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Characterization and Prediction of Cracks in Coated Materials: Direction and Length of Crack Propagation in Bimaterials

机译:涂层材料裂纹的表征和预测:双材料裂纹扩展的方向和长度

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The behaviour of materials is governed by the surrounding environment. The contact area between the material and the surrounding environment is the likely spot where different forms of degradation, particularly rust, may be generated. A rust prevention treatment, like bluing, inhibitors, humidity control, coatings, and galvanization, will be necessary. The galvanization process aims to protect the surface of the material by depositing a layer of metallic zinc by either hot-dip galvanizing or electroplating. In the hot-dip galvanizing process, a metallic bond between steel and metallic zinc is obtained by immersing the steel in a zinc bath at a temperature of around 460°C. Although the hot-dip galvanizing procedure is recognized to be one of the most effective techniques to combat corrosion, cracks can arise in the intermetallic layer. These cracks can affect the life of the coated material and decrease the lifetime service of the entire structure. In the present paper the mechanical response of hot-dip galvanized steel submitted to mechanical loading condition is investigated. Experimental tests were performed and corroborative numerical and analytical methods were then applied in order to describe both the mechanical behaviour and the processes of crack/cracks propagation in a bimaterial as zinc-coated material.
机译:材料的行为受周围环境的控制。材料与周围环境之间的接触区域可能是可能发生不同形式的降解(尤其是生锈)的部位。将需要防锈处理,例如上蓝剂,抑制剂,湿度控制,涂层和镀锌。镀锌工艺旨在通过热浸镀锌或电镀沉积一层金属锌来保护材料表面。在热浸镀锌工艺中,通过将钢浸入460°C左右的锌浴中,可以在钢和金属锌之间获得金属键。尽管热浸镀锌工艺被认为是抵抗腐蚀的最有效技术之一,但在金属间层中仍会出现裂纹。这些裂纹会影响涂层材料的寿命,并降低整个结构的使用寿命。本文研究了热浸镀锌钢在机械载荷条件下的力学响应。进行了实验测试,然后应用了可靠的数值和分析方法,以描述双涂层材料镀锌材料的力学行为和裂纹/裂纹扩展过程。

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