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A method for evaluating CRCP performance based on edge- loaded FWD test

机译:基于边缘加载的FWD测试评估CRCP性能的方法

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The backcalculated modulus of subgrade reaction (k-value), elastic modulus of concrete (E), and effective thickness (h_(eff)) given the deflection basin from the Falling Weight Deflectometer (FWD) testing has been extensively used in evaluating the response and performance of in situ concrete pavements. Traditional backcalculation assumption of an interior-loaded infinite slab can lead to large errors in backcalculated parameters for edge-loaded continuously reinforced concrete pavement (CRCP) because of the load position and closely-spaced transverse cracks. In this paper, the backcalculaion formulas for edge-loaded CRCP with various crack spacing was proposed based on 2-D finite element analysis. According to the backcalculated results, both positive and negative temperature differentials of less than 16 °F had limited impact. As expected, the larger the lateral offset of the plate, the greater the impact on backcalculated results given the minimum error in h_(eff) reaching 5.0% with a 4 in. lateral offset. In order to verify the proposed backcalculation method, a field CRCP test section with different base types and reinforcement ratio were evaluated. The impact of edge support provided by base layer was also shown to be significant, given the support of a 2 ft overwidth base showing the same impact of approximately 1 in. extra thick base.
机译:对来自下降重量偏转仪(FWD)测试的偏转盆(FWD)测试的偏转盆地的偏移量(k值),混凝土(e)的弹性模量和有效厚度(H_(eff))进行了广泛应用于评估响应与原位混凝土路面的表现。传统的后扫描内部装载的无限平板的假设可能导致边缘负载连续钢筋混凝土路面(CRCP)的后划分参数的大误差,因为负载位置和紧密间隔的横裂裂缝。本文采用基于2-D有限元分析,提出了具有各种裂纹间隔的边缘加载CRCP的反蔓径公式。根据后划分的结果,较小的16°F的正极温度差异有限。如所预期的,板的横向偏移量越大,对后划分结果的影响越大,因为H_(EFF)的最小误差达到5.0%,具有4英寸。横向偏移。为了验证所提出的后划分方法,评估了具有不同基础类型和增强率的现场CRCP测试部分。通过基层提供的边缘支撑件的冲击也显示为显着的,因为支撑了2英尺的覆盖底座,显示出相同的影响约为1英寸。超厚基座。

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