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Corrosion of Metallic Fasteners in Timber-Concrete Composite Structures

机译:木材-混凝土复合结构中金属紧固件的腐蚀

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While Timber-Concrete Composite (TCC) construction has been intensively studied in terms of structural behaviour, there is little research on the risk of corrosion of the used metallic shear fasteners in different exposure environments. Due to the marked differences in chemical environments of wood and concrete, however, it can be expected that the fasteners are subject to galvanic corrosion. This was experimentally studied in the present work. TCC specimens were fabricated for electrochemical testing and exposed to two different exposure environments, that is, 95% relative humidity and immersion in water. The moisture content in the wood, the difference in electrochemical potentials and the galvanic current were monitored over 2 months. Two types of fasteners were tested, namely zinc galvanized steel fasteners as well as browned fasteners that have been widely used in the TCC construction industry since 2013. It was found that the fastener parts in the wood generally act as an anode, while the remaining parts in the concrete act as a cathode. However, significant galvanic currents were only observed upon immersion in water. For practical applications in structural engineering, it is concluded that the mass loss of metal of the studied fasteners cannot present a severe risk for structures, especially not at the service classes 1 and 2 according to EN 1995-1-1.
机译:尽管就结构性能方面对木材混凝土复合材料(TCC)的结构进行了深入研究,但很少有关于在不同暴露环境下使用过的金属剪切紧固件腐蚀风险的研究。然而,由于木材和混凝土化学环境的显着差异,可以预料紧固件会受到电腐蚀。在当前工作中对此进行了实验研究。 TCC样品被制造用于电化学测试,并暴露于两种不同的暴露环境中,即95%相对湿度和浸入水中。在2个月内监测了木材中的水分含量,电化学电势差和电流。自2013年以来,已对两种类型的紧固件进行了测试,即锌镀锌钢紧固件和棕褐色紧固件,它们已在TCC建筑行业中广泛使用。发现木材中的紧固件零件通常充当阳极,而其余零件在混凝土中充当阴极。然而,仅在浸入水中时才观察到显着的电流。对于结构工程中的实际应用,得出的结论是,所研究的紧固件的金属质量损失不会对结构造成严重的风险,特别是在按照EN 1995-1-1进行的服务等级1和2下尤其如此。

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