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Fire behaviour of concrete slab strips reinforced with sand-coated GFRP bars

机译:用砂涂层GFRP棒加固混凝土板条的防火行为

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摘要

One of the main concerns about FRP-reinforced concrete (RC) structures is the performance of the FRP reinforcement under fire exposure. Previous studies showed that fire resistances above 90 min can be attained if proper anchorage of the rebars is provided and splicing is avoided along spans exposed to fire. However, this topic has not yet been investigated in a comprehensive way. This paper presents experimental investigations on the fire resistance of concrete slab strips reinforced with sand-coated GFRP bars. GFRP-RC (and steel-RC) slab strips were simultaneously subjected to the ISO 834 standard fire and a sustained service load applied in four-point bending. The influence of the following parameters was assessed: (i) concrete cover (2.5 cm and 3.5 cm); (ii) presence of lap-splices with different overlapping lengths (30 cm to 65 cm) directly exposed to fire, and (iii) concrete strength. The results obtained confirm that GFRP-RC slabs can attain relatively long fire resistances provided that the anchorage zones of the rebars (where temperatures were continuously monitored), remain sufficiently cold: the average temperature of the reinforcement along the anchorage length was kept below 108 degrees C in all tests, slightly above the T-g of the rebars (98 degrees C). The slab strips reinforced with continuous GFRP rebars attained fire resistances between 80 min and 150 min, failing due to tensile rupture of the reinforcement at midspan for temperatures in the rebars above 570 degrees C, long after the bond to concrete was lost in most of the heated span. For slab strips with bar splices exposed to heat, the fire resistance was reduced to less than 20 min, highlighting the remarkable impact of this constructive detail on the fire performance. For 30 cm long lap splices, premature failure occurred due to slippage in the splices for a temperature (105 degrees C) close to the T-g; in slabs with longer overlap lengths, slippage occurred for moderately higher temperatures (146 degrees C to 176 degrees C). As expected, the increase in concrete cover, provided an additional thermal protection to the rebars, but resulted only in a slight fire resistance increase. Slab strips with lower concrete strength presented lower fire resistance, due to more extensive cracking, which led to higher (localized) heating of the reinforcement.
机译:关于FRP钢筋混凝土(RC)结构的主要担忧之一是FRP加固在火灾暴露下的性能。以前的研究表明,如果提供钢筋的适当锚固,并且沿着暴露于火灾的跨度避免剪接,则可以获得高于90分钟的耐火电阻。但是,本主题尚未以全面的方式调查。本文介绍了用砂涂层GFRP棒加固混凝土板条耐火性的实验研究。 GFRP-RC(和Steel-RC)平板条同时进行ISO 834标准火,并在四点弯曲中施加的持续服务负荷。评估以下参数的影响:(i)混凝土盖(2.5厘米和3.5厘米); (ii)直接暴露于火灾的不同重叠长度(30厘米至65厘米)的螺柱接头的存在,(iii)混凝土强度。获得的结果证实,GFRP-RC板可以获得相对长的耐火性,只要钢筋(连续监测温度)的锚固区保持足够冷:沿着锚固长度的增强件的平均温度保持在108度以下C在所有测试中,略高于钢筋的TG(98摄氏度)。用连续GFRP钢筋加固的板条带达到了80分钟和150分钟的防火,由于钢筋在570摄氏度高于570摄氏度的温度下的钢筋的钢筋的拉伸破裂而失效,在大部分粘合到混凝土之后加热跨度。对于具有暴露于热量的条形的板条条带,耐火性降低至小于20分钟,突出了这种建设性细节对火灾性能的显着影响。对于30厘米的长圈拼接,由于接头的滑动而发生过早的故障,用于靠近T-G的温度(105℃);在具有较长重叠长度的板坯中,可滑动,适用于更高的温度(146摄氏度至176摄氏度)。正如所料,混凝土盖的增加,为钢筋提供了额外的热保护,但仅导致耐火性增加。具有较低混凝土强度的板坯条带呈下耐火性较低,由于更广泛的裂缝,这导致加固更高(局部化)加热。

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