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Assessment of fresh properties and compressive strength of self-compacting concrete made with different sand types by mixture design modelling approach

机译:混合设计建模方法评估不同砂型自密实混凝土的新鲜性能和抗压强度

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The present paper provides a statistical approach to evaluate the effect of different sand types on the properties of self-compacting concrete (SCC). A mixture design modelling approach was used to highlight the effects of river sand (RS), crushed sand (CS) and dune sand (DS) as proportions in binary and ternary systems, on flowability, passing ability, segregation and mechanical strength of SCC. The responses of the derived statistical models are slump flow, v-funnel time, L-box, stability and compressive strength at 2, 7 and 28 days. The derived mathematical models make it possible to illustrate the variation of different responses in ternary contour plots with respect to the proportions of RS, CS and DS. This provides flexibility to optimize RS, CS and DS blends with tailor-made of a given property that suit particular recommendations. Results indicate that when flowability requirements are combined, proportions of DS and CS in binary or ternary systems with RS must be below 0.24 and 0.6 respectively. Moreover, it is shown that passing ability can be satisfied by using a CS proportion above 0.3 in RS-CS binary system and above 0.65 in CS-DS binary system. On other hand, proportions above 0.5 of CS in RS-CS binary system and above 0.2 of DS in RS-DS binary system are recommended to meet stability limits. Results also indicate that compressive strength at 2, 7 and 28 days increased with the increase of CS proportion and decreased with the increase of DS proportion in binary and ternary systems.
机译:本文提供了一种统计方法来评估不同类型的砂对自密实混凝土(SCC)性能的影响。混合设计建模方法用于突出二元和三元系统中河砂(RS),碎砂(CS)和沙丘砂(DS)的比例对SCC的流动性,通过能力,偏析和机械强度的影响。导出的统计模型的响应为坍落度,v形漏斗时间,L形盒,稳定性,2天,7天和28天的抗压强度。导出的数学模型可以说明三元轮廓图中不同响应相对于RS,CS和DS的比例的变化。这样可以灵活地优化RS,CS和DS混合,并根据特定建议量身定制给定属性。结果表明,当结合流动性要求时,具有RS的二元或三元系统中DS和CS的比例必须分别低于0.24和0.6。而且,表明通过在RS-CS二进制系统中使用大于0.3的CS比例和在CS-DS二进制系统中使用大于0.65的CS比例可以满足通过能力。另一方面,建议在RS-CS二进制系统中CS的比例大于0.5,而在RS-DS二进制系统中DS的比例大于0.2,以满足稳定性的要求。结果还表明,在二元和三元体系中,第2、7和28天的抗压强度随CS比例的增加而增加,随DS比例的增加而降低。

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