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Geotechnical Fuse Using a Soil-Fibre Composite

机译:使用土壤纤维复合材料的岩土熔断器

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摘要

The paper aims to interpret the physical and mechanical properties of a 3D soil-fibre composite at the macroscopic level in connection with the deformation mechanisms occurring at the granular level when subject to transient, cyclic and vibratory loading. The effectiveness of a new type of stress wave barrier, designed for shielding vibratory ground motion, has been evaluated when using a technique of prestressing on this composite, able to activate micro-friction between soil particles without reaching failure. Findings on energy dissipation by friction, obtained at natural gravity, are validated on centrifuge models that represent larger areas and take into account gravity effects.
机译:本文旨在解释3D土壤纤维复合材料在宏观水平上的物理和力学性能,以及在瞬态,循环和振动载荷下在​​颗粒水平发生的变形机制。当在复合材料上使用预应力技术时,这种新型应力波屏障的有效性得到了评估,该屏障可以屏蔽土壤振动,而该复合材料能够激活土壤颗粒之间的微摩擦而不会导致破坏。在代表大面积并考虑重力影响的离心机模型上验证了在自然重力作用下获得的通过摩擦耗散能量的发现。

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