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Influence Of Aggregate And Curing Regime On The Mechanical Properties Of Ultra-high Performance Fibre Reinforced Concrete (uhpfrc)

机译:骨料和养护方式对超高性能纤维混凝土(uhpfrc)力学性能的影响

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摘要

A new generation of concrete, ultra-high performance fibre reinforced concrete (UHPFRC) has been developed for its outstanding mechanical performance and shows a very promising future in construction applications. In this paper, several possibilities are examined for reducing the price of producing UHPFRC and for bringing UHPFRC away from solely precast applications and onto the construction site as an in situ material. Recycled glass cullet and two types of local natural sand were examined as replacement materials for the more expensive silica sand normally used to produce UHPFRC. In addition, curing of UHPFRC cubes and prisms at 20 ℃ and 90 ℃ has been investigated to determine differences in both mechanical and ductility.rnThe results showed that using more angular sand particles reduces the flowability of fresh UHPFRC. The local natural sand can produce a similar mechanical and ductility of UHPFRC to the silica sand. However the use of Recycled Glass Cullet (RGC) gives approximately 15% lower performance, i.e. flexural strength, compressive strength and fracture energy. Specimens cured at 20 ℃ give approximately 20% lower com-pressive strength, 10% lower flexural strength and 15% lower fracture energy than specimens cured at 90 ℃ from 1 to 7 days.
机译:新一代的混凝土,超高性能纤维增强混凝土(UHPFRC)具有出色的机械性能,在建筑应用中显示出非常有希望的未来。在本文中,研究了几种降低UHPFRC生产价格以及将UHPFRC脱离单纯的预制应用并作为现场材料带入建筑工地的可能性。研究了回收的碎玻璃和两种当地的天然沙子,作为通常用于生产UHPFRC的较昂贵的硅砂的替代材料。此外,还研究了UHPFRC立方体和棱柱在20℃和90℃下的固化方法,以确定其机械性能和延展性的差异。结果表明,使用更多的角形砂粒会降低新鲜UHPFRC的流动性。本地天然砂可以产生与硅砂相似的UHPFRC机械和延展性。但是,使用回收玻璃碎石(RGC)会使性能降低约15%,即抗弯强度,抗压强度和断裂能。与在90℃下固化1到7天的样品相比,在20℃下固化的样品的抗压强度降低约20%,抗弯强度降低10%,断裂能降低15%。

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