期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
桥梁刚性基础扩大底面积加固法的理论分析
1
作者 郭传武 杨培仪 +3 位作者 项红梅 章福亮 王福明 毛彩凤 《中国水运(下半月)》 2011年第7期219-220,共2页
扩大桥梁刚性基础底面积的加固方法在桥梁加固工程中得到广泛应用,但基础边长尺寸关系和面积增加大小及等的分析与计算无成熟方法;文中将地基视为弹性材料,依据温克尔假定计算基础下的压应力,并将其控制在因长期受压而提高的地基承载力... 扩大桥梁刚性基础底面积的加固方法在桥梁加固工程中得到广泛应用,但基础边长尺寸关系和面积增加大小及等的分析与计算无成熟方法;文中将地基视为弹性材料,依据温克尔假定计算基础下的压应力,并将其控制在因长期受压而提高的地基承载力以内。本文方法可为实际工程中刚性基础加固设计提供借鉴。 展开更多
关键词 扩大刚性基础 扩大基础面积加固法 基础压应力
下载PDF
Pressure-relief effect of coal rock body of long distance lower protective seam mined based on FLAC^(3D) 被引量:1
2
作者 XU Nai-zhong HAN Lei 《Journal of Coal Science & Engineering(China)》 2010年第4期341-346,共6页
According to the specific geological condition, analyzed the stress distribution of the overlying strata, the displacement of pressure released seam, thickness variation and the distribution of plastic zones by FLAG3D... According to the specific geological condition, analyzed the stress distribution of the overlying strata, the displacement of pressure released seam, thickness variation and the distribution of plastic zones by FLAG3D software to simulate mining of the long-distance lower protective seam. The research results show that the distribution of vertical stress appears as a "Double-hump" within the pressure-relief range of the protected coal seam and the swelling deformation curve of coal bodies takes an "M" shape. The swelling is divided into initial swelling, swelling increase and swelling compression stability. The maximum swelling ratio of the pressure released seam is 1.84%, protection angle of the lower protective coal seam along the strike direction is about 55°, protection angle below the dip direction is about 50°, protection angle above the dip direction is about 55°, and the coal seam compression zone resembles a "U" shape. 展开更多
关键词 long distance lower protective seam pressure-relief effect numerical calculaion
下载PDF
A damage-based constitutive model for rock under impacting load 被引量:5
3
作者 Guangming Zhao Lixiang Xie Xiangrui Meng 《International Journal of Mining Science and Technology》 SCIE EI 2014年第4期505-511,共7页
Using the Splitting Hopkinson Pressure Bar (SHPB) experimental system, investigations were made into the dynamic mechanical performances of underground soft rocks. The experiments proved that the measured stress-str... Using the Splitting Hopkinson Pressure Bar (SHPB) experimental system, investigations were made into the dynamic mechanical performances of underground soft rocks. The experiments proved that the measured stress-strain curves display the characteristics of plastic deformation. By making use of a revised overstress constitutive formula for the stress model and by taking into account that the strain rate and strain are a function of I - E(t)/Eo, a revised overstress constitutive formula for the stress model was simplified by applying dimensional analysis and consequently, a simplified overstress formula was obtained for the stress model. Then, by taking into consideration the effects of damage under a dynamic load on the dynamic loading strength of the rock, the continuous damage theory and the statistical strength theory were introduced into the development of the simplified overstress constitutive formula for the stress model. Hence, a damage-based constitutive formula for an overstress model, which can be appropriately applied to the analysis of full dynamic stress-strain curves, was developed. By using the simplified damage-based constitutive formula for an overstress model, the actually measured curves are fitted, indicating that the fitting curves and those actually measured are in good agreement. 展开更多
关键词 SHPB Continuous damage theory Statistic strength theory Overstress constitutive formula
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部