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@thesis{thesis,
author={Devani Nadya and Handayasari Indah},
title ={Pengaruh Penggunaan Plastik Kresek Pada Campuran Laston AC-WC Terhadap Karakteristik Marshall},
year={2020},
url={http://156.67.221.169/3367/},
abstract={Indonesia is a tropical country that has a high temperature which tends to trigger premature damage to the asphalt, so it needs asphalt with additional additives to increase the durability of the asphalt. The additive used is a plastic type LDPE (Low Density Polyethylene). The addition of plastic in the asphalt mixture is intended to reduce plastic waste and improve the quality of the asphalt which has a longer service life than asphalt without the addition of plastic plastic. This study aims to determine the effect of plastic in the AC-WC Concrete Asphalt Mixture on Marshall characteristics. In the initial stage of testing, the optimal asphalt content was obtained by 5.9%. After obtaining the KAO value, then making the test object with the addition of LDPE plastic as an additive was 2%, 4%, 8%, and 12%, respectively. The test object that has been mixed with a variety of plastic crackle is then tested by Marshall with immersion for 30 minutes and 24 hours. Marshall test with 24 hours immersion or Marshall Immersion is intended to obtain the durability value of asphalt. Based on Marshall testing (30 minutes immersion) temperature of 60 ° C The highest stability value was obtained at 8% asphalt content of (1018.98 kg), as well as 24 hours immersion at 60 ° C, the highest stability value was obtained from 8% asphalt content of (940.03 kg). Marshall durability values on plastic content 0% (89.74%), 2% (88.41%), 4% (91.91%), 8% (92.95%), 12% (85.15%) . For durability checks that meet the requirements only for asphalt content of 4% and 8% with the best value for durability at 8% asphalt content of 92.25%. Based on the data obtained, all planned plastic variations meet the Marshall Characteristics value according to the 2018 Bina Marga specifications. The best plastic content is 8% because it has the highest stability value.}
}