
粉煤灰综合利用
FLY ASH COMPREHENSIVEUTILIZATION
2018
NO.4
试验与应用
污水环境下粉煤灰改良土力学特性研究 Study on Mechanical Properties of improved Soil with Fly Ash in Sewage Environment
姚运
(成都理工大学工程技术学院,四川乐山614007)
摘要:为了探究污水环境下粉煤灰改良土的力学变化特性,对特定配比的粉煤灰改良土进行了不同污水浓度环境和养护时间下的单轴抗压、剪切以及渗透试验。研究结果表明:相同养护龄期下,污水浓度越高,粉煤灰改良土的抗压、抗剪强度以及渗透率则均逐渐减小;清水环境下,粉煤灰改良土的强度随养护时间增加而逐渐增大,高污水浓度下,强度呈先增后减的趋势,而渗透系数在清水、低浓度污水以及高浓度污水下的变化特征分别为负幂函数降低、先减后增以及逐渐增大。试验结果对于粉煤灰改良土在工程建设领域的应用具有重要意义。
关键词:污水环境;粉煤灰改良土;浓度;养护龄期;强度;渗透系数
中图分类号:TU528.1
文献标识码:A
文章编号:10058249(2018)04-0003-04 YaoYun
(Engineering & Technical College of Chengdu University of Technology, Sichuan Leshan 614007, China)
Abstract: To explore the mechanical change characteristics of fly ash modified soil, uniaxial compression, shear and permeability tests of different proportion of fly ash improved soil under different sewage concentration environment and euring time were carried out. The results showed that in the same curing period, the higher the concentration of wastewater, compressive strength, shear strength and permeability decreased; In clean water environment, fly ash improved soil strength increased gradually with the increase of curing time. In high concentration of wastewater, the strength increased firstly and then decreased. Coefficient of permeability in the water and wastewater of low concentration and high concentration wastewater changes were negative power function decrease, and increase gradually decreased first and then increased. The test results are of great significance for the application of fly ash modified soil in the field of engineering construction.
Keywords: sewage environment; fly ash modified soil; concentration; curing age; strength; permeability coefficien
粉煤灰是燃煤留下的固体废渣,主要成分为: SiO2、Al,Os、FeO、FeOs、CaO、TiO,等,由于其特殊的物理化学性质,目前被广泛应用于改善混凝土工作性能、提高土壤的营养性以及改良一些特殊土的物理化学特性,在工程建设领域也已被广泛应用1-5]
庄心善等【6]对4种不同百分比玄武岩纤维掺量下的粉煤灰膨胀土中,研究了纤维掺量、龄期以及围岩对加筋粉煤灰改良膨胀土力学特性的影响研究。周冬梅等[7]则开展了粉煤灰对天然盐渍土的改良特
·基金项目:四川省教育厅科研项目(项目编号:16ZB0401);乐山市科技局项目(项目编号:14GZD045)
作者简介:姚运(1984~):男,硕士,讲师,主要研究方向:新型及智能建筑材料、建筑加固抗震等。邮箱:yufp77@163.com
收稿日期:2018-03-14 万方数据
性规律的试验分析,并认为氯盐渍土的粉煤灰最优配合比为15%。王峻等18研究了动荷载环境下素黄土和不同掺合比粉煤灰改良黄土的应力-应变变化特征。杨成斌等【9]开展了干湿循环作用下改良膨胀土的工程性质变化规律的试验研究,发现塑性指数、液限等随随干湿循环次数的增加而增大,而塑限、强度则随循环次数增多而减小。张西海等【10】从工程试验角度出发,对水泥改良粉土和水泥粉煤灰改良粉土后的物理力学性能进行了比较。
地下建筑工程很多时候会遇到一些具有腐蚀性的水介质环境,这些具有强酸、强碱的水质会逐步改变工程材料的物理力学性质,并使之逐渐丧失结构性【11.12]。目前,对粉煤灰改良土在污水环境下力学性能的系统研究还比较鲜见,基于此,本文开展了
·3·