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Corrosion-Induced Concrete Cracking for Uncoated and Galvanized Reinforcing Bars

机译:未涂覆和镀锌钢筋的腐蚀引起的混凝土开裂

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Corrosion-related cracking in reinforced concrete is caused by expansive corrosion products and the resulting tensile stresses. While the amount of corrosion to cause cracking has been studied for uncoated conventional reinforcement, significantly less is known about the corrosion loss at cracking for galvanized reinforcement. Conventional and galvanized bars were cast in chloride-contaminated concrete. Clear cover to the bar ranged from 0.5 to 2 in. (12.7 to 51 mm). Specimens were tested both with and without the use of impressed current to drive corrosion. It was found that galvanized reinforcement requires greater corrosion losses to crack concrete than conventional steel reinforcement. Visual observations at autopsy suggest that the cracking of the concrete specimens containing galvanized reinforcement was not due to zinc corrosion products, but rather to corrosion products from intermetallic iron-zinc layers or from the underlying steel. Further study is needed to determine the exact nature of these corrosion products. Tests using impressed current may be used to establish the corrosion loss required to cause cracking.
机译:钢筋混凝土中与腐蚀有关的开裂是由膨胀的腐蚀产物和所产生的拉应力引起的。尽管已经对未涂覆的常规增强材料研究了引起开裂的腐蚀量,但对于镀锌增强材料开裂时的腐蚀损失知之甚少。常规的和镀锌的钢筋是用氯化物污染的混凝土浇铸的。清除盖板上的盖子,其范围为0.5到2英寸(12.7到51毫米)。在使用和不使用外加电流驱动腐蚀的情况下均对样品进行了测试。已经发现,与常规的钢增强相比,镀锌的增强要求开裂混凝土需要更大的腐蚀损失。尸检时的目视观察表明,含有镀锌增强材料的混凝土试样的开裂不是由于锌腐蚀产物,而是由于金属间铁锌层或下层钢的腐蚀产物。需要进一步研究以确定这些腐蚀产物的确切性质。使用外加电流进行的测试可以用来确定引起破裂所需的腐蚀损失。

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