规则节点扰动失稳不可逆位移演化及能量耗散特性的实验研究

Jianan Yang, Pengxian Fan, Mingyang Wang, Jie Li, Lu Dong
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引用次数: 2

摘要

为了研究深部岩体结构突变的扰动剪切失稳机制,利用MTS 815材料试验机,在特定的初始静应力、扰动频率和峰值下,对两种材料在三个起伏角的对称规则齿状节理进行了准静态加载和扰动剪切试验。试验结果表明:(i)总极限失稳位移只与接头的固有特性有关,而与初始静应力和扰动参数无关;(ii)扰动失稳所需的累积不可逆位移与扰动次数符合逻辑反函数关系,呈现“前快速增加,中稳定,后突然增加”的变化趋势;(iii)塑性变形能的积累符合节点不可逆位移的演化规律,滞回能的总体比例不大;(iv)在各种扰动条件下,每组节理失稳所需的耗散能量基本相同,且该能量主要受初始剪应力控制,与扰动参数无关。试验揭示的节理总扰动变形的稳定性和扰动能量规律,为合理确定节理扰动失稳判据提供了数据支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Experimental study on the irreversible displacement evolution and energy dissipation characteristics of disturbance instability of regular joints

Experimental study on the irreversible displacement evolution and energy dissipation characteristics of disturbance instability of regular joints

To investigate the disturbance-induced shear instability mechanism of structural catastrophe in the deep rock mass, MTS 815 material testing machine was used to carry out quasi-static loading tests and disturbance shear tests on symmetrical regular dentate joints of two materials at three undulation angles under specific initial static stress, disturbance frequency, and peak value. The test results indicate that: (i) the total ultimate instability displacement is only related to the intrinsic properties of the joints but not to the initial static stress and disturbance parameters; (ii) the cumulative irreversible displacement required for the disturbance instability conforms to the logistic inverse function relationship with the number of disturbances, displaying the variation trend of “rapid increase in the front, stable in the middle, and sudden increase in the rear”; (iii) the accumulation of plastic deformation energy is consistent with the evolution law of irreversible displacement of joints and the overall proportion of hysteretic energy is not large; (iv) the dissipated energy required for the instability of each group of joints is basically the same under various disturbance conditions, and this energy is mainly controlled by the initial shear stress and has no connection with the disturbance parameters. The stability of the total disturbance deformation and the disturbance energy law of the joints revealed in the tests provide data support for reasonably determining the disturbance instability criterion of joints.

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