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混凝土结构层间力学性能的电学表征
引用本文:朱四荣,李卓球,宋显辉.混凝土结构层间力学性能的电学表征[J].华中科技大学学报(自然科学版),2007,35(4):103-105.
作者姓名:朱四荣  李卓球  宋显辉
作者单位:武汉理工大学,理学院,湖北,武汉,430070
摘    要:以由碳纤维布作为界面层的混凝土及碳纤维混凝土为例,根据混凝土层间接触电阻的变化,对剪切荷载及弯曲荷载作用下的混凝土界面粘接性能及剪切强度进行电学参数变化实验.实验结果表明:素混凝土层间接触电阻随着层间粘接松动而增大,当发生粘接破坏时,则急剧增大;碳纤维混凝土层间接触电阻随着剪切强度的增大而增大,发生剪切破坏时,则急剧增大;碳纤维混凝土层间接触电阻的敏感性比素混凝土层间接触电阻对界面粘接及剪应力的敏感性要好,低应力作用下,碳纤维混凝土层间接触电阻随应力明显变化.

关 键 词:混凝土结构  力学性能  碳纤维(毡)  电学表征  碳纤维混凝土  结构层  力学性能  电学表征  layers  concrete  mechanical  properties  characterization  应力作用  剪应力  界面粘接性能  敏感性  剪切破坏  发生  素混凝  结果  实验  电学参数  剪切强度  荷载作用
文章编号:1671-4512(2007)04-0103-03
修稿时间:03 28 2006 12:00AM

Electrical characterization of mechanical properties between concrete layers
Zhu Sirong,Li Zhuoqiu,Song Xianhui.Electrical characterization of mechanical properties between concrete layers[J].JOURNAL OF HUAZHONG UNIVERSITY OF SCIENCE AND TECHNOLOGY.NATURE SCIENCE,2007,35(4):103-105.
Authors:Zhu Sirong  Li Zhuoqiu  Song Xianhui
Institution:School of Science, Wuhan University of Technology, Wuhan 430070, China
Abstract:Taken concrete and carbon fiber reinforced concrete layers interfaced with carbon fiber mats examples,the bonding properties and shearing strengthen of the concrete interfaces were electrically tested under shearing and bending loads,based on the relationship between contact resistance and mechanical properties between concrete layers.The experimental result shows that contact resistance between concrete layers increases sharply due to interface debonding.It also indicates that contact resistance between carbon fiber reinforced concrete layers increases with the increase of shearing stress or shearing strength,while increases sharply when the interface debonding occurs.Contact resistance between carbon fiber reinforced concrete layers is more sensitive to shearing stress or shearing strength between layers than that between plain concrete layers,and it changes obviously with the shearing stress of the interface under small stress.
Keywords:concrete structures  mechanical properties  carbon fiber(mat)  electrical characterization
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