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Evaluation of Long-Term Performance for Bonded Natural Stone Pavement Using Accelerated Pavement Test Part Ⅱ: Skid Resistance, Response of Deflection and FEM Analysis

机译:使用加速路面试验评估粘结天然石材路面长期性能第Ⅱ部分:平移,偏转响应和有限元分析的抗性,致敏性

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摘要

Natural stone-paved roads have been generally used to preserve historical regions due to its architectural aesthetic aspect and environmental impact. However, there are limitations of travelling speed and traffic volume owing to the defects caused by the increased traffic loading and volume. To deal with these hindrances, ultra-rapid-hardening cement for both jointing and laying course materials in rigid small element pavement was considered. The objective of the present study was to continuously evaluate and compare the long-term performance of the suggested bound stone pavement throughout the various test criteria such as skid resistance and Falling Weight Deflectometer tests. The skid resistance outcome was met to the requirement and the response of deflection was measured following by related test method. To compare rut depth, the Finite Element Method (FEM) analysis was performed by modelling with material properties and by creating the loading cycle for imitating the Accelerated Pavement Testing (APT). The maximum deflections of asphalt, concrete block, stone A and stone B were calculated to 17.7, 6.1, 6.3, and 3.6 mm, respectively. Compared to the final outcomes of APT and FEM analysis, there was a difference ranging from 2.1 to 2.3 mm in bound stone pavement B and A, respectively.
机译:由于其建筑审美方面和环境影响,天然石材铺设的道路通常用于保护历史地区。然而,由于由于流量负载和体积增加,由于缺陷,旅行速度和交通量存在局限性。为了处理这些障碍,考虑了刚性小元素路面中的连接和铺设课程材料的超快速硬化水泥。本研究的目的是连续评估并比较在整个各种测试标准中所建议的结束石路面的长期性能,例如滑动抗性和重量偏转仪测试。通过相关试验方法满足了对抗抗抵抗结果的要求,并通过相关测试方法测量偏转的响应。为了比较Rut深度,通过用材料特性建模并通过创建用于模仿加速路面测试(APT)的装载循环来进行有限元方法(FEM)分析。沥青,混凝土块,石A和石B的最大偏转分别计算为17.7,6.1,6.3和3.6 mm。与APT和FEM分析的最终结果相比,在结合的石头路面B和A中分别为2.1至2.3毫米的差异。

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