首页> 外文会议>International Conference on the Application of Superabsorbent Polymers (SAP) and Other New Admixtures Towards Smart Concrete >Effect of High Plasticiser Dosage on Ultra High-performance Fibre Reinforced Concrete (UHPFRC)
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Effect of High Plasticiser Dosage on Ultra High-performance Fibre Reinforced Concrete (UHPFRC)

机译:高增塑剂剂量对超高效纤维混凝土(UHPFRC)的影响

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The overall objective of this study was to develop an optimised UHPFRC matrix based on the modified Andreasen and Andersen optimum particle packing model by using available South African materials.The focus of this study was to determine the optimum combined fibre and superplasticiser content for UHPC by using a response surface design.The UHPFRC was appropriately designed,produced and tested.The flowability,density and mechanical properties of the designed UHPFRC were measured and analysed.It is clear from the results,that both the fibre and superplasticiser content play a significant role in the flowability of the fresh concrete.The addition of fibres significantly improved both the compressive and indirect tensile strength of the UHPFRC.However,the addition of superplasticiser slightly decreased both the compressive and indirect tensile strength of the UHPFRC.Both the fibre and superplasticiser content had an insignificant effect on the modulus of elasticity.The results show that the superplasticiser content can be increased if a more workable mix is required without decreasing the strength significantly.The study demonstrate that it is possible to efficiently produce a dense and workable UHPFRC with relatively low binder amount and low fibre content.This can result in more cost-effective UHPFRC,thus improving the practical application thereof.
机译:本研究的总体目的是通过使用可用的南非材料,基于改进的Andreasen和Andersen最佳颗粒包装模型进行优化的UHPFRC矩阵。本研究的重点是通过使用来确定UHPC的最佳组合纤维和超塑性酶含量响应表面设计。UHPFRC被适当地设计,生产和测试。测量和分析设计的UHPFRC的流动性,密度和力学性能。从结果中清楚地清楚,纤维和超塑性酶含量都在发挥重要作用新鲜混凝土的流动性。添加纤维的添加性显着提高了UHPFRC的压缩和间接拉伸强度。无论何种,加入超塑性体略微降低了UHPFRC的压缩和间接拉伸强度。纤维和超塑性酶含量略有下降对弹性模量的微不足道影响。结果表明了如果需要更加可行的混合而不显着降低强度,则可以增加E超血塑性酶含量。研究表明,可以有效地产生具有相对低的粘合剂量和低纤维含量的致密和可行的UHPFRC。这可能导致更成本 - 效率为UHPFRC,从而提高其实际应用。

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