular is an important class of polymer material
due to their specific applications. About 70% of rubbers are used in
automotive tyre and tyre based products, 10% in footwear and
engineering products and about 10% in mechanical goods and
remaining in other applications. Several works have carried out in
literature in rubber–nanoclay composites and improved results in
mechanical and thermal properties are observed [13–15]. In
general, literature work is focused on the preparation of rubber–
nanoclay composites using solution and melt mixing [16–18],
milling [19], radiation induced curing [20], latex dispersion
[21,22], pre-vulcanization [23] and two-roll mixing [24]. This
work is focused on the preparation of rubber–nanoclay composites
using Banbury mixer, a direct single step compounding process
method in which automotive rubber tyres are manufactured in
industries
Rubber in particular is an important class of polymer materialdue to their specific applications. About 70% of rubbers are used inautomotive tyre and tyre based products, 10% in footwear andengineering products and about 10% in mechanical goods andremaining in other applications. Several works have carried out inliterature in rubber–nanoclay composites and improved results inmechanical and thermal properties are observed [13–15]. Ingeneral, literature work is focused on the preparation of rubber–nanoclay composites using solution and melt mixing [16–18],milling [19], radiation induced curing [20], latex dispersion[21,22], pre-vulcanization [23] and two-roll mixing [24]. Thiswork is focused on the preparation of rubber–nanoclay compositesusing Banbury mixer, a direct single step compounding processmethod in which automotive rubber tyres are manufactured inindustries
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