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Halloysite Nanotubes Effect on Cure and Mechanical Properties of EPDM/NBR Nanocomposites
by
Dhanasekar, S.
, Vishvanathperumal, S.
, Baskar, S.
in
Abrasion resistance
/ Carbon
/ Chemistry
/ Chemistry and Materials Science
/ Elastomers
/ Elongation
/ Fillers
/ Hardness
/ Inorganic Chemistry
/ Mechanical properties
/ Nanocomposites
/ Nanotubes
/ Nitrile rubber
/ Organic Chemistry
/ Penetrants
/ Polymer Sciences
/ Polymers
/ Propylene
/ Rubber
/ Solvents
/ Sulfur
/ Swelling
/ Tear strength
/ Tensile properties
/ Tensile strength
/ Viscosity
/ Zinc oxides
2023
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Halloysite Nanotubes Effect on Cure and Mechanical Properties of EPDM/NBR Nanocomposites
by
Dhanasekar, S.
, Vishvanathperumal, S.
, Baskar, S.
in
Abrasion resistance
/ Carbon
/ Chemistry
/ Chemistry and Materials Science
/ Elastomers
/ Elongation
/ Fillers
/ Hardness
/ Inorganic Chemistry
/ Mechanical properties
/ Nanocomposites
/ Nanotubes
/ Nitrile rubber
/ Organic Chemistry
/ Penetrants
/ Polymer Sciences
/ Polymers
/ Propylene
/ Rubber
/ Solvents
/ Sulfur
/ Swelling
/ Tear strength
/ Tensile properties
/ Tensile strength
/ Viscosity
/ Zinc oxides
2023
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Do you wish to request the book?
Halloysite Nanotubes Effect on Cure and Mechanical Properties of EPDM/NBR Nanocomposites
by
Dhanasekar, S.
, Vishvanathperumal, S.
, Baskar, S.
in
Abrasion resistance
/ Carbon
/ Chemistry
/ Chemistry and Materials Science
/ Elastomers
/ Elongation
/ Fillers
/ Hardness
/ Inorganic Chemistry
/ Mechanical properties
/ Nanocomposites
/ Nanotubes
/ Nitrile rubber
/ Organic Chemistry
/ Penetrants
/ Polymer Sciences
/ Polymers
/ Propylene
/ Rubber
/ Solvents
/ Sulfur
/ Swelling
/ Tear strength
/ Tensile properties
/ Tensile strength
/ Viscosity
/ Zinc oxides
2023
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Halloysite Nanotubes Effect on Cure and Mechanical Properties of EPDM/NBR Nanocomposites
Journal Article
Halloysite Nanotubes Effect on Cure and Mechanical Properties of EPDM/NBR Nanocomposites
2023
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Overview
Rubber blend of ethylene-propylene-diene monomer and acrylonitrile-butadiene rubber (NBR) (50/50) has been incorporated with increasing contents, up to 10 parts per hundred rubber (phr), of reinforcing nano-filler, namely, halloysite nanotubes (HNTs). Mechanical properties, namely, tensile strength, hardness, stress at 100% elongation (100% modulus), tear strength, abrasion resistance, elongation at break, and rebound resilience have been carried out as a function of the degree of incorporation with nano-filler. Similarly, swelling resistance in terms of mole percent uptake as a physical property of rubber compounds, as a function of the degree of loading with nano-filler, penetrants size, and temperature, however, in aromatic, aliphatic, and chlorinated solvents has been undertaken. The FESEM of the tensile fractured composites was also investigated. The tensile properties and abrasion resistance improved until optimum content of HNTs (6 phr) and hardness, tear strength, and swelling resistance increased with increasing HNTs loading.
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