王言磊

个人信息Personal Information

教授

博士生导师

硕士生导师

主要任职:Professor

性别:男

毕业院校:哈尔滨工业大学

学位:博士

所在单位:土木工程系

学科:结构工程

办公地点:辽宁省大连市高新区凌工路2号大连理工大学土木工程学院4号楼311室  116024

联系方式:Tel: 0411-84706493; Mob: 139420502六六; QQ: 12557297

电子邮箱:wangyanlei@dlut.edu.cn

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Multifunctional cement-based materials modified with electrostatic self-assembled CNT/TiO2 composite filler

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论文类型:期刊论文

发表时间:2020-03-30

发表刊物:CONSTRUCTION AND BUILDING MATERIALS

收录刊物:EI、SCIE

卷号:238

ISSN号:0950-0618

关键字:Multifunction; Electrostatic self-assembled; CNT/TiO2 composite filler; Cement-based materials

摘要:Owing to its good conductive property, dispersion, and low water absorption property, the electrostatic self-assembled CNT/TiO2 composite filler is an excellent candidate for developing multifunctional cement-based materials. Therefore, this study fabricated multifunctional cement-based materials with a CNT/TiO2 composite filler and explored their electrical properties, thermal-resistance effect, electromagnetic shielding and absorption properties. CNT/TiO2 modified cement-based materials showed percolation characteristics through direct current (DC), alternating current (AC) resistivity methods and percolation theory, with percolation threshold zone ranging from 0.15 vol% to 0.45 vol%. The AC impedance spectrum of the CNT/TiO2 modified cement-based materials can be accurately described by equivalent circuits, which change in the percolation threshold zone. The resistivity of the CNT/TiO2 modified cement-based materials decreased with increasing temperature, which has potential application in smart infrastructures. With increasing CNT/TiO2, the rate of decrease of the electrical resistivity of the composites changed sharply during the percolation threshold zone for increasing temperature from -30 degrees C to 60 degrees C. The electromagnetic shielding effectiveness of CNT/TiO2 modified cement-based materials was up to 1.30 times greater than that of the control cement-based materials. When the CNT content was 1.16 vol%, the reflectivity of the cement-based composite reached -32.01 dB at a frequency of 16.88 GHz. (C) 2019 Elsevier Ltd. All rights reserved.