Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor

The utilization of scrap rubber from tyre-retreading industry for footstep compound have been investigated. Pretreatment of rubber scrap with minarex B was done before it was compounded. The footstep compound was designed with various ratio of RSS/pretreated rubber scrap: 100/0; 75/25; 50/50, and 25...

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Main Author: Dwi Wahini Nurhajati
Format: Article
Language:English
Published: Center for Leather, Rubber, and Plastics 2009-06-01
Series:Majalah Kulit, Karet, dan Plastik
Subjects:
Online Access:http://ejournal.kemenperin.go.id/mkkp/article/view/229/206
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author Dwi Wahini Nurhajati
author_facet Dwi Wahini Nurhajati
author_sort Dwi Wahini Nurhajati
collection DOAJ
description The utilization of scrap rubber from tyre-retreading industry for footstep compound have been investigated. Pretreatment of rubber scrap with minarex B was done before it was compounded. The footstep compound was designed with various ratio of RSS/pretreated rubber scrap: 100/0; 75/25; 50/50, and 25/75 respectively. The compounds were prepared on a two-rolls mill machine. The compounds were tested for its physical properties such as tensile strength, elongation at break, abrassion resistance, hardness, density, permanent set, and aging, respectively. Test result was compared with physical properties of current commercial footstep. The physical properties of invented footstep compounds were better than current commercial footstep. The footstep compound made by using the RSS and pretreated rubber scrap in ratio of 75/25 performed the best physical properties with 146,48 kg/cm3 tensile strength; 253,36% elongation at break; 58,33 Shore A hardness, 2,91 mm3/kgm abrasion resistance, 1,23 g/cm3 density, 4,69% permanent set, and the change of physical properties after aging at temperature 70oC for 3 x 24 hours were 1,90% tensile strength, 5,02% elongation at break, and 4,04% hardness, respectively. Molding of footstep was done at 150o C, and 150 kg/cm2 for 10 minutes. Organoleptics test showed molded footstep good appearance, good homogeneity during curing, and good flowing compound respectively when it was moulded.
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spelling doaj.art-c7b9a51c28284cac86ea6a123aaa749a2022-12-21T23:13:48ZengCenter for Leather, Rubber, and PlasticsMajalah Kulit, Karet, dan Plastik1829-69712460-44612009-06-01251233010.20543/mkkp.v25i1.229Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motorDwi Wahini Nurhajati0Balai Besar Kulit, Karet, dan PlastikThe utilization of scrap rubber from tyre-retreading industry for footstep compound have been investigated. Pretreatment of rubber scrap with minarex B was done before it was compounded. The footstep compound was designed with various ratio of RSS/pretreated rubber scrap: 100/0; 75/25; 50/50, and 25/75 respectively. The compounds were prepared on a two-rolls mill machine. The compounds were tested for its physical properties such as tensile strength, elongation at break, abrassion resistance, hardness, density, permanent set, and aging, respectively. Test result was compared with physical properties of current commercial footstep. The physical properties of invented footstep compounds were better than current commercial footstep. The footstep compound made by using the RSS and pretreated rubber scrap in ratio of 75/25 performed the best physical properties with 146,48 kg/cm3 tensile strength; 253,36% elongation at break; 58,33 Shore A hardness, 2,91 mm3/kgm abrasion resistance, 1,23 g/cm3 density, 4,69% permanent set, and the change of physical properties after aging at temperature 70oC for 3 x 24 hours were 1,90% tensile strength, 5,02% elongation at break, and 4,04% hardness, respectively. Molding of footstep was done at 150o C, and 150 kg/cm2 for 10 minutes. Organoleptics test showed molded footstep good appearance, good homogeneity during curing, and good flowing compound respectively when it was moulded.http://ejournal.kemenperin.go.id/mkkp/article/view/229/206scrap rubberwaste rubbertyre-retreading industryfootstep compoundRSS = ribbed smoke sheet
spellingShingle Dwi Wahini Nurhajati
Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
Majalah Kulit, Karet, dan Plastik
scrap rubber
waste rubber
tyre-retreading industry
footstep compound
RSS = ribbed smoke sheet
title Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
title_full Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
title_fullStr Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
title_full_unstemmed Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
title_short Pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
title_sort pemanfaatan karet skrap limbah vulkanisir ban untuk kompon pedal sepeda motor
topic scrap rubber
waste rubber
tyre-retreading industry
footstep compound
RSS = ribbed smoke sheet
url http://ejournal.kemenperin.go.id/mkkp/article/view/229/206
work_keys_str_mv AT dwiwahininurhajati pemanfaatankaretskraplimbahvulkanisirbanuntukkomponpedalsepedamotor