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Carbon-Fiber Enriched Cement-Based Composites for Better Sustainability

机译:碳纤维丰富的水泥基复合材料具有更好的可持续性

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摘要

Damage caused by global warming is rapidly increasing, and its adverse effects become more evident with each passing day. Although it is known that the use of alternative binder materials in concrete would decrease this negative effect, reluctance to use such new composites continues. Waste plays a vital role in sustainability studies. In this study, pure cement paste was prepared and enriched with carbon fiber. This study also investigated the wide range of volume fraction of carbon fiber in cement-based composites. Two different types of industrial waste, i.e., marble dust and bottom ash, were chosen and mixed with cement and four different (0.3%, 0.75%, 1.5%, and 2.5%) carbon fiber volume fractions. Based on physical, mechanical, and durability tests at 7, 28, and 56 days of curing, the composites were resistant to sulfate and seawater attacks. The 0.75% carbon fiber addition seems to be an optimum volume percentage, beyond which both physical and mechanical properties were adversely affected. The composites with 0.75% carbon fiber reached 48.4 and 47.2 MPa at 56 days of curing for marble dust and bottom ash mixture groups, respectively.
机译:全球变暖所造成的破坏正在迅速增加,其不利影响日新月异。尽管已知在混凝土中使用替代的粘结剂材料会减少这种负面影响,但仍不愿使用这种新的复合材料。废物在可持续性研究中起着至关重要的作用。在这项研究中,制备了纯水泥浆并富含碳纤维。这项研究还研究了水泥基复合材料中碳纤维体积分数的广泛变化。选择两种不同类型的工业废料,即大理石粉尘和底灰,并与水泥和四种不同的(0.3%,0.75%,1.5%和2.5%)碳纤维体积分数混合。根据固化7天,28天和56天的物理,机械和耐久性测试,该复合材料具有抗硫酸盐和海水侵蚀的能力。添加0.75%的碳纤维似乎是最佳的体积百分比,超过该百分比时,物理和机械性能都会受到不利影响。含碳纤维0.75%的复合材料在固化56天时,大理石粉尘和底灰混合物组分别达到48.4和47.2 MPa。

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