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Physical and Mechanical Properties of Polypropylene Fibre-Reinforced Cement–Glass Composite

机译:聚丙烯纤维增强水泥 - 玻璃复合材料的物理和力学性能

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摘要

In accordance with the principles of sustainable development, environmentally friendly, low-emission, and energy-intensive materials and technologies, as well as waste management, should be used. Concrete production is responsible for significant energy consumption and CO2 production; therefore, it is necessary to look for new solutions in which components are replaced by other materials, preferably recycled. A positive way is to use glass waste. In order to determine the effect of a significant glass cullet content on the properties of concrete, glass powder was used as a filler and 100% glass aggregate. The cement–glass composite has low tensile strength and brittle failure. In order to improve tensile strength, the effects of adding polypropylene fibres on the mechanical properties of the composite were investigated. With the addition of 300, 600, 900, 1200, and 1500 g/m3 of fibres, which corresponds to 0.0625%, 0.1250%, 0.1875%, 0.2500%, and 0.3125% of cement mass, respectively, flexural strength increased compared with the base sample by 4.1%, 8.2%, 14.3%, 20.4%, and 26.5%, respectively, while the increase in splitting strength was 35%, 45%, 115%, 135%, and 185%, respectively. Moreover, with the addition of fibres, a decrease in slump by 25.9%, 39.7%, 48.3%, 56.9%, and 65.5%, respectively, compared with the reference specimen was determined.
机译:应根据可持续发展,环保,低排放和能源密集型材料和技术以及废物管理的原则。混凝土生产负责大量能耗和二氧化碳生产;因此,有必要寻找新的解决方案,其中部件由其他材料代替,优选地再循环。积极的方式是使用玻璃垃圾。为了确定显着的玻璃Cullet含量对混凝土性能的影响,使用玻璃粉作为填料和100%玻璃聚集体。水泥玻璃复合材料具有低拉伸强度和脆性衰竭。为了提高拉伸强度,研究了加入聚丙烯纤维对复合材料力学性能的影响。加入300,600,900,1200和1500g / m3的纤维,其分别对应于0.0625%,0.1250%,0.1875%,0.2500%和0.3125%,水泥质量的弯曲强度增加增加基础样品分别为4.1%,8.2%,14.3%,20.4%和26.5%,分别的分裂强度的增加分别为35%,45%,115%,135%和185%。另外,根据纤维的添加,与参考样品相比,分别减少25.9%,39.7%,48.3%,56.9%和65.5%。

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