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Loading frequency effect on stiffness, damping and cyclic strength of modeled rockfill materials

机译:加载频率对模拟堆石材料的刚度,阻尼和循环强度的影响

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摘要

This paper studies the loading frequency and waveform effects on shear modulus (G) and damping ratio (D) of three high compacted modeled rockfill materials by conducting large-scale triaxial testing. The laboratory test results have shown that the shear modulus, and especially the damping ratio behavior, is influenced by the frequency of loading. The excess pore water pressures generated in cyclic loading are less dependent on loading frequency, and most dependent on imposed strain level. The C and D values for sinusoidal waveform are slightly higher than those for the triangle waveform. Moreover, the D value of rectangle waveform is considerably higher than sinusoidal and triangle waveforms. Results indicated that when induced double amplitude axial strain exceeds 0.1%, the effect of the number of cycles in degradation of cyclic strength is significant. A failure criterion for 100% pore pressure ratio for the dense rockfill materials (i.e. initial liquefaction) is developed based on 2% double amplitude axial strain in 15 cycles of loading.
机译:本文通过大规模的三轴试验研究了加载频率和波形对三种高密实模型堆石料的剪切模量(G)和阻尼比(D)的影响。实验室测试结果表明,剪切模量,尤其是阻尼比行为,受加载频率的影响。循环加载中产生的多余孔隙水压力较少依赖于加载频率,而最依赖于施加的应变水平。正弦波形的C和D值略高于三角波形的C和D值。此外,矩形波形的D值明显高于正弦和三角形波形。结果表明,当引起的双振幅轴向应变超过0.1%时,循环次数对循环强度降低的影响是显着的。在15个荷载循环中,基于2%的双振幅轴向应变,建立了致密堆石材料的100%孔隙压力比的失效准则(即初始液化)。

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