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Reflective Crack Propagation and Control in Asphalt Pavement Widening

机译:沥青路面加宽过程中反射裂缝的传播与控制

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摘要

To investigate the reflective crack-propagation behavior and provide control techniques for asphalt pavements widening, the finite-element models were built to simulate the widened asphalt pavement with a latent joint. The developed finite-element model considered the influence factors, including the loading modes (i.e., the symmetrical and unsymmetrical loading modes), the thickness and modulus of the asphalt concrete surface, the modulus of the new and existing stabilized bases, and the sheet stiffness of the reinforced geosynthetic. The finite-element simulation results show that increasing the thickness or reducing the modulus of the asphalt concrete surface effectively delays the propagation speed of the reflective cracks. The cracking potential reaches the minimum when the new and existing bases have a uniform modulus. Additionally, geosynthetic reinforcement across the joints significantly reduces the stress concentration around the crack tip and slows down the propagation of the reflective cracks. These benefits become greater when increasing the sheet stiffness of the geosynthetic. Finally, an experimental study was conducted to investigate the influence of the types of the asphalt overlay and the geosynthetic reinforcement on the reflective crack-propagation behavior. The experimental results indicate that the geosynthetic-reinforced structure with a lower modulus of the asphalt concrete surface significantly increases the fatigue life of widened pavements, and the polypropylene geotextile performs better than the glass-fiber grid in terms of the extension of the fatigue life.
机译:为了研究反射裂缝的传播行为并为沥青路面加宽提供控制技术,建立了有限元模型来模拟具有潜缝的加宽沥青路面。所开发的有限元模型考虑了影响因素,包括加载模式(即对称和非对称加载模式),沥青混凝土表面的厚度和模量,新的和现有的稳定基础的模量以及板刚度增强的土工合成材料。有限元模拟结果表明,增加沥青混凝土表面的厚度或减小其模量有效地延迟了反射裂缝的传播速度。当新的和现有的基料具有均匀的模量时,裂化的可能性达到最小。此外,跨接缝的土工合成材料增强材料可显着降低裂纹尖端周围的应力集中,并减慢反射裂缝的传播。当增加土工合成材料的板刚度时,这些好处变得更大。最后,进行了一项实验研究,以研究沥青覆盖层类型和土工合成材料增强材料对反射裂纹扩展行为的影响。实验结果表明,沥青混凝土表面模量较低的土工增强结构显着提高了加宽路面的疲劳寿命,而聚丙烯土工布在延长疲劳寿命方面表现优于玻璃纤维网。

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