THE EFFECT OF SYNTHETIC FIBER TYPE ON FRESH, HARDENED AND TOUGHNESS PROPERTIES OF HSFR-SCC

Ceren Kina, Esma Balalan, K. Türk
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Abstract

This study presents the experimental results about the effects of Polyvinyl-alcohol (PVA) and Polypropylene (PP) fibers on the fresh and mechanical properties including compressive, splitting tensile strength, modulus of rupture (MOR) as well as toughness of the hybrid fiber reinforced self-compacting concrete (SCC). PVA and PP fibers were added into SCC mixtures having only macro steel fiber and also having binary hybridization of both macro and micro steel fiber. The results showed that the use of micro steel fiber replaced by macro steel fiber improved the workability, compressive and splitting tensile strength, MOR and toughness and also caused reduction in the weight loss percentage compared to the use of only macro steel fiber. Moreover, it was emphasized that PVA or PP enhanced the residual flexural performance of SCC, generally, while it negatively influenced the workability and the residual strengths according to the use of single steel fiber and binary steel fiber hybridization. Compared to the effect of synthetic fibers, PP had slightly more positive effect in the view of workability while PVA enhanced the residual mechanical properties more.
合成纤维类型对hsfr-scc新鲜、硬化和韧性的影响
研究了聚乙烯醇(PVA)和聚丙烯(PP)纤维对混杂纤维增强自密实混凝土(SCC)的抗压、劈裂抗拉强度、断裂模量(MOR)和韧性等新鲜性能和力学性能影响的实验结果。将PVA和PP纤维加入到仅含有宏观钢纤维和同时含有宏观和微观钢纤维二元杂交的SCC混合物中。结果表明:用宏量钢纤维代替微量钢纤维提高了材料的和易性、抗压和劈裂抗拉强度、MOR和韧性,并降低了材料的失重率。强调PVA或PP对SCC的残余抗弯性能有普遍的增强作用,而单钢纤维和双钢纤维杂交对SCC的和易性和残余强度有负面影响。与合成纤维相比,PP对可加工性的改善作用略强,而PVA对残余力学性能的改善作用更大。
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