FEM analyses of stress and deformation of a flexible inner pressure bolt

被引:7
作者
CHEN Zhonghe WANG Weiqiang ZHANG Lewen School of Chemistry and Chemical Engineering Jinan University Jinan Shandong China School of Mechanical Engineering Shandong University Jinan Shandong China Shandong Research Center of Geotechnical and Structure Engineering Technology Jinan Shandong China [1 ,2 ,3 ,1 ,250022 ,2 ,250061 ,3 ,250061 ]
机构
关键词
flexible inner pressure bolt; stress and deformation; FEM; large distortion calculation;
D O I
暂无
中图分类号
U455.71 [];
学科分类号
0814 ; 081406 ;
摘要
The flexible inner pressure bolt is a new kind and new structural bolt (anchor rod). A number of structural improvements and performance test have been carried out. The bolt has superior compatibility to the soft crag and the large distortion tunnel with its flexibility. In order to study its stress, deformation and interaction mechanism thoroughly, a number of large distortion calcula- tions and analyses have been carried out on the bolt by FEM (finite element method), especially with the ANSYS software, based on the updated Lagrangian law. The results show that the maximum stress of the inner wall of the bolt is consistent with an elastic analytic solution. The maximum stress on the body occurs in the vicinity of the enhancement material. The link enhancement of the body seems to be quite essential. The experimental results indicate that the maximum injection pressure in the bolt is 2.5 MPa without link enhancement and 8.3 MPa with the enhancement. This link enhancement effect is highly significant. These results provide some basis for the design, application and anchoring stress analysis of the bolt.
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页码:584 / 587+593 +593
页数:5
相关论文
共 5 条
[1]   深部巷道围岩控制原理与应用研究 [J].
柏建彪 ;
侯朝炯 .
中国矿业大学学报 , 2006, (02) :145-148
[2]   深基坑预应力锚杆柔性支护的非线性有限元分析 [J].
朱亚林 ;
孔宪京 ;
邹德高 ;
贾金青 .
岩土力学, 2005, (02) :323-327
[3]   橡胶复合材料结构大变形有限元分析 [J].
闫相桥 .
计算力学学报, 2002, (04) :477-481
[4]   基坑复合土钉支护的有限元分析 [J].
宋二祥 ;
邱玥 .
岩土力学, 2001, (03) :241-244+253
[5]  
Large Deformation Character of two Kinds of Models for Rubber. Qian H S, Gao Y C. International Journal of Engineering Science . 2001