Page 95 - 2022年第53卷第6期
P. 95
(1):103 - 110,119.
[13] 侯作富.融雪化冰用碳纤维导电混凝土的研制及应用研究[D].武汉:武汉理工大学,2003.
[14] MALAKOOTIA,THEHW,SADATIS,etal.Designandfull - scaleImplementationoftheLargestOperationalElectri
callyConductiveConcreteHeatedPavementSystem [J].ConstructionandBuildingMaterials,2020,255:119229.
[15] SHISHEGARAN A,DANESHPAJOH F,TAGHAVIZADE H,etal.Developingconductiveconcretecontaining
wireropeandsteelpowderwastesforroutedeicing [J].ConstructionandBuildingMaterials,2020,232:117184.
[16] ABDUALLAH,CEYLANH,KIM S,etal.System requirementsforelectricallyconductiveconcreteheatedpave
ments[J].TransportationResearchRecordJournaloftheTransportationResearchBoard,2016(2569):70 - 79.
[17] FENGX,YANQ,LUX,etal.Protectionperformanceofthesubmergedsacrificialanodeonthesteelreinforce
mentintheconductivecarbonfibermortarcolumninsplashzonesofmarineenvironments [J].CorrosionScience,
2020,174:108818.
[18] YUANTF,CHOIJS,HONGSH,etal.Enhancingtheelectromagneticshieldingandimpactresistanceofare
inforcedconcretewallforprotectivestructures [J].CementandConcreteComposites,2021,122:104148.
[19] STALEYZ R, TUAN C Y, ESKRIDGE K M, etal.Usingtheheatgenerated from electricallyconductive
concreteslabstoreduceantibioticresistanceinbeefcattlemanure[J].TheScienceofthetotalenvironment,
2021,768:144220.
[20] WANGL,ASLANIF.Areviewonmaterialdesign,performance,andpracticalapplicationofelectricallyconduc
tivecementitiouscomposites[J].ConstructionandBuildingMaterials,2019,229:116892.
[21] DEHGHANPOURH,YILMAZK,IPEKM.Evaluationofrecyclednanocarbonblackandwasteerosionwiresin
electricallyconductiveconcretes[J].ConstructionandBuildingMaterials,2019,221:109 - 121.
[22] RAPHAELFL,LUCAS,DAVIC.Developmentofelectricallyconductiveconcreteandmortarswithhybridcon
ductiveinclusions[J].ConstructionandBuildingMaterials,2020,237:117470.
[23] 李明超,闵巧玲,张梦溪,等.新型碾压式导电混凝土功能材料力学性能试验与精细仿真分析[J?OL].中
国科学(技术科学):1 - 14[2021 - 12 - 12].http:??kns.cnki.net?kcms?detail?11.5844.TH.20210730.1547.006.html.
[24] LIMAG,NALONGH,SANTOSRF,etal.Microstructuralinvestigationoftheeffectsofcarbonblacknanopar
ticleson hydration mechanisms, mechanicaland piezoresistive propertiesofcementmortars[J].Materials
Research,2021,24(4):e20200539.
[25] LIH,XIAOH G,OU JP.Effectofcompressivestrainonelectricalresistivityofcarbonblack - filledcement -
basedcomposites [J].CementandConcreteComposites,2006,28(9):824 - 828.
[26] AL - DAHAWIA,SARWARYM H,?ZTRKO,etal.Electricalpercolationthresholdofcementitiouscomposites
possessingself - sensingfunctionalityincorporatingdifferentcarbon - basedmaterials[J].SmartMaterialsandStruc
tures,2016,25(10):105005.
[27] 刘涵.水泥基电热模块的制备与表征[D].秦皇岛:燕山大学,2015.
[28] WUJ,LIUJ,YANGF.Three - phasecompositeconductiveconcreteforpavementdeicing[J].Constructionand
BuildingMaterials ,2015,75:129 - 135.
[29] ZHANGM,LIM,ZHANGJ,etal.Experimentalstudyonelectro - thermalandcompactionpropertiesofelectri
callyconductiveroller - compactedconcreteoverwinteringlayerinhighRCCdams [J].ConstructionandBuilding
Materials ,2020,263:120284.
[30] 长江水利委员会长江科学院.水工碾压混凝土试验规程:DL?T5433 - 2009[S].北京:中国电力出版社,2009.
[31] 陈伟康,刘清风.干湿交替下混凝土中水分和多离子耦合传输的数值研究[J].水利学报,2021,52(5):
622 - 632.
[32] DEGRAZIAM T,DEDAH,SANCHEZL.Theinfluenceofthebindertype& aggregatenatureontheelectrical
resistivityofconventionalconcrete [J].JournalofBuildingEngineering,2021,43:102540.
[33] SCRIVENERKL,CRUMBIEAK,LAUGESEN P.Theinterfacialtransitionzone(ITZ)betweencementpaste
andaggregateinconcrete [J].InterfaceScience,2004,12(4):411 - 421.
[34] 陈思颖,雷冬,赵彬娜,等.混凝土界面过渡区弹性模量分布的数值模拟[J].混凝土,2020(4):46 - 49.
[35] 任青文,殷亚娟,沈雷.混凝土骨料随机分布的分形研究及其对破坏特性的影响 [J].水利 学 报,2020,
51(10):1267 - 1277,1288.
[36] 金浏.细观混凝土分析模型与方法研究[D].北京:北京工业大学,2014.
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