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Performance Of Thermally Damaged Fibre Reinforced Concretes

机译:热损伤纤维混凝土的性能

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摘要

Mechanical characteristics of Fibre Reinforced High Performance Concrete (FR-HPC) subjected to high temperatures were experimentally investigated in this paper. Three different concretes were prepared: a normal strength concrete (NSC) and two High Performance Concretes (HPC1 and HPC2). Fibre reinforced concretes were produced by addition of steel or polypropylene fibres in the above mixtures at dosages of 40 kg/m~3 and 5 kg/m~3, respectively. A total of nine concrete mixtures were produced and fibres were added in six of them. At the age of 120 days specimens were heated to maximum temperatures of 100, 300, 500 and 700 ℃. Specimens were then allowed to cool in the furnace and tested for compres-sive strength, splitting tensile strength, modulus of elasticity and ultrasonic pulse velocity. Reference tests were also performed at air temperature (20 ℃). Residual strength of NSC and HPC1 was reduced almost linearly up to 700 ℃ and 500 ℃, respectively whereas the residual strength of HPC2 was sharply reduced up to 300 ℃. Explosive spalling was observed on both HPC. Addition of steel fibres increased the residual strength up to 300 ℃, but spalling still occurred in HPC1 and HPC2. Such an explosive behavior was not observed when polypropylene fibres were added in the mixtures; however, in this case the residual mechanical characteristics of all concretes were significantly reduced.
机译:本文通过实验研究了高温下的纤维增强高性能混凝土(FR-HPC)的力学性能。制备了三种不同的混凝土:普通强度混凝土(NSC)和两种高性能混凝土(HPC1和HPC2)。通过在上述混合物中分别以40 kg / m〜3和5 kg / m〜3的剂量添加钢或聚丙烯纤维来生产纤维增强混凝土。总共生产了9种混凝土混合物,并在其中6种中添加了纤维。在120天时,将样品加热到100、300、500和700℃的最高温度。然后将样品在炉中冷却并测试抗压强度,劈裂抗拉强度,弹性模量和超声脉冲速度。在空气温度(20℃)下也进行了参考测试。 NSC和HPC1的残余强度在700℃和500℃时几乎呈线性降低,而HPC2的残余强度在300℃以下则急剧降低。在两个HPC上均观察到爆炸剥落。添加钢纤维可将残余强度提高到300℃,但HPC1和HPC2仍会发生剥落。当在混合物中添加聚丙烯纤维时,未观察到这种爆炸性行为。但是,在这种情况下,所有混凝土的残余机械特性都大大降低了。

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