期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
金属离子对粘土土工性状影响的实验 被引量:4
1
作者 徐慧 李文平 曹丽文 《煤田地质与勘探》 CAS CSCD 北大核心 2009年第3期57-60,共4页
在正交实验设计的基础上,通过大量的室内实验,对粘土吸附性的影响因素加以分析,为金属离子影响下的粘土土工性状研究奠定基础。在粘土吸附性的基础上,对粘土吸附离子后的基本土工特性进行实验研究,得出了粘土土工特性的变化趋势。结果表... 在正交实验设计的基础上,通过大量的室内实验,对粘土吸附性的影响因素加以分析,为金属离子影响下的粘土土工性状研究奠定基础。在粘土吸附性的基础上,对粘土吸附离子后的基本土工特性进行实验研究,得出了粘土土工特性的变化趋势。结果表明:在单离子体系中粘土对离子的吸附量明显大于混合离子体系中对该离子的吸附量;在多离子体系中,则表现为高价离子具有更强的竞争力;粘土的塑性指数基本是随离子含量的增加而增大;粘土强度随着离子总含量的增高而逐渐降低。 展开更多
关键词 粘土吸附性 金属离子 粘土 土工性状
下载PDF
乙酸和碳酸对粘土土工性状影响的试验 被引量:2
2
作者 李涛 胡金生 +1 位作者 肖红 任秀文 《煤田地质与勘探》 CAS CSCD 北大核心 2008年第6期46-48,共3页
对加入不同浓度乙酸和碳酸的土样做室内土工试验,并进行机理分析。试验结果表明:乙酸根、碳酸根通过改变粘土颗粒双电层的厚度、极性水分子的吸附量,使土的结构发生凝聚或分散,引起压实粘土的塑性、渗透性等变化。其中,乙酸根是通过溶... 对加入不同浓度乙酸和碳酸的土样做室内土工试验,并进行机理分析。试验结果表明:乙酸根、碳酸根通过改变粘土颗粒双电层的厚度、极性水分子的吸附量,使土的结构发生凝聚或分散,引起压实粘土的塑性、渗透性等变化。其中,乙酸根是通过溶解粘土矿物中的铝,提高了粘土的渗透系数和塑性指数;而碳酸根是以其与金属离子发生化学反应生成难溶性碳酸盐的方式,降低了粘土的渗透系数。这为判断垃圾堆放场粘土衬垫工程的稳定性提供了依据。 展开更多
关键词 土工性状 乙酸 碳酸
下载PDF
Viscous property of dried clay 被引量:3
3
作者 徐力生 李建中 《Journal of Central South University of Technology》 EI 2006年第2期204-207,共4页
One dimensional and triaxial compression tests of air-dried and oven-dried Fujinomori clay and Pisa clay were carried out. Water content is less than 4.5% and 1.0% for air-dried and oven-dried clay specimens, respecti... One dimensional and triaxial compression tests of air-dried and oven-dried Fujinomori clay and Pisa clay were carried out. Water content is less than 4.5% and 1.0% for air-dried and oven-dried clay specimens, respectively. In all tests, axial strain rate was changed stepwise many times and drained creep tests were performed several times during monotonic loading at a constant strain rate. Global unloading (and also reloading in some tests) was applied during which creep loading tests were performed several times. Cyclic loading with small stress amplitude and several cycles was also performed to calculate the modulus of elasticity of the clay in tests. Local displacement transducer was used in triaxial compression test to increase measuring accuracy of axial strain. The results show that air-dried and oven-dried clay have noticeable viscous properties; during global unloading, creep deformation changes from positive to negative, i.e. there exist neutral points (zero creep deformation or no creep deformation point) in global unloading part of strain-stress curve; viscous property of Fujinomori clay decreases when water content decreases, i.e. viscous property of air-dried Fujinomori clay is more significant than that of oven-dried Fujinomori clay. 展开更多
关键词 dried clay viscous property soil mechanics
下载PDF
Assessment of rapid impact compaction in ground improvement from in-situ testing 被引量:5
4
作者 M.M.Mohammed H.Roslan S.Firas 《Journal of Central South University》 SCIE EI CAS 2013年第3期786-790,共5页
Ground improvement has been used on many construction sites to densify granular materials, in other word, to improve soil properties and reduce potential settlement. This work presents a case study of ground improveme... Ground improvement has been used on many construction sites to densify granular materials, in other word, to improve soil properties and reduce potential settlement. This work presents a case study of ground improvement using rapid impact compaction (RIC). The research site comprises the construction of workshop and depots as part of railway development project at Batu Gajah-Ipoh, Malaysia. In-situ testing results show that the subsurface soil comprises mainly of sand and silty sand through the investigated depth extended to 10 m. Groundwater is approximately 0.5 m below the ground surface. Evaluation of improvement was based on the results of pre- and post-improvement cone penetration test (CPT). Interpretation software has been used to infer soil properties. Load test was conducted to estimate soil settlement. It is found that the technique succeeds in improving soil properties namely the relative density increases from 45% to 70%, the friction angle of soil is increased by an average of 3°, and the soil settlement is reduced by 50%: The technique succeeds in improving soil properties to approximately 5.0 m in depth depending on soil uniformity with depth. 展开更多
关键词 cone penetration test granular soil COMPACTION rapid impact compaction relative density SETTLEMENT improvement depth in-situ testing
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部