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Post-fire test of precast steel reinforced concrete stub columns under eccentric compression

机译:偏心压缩下预制钢筋混凝土柱的火灾试验

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摘要

This paper presents an experimental work on the post-fire behavior of two kinds of innovative composite stub columns under eccentric compression. The partially precast steel reinforced concrete (PPSRC) column is composed of a precast outer-part cast using steel fiber reinforced reactive powder concrete (RPC) and a cast-in-place inner-part cast using conventional concrete. Based on the PPSRC column, the hollow precast steel reinforced concrete (HPSRC) column has a hollow column core. With the aim to investigate the post-fire performance of these composite columns, six stub column specimens, including three HPSRC stub columns and three PPSRC stub columns, were exposed to the IS0834 standard fire. Then, the cooling specimens and a control specimen unexposed to fire were eccentrically loaded to explore the residual capacity. The test parameters include the section shape, concrete strength of inner-part, eccentricity ratio and heating time. The test results indicated that the precast RPC shell could effectively confine the steel shape and longitudinal reinforcements after fire, and the PPSRC stub columns experienced lower core temperature in fire and exhibited higher post-fire residual strength as compared with the HPSRC stub columns due to the insulating effect of core concrete. The residual capacity increased with the increasing of inner concrete strength and with the decreasing of heating time and load eccentricity. Based on the test results, a FEA model was established to simulate the temperature field of test specimens, and the predicted results agreed well with the test results.
机译:本文介绍了偏心压缩下两种创新复合螺柱的火灾行为的实验工作。部分预制钢筋混凝土(PPSRC)柱由使用钢纤维增强的反应性粉末混凝土(RPC)和使用常规混凝土的铸造内部铸造的预制外部铸造。基于PPSRC柱,中空预制钢筋混凝土(HPSRC)柱具有空心柱芯。旨在研究这些复合柱的火灾后性能,六个存根标本,包括三个HPSRC短柱和三个PPSRC柱,暴露于IS0834标准火灾。然后,冷却样品和未曝光的对照样本偏离火灾偏离以探索剩余容量。测试参数包括内部的截面形状,混凝土强度,偏心比和加热时间。测试结果表明,预防RPC壳可以有效地限制火灾后钢形和纵向增强,并且PPSRC柱柱的火灾核心温度较低,并且与由于HPSRC柱柱相比,呈现出更高的火灾后剩余强度。芯混凝土的绝缘效果。随着内部混凝土强度的增加,加热时间和负载偏心的增加,残余能力增加。基于测试结果,建立了一个FEA模型来模拟试样的温度场,预测结果与测试结果很好。

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