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Considerations on the shear strength behavior of weathered rockfill

机译:关于风化堆石料抗剪强度特性的考虑

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摘要

A comprehensive investigation on the mechanical behavior of rockfill has been carried out in large-size shear devices in the laboratory. Triaxial and direct shear tests were performed on basalt riprap specimens from Marimbondo Dam in Brazil, which was constructed in 1975. The main results and conclusions on the shear strength envelopes are presented in this paper. Weathered riprap particles were collected at the region of water level fluctuation, where natural alteration by disintegration and decomposition of the basalt rockfill was noted to be more intense. An artificially weathered rockfill material was produced in the laboratory by continuous lixiviation in large Soxhlet equipment. Lixiviated basalt rockfill exhibits marked changes of surface chemical concentration, number of joints and deformability of rock particles. Processes of basalt weathering in the field and in the laboratory are compared in the paper. The methodology for accelerated weathering in the laboratory proved to adequately simulate the effects of field weathering, making possible a prediction of the long-term mechanical behavior of basalt rockfill. A significant reduction of the shear strength of weathered rockfill may be noted when compared to the intact material. The upstream rip-rap at Marimbondo Dam is predicted to remain competent as a slope protection material for at least more 50 years.
机译:在实验室中,已经在大型剪切设备中对堆石的力学行为进行了全面研究。在1975年建造的巴西Marimbondo大坝的玄武岩碎石样品上进行了三轴和直接剪切试验。本文介绍了剪切强度包络线的主要结果和结论。风化的碎石颗粒收集在水位波动的区域,在该处,玄武岩堆石的崩解和分解引起的自然变化更为强烈。在实验室中,通过在大型索氏设备中进行连续浸滤来生产人工风化的堆石料。沥干的玄武岩堆石料的表面化学浓度,节理数和岩石颗粒的可变形性都有明显的变化。本文比较了野外和实验室中玄武岩风化的过程。实践证明,实验室中加速风化的方法能够充分模拟野外风化的影响,从而可以预测玄武岩堆石料的长期力学性能。与完整材料相比,风化堆石料的剪切强度会显着降低。预计Marimbondo大坝的上游翻石机至少在50年前仍可作为斜坡保护材料。

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