A New Perspective of Understanding Compaction of Particulate Asphalt Mixtures

A New Perspective of Understanding Compaction of Particulate Asphalt Mixtures
Title A New Perspective of Understanding Compaction of Particulate Asphalt Mixtures PDF eBook
Author Shuai Yu
Publisher
Pages 0
Release 2024
Genre
ISBN

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Effective compaction is crucial for the performance and durability of asphalt pavement. Traditional field compaction, relying heavily on engineers' experience and test strips, sometimes could be problematic to achieve a unified pavement with a desirable density, especially with new materials. To address these challenges, Intelligent Compaction (IC) has been developed to equip the vibratory rollers with GPS, accelerometers, onboard computers, and infrared thermometers to facilitate the quality control of pavement compaction. This technology allows for real-time monitoring and visualization of pavement responses and temperatures, significantly improving compaction uniformity. However, accurately predicting pavement density remains challenging due to the multilayered pavement structure and the complex interactions between the roller drum and the viscoelastic asphalt mixture. To understand the compaction mechanism and improve the compaction quality of the asphalt pavement, a Microelectromechanical System (MEMS) sensor, SmartKli was employed to study the asphalt mixture compaction at the mesoscale. It was found that the compaction characteristics at the macroscale are closely related to the behavior of coarse aggregates at the mesoscale level. The particle rotation plays a critical role in the densification of the asphalt specimens. Utilizing the Discrete Element Model (DEM), the impact of mix design and particle property on kinematic behaviors was examined. The mixture gradation and particle size also greatly affect the aggregates' behavior during compaction. Based on the developed compaction mechanism, a new method for evaluating asphalt mixture workability was proposed, incorporating workability parameters, compaction curves, and statistical analysis of compaction data. By verifying with different asphalt types including Hot Mix Asphalt (HMA), Warm Mix Asphalt (WMA), and Recycled Plastic Modified Asphalt (RPMA), this method could effectively assess the influence of various factors like asphalt content, compaction temperature, and additives on mixture workability, aiding in optimizing mix design and construction conditions. Moreover, an innovative compaction monitoring system was developed to accurately predict the compaction conditions of the asphalt pavement. This system uses a wireless particle size sensor for data acquisition and a machine learning model for density prediction. Linking laboratory gyratory and field roller compaction data through particle kinematic behaviors, the system achieved high precision in density prediction with a prediction error of less than 0.7%. The results demonstrate that integrating AI and sensing data is effective for predicting asphalt mixture compaction. This system could significantly enhance the compaction quality of asphalt pavement and contribute to the comprehensive quality control and assurance of pavement construction.

Placement and Compaction of Asphalt Mixtures

Placement and Compaction of Asphalt Mixtures
Title Placement and Compaction of Asphalt Mixtures PDF eBook
Author ASTM Committee D-4 on Road and Paving Materials
Publisher ASTM International
Pages 160
Release 1984
Genre Technology & Engineering
ISBN 9780803102231

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Superpave Mix Design

Superpave Mix Design
Title Superpave Mix Design PDF eBook
Author Asphalt Institute
Publisher
Pages 102
Release 2001-01-01
Genre Asphalt
ISBN 9781934154175

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Placement and Compaction of Asphalt Mixtures

Placement and Compaction of Asphalt Mixtures
Title Placement and Compaction of Asphalt Mixtures PDF eBook
Author F. T. Wagner
Publisher
Pages 152
Release 1984
Genre
ISBN

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Transportation Research Record

Transportation Research Record
Title Transportation Research Record PDF eBook
Author
Publisher
Pages 1140
Release 1999
Genre Air travel
ISBN

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Bituminous Mixtures and Pavements VII

Bituminous Mixtures and Pavements VII
Title Bituminous Mixtures and Pavements VII PDF eBook
Author A.F. Nikolaides
Publisher CRC Press
Pages 716
Release 2019-05-24
Genre Technology & Engineering
ISBN 1351063251

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Highway engineers are facing the challenge not only to design and construct sustainable and safe pavements properly and economically. This implies a thorough understanding of materials behaviour, their appropriate use in the continuously changing environment, and implementation of constantly improved technologies and methodologies. Bituminous Mixtures and Pavements VII contains more than 100 contributions that were presented at the 7th International Conference ‘Bituminous Mixtures and Pavements’ (7ICONFBMP, Thessaloniki, Greece 12-14 June 2019). The papers cover a wide range of topics: - Bituminous binders - Aggregates, unbound layers and subgrade - Bituminous mixtures (Hot, Warm and Cold) - Pavements (Design, Construction, Maintenance, Sustainability, Energy and environment consideration) - Pavement management - Pavement recycling - Geosynthetics - Pavement assessment, surface characteristics and safety - Posters Bituminous Mixtures and Pavements VII reflects recent advances in highway materials technology and pavement engineering, and will be of interest to academics and professionals interested or involved in these areas.

Construction

Construction
Title Construction PDF eBook
Author
Publisher
Pages 206
Release 1999
Genre Bridges
ISBN

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