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Performance Evaluation of Asphalt Mixtures with 100% EAF and BOF Steel Slag Aggregates Using Laboratory Tests and Mechanistic Analyses

Authors
Lee, Eung JunPark, Hee MiSuh, Young ChanLee, Jong-Sub
Issue Date
Nov-2022
Publisher
대한토목학회
Keywords
Electric arc furnace; Basic oxygen furnace; Steel slag aggregates; Direct tension cyclic fatigue test; Viscoelastic continuum damage analysis; Accelerated pavement test
Citation
KSCE Journal of Civil Engineering, v.26, no.11, pp 4542 - 4551
Pages
10
Indexed
SCIE
SCOPUS
KCI
Journal Title
KSCE Journal of Civil Engineering
Volume
26
Number
11
Start Page
4542
End Page
4551
URI
https://scholarworks.bwise.kr/erica/handle/2021.sw.erica/111150
DOI
10.1007/s12205-022-1985-1
ISSN
1226-7988
1976-3808
Abstract
The purpose of this paper is to evaluate fatigue cracking and rutting performance of two asphalt mixtures with 1) Electric Arc Furnace (EAF) and 2) Basic Oxygen Furnace (BOF) steel slag as 100% recycled aggregate in comparison to hot-mix asphalt concrete mixture (HMA). Fatigue cracking performance was assessed through 3D FEM structural analysis methods of Layered Viscoelastic Continuum Damage (LVECD) based on Viscoelastic Continuum Damage (VECD) material modeling derived through laboratory dynamic modulus and direct tension cyclic fatigue tests. Rutting resistance was evaluated by using laboratory Incremental Repeated Load Performance Deformation (IRLPD) and full-scale Accelerated Pavement Tests (APT). The results of laboratory testing and mechanistic analysis showed better rutting resistance of asphalt pavement with EAF aggregates in comparison to HMA pavement while pavement with BOF aggregates exhibited about the same performance. Additionally, asphalt pavement with BOF aggregates, HMA, and pavement with EAF aggregates manifested fatigue cracking performance in descending order. The findings of this study can be used as a guide for the development of recycled asphalt mixtures containing slag aggregates acquired from steel production.
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COLLEGE OF ENGINEERING SCIENCES > DEPARTMENT OF TRANSPORTATION AND LOGISTICS ENGINEERING > 1. Journal Articles

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