Flexural Experiments on B58 Type Railway Sleepers with Different Dosages of Steel Fibers

Ercan Kasapoğlu, T. Haktanir
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Abstract

The flexural strengths and toughnesses of 15 post-tensioned B58 type railway sleepers produced at the Turkish State Railroads Sivas Plant using C40 class concrete with addition of hooked steel fibers at dosages of 0, 20, 30, 40, 50 kg/m3 were experimentally determined. Four-point flexural experiments were applied to them in one month after their production and proper curing. Three cylindrical samples of 15×30 cm dimensions taken from the first and the fourth batches apiece were subjected to standard compression tests with compressometer rings mounted on each sample after having been cured in 21 °C water tank for 28 days, resulting in their compressive strengths and elasticity moduluses. Modeling a railway sleeper as a post-tensioned reinforced-concrete beam, the maximum load it can resist in the experimented configuration was calculated by the ultimate-strength method using its dimensions and material properties. The experimentally-measured maximum load carried by the reference sleeper without any steel fibers was found to be 1.34 times the theoretically-calculated value, and the same ratio was found to be 1.59 for the sleepers having steel fibers of 40 kg/m3 dosage, accounting for an increase of 18%. And, the experimentally-measured toughness of the sleepers with 40 kg/m3 dosage steel fibers was found to be 23% greater than that of the reference sleepers.
含不同剂量钢纤维的 B58 型铁路枕木的挠曲实验
实验测定了土耳其国营铁路公司锡瓦斯工厂使用 C40 级混凝土生产的 15 根 B58 型后张法铁路枕木的抗弯强度和韧性,混凝土中添加了 0、20、30、40 和 50 kg/m3 的带钩钢纤维。在制作完成并适当养护一个月后,对其进行了四点弯曲实验。从第一批和第四批样品中各抽取三个尺寸为 15×30 厘米的圆柱形样品,在 21 °C 的水箱中固化 28 天后,用安装在每个样品上的压缩环进行标准压缩试验,得出它们的压缩强度和弹性模量。将铁路枕木模拟为后张钢筋混凝土梁,利用其尺寸和材料特性,通过极限强度法计算出其在实验配置下可承受的最大荷载。实验测量发现,不含任何钢纤维的基准枕木所能承受的最大荷载是理论计算值的 1.34 倍,而含有用量为 40 kg/m3 的钢纤维的枕木所能承受的最大荷载是理论计算值的 1.59 倍,增加了 18%。此外,经实验测量,使用 40 kg/m3 用量钢纤维的枕木的韧性比参考枕木高出 23%。
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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CiteScore
1.70
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