DYNAMIC MODULUS, RESILIENT MODULUS, AND FATIGUE PERFORMANCE OF AC-WC MIXTURE USING EQUIVALENT PG76 MODIFIED ASPHALT
Road infrastructure still become mainstay for human and stuff moving. Issues that often happen is early damage that caused by overloading and high surface temperature. Material of asphalt that exist so far either penetration grade and modified not overcome these issues. New technnology that is de...
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Format: | Theses |
Language: | Indonesia |
Subjects: | |
Online Access: | https://digilib.itb.ac.id/gdl/view/32135 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | Road infrastructure still become mainstay for human and stuff moving. Issues that
often happen is early damage that caused by overloading and high surface
temperature. Material of asphalt that exist so far either penetration grade and
modified not overcome these issues. New technnology that is developed and trialed is
using the performance grade asphalt. Using of equivalent PG76 modified asphalt is
expected giving better pavement performace.
Mix design carried out by Marshall method wherein the characteristic properties
refers to Ministry of Public Works specification. The performance of the mixture is
obtained through mechanistic testing i.e. Marshall test, Dynamic Modulus, Resilient
Modulus, and Fatigue. Mechanistic Rheology test for equivalent PG76 modified
asphalt also carried out using DSR for determine Performance Grade value for the
asphalt.
Polymer content of equivalent PG76 modified asphalt causes asphalt properties
harder and resistant to high temperature. Result DSR test shows that performance
grade value of equivalent PG76 modified asphalt is on one performance grade above
Pen 60/70 asphalt. Resilient Modulus value of equivalent PG76 modified asphalt
mixture is higher than Pen 60/70 asphalt mixture on high temperature test. Equivalent
PG76 modified asphalt mixture has better resistance of crack that shows on result of
Fatigue test. In general, equivalent PG76 modified asphalt mixture shows better
performace at overloading and high temperature condition. |
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