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An Experimental Study on the Effects of Adding Steel and Polypropylene Fibers to Concrete on Its Resistance after Different Temperatures

机译:不同温度下在混凝土中添加钢和聚丙烯纤维对其抗性影响的试验研究

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摘要

The use of fibers in concrete improves strength, ductility, and durability of concrete. Concrete has fireproofing properties, but rebars are the most important concern of reinforced concrete structures in the event of a fire outbreak. Therefore, one of the recommendations to reduce these risks is the use of alternative materials like fibers. In this article, the effects of different temperatures on the mechanical properties of concretes with different cement contents containing steel and polypropylene fibers were studied. The specimens were placed under temperatures of 25 degrees C, 100 degrees C, 250 degrees C, 500 degrees C, and 700 degrees C, and the results revealed that the effects of fire on concrete containing steel fibers are more damaging. Also, the compressive strength and modulus of rupture at 25 degrees C and tensile strength at 250 degrees C have the maximum values. Compressive and tensile strengths of concrete containing steel fibers were 40 % and 50 %, respectively, more than the concrete containing polypropylene fibers. However, their flexural strength was almost equal. By comparing the flexural strength of specimens with grade 400 and grade 700, it can be concluded that the specimens with grade 400 have more resistance by about 10 to 40 %.
机译:在混凝土中使用纤维可改善混凝土的强度,延展性和耐久性。混凝土具有防火性能,但是钢筋是钢筋混凝土结构在发生火灾时最重要的问题。因此,减少这些风险的建议之一是使用替代材料,例如纤维。本文研究了不同温度对含钢和聚丙烯纤维的水泥含量不同的混凝土的力学性能的影响。将样品放置在25摄氏度,100摄氏度,250摄氏度,500摄氏度和700摄氏度的温度下,结果表明,火对含钢纤维的混凝土的破坏作用更大。另外,在25℃下的抗压强度和断裂模量以及在250℃下的抗张强度具有最大值。含钢纤维的混凝土的抗压强度和抗拉强度分别比含聚丙烯纤维的混凝土高40%和50%。但是,它们的抗弯强度几乎相等。通过比较400级和700级试样的抗弯强度,可以得出结论,400级试样的抗弯强度更高,约为10%至40%。

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