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Analysis on Three-Dimensional Strength Influencing Factors and Control Measures of Asphalt Mixtures

机译:沥青混合料三维强度影响因素分析及控制措施

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摘要

Strength is an important parameter for the design of asphalt pavement materials and structures. To study the influence of various factors on the three-dimensional strength of asphalt mixtures, three aggregate gradations (dense-graded bituminous mixture AC-13, stone mastic asphalt SMA-13 and bituminous stabilization aggregate paving mixture OGFC-13) and two binders (SBS modified bitumen and 70# base bitumen) were used to prepare the asphalt mixture specimens. Among them, SBS+SMA-13 asphalt mixture has the best performance. On this basis, the uniaxial compressive test, uniaxial tensile test and confining triaxial test were conducted on the SBS+SMA-13 asphalt mixture under six oil-stone ratios conditions (5.5%, 5.7%, 5.9%, 6.1%, 6.3%, and 6.5%), six temperatures conditions (5 °C, 10 °C, 15 °C, 20 °C, 25 °C, and 30 °C), and five loading rates conditions (1 mm/min, 2 mm/min, 3 mm/min, 4 mm/min, and 5 mm/min). In addition, a unified three-dimensional strength calculation model considering the influence of temperature, loading rate, and oil-stone ratio was proposed, and the change law of the three-dimensional strength with these above factors was revealed. Furthermore, two sets of three-factor three-level orthogonal tests were carried out on the SMA-13 asphalt mixture. The sensitivity analysis and strength regulation research between three-dimensional strength and each factor were carried out. The results show that the type of asphalt has the greatest influence on the strength of the mixture, the temperature has the second most influence, the loading rate has less influence, and the oil-stone ratio has the least influence. The strength regulations proposed to improve the strength of the asphalt mixture include the use of modified asphalt, high-temperature stability high-quality asphalt, and the lower oil-stone ratio than the Marshall optimal oil-stone ratio. The strength control measures proposed from the perspective of the three-dimensional stress state, the joint failure of each stress components and real stress states are taken into consideration.
机译:强度是设计沥青路面材料和结构的重要参数。为了研究各种因素对沥青混合料三维强度的影响,使用了三种粘结剂(三种级配)(密实级沥青混合物AC-13,石乳香沥青SMA-13和沥青稳定型骨料铺路混合物OGFC-13)。用SBS改性沥青和70#基础沥青制备沥青混合料标本。其中,SBS + SMA-13沥青混合料具有最佳性能。在此基础上,对SBS + SMA-13沥青混合料在六种油石比条件下(5.5%,5.7%,5.9%,6.1%,6.3%,和6.5%),六个温度条件(5°C,10°C,15°C,20°C,25°C和30°C)和五个负载率条件(1 mm / min,2 mm / min ,3毫米/分钟,4毫米/分钟和5毫米/分钟)。此外,提出了考虑温度,加载速率和油石比影响的统一三维强度计算模型,并揭示了上述因素对三维强度变化规律的影响。此外,对SMA-13沥青混合料进行了两组三因素三级正交试验。进行了三维强度与各因素之间的敏感性分析和强度调节研究。结果表明,沥青种类对混合料强度的影响最大,温度影响次之,装填速率影响较小,油石比影响最小。为提高沥青混合料的强度而提出的强度规定包括:使用改性沥青,高温稳定性高品质的沥青以及比马歇尔最佳油石比低的油石比。从三维应力状态,各应力分量的联合破坏和实际应力状态的角度提出了强度控制措施。

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