1. 中山大学土木工程学院,广东,广州,510275
2.
纸质出版日期:2019,
网络出版日期:2019-7-25,
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赵珊珊, 刘镇, 杨旭, 等. 有机生态酯类材料改良粉质黏土试验[J]. 中山大学学报(自然科学版)(中英文), 2019,58(4):119-129.
赵珊珊, 刘镇, 杨旭, et al. Experimental study on silty clay treated with eco-organic ester polymer[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2019,58(4):119-129.
赵珊珊, 刘镇, 杨旭, 等. 有机生态酯类材料改良粉质黏土试验[J]. 中山大学学报(自然科学版)(中英文), 2019,58(4):119-129. DOI: 10.13471/j.cnki.acta.snus.2019.04.013.
赵珊珊, 刘镇, 杨旭, et al. Experimental study on silty clay treated with eco-organic ester polymer[J]. Acta Scientiarum Naturalium Universitatis SunYatseni, 2019,58(4):119-129. DOI: 10.13471/j.cnki.acta.snus.2019.04.013.
以广东地区粉质黏土为研究对象,从土质改良的角度出发,采用有机生态酯类材料-纳米水性黏合剂,通过无侧限抗压强度试验、直接剪切试验、渗透试验、扫描电镜试验、粒径分析和压汞试验,研究了不同加量纳米水性黏合剂改良粉质黏土的作用规律与效果。试验表明:纳米水性黏合剂能有效提高粉质黏土的强度;在养护3 d后,纳米水性黏合剂的作用较为充分,且土的强度随纳米水性黏合剂加量的增加而增大;纳米水性黏合剂能够通过黏结、包裹细颗粒改良土的结构,为“颗粒重组式”结构改良模式;粉质黏土的渗透系数随黏合剂加量的增加呈先增大后降低的规律;纳米水性黏合剂在土颗粒表面及孔隙内会形成弹性膜,该弹性膜的形成增加了粒间连结,从而提高了土的稳定性。纳米水性黏合剂通过提高粉质黏土的稳定性、结构优化、改良粉质黏土的渗透性为植被生长提供良好的基质环境,可以作为生态护坡材料应用于边坡防护。
An eco-organic ester polymer named as Aqua-Dispersing-Nano-Binder (ADNB) was used to stabilize silty clay distributed in Guangdong Province. A series of experiences such as unconfined compressive strength test
direct shear test
osmotic test
Scanning Electron Microscope test (SEM)
particle size analysis and Mercury Intrusion Porosimetry test (MIP) have been performed with different ADNB content and the variation regularity of strength
permeability and soil structure was obtained. The strength tests show that ADNB can effectively improve the soil strength which increases with the ADNB dosages and the ADNB can be fully effective after approximately 3 days of conservation of soil; ADNB can improve the structure of soils by bonding and wrapping fine particles which is summarized as “granular recombination” structure improvement mode; Osmotic test shows that the permeability coefficient of the soil increases and then decreases with the increasing ADNB dosages
and the microscopic study shows that the elastic film formed in the surface and pores of soils increases the grain-to-particle connection
thus improving the stability of the soil. ADNB provides a good substrate environment for vegetation growth by improving soil stability
structural optimization and improved soil permeability
thus can be used as ecological material for slope protection.
纳米水性黏合剂土质改良微观结构渗透性机理分析
Aqua-Dispersing-Nano-Bindersoil improvementmicroscopic structurepermeabilitymechanism analysis
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