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Experimental Study of the Bulge Deformation of Anti-Seepage Geomembranes over Non-Fine Concrete

机译:非精细混凝土抗渗土工膜膨胀变形的实验研究

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This study investigates the bulge deformation mechanics of geomembranes that are interacting with non-fine concrete cushions. We conducted 3D scanning of non-fine concrete specimens and further analyzed the depth-to-width ratios for non-fine concrete specimen surfaces. Then, stress distribution characteristics between the geomembrane and the non-fine concrete contact surface under diverse normal pressures were measured using a thin-film pressure transducer. It was observed that the contact surface between the geomembrane and the non-fine concrete expanded when the normal pressure increased, and the stress growth rate decreased as the area of the high-stress regions increased. Combining the relationship that was formed by the sags of the non-fine concrete surface soil with the stress distribution on the contact surface, the maximum bulge depth and the highest strain were determined following the formation of geomembrane bulge under various normal pressures. Moreover, ultrahigh strain, but not fracture, developed on the geomembrane during the experiment. Based on air bulking tests, it was demonstrated that the geomembrane had enormously high yield strength, which plays a critical role in the improvement of both the safety and the reliability of geomembranes that are mounted on non-fine concrete cushions.
机译:本研究研究了与非细垫相互作用的土工膜的凸起变形力学。我们进行了非细混凝土试样的3D扫描,并进一步分析了非细混凝土样本表面的深度到宽度比。然后,使用薄膜压力换能器测量土工膜和非细混凝土接触表面之间的应力分布特性。观察到在常压增加时,土工膜和非细混凝土之间的接触表面膨胀,并且由于高应力区域的面积增加,应力生长速率降低。在各种正常压力下形成土工膜凸起后,确定由接触表面上的应力分布形成的非细混凝土表面土壤的落下形成的关系,在形成土工膜凸起后测定。此外,在实验期间在土工膜上开发的超高菌株但不裂缝。基于空气膨胀试验,表明土工膜具有极大的屈服强度,这在改善了安装在非细固混凝土垫上的土工膜的安全性和可靠性方面发挥着关键作用。

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