Effect of carbon black loading on the mechanical properties of rubber vulcanizates /
Mohd Faisal Ahmad Shafawi
Effect of carbon black loading on the mechanical properties of rubber vulcanizates / Mohd Faisal Ahmad Shafawi - Kuantan, Pahang : UMP, 2010 - xiv, 36 p. : ill. (some col.) ; 30 cm. + 1 CD-ROM
Project paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang - 2010
Includes bibliographical references
The effects of filler loading on the tensile and elongation at break of SMR 10 using a sulphur vulcanization system was studied. Carbon black (N220) was used as the fillers and the loading range was from 10 to 40 phr. Two Roll Mill (Model LS-22005) and 25 Ton Hot Cold Molding Press (Model LS22025) used for mixing and molding press. Both equipments were supplied by Lotus Scientific. Tensile and elongation at break were determined using a Universal Testing Machine (Model 133004600771) operating at 20 mm/min. Results show that, elongation at break decreases, but tensile strength, increase with filler loading. This observation is attributed to the rubber–filler interphaseinteraction of carbon black and rubber.
THE0004881(Local)
Carbon-black
Rubber--Mechanical properties
Rubber--Additives
Effect of carbon black loading on the mechanical properties of rubber vulcanizates / Mohd Faisal Ahmad Shafawi - Kuantan, Pahang : UMP, 2010 - xiv, 36 p. : ill. (some col.) ; 30 cm. + 1 CD-ROM
Project paper (Bachelor of Chemical Engineering) -- Universiti Malaysia Pahang - 2010
Includes bibliographical references
The effects of filler loading on the tensile and elongation at break of SMR 10 using a sulphur vulcanization system was studied. Carbon black (N220) was used as the fillers and the loading range was from 10 to 40 phr. Two Roll Mill (Model LS-22005) and 25 Ton Hot Cold Molding Press (Model LS22025) used for mixing and molding press. Both equipments were supplied by Lotus Scientific. Tensile and elongation at break were determined using a Universal Testing Machine (Model 133004600771) operating at 20 mm/min. Results show that, elongation at break decreases, but tensile strength, increase with filler loading. This observation is attributed to the rubber–filler interphaseinteraction of carbon black and rubber.
THE0004881(Local)
Carbon-black
Rubber--Mechanical properties
Rubber--Additives