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Effect of temperature on the mechanical response of thermo-viscoelastic asphalt pavements

机译:温度对热粘弹性沥青路面力学响应的影响

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摘要

Roadways are key structures for the living and development of society since they are responsible for a large portion of the transportation of goods and people. Moreover, according to the Asphalt Pavement Alliance, 94% of the highway system in America is paved with asphalt materials, especially due to its low lifetime cost. In many countries, the roadway system happens to be in bad conditions caused not only by the traffic loads but also by environmental conditions. In the case of asphalt pavements, temperature changes not only cause the material to expand/contract but also changes the material viscoelastic properties of asphalt mixtures. Unfortunately, most practitioners currently do not take into account either of these phenomena in the design of pavement structures. In the present manuscript thermo-mechanical numerical simulations are performed in an attempt to understand the combined effect of temperature variations and mechanical loading on the mechanical response of viscoelastic asphalt pavements. The results emphasize the importance of considering temperature variations and thermo-viscoelasticity in the design of asphalt pavements.
机译:巷道是社会生活和发展的关键结构,因为它们负责大部分货物和人员的运输。此外,根据沥青路面联盟的说法,美国94%的公路系统都用沥青材料铺成,特别是由于其使用寿命成本低。在许多国家,道路系统恰好处于不良状态,这不仅是由交通负荷引起的,而且还由环境条件引起的。在沥青路面的情况下,温度变化不仅会导致材料膨胀/​​收缩,还会改变沥青混合物的材料粘弹性。不幸的是,目前大多数从业者在路面结构设计中都没有考虑到这两种现象。在本手稿中,进行热力学数值模拟是为了了解温度变化和机械载荷对粘弹性沥青路面机械响应的综合影响。结果强调了在沥青路面设计中考虑温度变化和热粘弹性的重要性。

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