首页> 外文期刊>Journal of King Saud University: Physics and Mathematics >Effect of fibre content and specimen shape on residual strength of polypropylene fibre self-compacting concrete exposed to elevated temperatures
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Effect of fibre content and specimen shape on residual strength of polypropylene fibre self-compacting concrete exposed to elevated temperatures

机译:纤维含量和试样形状对暴露于高温下的聚丙烯纤维自密实混凝土残余强度的影响

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This experimental study investigates the effect of specimen shape on residual mechanical properties of polypropylene (PP) fibre self-compacting concrete (SCC) exposed to elevated temperatures from 200 to 600°C. Various shaping regimes were used including cylindrical and cubical shapes for a series of durations of 2 and 4h, and air cooling to the room temperature before testing. The temperature determination results prove that the shaping regimes caused an action of “thermal shock” to SCC under elevated temperatures, characterized by a high temperature at fixed time of exposure. The experimental results indicate that, compared cylindrical specimen with cubical one, thermal shock induced by cylindrical shape air cooling caused more severe damage to concrete in terms of greater losses in compressive strength than those with cubical shapes. The fact that the impact of shapes on mechanical properties indicates that shaping could cause thermal shock to specimens, which is in good agreement with the results of the temperature determination. PP fibre can enhance residual strength and fracture energy of concrete subjected to thermal shock induced by air cooling from high temperatures up to 600°C to room temperature.
机译:这项实验研究研究了样品形状对暴露于200至600°C高温下的聚丙烯(PP)纤维自密实混凝土(SCC)的残余机械性能的影响。使用了各种成型方案,包括圆柱形状和立方体形状,持续2h和4h,并在测试前空气冷却至室温。温度测定结果证明,在高温下,定型方案对SCC产生了“热冲击”作用,其特征是在固定的暴露时间出现高温。实验结果表明,与具有立方体形状的圆柱形试样相比,由圆柱形空气冷却引起的热冲击对混凝土的破坏更为严重,其压缩强度的损失要大于具有立方体形状的试样。形状对机械性能的影响表明成形可能会对样品产生热冲击这一事实,这与温度测定的结果非常吻合。 PP纤维可以增强混凝土的残余强度和断裂能,这些混凝土在从高达600°C的高温到室温的空气冷却下遭受热冲击时会受到破坏。

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