Title of article :
Investigation into hot-mix asphalt moisture-induced damage under tropical climatic conditions
Author/Authors :
Ahmad، نويسنده , , Juraidah and Yusoff، نويسنده , , Nur Izzi Md. and Hainin، نويسنده , , Mohd Rosli and Rahman، نويسنده , , Mohd Yusof Abd and Hossain، نويسنده , , Mustaque Ahamad ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
10
From page :
567
To page :
576
Abstract :
A major concern for highway industries in tropical climatic countries is the excessive moisture-induced damage to hot-mix asphalt (HMA) pavements as a result of frequent passes by heavy axle loads. Therefore, in this study, two different approaches, the Superpave and Marshall mix design methods, were used to design HMA mixes and a comparison was made to identify how susceptible these mixtures are to moisture damage. The Modified Lottman test and Simple Performance Test (SPT) were performed on unconditioned and conditioned specimens tailored to suit tropical climatic conditions, omitting freeze and thaw. The Modified Lottman test showed that the tensile strength values of Superpave-designed mixtures are higher than Marshall-designed mixtures. The tensile strength ratio (TSR) values decreased from unconditioned to conditioned specimens, suggesting that there is damage to the mixtures. The results also show good agreement between the TSR and ESR in the two tests, with a coefficient of determination value of 0.78. This relationship indicates that the SPT dynamic modulus test was effective and suitable to evaluate the lab-measured moisture susceptibility of HMA mixes. Since the dynamic modulus test provides a full characterisation of the mix over a broad range of temperatures and loading frequencies, this test is highly recommended for Superpave mixture characterisation in tropical climatic conditions.
Keywords :
Marshall mix design , Superpave mix design , Moisture-induce damage , Tensile strength ratio , Simple performance test
Journal title :
Construction and Building Materials
Serial Year :
2014
Journal title :
Construction and Building Materials
Record number :
1635711
Link To Document :
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