COMPARISON OF FIBER CONCRETE PROPERTIES FOR INDUSTRIAL FLOORS AND ROAD PAVEMENTS WITH STEEL AND POLYPROPYLENE FIBER

S. Kroviakov, D.Iu. Hedulian, V. Kryzhanovskyi, M. Zavoloka, A. V. Yelkin
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引用次数: 1

Abstract

The article presents a comparative analysis of the type of dispersed reinforcement effect with steel fiber produced by «Stalkanat-Silur» (50 mm length, ⌀1 mm) and polypropylene fiber «Baumesh» produced by BAUTECH-Ukraine LLC (36 mm length, ⌀0.68 mm) on physical and mechanical properties and failure mode of fiber-reinforced concrete samples for cement concrete pavements and industrial floors. The indicators of strength and durability as one of the most important concrete properties for pavement structures, that are constantly operate under the influence of high dynamic loads were determined. The possibility of using the studied compositions of concrete with structural fiber of different types is analyzed. All concrete mixtures had equal workability S4. For fiber-reinforced concrete mix preparation, Portland cement ПЦ II/А-Ш-500 (CEM II/A-S 42.5 R), crushed stone 5-20 mm and sand with a fineness modulus of 2.75 were used. Polycarboxylate superplasticizer MC-PowerFlow 3200 was used to achieve the required workability of fiber concrete mixtures. It has been established that the use of dispersed reinforcement increases the concrete compressive strength by 13-16%, flexural strength increases by 30-31%, and the abrasion resistance decreases by 31-39%. The use of dispersed reinforcement with «Baumesh» polypropylene fiber in an amount of up to 3 kg/m3 makes it possible to increase the compressive and flexural concrete strength and also to reduce its abrasion resistance on the same scale as the use of dispersed reinforcement with steel anchor fiber «Stalkanat-Silur» up to 25 kg/m3. In this case, from an economic point of view, the use of polypropylene fiber is more appropriate. The optimal content of dispersed reinforcement to increase the strength and abrasion resistance in the fiber-reinforced concrete composition was determined. The fiber-reinforced concrete compositions with steel and polypropylene fibers of compressive strength grade C25/30, and flexural strength grade Btb 3.6, with an increased abrasion resistance were obtained.
钢纤维和聚丙烯纤维工业地坪和路面纤维混凝土性能的比较
本文对“Stalkanat-Silur”生产的钢纤维(长度为50mm, 1mm)和BAUTECH-Ukraine LLC生产的聚丙烯纤维“Baumesh”(长度为36mm, 0.68 mm)对水泥混凝土路面和工业地面用纤维增强混凝土样品的物理力学性能和破坏模式进行了比较分析。强度和耐久性指标是路面结构最重要的混凝土性能指标之一,是在高动荷载作用下持续运行的混凝土。分析了不同类型结构纤维使用所研究的混凝土成分的可能性。所有混凝土混合料的和易性S4均相等。纤维增强混凝土配合比配制采用波特兰水泥ПЦ II/А-Ш-500 (CEM II/ a - s 42.5 R)、碎石5-20 mm、细度模量2.75的砂石。使用聚羧酸酯型高效减水剂MC-PowerFlow 3200来达到纤维混凝土混合料所需的和易性。研究表明,分散配筋可使混凝土抗压强度提高13-16%,抗弯强度提高30-31%,耐磨性降低31-39%。使用含有«Baumesh»聚丙烯纤维的分散钢筋,用量高达3 kg/m3,可以增加混凝土的抗压和弯曲强度,并降低其耐磨性,其用量与使用含有«Stalkanat-Silur»钢锚纤维的分散钢筋的用量相同,最高可达25 kg/m3。在这种情况下,从经济的角度来看,使用聚丙烯纤维更为合适。确定了提高纤维增强混凝土强度和耐磨性的分散钢筋的最佳掺量。得到了抗压强度等级为C25/30,抗弯强度等级为Btb 3.6的钢纤维和聚丙烯纤维混合的纤维增强混凝土组合物,其耐磨性有所提高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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