石灰-木质素改良黏土的动剪切模量特性
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作者单位:

江苏大学 土木工程与力学学院,江苏 镇江 212013

作者简介:

周恩全(1986- ),男,博士,副教授,主要从事环境岩土工程及土动力学研究,E-mail:enquan1986@126.com。
ZHOU Enquan (1986-), PhD, associate professor, main research interests: environmental geotechnical engineering and soil dynamics, E-mail: enquan1986@126.com.

通讯作者:

中图分类号:

TU442

基金项目:

南京市交通运输科技项目(2022)


Dynamic shear modulus of clay stabilized by lime-lignin
Author:
Affiliation:

Faculty of Civil Engineering and Mechanics, Jiangsu University, Zhenjiang 212013, Jiangsu, P. R. China

Fund Project:

Nanjing Transportation Technology Project (2022)

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    摘要:

    将木质素用于土体改良是处置木质素的有效措施之一。为研究石灰-木质素共同改良黏土的效果,开展石灰-木质素改良黏土的共振柱试验,分析固结围压、石灰-木质素掺量对改良土动剪切模量特性的影响,并基于相对结构度方法提出改良土最大动剪切模量的表征模型。结果表明:随着围压的增加,石灰-木质素改良土的最大动剪切模量以及动剪切模量比提高;4%石灰+4%木质素改良土的最大动剪切模量与动剪切模量比均为最高,在300 kPa围压条件下,该改良土的最大动剪切模量较8%石灰改良土提高了17.3%,较纯土提高了185.4%;基于抗剪强度参数提出改良土的相对结构度计算方法,其中4%石灰+4%木质素改良土的相对结构度最大;在Hardin公式基础上引入相对结构度,建立改良土最大剪切模量的表征模型,该模型具有较好的准确性,可为评价石灰-木质素改良黏土的动剪切模量特性提供借鉴。

    Abstract:

    Using lignin for soil stabilization is one of the effective measures for lignin disposal. In order to study the effect of lim-lignin on stabilizing clay, a set of resonance column tests was conducted on clay stabilized by lime-lignin. The effects of confining pressure and lime-lignin content on the dynamic shear modulus characteristics of the stabilized soil were analyzed. Based on the relative structural degree method, a characterization model for the maximum dynamic shear modulus of the stabilized soil was proposed. The results show that the maximum dynamic shear modulus and dynamic shear modulus ratio of clay stabilized by lime-lignin increase with the increase of confining pressure. The maximum dynamic shear modulus and dynamic shear modulus ratio of 4% lime +4% lignin stabilized clay are the highest. Under the confining pressure of 300 kPa, the maximum dynamic shear modulus of 4% lime +4% lignin stabilized clay is 17.3% higher than that of 8% lime stabilized clay and 185.4% higher than that of pure clay. Based on shear strength parameters, the relative structural degree of stabilized soil is calculated and the relative structural degree of 4% lime +4% lignin stabilized clay is the highest. On the basis of Hardin formula, a characterization model of maximum shear modulus is established by introducing the relative structural degree. The model has good accuracy and can provide a basis for evaluating the dynamic shear modulus of clay stabilized by lime-lignin.

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引用本文

周恩全,刘平,张曼,陆建飞.石灰-木质素改良黏土的动剪切模量特性[J].土木与环境工程学报(中英文),2026,48(2):80-89. ZHOU Enquan, LIU Ping, ZHANG Man, LU Jianfei. Dynamic shear modulus of clay stabilized by lime-lignin[J]. JOURNAL OF CIVIL AND ENVIRONMENTAL ENGINEERING,2026,48(2):80-89.10.11835/j. issn.2096-6717.2024.005

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  • 收稿日期:2023-10-27
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  • 在线发布日期: 2026-03-31
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