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深部锚固节理岩体蠕变-疲劳破坏能量演化规律分析
引用本文:宋洋,杨辉,李永启,范波.深部锚固节理岩体蠕变-疲劳破坏能量演化规律分析[J].中国地质灾害与防治学报,2022,33(4):98-105.
作者姓名:宋洋  杨辉  李永启  范波
作者单位:1.辽宁工程技术大学建筑与交通学院, 辽宁 阜新 123000
基金项目:国家自然科学基金项目(51974146);辽宁省自然科学基金(2019-ZD-0042);辽宁省高等学校创新人才支持计划资助项目(21-1071);辽宁工程技术大学学科创新团队资助项目(LNTU20TD08)
摘    要:为探究深部岩体在爆破、开挖等扰动荷载下的力学特性,开展锚固岩体在蠕变-疲劳荷载下的室内试验,并进一步探究其能量演化规律。结果表明:(1)在疲劳荷载作用下,加锚节理岩体比无锚条件下的滞回环面积小,在施加预应力时,其滞回环面积又大幅度减少,说明加锚预应力能有效降低其能量损耗;(2)岩石强度越高,其滞回环面积越小,对应的能量耗散越小,反之能量耗散大;(3)对比不同加卸载速率可知:在每一级循环荷载过程中,加卸载速率越大其对应的应变值、切线斜率就越大。考虑加卸载速率对节理岩体劣化作用,依据应变等价原理,得出节理岩体峰值损伤本构方程,并通过试验验证模型的准确性,为深部岩体结构支护提供思路。

关 键 词:剪切蠕变    滞回环面积    加卸载速率    能量损耗    损伤本构模型
收稿时间:2021-07-21

Analysis on the evolution law of creep-fatigue failure energy of deep anchored jointed rock mass
Institution:1.College of Architecture and Communications, Liaoning Technical University, Fuxin, Liaoning 123000, China2.Civil Engineering College, Liaoning Technical University, Fuxin, Liaoning 123000, China
Abstract:In order to explore the mechanical properties of deep rock masses under disturbance loads such as blasting and excavation, laboratory tests of anchored rock masses under creep-fatigue loads were carried out, and the law of energy evolution was further explored. The results show that: (1) Under the action of fatigue load, the area of the anchored jointed rock mass is smaller than the of the unanchored condition. When prestress is applied, the hysteresis area of the jointed rock mass is greatly reduced, indicating that the anchored prestress can effectively reduce its energy loss. (2) The higher the rock strength, the smaller the hysteresis loop area, the smaller the corresponding energy dissipation. Conversely, the lower the rock strength, the larger the hysteresis loop area and the larger the corresponding energy dissipation. (3) Comparing different loading and unloading rates, experimental results show that during each level of cyclic loading, the greater the loading and unloading rate, the greater the corresponding strain value and tangent slope. Considering the effect of loading and unloading rate on the deterioration of jointed rock masses, based on the principle of strain equivalence, the peak damage constitutive equation of jointed rock masses is obtained, and the accuracy of the model is verified through experiments, which provides ideas for deep rock structure support.
Keywords:
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