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法向循环荷载下土石混合料-织物界面剪切特性研究

李水江 姚嘉敏 刘飞禹 刘洪波 侯娟

岩土力学2023,Vol.44Issue(11):3082-3090,9.
岩土力学2023,Vol.44Issue(11):3082-3090,9.DOI:10.16285/j.rsm.2022.1831

法向循环荷载下土石混合料-织物界面剪切特性研究

Analysis of shear characteristics of soil-rock mixture-geotextile interface under normal cyclic loading

李水江 1姚嘉敏 2刘飞禹 2刘洪波 1侯娟2

作者信息

  • 1. 广州环保投资集团有限公司,广东广州 510330
  • 2. 上海大学力学与工程科学学院,上海 200444
  • 折叠

摘要

Abstract

The dynamic shear characteristics of the reinforcement-soil interface affect the stability and durability of reinforced soil-rock mixture subgrades.A series of static and dynamic direct shear tests was conducted on the soil-rock mixture-geotextile interface using a large dynamic direct shear apparatus under different rock contents(0%,25%,50%,75%and 100%).The effects of normal stress amplitude(10,20,30,40 and 60 kPa)and normal loading frequency(0.5,1.0 and 2.0 Hz)on the shear response of the interface were analyzed.The test results indicate that the shear strength of the upper and lower boundaries of the interface first increases and then decreases with the increase in rock content.This is positively correlated with the normal stress amplitude,while negatively correlated with the normal loading frequency.An increase in rock content amplifies the interface dilatancy effect,while increases in stress amplitude and loading frequency reduce the interface dilatancy effect.The enhancement of the interface friction effect can be attributed to increased rock content and stress amplitude.An empirical formula for the interface friction coefficient,as a function of rock content,stress amplitude,and loading frequency,has been established.This formula coincides well with the test results.

关键词

筋土界面/土石混合料/循环荷载/含石量/应力振幅/加载频率

Key words

soil-geosynthetic interface/soil-rock mixture/cyclic loading/rock content/stress amplitude/loading frequency

分类

土木建筑

引用本文复制引用

李水江,姚嘉敏,刘飞禹,刘洪波,侯娟..法向循环荷载下土石混合料-织物界面剪切特性研究[J].岩土力学,2023,44(11):3082-3090,9.

基金项目

国家自然科学基金资助项目(No.52078285).This work was Supported by the National Natural Science Foundation of China(52078285). (No.52078285)

岩土力学

OACSCD

1000-7598

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