A platform for research: civil engineering, architecture and urbanism
Effects of using asphaltite as filler on mechanical properties of hot mix asphalt
Highlights ► We investigate the performance of asphaltite modified mixtures. ► Asphaltite was used as filler in different contents. ► Asphaltite resist well to water effects. ► The stiffness modulus values increased regularly with the increase of asphaltite. ► The improvement effect of using asphaltite as filler was signposted with fatigue test.
Abstract This study focuses on determining the engineering characteristics of hot mix asphalt using mineral filler with asphaltite. Since asphaltite which consists of high amount of sulfur leads to air pollution when used as a heating material and also being hydrocarbon sourced, it seems better to use asphaltite in the hot mix asphalts. The hot mix asphalts in this study were prepared by using 25%, 50%, 75%, and 100% mixing ratios based on the mineral filler ratio to analyze the possibility of using asphaltite. The results reveal that using asphaltite as a whole filler significantly increased the retained Marshall stability by 27% and increased the stiffness modulus by 91% at 15°C. As for the tensile strength test, it was determined that the control mixtures lost 35% of its tensile strength ratio after one freeze–thaw cycle, however the mixtures containing completely asphaltite as filler lost only 13%. A remarkable increase was found at fatigue test. The cycle number leading to failure of the mixtures containing 25%, 50%, 75% and 100% asphaltite by weight of filler were 2.9, 3.6, 5.4 and 7.9 times greater than those of the control mixtures respectively at 300kPa stress level. Using asphaltite as filler exhibited high performance by improving especially the resistance to moisture damage and fatigue life.
Effects of using asphaltite as filler on mechanical properties of hot mix asphalt
Highlights ► We investigate the performance of asphaltite modified mixtures. ► Asphaltite was used as filler in different contents. ► Asphaltite resist well to water effects. ► The stiffness modulus values increased regularly with the increase of asphaltite. ► The improvement effect of using asphaltite as filler was signposted with fatigue test.
Abstract This study focuses on determining the engineering characteristics of hot mix asphalt using mineral filler with asphaltite. Since asphaltite which consists of high amount of sulfur leads to air pollution when used as a heating material and also being hydrocarbon sourced, it seems better to use asphaltite in the hot mix asphalts. The hot mix asphalts in this study were prepared by using 25%, 50%, 75%, and 100% mixing ratios based on the mineral filler ratio to analyze the possibility of using asphaltite. The results reveal that using asphaltite as a whole filler significantly increased the retained Marshall stability by 27% and increased the stiffness modulus by 91% at 15°C. As for the tensile strength test, it was determined that the control mixtures lost 35% of its tensile strength ratio after one freeze–thaw cycle, however the mixtures containing completely asphaltite as filler lost only 13%. A remarkable increase was found at fatigue test. The cycle number leading to failure of the mixtures containing 25%, 50%, 75% and 100% asphaltite by weight of filler were 2.9, 3.6, 5.4 and 7.9 times greater than those of the control mixtures respectively at 300kPa stress level. Using asphaltite as filler exhibited high performance by improving especially the resistance to moisture damage and fatigue life.
Effects of using asphaltite as filler on mechanical properties of hot mix asphalt
Yilmaz, Mehmet (author) / Kök, Baha Vural (author) / Kuloğlu, Necati (author)
Construction and Building Materials ; 25 ; 4279-4286
2011-04-27
8 pages
Article (Journal)
Electronic Resource
English
Effects of using asphaltite as filler on mechanical properties of hot mix asphalt
British Library Online Contents | 2011
|Effects of using asphaltite as filler on mechanical properties of hot mix asphalt
Online Contents | 2011
|British Library Online Contents | 2013
|