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TAILORING A NEW RESTRAINED SHRINKAGE TEST FOR FIBER REINFORCED CONCRETE

机译:量身定制新的纤维增强混凝土收缩试验

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The progress of concrete research during the last three decades has highlighted the possibility of enhancing the properties of cement-based materials, such as compressive strength or workability of the fresh mixes, as well as for other important properties like toughness, durability or volumetric stability. Among these, the resistance to shrinkage cracking is gaining an increasing attention, due to its strict relation to durability. In fact, shrinkage cracking occurs in all concrete structures when the free deformation of concrete is restrained. The higher the shrinkage deformation and the degree of restraint, the higher the risk of cracking, for the same concrete strength. Fiber Reinforced Concrete (FRC), now widely available into the market, allows for a better crack control due to the higher post-cracking strength; the latter is related to the links provided by fibers between the crack faces. However, shrinkage-cracking resistance should be determined with tailored methodologies measuring the crack development under restrained shrinkage conditions. The aim of this paper is a critical discussion on the current standard test procedures and, eventually, a proposal for a novel and enhanced testing set-up for measuring the shrinkage-cracking resistance of FRC. The effects of polymer fibers and Shrinkage Reducing Admixture (SRA) are discussed with reference to the time-to-cracking and the crack width development.
机译:在过去的三十年中,混凝土研究的进展突显了增强水泥基材料性能(例如新鲜混合物的抗压强度或可加工性)以及其他重要性能(例如韧性,耐久性或体积稳定性)的可能性。其中,由于其与耐久性的严格关系,抗收缩龟裂性受到越来越多的关注。实际上,当抑制混凝土的自由变形时,在所有混凝土结构中都会发生收缩裂纹。对于相同的混凝土强度,收缩变形和约束程度越高,开裂的风险越高。如今,纤维增强混凝土(FRC)已广泛投放市场,由于其较高的开裂后强度,可以更好地控制裂纹。后者与裂纹面之间的纤维所提供的联系有关。但是,应采用量身定制的方法来测定抗收缩龟裂性,该方法可在受限的收缩条件下测量裂纹的发展。本文的目的是对当前的标准测试程序进行批判性讨论,并最终提出一种新颖且增强的测试设置,以测量FRC的抗龟裂性。参照断裂时间和裂纹宽度的发展,讨论了聚合物纤维和减缩剂(SRA)的影响。

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