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Mechanisms of Asphalt Blistering on Concrete Bridges

机译:沥青起泡对混凝土桥梁的机制

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Blistering is a major problem in asphalt-covered concrete structures, such as multi-storage parking buildings, built-up roofs, tunnels, pedestrian areas, or concrete bridge decks. In this particular research, a linear viscoelastic finite-element model is developed to simulate time-dependent blister growth in an asphalt layer under uniformly applied pressure with and without temperature and pressure fluctuation. Indirect tensile tests on mastic asphalt (MA) are performed at three different temperatures to characterize and determine the material properties for the model. A three-dimensional thick-plate axisymmetric finite-element model is developed using ABAQUS with linear viscoelastic properties and validated with closed-form solution from first-order shear-deformation theory for thick plates. Elastic-viscoelastic analogy is used to find an analytic solution for the time-dependent deflection of the blister. In addition, the blister test is conducted on different samples of MA in the laboratory and digital image correlation measurement technique is used to capture the three-dimensional vertical deflection of the MA with time. Finally, the results from image correlation are compared with the finite-ele-ment simulation and thick-plate theory analytic solution. The finite-element model simulation shows that the daily temperature variations may have a significant influence on blister growth in asphalt pavements. It is found that the blister can grow continuously under repeated loading conditions over subsequent days. The study concludes that temperature fluctuation in the blister has more influence on blister growth than fluctuation of the pressure inside the blister.
机译:起泡是沥青覆盖的混凝土结构中的一个主要问题,如多储物停车建筑,内置屋顶,隧道,行人区域或混凝土桥甲板。在该特定的研究中,开发了线性粘弹性有限元模型以在均匀施加的压力下模拟沥青层中的时间依赖的泡罩生长,并且没有温度和压力波动。在乳香沥青(MA)上的间接拉伸试验在三种不同的温度下进行,以表征和确定模型的材料特性。三维厚板轴轴对称有限元模型采用ABAQUS开发,具有线性粘弹性的性能,并用厚度剪切变形理论的闭合溶液验证。弹性粘弹性类比用于找到用于泡罩的时间依赖性偏转的分析解决方案。此外,在实验室和数字图像相关测量技术中,在MA的不同样品上进行了泡罩测试,用于捕获MA随时间的三维垂直偏转。最后,将图像相关的结果与有限元模拟和厚板理论分析解决方案进行了比较。有限元模型模拟表明,日常温度变化可能对沥青路面的泡罩生长产生显着影响。发现泡罩可以在随后的几天内在重复的负载条件下连续生长。该研究得出结论,泡罩中的温度波动对泡罩生长的影响比泡罩内部的压力波动更多。

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