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循环荷载作用下软土中吸力锚变形过程拟动力算法 被引量:1
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作者 冯婷婷 王建华 《水利水运工程学报》 CSCD 北大核心 2016年第3期82-89,共8页
针对静荷载与循环荷载共同作用下软土中张紧式吸力锚的变形失稳过程进行了研究,通过拟动力有限元法模拟了静荷载和循环荷载共同作用下模型锚变形过程,验证了拟动力算法的可行性。分析过程中采用考虑循环荷载作用历史的等效线性黏弹性计... 针对静荷载与循环荷载共同作用下软土中张紧式吸力锚的变形失稳过程进行了研究,通过拟动力有限元法模拟了静荷载和循环荷载共同作用下模型锚变形过程,验证了拟动力算法的可行性。分析过程中采用考虑循环荷载作用历史的等效线性黏弹性计算模型描述饱和软黏土不排水循环动力响应,依据蠕变理论描述土单元的循环累积应变响应。基于ABAQUS有限元软件,借助拟动力黏弹塑性模型提出了一种既能描述土体循环动力响应又能获得土体变形循环累积过程的拟动力算法。通过编制脚本程序PYTHON,将计算土体循环动力响应的过程与分析土体变形累积的过程连接起来,使计算机自动完成整个拟动力有限元算法的分析过程,最终实现了不通过详细跟踪循环荷载作用历史即可获得软土中吸力锚在循环荷载作用下变形逐渐循环累积至失稳过程的拟动力算法。 展开更多
关键词 吸力锚 循环荷载 动力算法 循环累积变形 循环动力响应 模型试验
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Dynamic mechanical characteristics of post-peak sandstone under three-dimensional cyclic impact
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作者 ZHANG Jun-wen ZHANG Yang +7 位作者 LI Shi-fang SONG Zhi-xiang DONG Xu-kai WU Shao-kang FAN Wen-bing ZHOU Yan SANG Pei-miao LI Ning 《Journal of Central South University》 2025年第8期2958-2978,共21页
Abstract:At present,the surrounding rock of the deep mine roadway is prone to post-peak stress under the action of high stress,and secondary rock burst disaster is prone to occur under complex stress disturbance.Accor... Abstract:At present,the surrounding rock of the deep mine roadway is prone to post-peak stress under the action of high stress,and secondary rock burst disaster is prone to occur under complex stress disturbance.According to incomplete statistics,as of 2023,80%of coal mine rock bursts accidents in China occur in mining roadway.In view of this phenomenon,the cyclic impact test of post-peak sandstone is designed,focusing on the post-peak stress state of sandstone,and exploring the post-peak dynamic response of sandstone.The post-peak sandstone specimens were prepared by a uniaxial compressor,and then cyclic impact tests were carried out on the post-peak sandstone under different coaxial pressure conditions by an improved separated Hopkinson equipment.The results show that:1)The number of impact times required for sandstone failure after peak decreased with the increase of axial pressure,indicating that the impact tendency of sandstone after peak decreased under lower axial pressure.On the contrary,the post-peak sandstone had strong impact tendency under higher axial pressure;2)The higher the axial pressure,the lower the dynamic strength of the post-peak sandstone,indicating that the axial pressure promoted the failure process of the post peak sandstone;3)It was a nonlinear evolution of a quadratic polynomial function between the dissipation-energy release rate and axial pressure;4)Shear failure occurred mainly in post-peak impact sandstone with the increased axial pressure,and the composite failure of intergranular failure and transgranular failure changed to single intergranular failure at the microscopic level.The research shows that when the roadway surrounding rock was in the post-peak stress state,reducing the static stress was the key to prevent the secondary ground pressure disaster.The research results provide a theoretical basis for the prevention and control of roadway rock burst disaster under high ground stress environment,and promote the research and exploration of post-peak mechanical properties of coal and rock. 展开更多
关键词 post-peak impact sandstone 3D cyclic impact dynamic response energy dissipation fracture mechanism
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