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Hardness-load modelling applied to multilayer galvanised coatings

机译:硬度负荷模型应用于多层镀锌涂层

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During the last past decades, galvanised steels have been extensively developed to improve corrosion resistance of steels due to their excellent chemical properties particularly in severe atmospheric conditions. The objective of this work is to predict the hardness-load variation in relation to the bath immersion time using both a multilayer coating hardness model and a layers growth modelling. The kinetic growth of each layer relates the thickness to the immersion time by a simple power law. The hardness of the intermetallic compounds is determined by applying a multilayer hardness model on classical Vickers microindentation data obtained at different indentation loads. Afterwards by combining the kinetic growth laws and the compounds hardness, it is possible to predict the surface hardness-load variation as a function of the immersion bath time.
机译:在过去的几十年中,由于镀锌钢具有出色的化学性能,特别是在恶劣的大气条件下,已经广泛开发以提高钢的耐腐蚀性。这项工作的目的是使用多层涂层硬度模型和层生长模型来预测与浴浸入时间有关的硬度-载荷变化。通过简单的幂定律,每一层的动态增长将厚度与浸入时间相关联。金属间化合物的硬度是通过在不同压痕载荷下获得的经典维氏显微压痕数据上应用多层硬度模型来确定的。然后,通过结合动力学增长规律和化合物硬度,可以预测表面硬度-载荷随浸浴时间的变化。

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