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- W2019946750 abstract "In this study, the road snow-melting system consisted of CNFP thermal source, AlN/Epoxy-based insulated-encapsulatedlayer and MWCNT/cement-based thermal conductive layer, was fabricated. The carbon nano-fiber paper (CNFP) takenexcellent thermal and electrical properties was integrated into snow-melting system as the high-efficient thermal source.The remarkable electro-thermal and resistive properties of CNFP with the thickness of 0.38mm were investigated, andverified much higher efficiency electro-thermal property than other papery materials. The linearly temperature-dependenteffect of CNFP resistivity was founded in certain temperature scope and met the line model as a function of temperature.Carbon nanotubes (CNT) attracted many filed scholars' focus based on its unique thermal conduction as a strongthermal-transferring candidate since it was founded. A new approach, named electric repulsion/high-frequencyoscillatory dispersion, was proposed to fabricate the MWCNT/cement-based composites. The sample, filled with 3%MWCNT by the amount of cement, presents the significant improvement of thermal conductive property in contrast withother fillers and dispersing methods, which was integrated into snow-melting system with other parts as the thermalconductive layer material. The AlN/Epoxy-based composite, filled with 20% micron-AlN by the weight of mixture as thebest candidate of insulated-capsulation material, would be used to guarantee the insulation. Due to the snow-meltingfield test, the snow-melting characteristics of integrated snow-melting system, dependent on the ambient temperature,wind speed, heat flux density and snow thickness, were investigated. The results not only verified the high-efficient,stable, feasible and economic properties, but also provided the valuable parameters for further snow-melting orice-deicing investigation." @default.
- W2019946750 created "2016-06-24" @default.
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- W2019946750 date "2011-03-24" @default.
- W2019946750 modified "2023-09-23" @default.
- W2019946750 title "Experimental investigation of road snow-melting based on CNFP self-heating concrete" @default.
- W2019946750 doi "https://doi.org/10.1117/12.879307" @default.
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