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Fire spalling sensitivity of high-performance concrete in heated slabs under biaxial compressive loading

机译:双轴压缩荷载下高性能混凝土在加热平板中的散裂敏感性

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Explosive spalling of concrete exposed to fire consists in the violent expulsion of shards from the hot surface due to the interaction between cracking and pore pressure build-up. Fire spalling relevantly increases the overall thermal damage of a structure exposed to fire, thus leading to much higher costs in the repair intervention, and in some cases it can even jeopardize the structural stability due to loss of reinforcement protection and reduction of the bearing cross-sections. High-performance concrete is particularly sensitive to spalling phenomenon due to inherent material features, such as the unstable fracture behaviour and the low permeability (favouring high values of pore pressure). In this context, an experimental campaign has been carried out on high-performance concrete (f(c)approximate to 60MPa with silico-calcareous aggregate), without or with one of three different fibre types (steel fibre, monofilament or fibrillated polypropylene fibres). Tests were performed by means of a special test setup developed at Politecnico di Milano, based on slabs (800x800x100mm) subjected to Standard Fire at the bottom and to biaxial compressive loading in the mid-plane, while monitoring pore pressure, temperature and deflection. Explosive spalling was observed in both plain concrete slabs and in one of the two slabs with steel fibre, this casting some doubts on the use of steel fibre alone against spalling. No detachment was observed when polypropylene fibre was added to the mix.
机译:暴露于火中的混凝土爆炸性剥落是由于开裂与孔隙压力累积之间的相互作用而导致的碎片从热表面剧烈排出。火灾剥落会相应地增加暴露在火中的结构的整体热损伤,从而导致维修干预的成本高得多,并且在某些情况下,由于失去加强保护并减少了轴承的交叉,甚至可能危及结构的稳定性。部分。由于固有的材料特性,例如不稳定的断裂行为和低渗透性(有利于高孔隙压力),高性能混凝土对剥落现象特别敏感。在这种情况下,已对不含或不含三种不同纤维类型(钢纤维,单丝或原纤化聚丙烯纤维)的高性能混凝土(f(c)约为60MPa,含硅钙质骨料)进行了试验。 。测试是通过在米兰理工大学开发的特殊测试装置进行的,该测试装置是基于平板(800x800x100mm)进行测试的,该平板在底部经受标准火灾,在中平面承受双轴压缩载荷,同时监测孔隙压力,温度和挠度。在普通混凝土板和两块钢纤维板之一中均观察到爆炸性剥落,这对仅使用钢纤维防止剥落产生了一些怀疑。当将聚丙烯纤维添加到混合物中时,未观察到剥离。

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