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基于两种波形作用结构性软黏土动力特性试验研究

杨爱武 张卫

工程地质学报2017,Vol.25Issue(6):1395-1404,10.
工程地质学报2017,Vol.25Issue(6):1395-1404,10.DOI:10.13544/j.cnki.jeg.2017.06.001

基于两种波形作用结构性软黏土动力特性试验研究

EXPERIMENTAL STUDY ON DYNAMIC PROPERTIES OF STRUCTURAL SOFT CLAY BASED ON TWO KINDS OF WAVEFORM

杨爱武 1张卫1

作者信息

  • 1. 天津城建大学,天津市软土特性与工程环境重点实验室 天津300384
  • 折叠

摘要

Abstract

This paper uses GCTS dynamic hollow cylindrical torsional shear apparatus and two cyclic loading waveform of sine wave and square wave.It considers the confining pressure,the influence of the vibration amplitude,frequency and the minor factors.It studies the dynamic characteristics of structural soft clay.The test results show the follows.When the dynamic stress is below the yield stress of soil structure,waveform's influence on the overall shape of the dynamic stress-strain relationship curve is very small.When dynamic stress exceeds the structure yield stress,stress-strain relationship is softening type.The softening degree of square wave is higher.Under the same conditions,square wave accumulated deformation is always greater than that of the sine wave.Waveform has an effect on pore pressure changes.The values of pore pressure under sinusoidal wave action is always greater than that of the square wave.Amplitude for the performance of pore pressure change is as follows:when the rising speed of stable amplitude is quick,the value is greater than the critical type amplitude under the action of pore pressure value.Namely the critical type amplitude under the action of pore pressure hysteresis phenomenon is serious.Yield strain and dynamic strength decrease with the increase of the vibration time trend,eventually tend to a certain value.Finally numerical size is related to the waveform.The sine wave is less than the square wave,which is contrary to the sine wave is greater than the square wave.

关键词

波形/结构性软黏土/动应力-应变/屈服应变/动强度

Key words

Waveform/Structural soft soil/Dynamic stress strain/Yield strain/Dynamic strength

分类

天文与地球科学

引用本文复制引用

杨爱武,张卫..基于两种波形作用结构性软黏土动力特性试验研究[J].工程地质学报,2017,25(6):1395-1404,10.

基金项目

国家自然科学基金项目(41372291),天津市科技计划项目(15JCZDJC40600,15ZCZDSF00220)资助. (41372291)

工程地质学报

OA北大核心CSCDCSTPCD

1004-9665

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