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首页> 外文期刊>KSCE journal of civil engineering >Effect of Salinity on Strength Behavior of Cement-treated Dredged Clay at High Initial Water Contents
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Effect of Salinity on Strength Behavior of Cement-treated Dredged Clay at High Initial Water Contents

机译:矿化度对高初始含水量水泥处理疏Dr粘土强度行为的影响

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摘要

This paper presents the experimental investigation into the effect of salinity on the strength behavior of cement-stabilized dredged clays as fills at high initial water contents. One source of dredged clay was dredged from Baima Lake of China. Specimens were prepared having different porewater salinities by blending the air-dried clays with NaCl solution at different salt concentrations. The prepared saline dredged clay specimens were thereafter adjusted to different initial water contents and blended with cement with different amounts. Unconfined compression tests were performed on cement-stabilized dredged clay specimens after 28-day curing. All tested specimens show strain softening behavior where the axial strain corresponding to the peak stress varies with amount of cement. Stress-strain curve for the specimen with lower salinity lies above on that of higher one. Initial water content has a negative effect on the strength of cement-treated clays while cement has a positive effect on the development of strength for cement-treated dredged clays due to the pozzolanic reactions. The presence of salt has an adverse influence on the obtaining of strength for cementtreated dredged clays because salt can inhibit cement from generating C-S-H and C-A-H. Unconfined compressive strength almost linearly decreases with the increasing salinity. A quantitative expression was presented to calculate the unconfined compressive strength for cement-treated saline dredged clays concerning the effects for initial water content, porewater salinity and amount of cement.
机译:本文对高初始水含量下盐度对水泥稳定疏dr粘土作为填料的强度行为的影响进行了实验研究。一种疏clay粘土的来源是从中国白马湖疏dr而来的。通过将风干粘土与不同盐浓度的NaCl溶液混合,可以制得具有不同孔隙水盐度的样品。此后,将制备的盐水疏clay粘土样品调节至不同的初始含水量,并与不同量的水泥混合。固化28天后,对水泥稳定的疏clay黏土标本进行了无边压缩试验。所有测试样品均显示出应变软化行为,其中对应于峰值应力的轴向应变随水泥量而变化。盐度较低的试样的应力-应变曲线高于较高盐度的试样。初始水含量对水泥处理过的粘土的强度具有负面影响,而水泥由于火山灰反应而对水泥处理过的疏clay粘土的强度发展具有积极影响。盐的存在对水泥处理的疏ged粘土的强度获得不利影响,因为盐会抑制水泥生成C-S-H和C-A-H。随着盐度的增加,无限制抗压强度几乎呈线性下降。提出了一个定量表达式来计算水泥处理的盐水疏clay粘土的无侧限抗压强度,该强度涉及初始含水量,孔隙水盐度和水泥用量的影响。

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