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Concrete structures: on-site electrochemical techniques and concrete resistivity to predict service life Part 1: Corrosion measurement techniques

机译:混凝土结构:现场电化学技术和混凝土电阻率预测使用寿命第1部分:腐蚀测量技术

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摘要

Concrete protects the steel of the reinforcements in a similar manner than do the paints but with the particularity that it is a material chemically active and evolving for decades. Concrete provides a very alkaline electrolyte encapsulated in its pore network. The steel may remain passive indefinitely but chlorides and atmospheric carbon dioxide penetrate the pores and reaching the reinforcement promote corrosion, which impairs the concrete structural properties inducing the cover cracking and the loss in steel-concrete bond. Calculation of service life is becoming an important subject in engineering terms due to the increasing demand to produce buildings and infrastructures with service life beyond 100 years. In the paper focus will be devoted to two main areas: 1) the measurement techniques in concrete and permanent probes, including on site methods for large structures and contactless (inductive) methods 2) the illustration of the corrosion resistance control exerted by concrete resistivity which enables the calculation of the diffusion of ions through the concrete and the prediction of the corrosion rate in function of the climatic conditions.
机译:混凝土以类似的方式保护增强材料的钢免于涂料,而是具有化学活跃和发展数十年的材料的特殊性。混凝土提供封装在其孔网络中的非常碱性电解质。钢可以无限期地保持被动,但氯化物和大气二氧化碳穿透孔隙并达到增强件促进腐蚀,这损害了诱导盖裂化和钢混凝土粘合损失的混凝土结构性能。由于需求不断增加,生产建筑物和利用超过100年的基础设施的需求,计算使用寿命正在成为工程术语的重要主题。在纸质焦点将致力于两个主要领域:1)混凝土和永久探针中的测量技术,包括用于大型结构的现场方法和非接触式(电感)方法2)通过混凝土电阻率施加耐腐蚀控制的图示能够通过混凝土计算离子的扩散,以及在气候条件的功能中的腐蚀速率的预测。

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