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AIR, WATER AND VACUUM PLUVIATION OF SAND SPECIMENS FOR THE TRIAXIAL APPARATUS

机译:三轴装置的砂样在空气,水和真空中的富集

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A device is presented for reconstituting sand specimens directly onto the triaxial apparatus by pluviation in air, water or under vacuum. The sand is delivered by means of an uniform rain covering the whole specimen cross section and target density is achieved by changing fall height and depositional intensity. The apparatus was calibrated using Ticino River sand, for which water and vacuum pluviations provided the lowest and highest densities, respectively. Whilst the density of loose samples was similar to that obtained using Kolbuszewski (1948) and ASTM minimum density methods, much denser specimens were obtained with vacuum pluviations as compared to vibration compaction methods (similar to ASTM maximum density method). The resulting maximum relative density, referred to the limits from standard tests, was as high as 140%. Water pluviation density is independent of both depositional intensity and fall height. For other target density best results in terms of sample uniformity are achieved by vacuum pluviation with an appropriate selection of depositional intensity and fall height. This also provides an extremely high reproducibility of target density.
机译:提出了一种通过在空气,水中或在真空下浸没将砂试样直接重构到三轴设备上的装置。沙粒是通过覆盖整个样本横截面的均匀降雨来输送的,通过改变下落高度和沉积强度可以达到目标密度。使用提契诺州河沙对设备进行了校准,水和真空富矿分别提供了最低和最高的密度。尽管疏松样品的密度与使用Kolbuszewski(1948)和ASTM最小密度方法获得的密度相似,但与振动压实方法(类似于ASTM最大密度方法)相比,通过真空浸没获得的密度更高。所得最大相对密度(参考标准测试的限值)高达140%。水的富化密度与沉积强度和下降高度无关。对于其他目标密度,通过真空浸没并适当选择沉积强度和下降高度,可获得样品均匀性最佳的结果。这也提供了极高的目标密度重现性。

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