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Numerical analysis of the mechanical properties of rock materials under tiered and multi-level cyclic load regimes

机译:分层岩石材料力学性能的数值分析及多级循环负荷制度

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摘要

In engineering practice, it is a common that rocks are subjected to cyclic loading. The mechanical properties of rock materials under tiered, single-level, and multi-level cyclic load regimes (i.e., with different frequency, minimum stress, and amplitude) were numerically investigated by using a dynamic constitutive model for rock materials. A comparison between these loads from the aspects of stress-strain curve, modulus, damage, and strength was undertaken. The results indicate that the model can effectively reflect the different mechanical properties of rock materials under different cyclic load regimes. Under the action of tiered and multi-level cyclic loading, the area and width of the hysteresis loops become larger with increasing applied stress, but the slope of stress-strain curve, area and width of the hysteresis loops, maximum strain, and the irreversible deformation vary under different loads. The loading deformation modulus decreases with the increase of applied stress and the reductions therein are different when subjected to tiered, single-level, and multi-level cyclic loading. With increasing applied stress, the damage evolution in rock specimens subjected to tiered cyclic loading present an increasing trend and the trend likes an approximately inverted "s"-shape. Under multi-level cyclic loading, the damage variables increase rapidly at the first level, then become relatively stable and increase slowly as the applied stress increases. Furthermore, the peak strength of rock differs under different load regimes, and results indicate that cyclic loading has both strengthening and damaging effects on rock strength.
机译:在工程学实践中,岩石受到循环载荷是常见的。通过使用岩石材料的动态本构模型,用动态本构模型在数值研究下进行分层,单级和多级环状载荷制度下的岩石材料的力学性能(即,具有不同的频率,最小应力和幅度)。从应力 - 应变曲线,模量,损坏和强度的方面进行了这些载荷之间的比较。结果表明,该模型可以有效地反映不同循环载荷制度下岩石材料的不同机械性能。在分层和多级循环加载的作用下,随着施加应力的增加,滞后环的面积和宽度变大,但滞后曲线,滞后环的面积和宽度,最大应变和不可逆的坡度变形在不同的载荷下变化。加载变形模量随着施加应力的增加而降低,并且在受到分层,单级和多级循环加载时的减少不同。随着施加压力的增加,经过分层循环载荷的岩石标本的损伤演变具有越来越大的趋势,趋势喜欢近似倒置的“S” - 形状。在多级循环加载下,损坏变量在第一级迅速增加,然后随着所施加的应力增加而变得相对稳定并且缓慢增加。此外,岩石的峰强度在不同的载荷制度下不同,结果表明循环载荷对岩石强度具有强化和损害效果。

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