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Zeyu Zhang

Researcher at RWTH Aachen University

Publications -  37
Citations -  765

Zeyu Zhang is an academic researcher from RWTH Aachen University. The author has contributed to research in topics: Asphalt & Crumb rubber. The author has an hindex of 12, co-authored 32 publications receiving 393 citations. Previous affiliations of Zeyu Zhang include Harbin Institute of Technology & Hong Kong Polytechnic University.

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Effect of mixing sequence on asphalt mixtures containing waste tire rubber and warm mix surfactants

TL;DR: In this paper, the engineering performance of warm crumb rubber modified asphalt mixture (CRMA) with surfactant additive has been investigated by characterizing the performance of six different mixing sequences.
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Recycling waste packaging tape into bituminous mixtures towards enhanced mechanical properties and environmental benefits

TL;DR: In this paper, the feasibility of using waste packing tape (WPT) to improve the mechanical properties of asphalt mixtures was evaluated and the results showed that the mechanical performance of WPT asphalt mixture including moisture sensitivity, rutting and fatigue resistance was comparable to that of SBS asphalt mixture.
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Effect of Aging on Chemical and Rheological Properties of Bitumen.

TL;DR: Results indicated that aging obviously increased the micro-surface roughness of bitumen, and the bitumen rheological behavior was closely related to its micro-mechanics, which resulted in raised content of carbonyl, sulfoxide, and aromatic ring functional groups.
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Optimizing the mixing procedure of warm asphalt rubber with wax-based additives through mechanism investigation and performance characterization

TL;DR: Wang et al. as discussed by the authors investigated the influence of the mixing procedure on WAR prepared by two wax-based additives, i.e., commercial Sasobit and conventional paraffin wax.
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Workability of rubberized asphalt from a perspective of particle effect

TL;DR: This article measured the viscosities of ARs and the corresponding liquid phases at three temperatures and evaluated the workability of the corresponding AR mixes using the number of gyrations of Superpave Gyratory Compactor (SGC) samples.