期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
湘桂线波寨二号隧道线路翻浆冒泥的整治 被引量:1
1
作者 彭国训 《路基工程》 2000年第1期63-66,共4页
介绍了湘桂线波寨二号隧道洞内整体道床翻浆冒泥及其整治情况,将该隧道整体道床重新改为普通碎石道床,并用塑料排水板和土工布封闭路基面,使病害得以彻底整治的方法。
关键词 翻浆冒泥 塑料排水板 土载布 铁路隧道 道床
下载PDF
Investigation on reinforcement-sand-clay layer system using direct-shear test
2
作者 张波 石名磊 白世伟 《Journal of Southeast University(English Edition)》 EI CAS 2006年第4期544-548,共5页
The property of the contact surface between geosynthetics and soil directly affects the whole structure's stability. The interface property is one of the most important indices for the reinforced structure. Systemati... The property of the contact surface between geosynthetics and soil directly affects the whole structure's stability. The interface property is one of the most important indices for the reinforced structure. Systematic direct-shear tests with large direct-shear apparatus are carded out for geobelt reinforced clay under different normal stresses and water content. A reinforcement-sand-clay layer system improving the interface behavior greatly is designed. The stress-strain relationship is investigated on the basis of the experimental results. The results show that with the increase of the normal stress, the shear strength between the clay and the reinforcement increases nonlinearly, and with the increase of the water content, the friction coefficient between the clay and the reinforcement decreases dramatically and the cohesion between the clay and the polypropylene geobelt increases initially, then decreases. There is an optimal value for the water content between the clay and the polypropylene geobelt, which is 2% lower than the optimal water content of clay compaction. This reinforcement-sand-clay layer system improves the shear strength of the interface remarkably. Therefore, the clay-sand-reinforcement layer system is a rather good design for practical use in reinforcement engineering. 展开更多
关键词 high liquid limit clay direct-shear test water content normal stress reinforcement-sand-clay layer system
下载PDF
Damage constitutive model of different age concretes under impact load 被引量:8
3
作者 李夕兵 王世鸣 +3 位作者 翁磊 黄麟淇 周韬 周健 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第2期693-700,共8页
In order to investigate the mechanical properties and stress-strain curves of concrete at different ages under impact load,the impact compression tests of concrete at age of 1, 3, 7, 14 and 28 d were conducted with a ... In order to investigate the mechanical properties and stress-strain curves of concrete at different ages under impact load,the impact compression tests of concrete at age of 1, 3, 7, 14 and 28 d were conducted with a large diameter split Hopkinson pressure bar, respectively. Based on statistical damage theory and Weibull distribution, combining the analysis of the change laws of stressstrain curves and viscosity coefficient of concrete with age, a damage constitutive model that can reflect the variation in dynamic mechanical properties with age was proposed. The stress-strain curves calculated from the proposed model are in good agreement with those from experimental data directly. 展开更多
关键词 CONCRETE constitutive model age split Hopkinson pressure bar
下载PDF
Experimental study on soil improvement with stone columns and granular blankets
4
作者 Nima MEHRANNIA Farzin KALANTARY Navid GANJIAN 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第4期866-878,共13页
Stone column is one of the soil stabilizing methods that is used to increase bearing capacity and decrease the settlement of soft soils.Reinforced and unreinforced granular blankets are now being utilized to overcome ... Stone column is one of the soil stabilizing methods that is used to increase bearing capacity and decrease the settlement of soft soils.Reinforced and unreinforced granular blankets are now being utilized to overcome the problems of soft soils.In this research,the bearing capacity of stone columns,granular blanket,and a combination of both methods in reinforced and unreinforced modes were studied using scaled physical models.Results show that using granular blanket,stone column,and combination of both improves bearing capacity of soft soils.Using geogrid as the reinforcement of granular blankets and geotextile as stone-column encasement increases the efficiency of granular blankets and stone columns significantly.Additionally,in the case of using geotextile around the stone column,the stress concentration ratio of the stone column will increase as well as its rigidity and bearing capacity. 展开更多
关键词 stone column bearing capacity GEOGRID GEOTEXTILE granular blanket soil improvement
下载PDF
Assessment of Numerical Models for Live Load Distribution in a Road Slab Bridge
5
作者 Janusz Holowaty 《Computer Technology and Application》 2013年第11期592-598,共7页
This paper presents comparison of numerical models used in an analysis of a road bridge deck. The models were adapted for computing the live load distribution coefficients in composite concrete bridge deck. The load d... This paper presents comparison of numerical models used in an analysis of a road bridge deck. The models were adapted for computing the live load distribution coefficients in composite concrete bridge deck. The load distribution method was chosen for assessment of the usability of different numerical model in slab bridge deck analysis. The goal of the study is to determine a simplest but still accurate numerical model to estimate live load effects on composite slab bridge. In the analysis, the well-established grillage approach was adapted for representation of the bridge deck as a basic model as well as more sophisticated three-dimensional models which was supposed to better represent the real behavior of the deck under concentrated wheel loads. The bridge deck was effectively modeled using beam and shell elements. The grillage method compares well with the finite-element method. This finding is allowed to establish simplification in numerical modeling of slab bridge decks for live load effect computations. 展开更多
关键词 Numerical model bridge live load numerical modeling grillage method FE analysis
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部