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Effects of load-induced micro-cracks on chloride penetration resistance in different types of concrete

机译:负荷诱导的微裂纹对不同类型混凝土氯化物渗透性的影响

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Chloride penetration resistance of concrete is one of the key parameters for the durability design of reinforced concrete structures located in chloride-bearing environments. In all the current available durability models, service life is evaluated considering concrete in uncracked conditions, which is rarely found in practice. This work investigates chloride penetration resistance of concrete in uncracked and micro-cracked configurations, evaluated in terms of chloride migration coefficient through non-steady state migration test (Rapid Chloride Migration test). Prismatic specimens were manufactured considering six different concrete types and two different times of curing. In micro-cracked configuration, cracks were obtained with a specifically developed loading procedure. Micro-cracks were characterized at the end of the exposure test, in terms of crack width at the exposed surface and crack depth. Results showed that cracks were 5-70 mu m wide and up to 40 mm deep, always causing an increase in chloride penetration, that should be evaluated considering both crack width and crack depth, with respect to sound conditions. The effects on the chloride penetration seemed to be more pronounced on the more impervious concretes.
机译:混凝土的氯化物渗透性是耐氯化物环境中钢筋混凝土结构耐久性设计的关键参数之一。在所有当前可用的耐用性模型中,考虑在未传递的条件下的混凝土中评估使用寿命,这在实践中很少发现。该作品研究了混凝土中混凝土的氯化物穿透性,通过非稳态迁移试验(快速氯化物迁移试验)在氯化物迁移系数方面评价。考虑六种不同的混凝土类型和两次不同的固化时间来制造棱柱形样品。在微裂纹构型中,用特异性开发的加载程序获得裂缝。在暴露表面和裂纹深度的裂缝宽度方面,在暴露试验结束时表征微裂纹。结果表明,裂缝宽5-70μm深,深度为40毫米,始终导致氯化物渗透的增加,应该考虑裂缝宽度和裂缝深度,相对于声音条件。对氯化物渗透的影响似乎更加明显的混凝土。

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