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Lightweight Concrete 3D Printing by Selective Cement Activation-Investigation of Thermal Conductivity,Strength and Water Distribution

机译:轻量级混凝土3D打印通过选择性水泥激活 - 调查导热系数,强度和水分布

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The 3D printing technology Selective Cement Activation(SCA)is a particle-bed-based additive manufacturing method in which a dry mixture of sand and cement is spread in thin layers and solidified with water.SCA allows the production of complex and high-resolution components without the necessity for additional support structures.One drawback of concrete 3D-printing for free formed facade elements has been the need for additional thermal insulation to fulfil relevant building requirements.This causes an additional economic and ecological effort to create custom-built insulation to fit the 3D facade.Therefore,this paper discusses the fabrication of lightweight concrete through SCA by replacing the sand(S)with lightweight aggregates(LA,expanded glass beads)in order to decrease the thermal conductivity.However,the open pore structure of the lightweight aggregate could also change the water distribution behavior between the layers which would positively affect the hydration process.Test series with different w/c-ratios(0.3,0.4 and 0.5)and type of aggregate(S and LA)were produced.Additionally,the test series with LA were fabricated without and with methylcellulose to further increase water absorption.The strength(compressive and flexural)and thermal conductivity were measured direction dependent to take anisotropic effects into account.Additionally,the water distribution perpendicular to the layers was determined using'H-NMR.Specimens produced with LA showed a 3.5 to 4.4 times lower thermal conductivity compared to the specimens produced with S.However,using LA affected the density and thus the strength values of the material.Additionally,the open pore structure of the LA affected the water distribution between the layers which lead to an increase in strength with decreasing w/c-ratio.This is contrary to previous experiments using SCA and sand where strength has improved with increasing w/c-ratio [1-3].
机译:3D打印技术选择性水泥激活(SCA)是一种基于颗粒床的添加剂制造方法,其中砂和水泥的干混合物在薄层中涂布并用水凝固.SCA允许生产复合物和高分辨率组分在没有额外的支持结构的必要性中,混凝土3D打印的缺点是无需额外的热绝缘,以满足相关的建筑物要求。这导致额外的经济和生态努力,以创造定制的绝缘材料以适应因此,3D Facade。因此,本文通过用轻质聚集体(La,膨胀玻璃珠)更换沙子来讨论轻质混凝土通过SCA的制造,以降低导热系数。然而,轻质的开放式孔结构聚集体也可以改变积极影响水合过程的层之间的水分布行为。最终的Seri用不同的W / C比(0.3,0.4和0.5)和骨料型,并制成综合体(S和La)。加法,用甲基纤维素制造与LA的试验系列,以进一步提高吸水性。强度(压缩测量方向的弯曲和导热率取决于取向各向异性效应。加法,使用La的H-NMR.Specimens测定垂直于层的水分布显示与使用S.使用LA产生的标本影响了材料的密度,从而影响了材料的强度值.Aditionally,LA的开放孔结构影响了层之间的水分布,导致强度的增加,随着越来越多的力而导致强度的增加比例与使用SCA和砂的先前实验相反,其中强度随着W / C比率的增加而改善[1-3]。

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