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Comparative study of microstructure and mechanical properties of laser welded‐brazed Mg/steel joints with four different coating surfaces

机译:四种不同涂层表面的激光焊接钎焊镁/钢接头的组织和力学性能的比较研究

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摘要

This paper presents a comparative study of laser welding‐brazing Mg to steel with four different coating surfaces, including (Zn+pre-existing Fe‐Al phase), pure Zn coating, pre-existing Fe‐Al phase and fresh steel without any coating. The presence of Zn coating was found to significantly improve the wettability of liquid filler on steel. However, Mg‐Zn products enriching at the seam head tended to cause cracking. The weak bonding of Mg‐Zn products and Fe‐Al layer was mainly responsible for the decreased tensile strength and interfacial failure that occurred in joints with the first two coatings. For joints with the latter two coatings, the thickness of newly formed Fe‐Al layer determined the mechanical properties. The reaction layer formed at the Mg/fresh steel was thin, inducing interfacial failure, whereas the joint with pre-existing Fe‐Al phase fractured at the seam, indicating that the pre-existing Fe‐Al phase was beneficial to formation and growth of the Fe‐Al phase.
机译:本文比较了将Mg激光焊接到具有四个不同涂层表面的钢上的比较研究,包括(Zn +预先存在的Fe-Al相),纯Zn涂层,预先存在的Fe-Al相和没有任何涂层的新鲜钢。发现锌涂层的存在显着改善了液态填料在钢上的润湿性。但是,在焊缝顶部富集的Mg-Zn产品往往会导致开裂。 Mg-Zn产物与Fe-Al层之间的弱结合是造成与前两个涂层的接合处发生拉伸强度降低和界面破坏的主要原因。对于具有后两种涂层的接头,新形成的Fe‐Al层的厚度决定了机械性能。 Mg /新鲜钢上形成的反应层很薄,引起界面破坏,而接缝处既有Fe-Al相的接头在接缝处破裂,这表明先前存在的Fe-Al相有利于合金的形成和生长。铁铝相

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