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Study of the stiffness of the bitumen emulsion based cold recycling mixes for road base courses

  • Katarzyna Konieczna
  • , Piotr Pokorski
  • , Wojciech Sorociak
  • , Piotr Radziszewski
  • , Dawid Żymełka
  • , Jan Bolesław Król
  • Warsaw University of Technology
  • Eurovia Polska S.A.

Research output: Contribution to journalArticlepeer-review

13 Citations (Scopus)

Abstract

The benefits of the use of cold recycling mixtures (CRMs) in pavement rehabilitation are associated with both the reduction of natural resource consumption by replacing them with recycled materials and the reduction of energy consumption during their production and paving. The evolution of the stiffness of CRMs in road construction and the fatigue life of pavements with CRM base layers are still being investigated. In this paper, CRMs with 1% cement content, called bitumen-stabilized materials with bitumen emulsion (BSM-Es), were examined. Mixtures that were differentiated in terms of Reclaimed Asphalt Pavement (RAP) content, as well as the amount and type of bitumen emulsions, were subjected to indirect tensile stiffness modulus (ITSM) tests at 5C, 13C, and 20C. The thermal sensitivities of the BSM-E mixtures were analyzed. BSM-E mixture stiffness modulus levels at various temperatures were determined using a statistical approach. On the basis of the results obtained, a discussion on the mechanistic-empirical design of flexible pavements with BSM-E base layers is presented. The potential benefits of using BSM-E materials in road construction in certain aspects of pavement life are indicated.

Original languageEnglish
Article number5473
Pages (from-to)1-16
Number of pages16
JournalMaterials
Volume13
Issue number23
DOIs
Publication statusPublished - 1 Dec 2020

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 12 - Responsible Consumption and Production
    SDG 12 Responsible Consumption and Production

Keywords

  • Bitumen emulsion
  • Bitumen-stabilized materials
  • Cold recycling mixtures
  • ITSM
  • Mechanistic-empirical pavement design

ASJC Scopus subject areas

  • General Materials Science
  • Condensed Matter Physics

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