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New Damage Evolution Law for Steel–Asphalt Concrete Composite Pavement Considering Wheel Load and Temperature Variation

机译:考虑轮载和温度变化的钢-沥青混凝土复合路面破坏演化新规律

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摘要

Epoxy asphalt (EA) concrete is widely used in constructing long-span steel bridge pavements (SBDPs). This study aims to derive a fatigue damage evolution law, conducting an experimental investigation of SBDP. First, a general theoretical form of the fatigue damage evolution law of materials is established based on the thermal motion of atoms. Then, fatigue experiments demonstrate that this evolution law well represents the known damage–life relationships of SBDP. Taking into account the experimental relationships between damage and fatigue life under symmetrical cyclic loadings with different overload amplitudes and temperature variations, a detailed damage evolution law is deduced. Finally, the role of damage accumulation is discussed on the basis of the proposed damage evolution law for the extreme situation of heavy overload and severe environments. The results show that both heavy loading and falling temperatures increase the fatigue damage of SBDP considerably. EA shows a fatigue life two to three times longer than that of modified matrix asphalt (SMA) or guss asphalt (GA). For the same thickness, EA pavement is demonstrated to be more suitable for an anti-fatigue design of large-span SBDP under high traffic flows and low temperatures.
机译:环氧沥青(EA)混凝土被广泛用于建设大跨度钢桥路面(SBDP)。这项研究旨在得出疲劳损伤演变规律,对SBDP进行实验研究。首先,基于原子的热运动,建立了材料疲劳损伤演化规律的一般理论形式。然后,疲劳实验表明,这种演化规律很好地代表了SBDP的已知损伤与寿命关系。考虑到在具有不同过载幅度和温度变化的对称循环载荷下损伤与疲劳寿命之间的实验关系,推导了详细的损伤演化规律。最后,在提出的损伤演化规律的基础上,针对重载和恶劣环境的极端情况,讨论了损伤累积的作用。结果表明,重载和温度下降都会大大增加SBDP的疲劳损伤。 EA的疲劳寿命比改性基质沥青(SMA)或古斯沥青(GA)的疲劳寿命长两到三倍。对于相同的厚度,已证明EA路面更适合在大流量和低温下大跨度SBDP的抗疲劳设计。

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