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Characteristics of Recycled Polypropylene Fibers as an Addition to Concrete Fabrication Based on Portland Cement

机译:循环聚丙烯纤维的特点是基于波特兰水泥的混凝土制造

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摘要

Highperformance concrete has low tensile strength and brittle failure. In order to improve these properties of unreinforced concrete, the effects of adding recycled polypropylene fibers on the mechanical properties of concrete were investigated. The polypropylene fibers used were made from recycled plastic packaging for environmental reasons (long degradation time). The compressive, flexural and split tensile strengths after 1, 7, 14 and 28 days were tested. Moreover, the initial and final binding times were determined. This experimental work has included three different contents (0.5, 1.0 and 1.5 wt.% of cement) for two types of recycled polypropylene fibers. The addition of fibers improves the properties of concrete. The highest values of mechanical properties were obtained for concrete with 1.0% of polypropylene fibers for each type of fiber. The obtained effect of an increase in mechanical properties with the addition of recycled fibers compared to unreinforced concrete is unexpected and unparalleled for polypropylene fiberreinforced concrete (69.7% and 39.4% increase in compressive strength for green polypropylene fiber (PPG) and white polypropylene fiber (PPW) respectively, 276.0% and 162.4% increase in flexural strength for PPG and PPW respectively, and 269.4% and 254.2% increase in split tensile strength for PPG and PPW respectively).
机译:高矿井混凝土具有低拉伸强度和脆性衰竭。为了提高这种不良混凝土的这些性能,研究了加入再循环聚丙烯纤维对混凝土机械性能的影响。使用的聚丙烯纤维是由再生塑料包装制成的,用于环境原因(长降解时间)。测试了1,7,14和28天后的压缩,弯曲和分裂拉伸强度。此外,确定初始和最终结合时间。该实验工作包括两种类型的再循环聚丙烯纤维三种不同的内容物(0.5,1.0和1.5重量%)。添加纤维可提高混凝土的性质。为每种类型的纤维的聚丙烯纤维的混凝土获得最高的机械性能值。与未原装混凝土相比,在加入再循环纤维的机械性能的增加的效果是出乎意料的,对于聚丙烯纤维纤维混凝土(69.7%和39.4%,绿色聚丙烯纤维(PPG)和白色聚丙烯纤维的抗压强度增加69.7%和39.4%(PPW) )分别为PPG和PPW的弯曲强度增加276.0%和162.4%,分别为PPG和PPW的分裂拉伸强度增加269.4%和254.2%。

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