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Characterizing the Complex Modulus of Asphalt Concrete Using a Scanning Laser Doppler Vibrometer

DOI:10.3390/ma12213542 期刊:Materials 出版年份:2019 更新时间:2025-09-11 14:15:04
摘要: Asphalt mixtures are the most common types of pavement material used in the world. Characterizing the mechanical behavior of these complex materials is essential in durable, cost-effective, and sustainable pavement design. One of the important properties of asphalt mixtures is the complex modulus of elasticity. This parameter can be determined using different standardized methods, which are often expensive, complex to perform, and sensitive to the experimental setup. Therefore, recently, there has been considerable interest in developing new, easier, and more comprehensive techniques to investigate the mechanical properties of asphalt. The main objective of this research is to develop an alternative method based on an optical measurement technique (laser Doppler vibrometry). To do this, a frequency domain system identification technique based on analytical formulas (Timoshenko’s beam theory) is used to determine the complex modulus of asphalt concrete at its natural frequencies and to form their master curve. The master curve plotted by this method is compared with the master curve obtained from the standard four-point bending test, and it is concluded that the proposed method is able to produce a master curve similar to the master curve of the standard method. Therefore, the proposed method has the potential to replace the standard stiffness tests. Furthermore, the standard stiffness methods usually conduct experiments up to the maximum frequency of 30 Hz. However, the proposed method can provide accurate complex modulus at high frequencies. This makes an accurate comparison between the properties of the asphalt mixtures in high frequencies and the development of more accurate theoretical models for simulation of specimens possible.
作者: Navid Hasheminejad,Joris Dirckx,Steve Vanlanduit,Cedric Vuye,Alexandros Margaritis,Wim Van den bergh
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To develop an alternative method based on an optical measurement technique (laser Doppler vibrometry) for characterizing the mechanical behavior of asphalt mixtures, focusing on the complex modulus of elasticity.

The proposed forward-calculation method using laser Doppler vibrometry and Timoshenko’s beam theory effectively estimates the complex modulus of asphalt mixtures and forms their master curves, showing good correlation with traditional methods. It offers advantages in testing flexibility, cost, and the ability to measure at higher frequencies, despite some limitations in temperature range and specimen variability.

1. Operational temperature range of the shaker limited testing temperatures. 2. High first natural frequency of the beam limited data at lower frequencies. 3. Shaker's limited power at high frequencies led to noisy data. 4. Specimens from different plates introduced variability.

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