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Investigation of freeze-thaw effects on mechanical properties of fiber reinforced cement mortars

机译:冻融对纤维增强水泥砂浆力学性能影响的研究

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摘要

Fibers are used for improving some properties of conventional concrete (which is a brittle material) such as tensile strength, abrasion resistance, absorption and crack control. This study investigates the usability of fibers against the harmful effects of freeze-thaw cycles on cement mortars. For this objective, five different types of fibers, i.e., Polypropylene (PP), Carbon (CF), Aramid (AR), Glass (GF) and Poly vinyl alcohol (PVA) in four different ratios (0.0%, 0.4%, 0.8% and 1.2%) were added to cement mortars along with an amount of air agent. These samples were then subjected to five different freeze-thaw cycles (0, 25, 50, 75 and 100). Thus, mechanical behaviors were investigated under freeze-thaw effects. The most important results of the study are summarized; the fibers increase flexural strength and deflection ability of the samples while decreasing compressive strength, dynamic modulus of elasticity and specific mass. The highest flexural strength was obtained with a 1.2% addition of CF fiber for the samples in normal conditions. The mechanical properties of the samples subjected to repetitive freeze-thaw cycles were also investigated; the best flexural strength was provided with 1.2% CF addition, while the highest dynamic modulus of elasticity was obtained with a 1.2% PP addition.
机译:纤维用于改善常规混凝土(脆性材料)的某些性能,例如抗张强度,耐磨性,吸收性和裂缝控制性。这项研究调查了纤维的可用性,以防冻融循环对水泥砂浆的有害影响。为此目的,以四种不同的比例(0.0%,0.4%,0.8)使用五种不同类型的纤维,即聚丙烯(PP),碳(CF),芳纶(AR),玻璃(GF)和聚乙烯醇(PVA)量和1.2%)与一定量的空气助剂一起添加到水泥砂浆中。然后对这些样品进行五个不同的冻融循环(0、25、50、75和100)。因此,在冻融作用下研究了力学行为。总结了研究的最重要结果;纤维增加了样品的抗弯强度和挠曲能力,同时降低了抗压强度,动态弹性模量和比重。在正常条件下,添加1.2%的CF纤维可获得最高的弯曲强度。还研究了经受反复冻融循环的样品的机械性能。添加1.2%CF可获得最佳的弯曲强度,而添加1.2%PP可获得最高的动态弹性模量。

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