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May 20, 2026Materials0 citationsOpen Access

Multi-Parameter Collaborative Optimization of Foamed Asphalt Cold Recycling Mixture Properties

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WQWei QiuBLBin LiZSZiyi Song

Key Points

  • This research aims to evaluate the foaming characteristics of asphalt and their impact on cold recycled mixture performance.
  • Analyzed asphalt types, foaming temperature, and water content affecting foaming characteristics.
  • Evaluated mechanical properties and water stability by varying asphalt content, gradation, cement content, and curing time.
  • Conducted tests to measure expansion ratio and half-life for different asphalt and mixture conditions.
  • CNOOA asphalt achieved optimal foaming at 160 °C with 2% water, expansion ratio of 27, half-life over 30 s.
  • Dry and wet indirect tensile strengths improved by 91.18% and 205.56% after 3-day curing, respectively.
  • Optimal mixing water ranges are 60–90% for gradation A and 70–80% for gradation B.

Abstract

This study examined the foaming characteristics of asphalt and their effects on the performance of cold recycled mixtures. The expansion ratio and half-life were used to evaluate effects of asphalt type, foaming temperature, and water content. The influence of asphalt content, gradation, cement content, curing time, and mixing water on mechanical properties and water stability was analyzed. The results indicate that asphalt type is the key factor affecting foaming performance. CNOOA asphalt showed optimal foaming at 160 °C with 2% water, achieving an expansion ratio of 27 and a half-life over 30 s. Optimal asphalt contents for gradations A and B are 3.5% and 2.5%, respectively. A 1.5% cement content provides the best performance balance. Dry and wet indirect tensile strengths increased by 91.18% and 205.56% after 3-day curing. The optimal mixing water ranges are 60–90% and 70–80% of optimum moisture content for gradations A and B. Curing time has the most significant influence on performance, followed by cement and asphalt content. This study provides a theoretical basis for optimizing foamed asphalt cold recycling.

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Cite This Study

Qiu et al. (2026) studied this question.

synapsesocial.com/papers/6a0d4fd2f03e14405aa9b41chttps://doi.org/10.3390/ma19102123
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