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Flexible Pavement Mixture Design Using Reclaimed Asphalt Concrete
Statistical sampling plans were developed for obtaining samples of reclaimed asphalt concrete from the roadway prior to recycling, from trucks transporting processed reclaimed asphalt concrete, and from stockpiles of materials to be used for hot-mix recycling. The plans were tested on five recycling projects. Physical and chemical tests were run on aged asphalts, salvaged binder from reclaimed asphalt concrete, recycling agents, and blends of the materials. Detailed test procedures were developed for determining the effects of water and freeze-thaw on the indirect tensile strength of recycled asphalt mixtures. Detailed procedures were developed for designing hot-mix recycled paving using Marshall and Hveem test apparatus. Tentative mix design criteria are proposed based on studies of the mix design procedures using materials from five recycling projects and from tests on cores from these projects.
Flexible Pavement Mixture Design Using Reclaimed Asphalt Concrete
Statistical sampling plans were developed for obtaining samples of reclaimed asphalt concrete from the roadway prior to recycling, from trucks transporting processed reclaimed asphalt concrete, and from stockpiles of materials to be used for hot-mix recycling. The plans were tested on five recycling projects. Physical and chemical tests were run on aged asphalts, salvaged binder from reclaimed asphalt concrete, recycling agents, and blends of the materials. Detailed test procedures were developed for determining the effects of water and freeze-thaw on the indirect tensile strength of recycled asphalt mixtures. Detailed procedures were developed for designing hot-mix recycled paving using Marshall and Hveem test apparatus. Tentative mix design criteria are proposed based on studies of the mix design procedures using materials from five recycling projects and from tests on cores from these projects.
Flexible Pavement Mixture Design Using Reclaimed Asphalt Concrete
B. F. Kallas (author)
1984
196 pages
Report
No indication
English
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