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首页> 外文期刊>Journal of Materials Engineering and Performance >The Influence of Galvanizing Parameters on the Structural Development of Zn-Al-Based Coatings
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The Influence of Galvanizing Parameters on the Structural Development of Zn-Al-Based Coatings

机译:镀锌参数对Zn-Al涂层结构发展的影响

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The evolution of some layers’ characteristics, deposited by galvanization, was monitored according to the technological parameters of the process. Two types of alloys from the Zn-Al and Zn-Al-Ti-B systems were used for deposition. The structure of the deposited layers was analyzed by optical and electron microscopy. The chemical composition, phases and compounds in the structures were identified. The mechanical properties of the structural constituents of the layers were determined by nanoindentation. These techniques highlighted the typical non-uniformities in terms of composition and properties in the layers, mainly due to the diffusion and distribution of iron from the steel substrate in the deposited layers. The evaluation of iron diffusion in the deposited layer was done by differential thermal analysis. The values of the critical temperatures (melting temperature, eutectic temperature and solidification temperature) were correlated with the parameters used during deposition. It was observed that the structure of the coatings is layered, with a specific order from the steel substrate to the edge. In these layers, the constituents are mixtures of soft solid solutions of Al in Zn ( η and β ) and hard intermetallic compounds. Moreover, increasing the immersion time in the galvanizing bath and the bath temperature leads to an increase in iron diffusion in the coating layer, which contributes to lower coating thickness, thus reducing its durability in operation.
机译:根据该过程的技术参数监测镀锌的一些层的特性的演变。来自Zn-Al和Zn-Al-Ti-B系统的两种类型的合金用于沉积。通过光学和电子显微镜分析沉积层的结构。鉴定了结构中的化学成分,相和化合物。通过纳米凸缘测定层的结构成分的机械性能。这些技术在层中的组成和性质方面突出显示典型的非均匀性,主要是由于沉积层中的钢基板的铁的扩散和分布。通过差分热分析进行沉积层中的铁扩散的评价。临界温度(熔化温度,凝固温度和凝固温度)的值与沉积期间使用的参数相关。观察到涂层的结构层叠,具有从钢基板到边缘的特定顺序。在这些层中,组分是Al在Zn(η和β)和硬质金属间化合物中的软固体溶液的混合物。此外,增加镀锌浴中的浸入时间和浴温导致涂层中的铁扩散的增加​​,这有助于降低涂层厚度,从而降低其操作中的耐久性。

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