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Fire design of post-installed bonded rebars: Full-scale validation test on a 2.94 × 2 × 0.15 m~3 concrete slab subjected to ISO 834-1 fire

机译:安装后的粘结钢筋的防火设计:在受ISO 834-1防火的2.94×2×0.15 m〜3混凝土楼板上进行全面验证试验

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摘要

Thanks to the improvement in mechanical and adhesion properties of polymer resins, Post-Installed Rebars (PIRs) succeeded progressively in replacing cast-in place rebars in some applications by offering equivalent or even higher mechanical properties at ambient temperature. However, the mechanical behavior of PIRs is essentially governed by the mechanical behavior of polymer resins, which is highly sensitive to temperature. Consequently, fire safety presents a potential hazard that should be taken into account when designing. This paper presents an experimental full-scale fire test carried out on the Vulcain furnace of CSTB Champs-sur-Marne on its 7 m x 3 m horizontal configuration, in order to test a new fire design method proposed for PIRs. The 2.94 x 2 x 0.15 m(3) tested slab was mechanically loaded by 325 kg and heated following the ISO 834.1 time-temperature curve until its collapse. The experimental time of collapse is compared to that predicted by the new design method.
机译:由于聚合物树脂的机械性能和粘合性能得到了改善,因此在某些应用中,后安装钢筋(PIR)通过在环境温度下提供相同甚至更高的机械性能,成功地替代了现浇钢筋。但是,PIR的机械性能主要由对温度高度敏感的聚合物树脂的机械性能控制。因此,防火安全带来了潜在的危害,在设计时应予以考虑。本文介绍了CSTB Champs-sur-Marne的Vulcain炉在7 m x 3 m水平配置上进行的全面火灾试验,以测试为PIR提出的新的火灾设计方法。将2.94 x 2 x 0.15 m(3)的测试板机械加载325 kg,并按照ISO 834.1时间-温度曲线进行加热,直到其坍塌。将坍塌的实验时间与新设计方法预测的时间进行了比较。

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