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新型复合锚固类结构静力弱化效应试验研究
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作者单位:

(1.总参工程兵科研三所;2.解放军南京理工大学工程兵学院;)

作者简介:

曾宪明

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中图分类号:

TU445

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Experimental Study on the Static Weakening Effect of a New Type of Composite Anchorage Structure
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(1.Third Research Institute of General Staff Engineering Corps;2.PLA Nanjing University of Science and Technology;)

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    摘要:

    为研究新型复合锚固类结构的弱化机理及其在静载作用下的特性,进行了静力三轴试验研究。研究表明:①弱化试件同非弱化试件相比,其平均变形量为后者的2.7倍,最大为7.3倍,其平均承载力为后者的1.8倍,最大为3.2倍;②在非弱化试件中的锚杆已达到很高应变状态或试件已产生极限破坏条件下,弱化试件中的锚杆尚处于很低应变状态;③弱化试件荷载~应变关系曲线中的"峡谷"现象是弱化孔间的孔壁介质由于应力集中而出现超载破坏,引起试件产生相对卸载的结果,而多次"峡谷"现象的发生,实质上反映了孔壁介质从破裂、破碎到压实的全过程效应;④复合锚固类结构的弱化效应非常显著,其间存在极大潜能,充分利用这一潜能,将具有巨大的社会、经济和军事效益

    Abstract:

    In order to study the weakening mechanism of new composite anchorage structures and their characteristics under static load, static Triaxial shear test were carried out. Research shows that: ① compared with non weakened specimens, the average deformation of weakened specimens is 2.7 times that of the latter, with a maximum of 7.3 times, and the average bearing capacity is 1.8 times that of the latter, with a maximum of 3.2 times; ② When the anchor rod in the non weakened specimen has reached a very high strain state or the specimen has undergone ultimate failure conditions, the anchor rod in the weakened specimen is still in a very low strain state; ③ The "canyon" phenomenon in the load-strain relationship curve of the weakened specimen is the result of overloading and failure of the pore wall medium between the weakened pores due to stress concentration, causing relative unloading of the specimen. The occurrence of multiple "canyon" phenomena essentially reflects the entire process effect of the pore wall medium from fracture, fragmentation to compaction; ④ The weakening effect of composite anchoring structures is very significant, with great potential. Fully utilizing this potential will have enormous social, economic, and military benefits

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Zeng Xianming, Li Shimin, Lin Dalu, Xiao Ling, Pan Daojun Experimental Study on the Static Weakening Effect of a New Type of Composite Anchorage Structure. Prestress Technology 2008,12(01):24-28. 10.59238/j. pt.2008.01.005

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  • 在线发布日期: 2023-08-10
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