Han Hongxing, Li Jing, Shi Jicun, Yang Cuina
School of Civil Engineering and Architecture, Xinxiang University, Xinxiang 453003, China.
Architectural Teaching and Research Group, Xinxiang University of Broadcast & Television, Xinxiang 453000, China.
Materials (Basel). 2022 Aug 8;15(15):5467. doi: 10.3390/ma15155467.
The hybrid method was adopted to model the original gradation of rockfill materials. According to the specification requirements, three simulated gradations of rockfill materials have been obtained. By the same token, the corresponding maximum particle sizes are 20 mm, 40 mm and 60 mm, respectively. With samples prepared under the same criterion of relative density, the scale effect on strength and deformation characteristics of the rockfill materials were studied by large-scale and consolidated-drained triaxial compression tests. The results show that when the confining pressure is higher, the peak deviator stress decreases with the increase of the maximum particle size. With the increase of the maximum particle size, the cohesion of rockfill materials gradually increases and the internal friction angle gradually decreases. Under the condition of the same maximum particle size, with the increase of confining pressure, the volume strain at the phase transition increases gradually, while the stress ratio at the phase transition decreases. Under the same confining pressure, the larger the particle size is, the smaller the volume strain becomes and the lower the stress ratio at the phase transition is. Therefore, the research results can provide a theoretical basis for establishing the constitutive model of rockfill materials considering the scale effect.
采用混合法对堆石料的原始级配进行建模。根据规范要求,得到了三种模拟的堆石料级配。同样地,相应的最大粒径分别为20mm、40mm和60mm。在相同相对密度标准下制备试样,通过大型固结排水三轴压缩试验研究了堆石料强度和变形特性的尺寸效应。结果表明,当围压较高时,峰值偏应力随最大粒径的增大而减小。随着最大粒径的增大,堆石料的黏聚力逐渐增大,内摩擦角逐渐减小。在最大粒径相同的条件下,随着围压的增大,相变时的体积应变逐渐增大,而相变时的应力比减小。在相同围压下,粒径越大,体积应变越小,相变时的应力比越低。因此,研究结果可为建立考虑尺寸效应的堆石料本构模型提供理论依据。