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砂土介质中土压力盒的力学响应特性
引用本文:刘先珊,董存军.砂土介质中土压力盒的力学响应特性[J].土木建筑与环境工程,2012,34(4):12-18.
作者姓名:刘先珊  董存军
作者单位:重庆大学土木工程学院,重庆400045;重庆大学山地城镇建设与新技术教育部重点实验室,重庆400045
基金项目:国家自然科学基金,重庆大学"985工程"专项基金,中央高校基本科研业务费
摘    要:砂土介质是典型的颗粒物质,介质的有效应力和变形都与骨架上的颗粒特性直接相关,而颗粒性状的改变进而影响着测试过程中土压力盒的力学响应.但宏观力学理论和连续介质方法无法准确解释介质颗粒间的力学行为,为了对实际工程进行更准确的测试,基于细观分析方法研究了荷载作用下的砂土颗粒接触形成的力链网络,模拟了力传递过程,并分析了加卸载...

关 键 词:土压力盒  细观分析方法  力链网络  力学响应  迟滞性

Mechanical Response Characteristics of the Earth Pressure Cell in Sand
LIU Xianshan and DONG Cunjun.Mechanical Response Characteristics of the Earth Pressure Cell in Sand[J].土木建筑与环境工程,2012,34(4):12-18.
Authors:LIU Xianshan and DONG Cunjun
Affiliation:School of Civil Engineering; Key Laboratory of New Technology for Construction of Cities in Mountain Area, Ministry of Education, Chongqing University, Chongqing 400045, P.R.China;School of Civil Engineering; Key Laboratory of New Technology for Construction of Cities in Mountain Area, Ministry of Education, Chongqing University, Chongqing 400045, P.R.China
Abstract:Sand is a typical particle structure. The effective stress and corresponding deformation are both determined by the particle characteristics of the medium skeleton, and the changeable condition of the particles will further affect the mechanical response of the earth pressure cell in the test process. To correctly measure the earth pressure value, micromechanical method was applied to analyse the force chain formed by the particles contact under loading unloading condition, and the transferring process, the force strain curve and relationship between the cell mechanical response and the ideal response curve were analyzed in detail, which verified the above mechanical response model based on Particle Flow Code (PFC) method. According to the structural characteristics of the sand and above numerical model, the loading condition, porosity, friction coefficient between the particles and stiffness of the earth pressure cell affecting mechanical response of the earth pressure cell were deeply investigated, the numerical results indicated that there were obvious hysteresis and strain irreversibility for the response curve, and the measured value was sensitive to the above factors. Therefore, research on the force chain structure and corresponding evolution law brings forward a scientific base and new research means for understanding its micromechanical characteristics, and different factors influencing the earth pressure cell are also important for cell calibration and practical monitoring to get more correct earth pressure value.
Keywords:earth pressure cell  micromechanical method  force chain network  mechanical response  hysteresis
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