题名: |
Asphalt Mixtures and Materials, 2015: Volume 3. Transportation Research Record: Journal of the Transportation Research Board, No. 2507 |
作者: |
empty |
关键词: |
Asphalts##Tire recycling##Recycled materials##Rubberized asphalt##Highway construction##Waste utilization##Asphalt pavements##Hot mix paving mixtures##Elastomers##Construction materials##Roofing##Fatigue##Numerical simulations##Nanomechanical##Development##Overlay test##Rutting Evaluation##Virgin Aggregate## |
摘要: |
Transportation Research Record: Journal of the Transportation Research Board, No. 2507, explores 14 papers related to asphalt mixtures and materials, including: Dynamic Modulus Prediction of Asphalt Concrete Mixtures Through Computational Micromechanics. Understanding Sources of Variability of Overlay Test Procedure. Prediction of Field Aging Gradient in Asphalt Pavements. Investigating Reflective Cracking Mechanisms in Grid-Reinforced Asphalt Specimens: Use of Four-Point Bending Notched Beam Fatigue Tests and Digital Image Correlation. Measurement of G* in Fine Asphalt Mixes: Dynamic Mechanical Analyzer Shear Test Implementation. Prediction of Fatigue Failure at Asphalt Concrete Layer Interface from Monotonic Testing. Characterizing Cracking of Asphalt Mixtures with Fiber Reinforcement: Use of Cyclic Fatigue and Direct Tension Strength Tests. Dynamic Modulus of Asphalt Mixtures: Evaluation of Effects on Pavement Performance Prediction. Laboratory-Measured Dynamic Modulus and Predicted Performance of Asphalt Mixtures: Effects of Specimen Orientation. Probabilistic Modeling of Dynamic Modulus Master Curves for Hot-Mix Asphalt Mixtures. Flow Number Test and Assessment of AASHTO TP 79-13 Rutting Criteria: Comparison of Rutting Performance of Hot-Mix and Warm-Mix Asphalt Mixtures. Use of Mechanistic Models to Investigate Fatigue. Performance of Asphalt Mixtures: Effects of Asphalt Mix Design Targets and Compaction. Testing and Modeling of Fine Aggregate Matrix and Its Relationship to Asphalt Concrete Mix. Top-Down Fatigue Cracking in High-Temperature Environments. |
总页数: |
150 |
报告类型: |
科技报告 |