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The influence of a cyclic loading history on soil-geogrid interaction under pullout condition

机译:拔出条件下循环荷载历史对土-土相互作用的影响

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The knowledge of soil-geosynthetic interface behaviour is a key point in the design of geosynthetic-reinforced soil structures. The pullout ultimate limit state can be reproduced conveniently by means of pullout tests performed with large-size laboratory apparatuses, which allow studying the interaction mechanisms that develop in the anchorage zone. During the service life of geosynthetic-reinforced soil structures, reinforcements may be subjected to long-term cyclic vehicular loads or short-term seismic loads in addition to dead loadings, such as the structure's self-weight and other sustained loads. In order to study the influence of a cyclic loading history (a sinusoidal function with fixed amplitude A, number of cycles N and frequency f) on the post-cyclic peak pullout resistance, the writers carried out a series of multi-stage pullout tests on a high density polyethylene extruded uniaxial geogrid embedded in a compacted granular soil for different vertical effective stress sigma'(v) values. Moreover, the stability of the soil-geosynthetic interface from a point of view linked to the cyclic loading application has also been investigated. Test results showed that the design pullout resistance parameters are affected by the applied cyclic loading history for specific combined conditions (A, N and sigma'(v)) and it should be taken into account for designing geosynthetic reinforced soil structures.
机译:土壤-土工合成材料界面行为的知识是土工合成材料加筋土壤结构设计的关键。通过使用大型实验室设备进行的拉拔测试,可以方便地再现拉拔极限极限状态,从而可以研究在锚固区中发展的相互作用机理。在土工合成材料加筋的土壤结构的使用寿命中,除了静载荷(例如结构的自重和其他持续载荷)之外,钢筋还可能承受长期的周期性车辆载荷或短期地震载荷。为了研究循环加载历史(具有固定振幅A,周期数N和频率f的正弦函数)对循环后峰值抗拔力的影响,作者对电阻进行了一系列的多阶段抗拔测试。高密度聚乙烯挤制的单轴土工格栅,嵌入不同的垂直有效应力σ'(v)值的压实颗粒状土壤中。此外,还从循环荷载作用的角度研究了土壤-土工合成材料界面的稳定性。试验结果表明,对于特定的组合条件(A,N和σ'(v)),设计抗拔力参数受所施加的循环荷载历史的影响,在设计土工合成加筋土结构时应将其考虑在内。

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