Development and Validation of a Balanced Mix Design Approach for CIR Mixtures Using Full-Scale Testing

Abstract

The main goal of this study was to improve the performance of cold in-place recycling (CIR) mixtures by using a balanced mix design (BMD) approach. This study involved preparing and testing CIR mixtures in the lab at varying contents of bituminous additives and constant content of 1 ce-ment and 3 water. Eight combinations of CIR mixtures were produced for this study using two binders (emulsion and foamed asphalt), compaction efforts (30 and 70 gyrations), and curing processes (72 hours at 140F and 50F). Results showed that asphalt pavement analyzer, semicircular bend, and indirect tensile strength tests presented the highest correlation with the change of binder contents. The study successfully used the developed BMD for designing CIR mixtures and selecting their optimum binder contents. It then used three balanced CIR mixtures to construct full-scale pavement sections to validate the BMD approach in the field. A heavy vehicle simulator was used to apply different accelerated loadings on each section. Results showed that the CIR section with 2 binder presented the best rutting performance under truck loading and the highest rutting susceptibility under aircraft loading. Conversely, the CIR section with 3 binder presented the highest cracking resistance under both truck and aircraft loading.

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Document Details

Document Type
Technical Report
Publication Date
Oct 06, 2022
Accession Number
AD1181900

Entities

People

  • Ahmed Saidi
  • Ayman Ali
  • Benjamin C. Cox
  • Christopher DeCarlo
  • Mohamed H. Elshaer
  • Wade A. Lein
  • Yusef Mehta

Organizations

  • Engineer Research and Development Center

Tags

Communities of Interest

  • Air Platforms
  • Engineered Resilient Systems

DTIC Thesaurus Topics

  • Accelerated Testing
  • Aircrafts
  • Army Corps Of Engineers
  • Best Practices
  • Civil Engineering
  • Construction
  • Construction Materials
  • Education
  • Engineering
  • Engineers
  • Materials
  • Measurement
  • Mechanical Properties
  • Mechanics
  • Performance Tests
  • Regression Analysis
  • Resistance
  • Statistical Analysis
  • Strain Gages
  • Tensile Strength
  • Test And Evaluation
  • Test Methods
  • Transportation Engineering

Fields of Study

  • Engineering

Readers

  • Immunology
  • Internal Combustion Engine (ICE) Technology.
  • Surface Coatings Technology.