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椰壳纤维增强超高性能混凝土抗火性能试验研究
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Experimental research on fire resistance of coir fiber reinforced ultra-high performance concrete
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    摘要:

    采用电炉开展了椰壳纤维超高性能混凝土(UHPC)的高温爆裂试验与高温后的抗压试验,试验参数包括控制温度、椰壳纤维长度与纤维体积掺量.结果表明,掺入体积掺量为1%的椰壳纤维(2 cm)可以有效抑制UHPC高温爆裂现象的发生;微观分析显示,椰壳纤维高温下产生收缩、分解、碳化,使得椰壳纤维与UHPC基体之间形成沿切向的孔隙网,从而为内部水蒸气的逸出提供了通道,是其改善UHPC抗火性能的主要机理;在200 ℃、400 ℃、600 ℃和800 ℃下,椰壳纤维UHPC(长度2 cm、体积掺量1%)的抗压强度与弹性模量随控制温度升高而显著退化,且在控制温度范围内,轴心抗压强度与立方体抗压强度比在0.62~0.92之间变化;在相同的控制温度下,抗压强度与弹性模量随椰壳纤维体积掺量提高而下降;轴心抗压强度与立方体抗压强度的比值并不恒定;从UHPC抗火性能的改善效应来看,椰壳纤维优于钢纤维,与黄麻纤维、亚麻纤维接近;基于试验数据对现有计算公式进行修正,提出了椰壳纤维UHPC高温后轴心抗压强度的计算公式.

    Abstract:

    A series of explosive thermal spalling tests at elevated temperature and compression tests after high temperature were conducted on coir fiber reinforced ultra-high performance concrete (UHPC) by using an electric furnace in this study, aiming to shed light on the influence of the length and volume dosage of coir fiber on the fire resistance of UHPC exposed to different high temperatures. The results indicate that incorporating 1% of coir fibers with a length of 2 cm in UHPC can effectively suppress the high-temperature spalling. Microscope analysis reveals that a tangential pore network is generated between coir fibers and UHPC matrix due to shrinkage, decomposition, and carbonization of coir fibers at high temperature, which provides channels for the escape of internal water vapor as well as improving the thermal spalling resistance of UHPC. At 200 ℃, 400°C, 600 ℃, and 800 ℃, compressive strength and elastic modulus of UHPC, incorporating 1% of coir fibers with 2 cm long, significantly decrease with an increase in control temperature. Also, within the range of the control temperature, the ratio of the axial compressive strength to the cubic compressive strength varies between 0.62 and 0.92. On the other hand, compressive strength and elastic modulus decrease with the increasing volume dosage of coir fiber under the same control temperature, and the ratio of uniaxial compressive strength and cubic compressive strength varies with control temperatures. In terms of the improvement effect on fire resistance of UHPC, coir fiber is superior to steel fiber and is comparable to jute and flax fibers. Based on the test data and the existing formula, a special formula is proposed for evaluating the residual compressive strength of coir fiber reinforced UHPC exposed to high temperatures.

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单波 ?,唐帅浩 ,曾维 ,秦培成 ,傅新林 .椰壳纤维增强超高性能混凝土抗火性能试验研究[J].湖南大学学报:自然科学版,2026,(1):53~62

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  • 在线发布日期: 2026-02-06
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