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Three-Dimensional Printing Multifunctional Engineered Cementitious Composites(ECC)for Structural Elements

机译:用于结构元件的三维印刷多功能工程化水泥复合材料(ECC)

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Three-dimensional printing(3DP)has great potential to facilitate fabrication of structures with smart functions.This research aims to develop an effective and efficient method to fabricate multifunctional structural elements using Engineered Cementitious Composites(ECC)through 3DP.To this end,ECC slabs measuring 304.8 mm by 76.2 mm by 12.7 mm(length by width by thickness)are prepared for experimental testing.Titanium dioxide nanoparticles are incorporated in the slabs to deliver photocatalytic functionality for chemical reduction of gaseous air pollutants.Two schemes for incorporating titanium dioxide nanoparticles into the ECC slabs are investigated and compared.3DP is employed to fabricate the slabs and compared with the conventional cast-in-mold fabrication method.The photocatalytic functionality of different slabs is evaluated through nitrogen oxides abatement testing under ultraviolet light.The concentration of nitrogen oxides is measured in real time.After the nitrogen oxides abatement testing,all slabs are tested to failure under four-point bending to evaluate their fiexural properties.The results show that 3DP is promising to fabricate multifunctional ECC structural elements with improved efficiency.
机译:三维印刷(3DP)具有很大的潜力,以促进结构的制造与智能功能。该研究的目的是建立一个有效的和有效的方法来使用工程用水泥基复合材料(ECC)通过3DP.To为此,ECC板坯编造多功能的结构元件12.7毫米(由厚度宽度长度)测定304.8毫米通过76.2毫米是实验testing.Titanium氧化钛纳米颗粒在板坯并入用于将二氧化钛纳米颗粒递送到用于化学还原气态空气pollutants.Two方案的光催化功能性制备的ECC板坯进行调查,并采用compared.3DP来制造板坯,并用不同的板坯的常规浇铸的模具制造method.The光催化功能相比,通过氮氧化物评估下的氮氧化物的紫外线light.The浓度消减测试在真实time.After氮氧化物ABA被测量tement测试,所有板坯下四点弯曲,以评估其挠曲详细性能结果表明,3DP是有希望制造具有改进的效率的多官能ECC结构元件测试失败。

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