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The influence of pore pressure on fracture behaviour of Normal-Strength and High-Performance Concretes at high temperature

机译:孔隙压力对高温正常强度和高性能混凝土断裂行为的影响

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摘要

Explosive spalling consists in the sudden separation of concrete layers or pieces from the surface exposed to fire, due to (a) stress caused by thermal gradients and external loads and (b) pore pressure rise induced by water vaporization. As regards the material properties, the phenomenon is affected by some meso- and micro-structural aspects mainly concerning the interaction during heating among cement paste, aggregate and fibre, thus influencing porosity and permeability variation at high temperature. Focusing on the effect of pore pressure in fracture behaviour of Normal-Strength and High-Performance Concretes, an experimental campaign has been planned, aimed at investigating the role played by the mix design. Nine concrete mixes have been studied considering three grades (f(c) >= 40, 60 and 90 MPa), three aggregate types (silico-calcareous, basalt and calcareous aggregates) and different fibre types and contents (monofilament or fibrillated polypropylene fibres). The experimental study, based on indirect tension tests performed under different levels of sustained pore pressure, clearly shows that the influence of pressure on concrete fracture response during heating strongly depends on mix design.
机译:爆炸性剥落包括突然分离混凝土层或从暴露于火灾的表面的碎片,由于(a)由热梯度和外部载荷引起的应力和通过水蒸发引起的孔隙压力升高。关于材料特性,该现象受到一些中间结构和微结构方面的影响,主要是在水泥浆料,骨料和纤维中加热期间的相互作用,从而影响高温下的孔隙率和渗透性变化。专注于孔隙压力在正常强度和高性能混凝土的骨折行为中,计划的实验活动,旨在调查混合设计的作用。考虑了九个级(F(c)> = 40,60和90MPa),三种骨料类型(硅钙质,玄武岩和钙质聚集体)和不同的纤维类型和内容物(单丝或原纤化聚丙烯纤维)研究了九个混凝土混合物。 。实验研究基于在不同水平的持续孔隙压力下进行的间接张力试验,清楚地表明,加热过程中压力对混凝土断裂反应的影响力强烈取决于混合设计。

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