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Performance of geosynthetic reinforced/stabilized paved roads built over soft soil under cyclic plate loads

机译:周期性板荷载作用下软土上土工增强/稳定铺装路的性能

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摘要

The benefits of using geosynthetics to enhance the performance of pavement constructed over soft subgrade was evaluated using cyclic plate load testing. A total of six test sections, with varying types and layers of geosynthetics and base thicknesses, were constructed inside a 2 m x 2 m x 1.7 m test box. A cyclic load at a frequency of 0.77 Hz was applied through a 305 mm-diameter steel plate. The test sections were instrumented by a variety of sensors to measure the load-associated pavement response and performance. The test results clearly showed the benefits of geosynthetics in significantly reducing the pavement rutting. The test section with double geosynthetics layers performs much better than all other sections studied in this paper. Geosynthetics placed at the base subgrade interface function more as weak subgrade stabilization than as base layer reinforcement in this study. Finally, the benefits of geosynthetic reinforcement was quantified, within the context of the AASHTOWare Pavement ME Design guide, in terms of increasing the resilient modulus of base course layer and/or reducing the thickness of base aggregate layer in pavement structure. The results of analysis show that for geosynthetics functioning as base reinforcement alone, the value of resilient modulus of the base course layer can be increased by about one quarter and that the thickness of base layer can be reduced by about one third for the pavement sections, with 457 mm thick base and single layer of geosynthetic placed at the base subgrade interface, tested in this study. For geosynthetics functioning as subgrade stabilization alone, the test results showed that the resilient modulus of subgrade can be almost doubled. (C) 2016 Elsevier Ltd. All rights reserved.
机译:使用循环板荷载试验评估了使用土工合成材料来增强软基上构造的路面性能的好处。在一个2 m x 2 m x 1.7 m的测试箱内,总共构造了六个测试部分,具有不同类型和不同层的土工合成材料以及基础厚度。通过直径为305毫米的钢板施加频率为0.77 Hz的循环载荷。测试部分由各种传感器检测,以测量与荷载相关的路面响应和性能。测试结果清楚地表明了土工合成材料在显着减少路面车辙方面的优势。具有双重土工合成材料层的测试部分的性能要比本文研究的所有其他部分都要好得多。在这项研究中,位于基层路基界面处的土工合成材料的作用更弱于基层的稳定,而不是基层加固。最后,在AASHTOWare路面ME设计指南的背景下,量化了土工合成材料加固的好处,即增加了基础层的弹性模量和/或减小了路面结构中基础集料层的厚度。分析结果表明,对于仅用作基础增强材料的土工合成材料,路面层的弹性模量值可以增加大约四分之一,并且路面层的基础层厚度可以减少大约三分之一,在这项研究中进行了测试,其底部厚度为457毫米,并且在基础路基界面处放置了一层土工合成材料。对于仅用作路基稳定作用的土工合成材料,测试结果表明路基的弹性模量几乎可以提高一倍。 (C)2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Geotextiles and Geomembranes》 |2016年第6期|845-853|共9页
  • 作者单位

    Louisiana State Univ, Louisiana Transportat Res Ctr, 4101 Gourrier Ave, Baton Rouge, LA 70808 USA;

    Louisiana State Univ, Louisiana Transportat Res Ctr, 4101 Gourrier Ave, Baton Rouge, LA 70808 USA;

    Louisiana State Univ, Louisiana Transportat Res Ctr, 4101 Gourrier Ave, Baton Rouge, LA 70808 USA;

    Louisiana State Univ, Louisiana Transportat Res Ctr, 4101 Gourrier Ave, Baton Rouge, LA 70808 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Geosynthetics; Flexible pavement; Cyclic plate load tests; Traffic benefit ratio; Weak subgrade;

    机译:土工合成材料;柔性路面;循环板载荷试验;交通效益比;路基薄弱;
  • 入库时间 2022-08-18 00:12:32

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