首页> 外文会议>Geosynthetics in Civil and Environmental Engineering >BEARING CAPACITY IMPROVEMENT OF ASPHALT PAVED ROAD CONSTRUCTIONS DUE TO THE USE OF GEOCELLS—FALLING WEIGHT DEFLECTOMETER AND VERTICAL STRESS MEASURESMENTS
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BEARING CAPACITY IMPROVEMENT OF ASPHALT PAVED ROAD CONSTRUCTIONS DUE TO THE USE OF GEOCELLS—FALLING WEIGHT DEFLECTOMETER AND VERTICAL STRESS MEASURESMENTS

机译:由于使用土工塑料,沥青路面施工的承载力提高—重量折减仪和竖向应力测量

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To evaluate the influence of a geocell layer on the load-deformation behavior of the soil large scale static load tests were carried out. Geocells with different aspect ratios made of different materials filled with sand had been tested. To simulate soft subgrade material an artificial mixed soil called "Glyben" was used. The test results showed that a geocell layer increased the bearing capacity of the infill materials and reduced the vertical stresses on the subgrade about 30 percent compared to an unreinforced soil. To verify the results of model tests, geocell reinforced,unreinforced and also hydraulic bounded base (HBB) in-situ test fields were carried out within different asphalt paved road constructions. After finishing the road construction vehicle crossing tests with a 40-tons truck and falling weight deflectometer measurements were carded out while the vertical stresses on the subgrade were measured by earth pressure cells. Compared to an unreinforced test section the stresses beneath the geocell layer were reduced by about 30 percent. Falling weight deflectometer measurements showed that the deflections measured in geocell reinforced test section were significantly smaller than in the unreinforced section. Back calculated layer modules were significantly higher in the geocell reinforced section compared to an unreinforced section.
机译:为了评估土工格层对土壤载荷-变形行为的影响,进行了大规模的静载荷试验。测试了由不同材料填充沙子制成的纵横比不同的土工格室。为了模拟软质路基材料,使用了一种称为“ Glyben”的人工混合土壤。测试结果表明,与未加筋的土壤相比,土工格层提高了填充材料的承载力,并使路基上的垂直应力降低了约30%。为了验证模型测试的结果,在不同的沥青铺装道路施工中进行了土工格栅加筋,非加筋以及水硬性基层(HBB)现场测试。用40吨的卡车完成道路施工车辆的横穿测试后,用重量偏折仪进行测量,然后用土压力传感器测量路基上的垂直应力。与未增强的测试部分相比,土工格室层下面的应力降低了约30%。落锤挠度计的测量结果表明,在土工格室加固测试段中测得的变形显着小于未加固段。与未加固部分相比,土工格室加固部分的后计算层模块明显更高。

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