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Durability of Two Types of HPC at Sulphate Solution Environment

机译:硫酸盐溶液环境下两种HPC的耐久性

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Sulphate attack of concrete and cement composites comprises sulphate ions migration into the material porous space and their following reaction with hydration products in the presence of water. Newly formed compounds initiate filling of porous space and volume expansion. Sulphate corrosion phenomenon still belongs to the main mechanism affecting the durability and service life of concrete structures. This paper deals with the investigation of sulphate resistance of two types of High Performance Concrete (HPC) exposed for 168 days to sodium sulphate water solution and reference environment of distilled water. Corrosive action is monitored at chosen time periods non-destructively, i.e. using measurement of length and mass changes, basic physical characteristics and dynamic moduli. Additionally, destructive tests of mechanical parameters are realised. For samples immersed in distilled water, improvement in mechanical strength is observed for the both studied HPCs. In case of HPC C I containing crushed aggregate, the improvement of mechanical resistivity is observed for samples exposed to sulphate solution for 140 days only. For other researched period of sulphate exposure, mechanical strength decreased in comparison with the reference values. On the other hand, HPC C II exhibited mechanical resistivity to sulphate action in all examined time periods of sulphate solution exposure.
机译:硫酸盐攻击混凝土和水泥复合材料的攻击包括硫酸盐离子迁移到材料多孔空间中,并在水存在下与水合产物反应。新形成的化合物引发多孔空间和体积膨胀的填充。硫酸盐腐蚀现象仍然属于影响混凝土结构耐久性和使用寿命的主要机制。本文涉及对硫酸钠水溶液和蒸馏水的参考环境暴露的两种类型高性能混凝土(HPC)的硫酸盐耐药性进行调查。在未破坏性地监测所选时间段的腐蚀性作用,即使用长度和质量变化,基本物理特性和动态模量的测量。此外,实现了机械参数的破坏性测试。对于浸入蒸馏水中的样品,对于研究的两种HPC,观察到机械强度的改善。在HPC C I含有碎骨料的情况下,观察到机械电阻率的改善仅对暴露于硫酸盐溶液的样品仅为140天。对于其他研究的硫酸盐暴露,与参考值相比,机械强度降低。另一方面,HPC C II在硫酸盐溶液暴露的所有检查时间段中表现出对硫酸盐作用的机械电阻率。

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