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Autogenous Shrinkage and Crack Resistance of Carbon Nanotubes Reinforced Cement-Based Materials

机译:碳纳米管增强水泥材料的自生收缩和抗裂性

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Cracking caused by shrinkage deformation of cement-based materials at early age is a major problem leading to material failure in restrained conditions. Carbon nanotubes (CNTs) are incorporated into cement-based materials, and the autogenous shrinkage and crack resistance of the new composite materials obtained by linear shrinkage and ring tests are studied to solve the destruction of the materials caused by the shrinkage of cement-based materials. The results showed that addition of CNTs significantly inhibited the autogenous shrinkage of cement-based materials with maximum reduction rate above 40%. CNTs also significantly improved the cracking resistance of cement-based materials. The optimal effect was noticed at CNTs content of 0.1?wt%. The incorporation of CNTs not only inhibits the autogenous shrinkage of cement-based materials, but also inhibits the drying shrinkage of cement-based materials to some extent. Therefore, carbon nanotubes have the potential to solve the destruction of materials caused by shrinkage of cement-based materials.
机译:在休息时期的水泥基材料的收缩变形引起的破解是导致抑制条件下的材料失效的主要问题。将碳纳米管(CNT)掺入基于水泥基材料中,研究了通过线性收缩和环试验获得的新复合材料的自生收缩和抗裂性,以解决由水泥基材料收缩引起的材料的破坏。结果表明,添加CNT的添加显着抑制了水泥基材料的自生收缩,最大减少率高于40%。 CNT还显着提高了水泥基材料的开裂性。在CNT含量为0.1wt%时注意到最佳效果。 CNT的掺入不仅抑制了水泥基材料的自生收缩,而且还抑制了水泥基材料的干燥收缩在一定程度上。因此,碳纳米管具有解决由水泥基材料收缩引起的材料的破坏。

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