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Low cost Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) with flash metakaolin

机译:低成本超高性能纤维钢筋混凝土(UHPFRC),具有闪光型石蛋白

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Ultra-High Performance Fiber Reinforced Concrete (UHPFRC) presents remarkable mechanical and durability properties. Concretes can be considered as UHPFRC when compressive strength and direct tensile strength reach respectively 150 MPa and 7 MPa at 28 days [1]. The UHPFRC matrix is generally composed by a high amount of cement and silica fume as binder, steel fibers, very low Water/Binder (W/B) ratio and high rang water reducer. Special heat treatment is often required in order to achieve compressive strengths over 150-200 MPa.This work focuses on the development of low cost UHPFRC with less energy in production process in order to widespread its use. To reach this objective, some mix criteria have been set up: use of local materials, substitution of silica fume by less expensive and more available flash metakaolin, reduced cement content, without heat treatment. Four UHPFRC mixtures have been fixed. The reference one incorporates silica fume. In the second one, metakaolin substitutes weight by weight silica fume. Two other mixtures have been designed using a wet packing method [2] and a metakaolin water absorption test [3], in order to optimize the metakaolin/cement mass ratio and to reduce cement content. Workability and mechanical tests have been carried out. Results show that the weight by weight substitution of silica fume by flash metakaolin leads to a slight reduction (about 5%) of strengths but a more important reduction of cost (about 10% of UHPFRC material cost per m~3). The optimization of metakaolin/cement ratio allows reaching equivalent performances of silica fume reference mix and reducing cement content without significant strengths decrease.
机译:超高性能纤维钢筋混凝土(UHPFRC)呈现出显着的机械和耐用性。当抗压强度和直接拉伸强度在28天时达到150MPa和7MPa时,混凝土可以被认为是UHPFRC [1]。 UHPFRC基质通常通过大量的水泥和二氧化硅粉丝作为粘合剂,钢纤维,非常低的水/粘合剂(W / B)比和高rang水减速器组成。通常需要特殊的热处理,以实现超过150-200 MPa的压缩强度。此工作侧重于生产过程中低能量的低成本UHPFRC的开发,以广泛应用。为了达到这一目标,已经建立了一些混合标准:使用本地材料,通过更便宜且更具可用的闪光偏振蛋白,减少水泥含量,无需热处理,使用硅胶烟雾。四种UHPFRC混合物已得到固定。参考文献包含二氧化硅烟气。在第二个中,Metakaolin替代重量的二氧化硅烟气。使用湿填料方法[2]和Metakaolin吸水试验[3]设计了另外两种混合物,以优化MetaKaolin /水泥质量比并降低水泥含量。已经进行了可加工性和机械测试。结果表明,闪光型石蛋白的重量取代二氧化硅烟气会导致强度略微减少(约5%),但成本的更重要降低(约占UHPFRC材料成本的每M〜3的10%)。 Metakaolin /水泥比的优化允许达到二氧化硅烟气参考混合物的等效性能,并降低水泥含量而无需显着强度降低。

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