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Stress Distributions and Pullout Responses of Extensible and Inextensible Reinforcement in Soil Using Different Normal Loading Methods

机译:不同正常装载方法的土壤中可伸长且不易介质加固的应力分布和拔出响应

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摘要

In design of reinforced soil structures, pullout capacity of reinforcement in an anchorage zone is an important parameter for stability analysis. This parameter is generally quantified by conducting laboratory or field pullout tests. In the laboratory pullout test, the reinforcement is embedded in the soil mass at a normal stress, which is commonly applied by a pressurized airbag or a hydraulic jack through a rigid plate, and then a horizontal tensile force is applied to the reinforcement. This article reports an experimental study conducted to evaluate the effect of the load application method using an airbag with and without stiff wooden plates on the vertical stress distribution and the pullout capacities and deformations of extensible (geogrid) and inextensible reinforcement (steel strip) in the soil in a large pullout box. This study monitored the distributions of the vertical earth pressures at the top and bottom of the soil mass in the pullout box, and at the level of reinforcement using earth pressure cells. The measured earth pressures show that the airbag with stiff plates resulted in a nonuniform pressure distribution, whereas the tests with an airbag directly on the soil had an approximately uniform pressure distribution. The nonuniform pressure distribution resulting from the airbag with stiff plates reduced the pullout resistance of the reinforcement as compared with that using the same airbag without stiff plates. The nonuniform pressure distribution effect was more significant for narrow inextensible reinforcements than wide extensile reinforcements. The test results also show that the displacements in the cross section of the same transverse bar were not equal when the normal load was applied through stiff plates.
机译:在钢筋结构设计方面,锚固区中加固产能是稳定性分析的重要参数。该参数通常通过进行实验室或现场拔出测试来量化。在实验室拉出试验中,加强件在正常应力下嵌入土壤质量中,其通常通过刚性板通过加压气囊或液压插孔施加,然后将水平拉力施加到加强件。本文报告了一个实验研究,以评估负载应用方法使用气囊的效果,在垂直应力分布上使用和没有僵硬的木板,以及可伸缩(土工格栅)和不可伸展的加强(钢带)的拔出能力和变形一个大型拔出箱中的土壤。该研究监测了拔出箱中土壤质量的顶部和底部的垂直土压力的分布,并使用土压力电池的加固水平。测量的地球压力表明,具有刚性板的气囊导致不均匀的压力分布,而直接在土壤上的安全气囊的测试具有近似均匀的压力分布。与使用相同的气囊没有僵硬板的相比,由气囊产生的不均匀压力分布降低了增强件的拉伸电阻。非均匀的压力分布效果比广泛的扩展增强率窄不可互化的增强效果更为显着。测试结果还表明,当通过刚性板施加正常负载时,相同横杆的横截面的位移不等于。

著录项

  • 来源
    《Geotechnical testing journal》 |2019年第6期|1-18|共18页
  • 作者单位

    Department of Civil Environmental and Architectural Engineering The University of Kansas 1530 W. 15th St. Lawrence KS 66045 USA;

    Department of Civil Environmental and Architectural Engineering The University of Kansas 2150 Learned Hall 1530 W. 15th St. Lawrence KS 66045 USA;

    Department of Civil Environmental and Architectural Engineering The University of Kansas 1530 W. 15th St. Lawrence KS 66045 USA Department of Civil Engineering Soran University Kawa St. Soran 44008 Iraq;

    Maccaferri Inc. 9210 Corporate Blvd. No. 220 Rockville MD 20850 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

    displacement; geogrid; normal stress; pullout; steel strip;

    机译:移位;地质格栅;压力正常;拉出;钢带;

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