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Microstructural Characterization and Mechanical Properties of Iron Reinforcements in Buildings from the Medieval and Modern Periods in France

机译:来自法国中世纪和现代时期建筑物中铁增强型铁增强的微观结构特征及力学性能

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This article presents an overview of the metallographic structures observed on the iron reinforcements of more than 20 buildings from the medieval and modern period in France, which are representative of the evolution of ironmaking techniques at that time (330 samples). Metallographic examinations show a great diversity of structures, even in the same sample: pure ferritic iron to low pearlitic steel, presence of phosphorus in solid solution (locally up to 0.5%wt), numerous slag inclusions of various sizes, porosities. Tensile tests were performed on a representative set of samples from 4 buildings (46 samples). The results are in accordance with the metallographic observations: mechanical behaviors are very heterogeneous, even in samples taken on the same artefact. Failure happened at values as low as the yield stress up to 25% of the plastic strain. These reinforcements probably worked in the elastic domain at low stress (150 Mpa). These mechanical properties are significantly beyond those of modern carbon steels and question the exact role of iron in the stability of monuments.
机译:本文概述了在法国中世纪和现代期间的20多楼的铁增强件观察到的金相结构,这些结构是当时的熨烫技术的演变(330个样本)。金相检查表现出巨大多样化的结构,即使在与低珠光体钢中的纯铁素体铁,固体溶液(局部高达0.5%wt)的存在,各种尺寸,孔隙夹层的存在。在来自4个建筑物(46个样品)的代表性样品上进行拉伸试验。结果符合金相观察:即使在相同艺术品上采样的样品中,机械行为也是非常异构的。由于屈服应力高达25%的塑料应变的值,失败发生在低。这些增强件可能在低应力(<150MPa)处的弹性域中工作。这些机械性能显着超出了现代碳钢的特性,并质疑铁在古迹稳定性中的确切作用。

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