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Microstructural Development in a Laser-Remelted Al-Zn-Si-Mg Coating

机译:激光重熔Al-Zn-Si-Mg涂层的显微组织发展

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摘要

In the last five decades, there has been intense development in the field of Zn-Al galvanic coating modification. Recently, Mg was added to improve corrosion properties. Further improvements to the coating are possible with additional laser surface treatment. In this article, we focus on remelting the Al-Zn-Mg-Si layer, using a diode laser with a wide-beam format, concentrating on the microstructure development during extreme cooling rates. Laser remelting of the Al-Zn-Mg-Si coating and rapid self-quenching produces a finer grain size, and a microstructure that is substantially refined and homogenized with respect to the phase distribution. Using EBSD results, we are able to understand microstructure modification. The laser modified coating has some porosity and intergranular cracking which are difficult to avoid, however this does not seem to be detrimental to mechanical properties, such as ductility on bending. The newly developed technology has a high potential for improved corrosion performance due to highly refined microstructure.
机译:在过去的五十年中,Zn-Al电镀涂层改性领域取得了长足的发展。最近,添加了Mg以改善腐蚀性能。额外的激光表面处理可以进一步改善涂层。在本文中,我们重点研究使用宽光束格式的二极管激光器重熔Al-Zn-Mg-Si层,着重于极端冷却速率下的微观结构发展。 Al-Zn-Mg-Si涂层的激光重熔和快速的自淬火产生了更细的晶粒尺寸,并且相对于相分布,其组织得到了实质性的细化和均化。使用EBSD结果,我们能够了解微结构的修改。激光改性涂层具有一些难以避免的孔隙率和晶间裂纹,但是这似乎对机械性能(如弯曲延展性)无害。由于高度精细的微观结构,新开发的技术具有提高腐蚀性能的潜力。

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