Javascript must be enabled to continue!
Investigation of Dynamic Viscoelastic Characteristics of Permeable Asphalt
View through CrossRef
In order to provide a basis for the structural analysis, design and maintenance of permeable asphalt pavements, and to promote their engineering promotion and application, this study investigated the dynamic viscoelastic properties of permeable asphalt mixtures (PAC-13) under complex stress states. A Simple Performance Tester (SPT) system was used to measure the dynamic modulus of the mix under complex stress states. The displacement factor and principal dynamic modulus curves were formed by fitting Sigmoidal functions and using 1stOpt (first optimization) software, the phase angle principal curves were further determined, and the dynamic modulus was predicted for the ambient phase (15–25 °C) using the Hirsch model. The results showed that the dynamic modulus of the mixtures decreases with an increasing temperature, and the maximum decrease in the dynamic modulus is 93% when the confining pressure is 100 kPa and the loading frequency is 10 Hz. The dynamic modulus increases with an increasing confining pressure and loading frequency, the maximum increase with an increasing confining pressure is 26.1% when the temperature is 25 °C and the loading frequency is 10 Hz, and the maximum increase with an increasing loading frequency is 411% when the temperature is 25 °C and the confining pressure is 100 Hz. The dynamic modulus has a strong frequency dependence at low temperatures, while it is stress-dependent at high temperatures. Meanwhile, based on the Hirsch model, a new modified prediction model was developed, which can well predict the dynamic modulus of permeable asphalt mixtures at room temperature.
Title: Investigation of Dynamic Viscoelastic Characteristics of Permeable Asphalt
Description:
In order to provide a basis for the structural analysis, design and maintenance of permeable asphalt pavements, and to promote their engineering promotion and application, this study investigated the dynamic viscoelastic properties of permeable asphalt mixtures (PAC-13) under complex stress states.
A Simple Performance Tester (SPT) system was used to measure the dynamic modulus of the mix under complex stress states.
The displacement factor and principal dynamic modulus curves were formed by fitting Sigmoidal functions and using 1stOpt (first optimization) software, the phase angle principal curves were further determined, and the dynamic modulus was predicted for the ambient phase (15–25 °C) using the Hirsch model.
The results showed that the dynamic modulus of the mixtures decreases with an increasing temperature, and the maximum decrease in the dynamic modulus is 93% when the confining pressure is 100 kPa and the loading frequency is 10 Hz.
The dynamic modulus increases with an increasing confining pressure and loading frequency, the maximum increase with an increasing confining pressure is 26.
1% when the temperature is 25 °C and the loading frequency is 10 Hz, and the maximum increase with an increasing loading frequency is 411% when the temperature is 25 °C and the confining pressure is 100 Hz.
The dynamic modulus has a strong frequency dependence at low temperatures, while it is stress-dependent at high temperatures.
Meanwhile, based on the Hirsch model, a new modified prediction model was developed, which can well predict the dynamic modulus of permeable asphalt mixtures at room temperature.
Related Results
The Development of a New Thermoplastic Elastomer (TPE)-Modified Asphalt
The Development of a New Thermoplastic Elastomer (TPE)-Modified Asphalt
The use of (recycled) plastics and (waste) vulcanized rubber powder is the main polymer of raw materials, and composite organic additives are selected to fully combine with asphalt...
Factors Influencing the Leaching of Asphalt Components
Factors Influencing the Leaching of Asphalt Components
Abstract
The main applications of asphalt involve the coating of surfaces, e.g., in roads, roofs, pipes, and linings of water basins. In all of these applications, a...
Ultraviolet Aging Mechanism of Asphalt Molecular Based on Microscopic Simulation
Ultraviolet Aging Mechanism of Asphalt Molecular Based on Microscopic Simulation
Abstract
In order to reveal the nature of the Ultraviolet aging(UV-aging) behavior of asphalt molecules, simulation by Materials Studio software. The effect of UV aging on ...
Study on the Performance of Modified Qingchuan Rock/Rubber Asphalt
Study on the Performance of Modified Qingchuan Rock/Rubber Asphalt
This paper developed a new environmentally friendly composite modified asphalt material and studied the composite modification of Qingchuan rock asphalt (QRA) and waste tire rubber...
Viscoelastic properties of warm recycled asphalt mixture based on S-φ model
Viscoelastic properties of warm recycled asphalt mixture based on S-φ model
Abstract
In order to study the influence of temperature, frequency and RAP content on the viscoelastic properties of warm mix recycled asphalt mixture, the viscoelastic pro...
The peridynamic model of viscoelastic creep and recovery
The peridynamic model of viscoelastic creep and recovery
Purpose
– The purpose of this paper is to establish a peridynamic method in predicting viscoelastic creep behaviour with recovery stage and to find the suitable num...
Investigation on Possibility of Waste Vegetable Oil Rejuvenating Aged Asphalt
Investigation on Possibility of Waste Vegetable Oil Rejuvenating Aged Asphalt
In order to guarantee the service performance of recycling asphalt mixture with reclaimed asphalt pavement (RAP), asphalt rejuvenator shall be added. In the last five years, vegeta...
Studi Kelayakan Penggunaan Material Lokal Berupa Agregat Kasar dan Agregat Halus di Kabupaten Jayapura Sebagai Bahan Dasar Stone Matrix Asphalt (SMA) Kasar
Studi Kelayakan Penggunaan Material Lokal Berupa Agregat Kasar dan Agregat Halus di Kabupaten Jayapura Sebagai Bahan Dasar Stone Matrix Asphalt (SMA) Kasar
Flexible pavement is the most widely used pavement in Indonesia. There are three types of hot mix asphalt in Spesifikasi Umum Bina Marga 2018 Rev. 2, including Asphalt Concrete (AC...

