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Evaluating the Tensile Properties of Geogrids Using the Particle Image Velocimetry Technique

机译:使用粒子图像速度技术评估土工格栅的拉伸性能

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摘要

This study investigates the use of the particle image velocimetry (PIV) technique and GeoPIV-RG software to track the localized axial and lateral strain development of composite geogrid specimens in a wide-width tensile test and to evaluate the load-strain response of the composite geogrid material. The effects of strain rate on the mechanical properties of composite geogrid specimens in both the machine direction (MD) and cross-machine direction (CMD) under tension were also investigated by performing tests under three different strain rates. The aperture at the center of the test specimen was suggested as the optimum location of the geogrid specimens to accurately measure strain development. The wide-width tensile test results revealed that the stiffness of the tested composite geogrid was independent of the strain rate and was comparatively higher than the manufacturer specified values. Therefore, these test results confirm that the crosshead method underestimates the tensile properties of geosynthetics in the wide-width tensile test. The findings suggest that cost-effective geotechnical structures can be designed adopting the tensile properties obtained from the GeoPIV-RG technique instead of the crosshead method.
机译:本研究研究了粒子图像速度(PIV)技术和Geopiv-RG软件的使用,以跟踪宽宽拉伸试验中复合地理丛标本的局部轴向和横向应变发育,并评估复合材料的负荷 - 应变响应地质格栅材料。还通过在三种不同的应变率下进行测试,研究了在机械方向(MD)和横机方向(CMD)中复合地质格栅样本的力学性能对张力的影响。测试样本中心的孔表明是土工格栅标本的最佳位置,以准确测量应变发育。宽宽度拉伸试验结果显示,测试的复合地质格栅的刚度与应变率无关,比制造商特定值相对较高。因此,这些测试结果证实十字头方法在宽宽度拉伸试验中低估了地质合成的拉伸性能。研究结果表明,经济高效的地际结构可以设计采用从Geopiv-RG技术而不是十字头方法获得的拉伸性质。

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  • 来源
    《Journal of materials in civil engineering》 |2021年第11期|04021328.1-04021328.11|共11页
  • 作者单位

    School of Civil and Environmental Engineering Queensland Univ. of Technology 2 George St. Brisbane City QLD 4000 Australia;

    School of Civil and Environmental Engineering Queensland Univ. of Technology 2 George St. Brisbane City QLD 4000 Australia;

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  • 正文语种 eng
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