首页> 外文期刊>Journal of Thermal Spray Technology >Joining of Cast ZE41A Mg to Wrought 6061 Al by the Cold Spray Process and Friction Stir Welding
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Joining of Cast ZE41A Mg to Wrought 6061 Al by the Cold Spray Process and Friction Stir Welding

机译:ZE41A镁铸件与6061 Al的冷喷涂和搅拌摩擦焊接

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摘要

This paper presents a novel method for joining cast ZE41A-T5 Mg to wrought 6061-T6 Al, without forming deleterious, coarse intermetallic compounds, which is not currently possible with conventional technologies. The novel aspect of the process includes the development of a joint design using cold spray (CS) as the enabling technology, to produce a transitional layer onto which a conventional welding technique can be employed to join the two dissimilar materials. The emphasis in this study will be on the CS transitional layer (T-layer) which enables the joining of cast ZE41A-T5 magnesium (Mg) and wrought 6061-T6 aluminum (Al) by friction-stir welding and the subsequent materials characterization to show the structural integrity of the entire joint. In order to join Mg and Al plates by this method, a transitional layer of CS Al is first deposited along the edge of cast ZE41A Mg plate. The CS Al T-layer enables the Mg to be friction stir welded to a plate of wrought 6061 Al, thereby completing the Mg plate to Al plate joint. Friction stir welding was chosen in this study to join the CS Al T-layer to the wrought Al plate; however, other conventional welding techniques could also be employed for joining Mg to Al in this manner. The CS Al T-layer is compatible to the wrought 6061 Al plate and serves as an insulating layer that prevents heat generated during the friction stir welding process from extending into the magnesium, thus preventing the formation of intermetallics. In this study, two sets of samples were produced joining cast ZE41A-T5 magnesium (Mg) and wrought 6061-T6 aluminum: one set using CS 6061 Al as the transition material between the ZE41A Mg plate and 6061 Al plate and the other set using CS 5056 Al as the transition material. Microstructural analysis by scanning and transmission electron microscopy and optical microscopy, along with mechanical test results including triple lug shear, tension, and micro hardness will be presented. Comparisons will be made to conventional joining techniques and the importance, as well as the applications of this technique, will be discussed.
机译:本文提出了一种将铸态ZE41A-T5 Mg与变形的6061-T6 Al连接起来的新方法,而不会形成有害的粗大金属间化合物,这是传统技术目前无法实现的。该工艺的新颖之处在于开发了一种接头设计,该接头设计使用冷喷涂(CS)作为使能技术,以生产过渡层,在该过渡层上可以采用常规焊接技术将两种不同的材料连接在一起。这项研究的重点将放在CS过渡层(T层)上,该过渡层使ZE41A-T5铸镁(Mg)和6061-T6锻造铝(Al)能够通过搅拌摩擦焊接和随后的材料表征接合在一起。显示整个关节的结构完整性。为了通过这种方法连接Mg和Al板,首先沿铸造ZE41A Mg板的边缘沉积CS Al过渡层。 CS Al T层可将Mg搅拌摩擦焊接到变形的6061 Al板上,从而完成Mg板与Al板的连接。在这项研究中,选择了搅拌摩擦焊来将CS Al T层连接到锻造的Al板上。然而,也可以采用其他常规焊接技术以这种方式将Mg连接到Al。 CS Al T层与变形的6061 Al板兼容,并用作绝缘层,可防止在搅拌摩擦焊接过程中产生的热量扩散到镁中,从而防止形成金属间化合物。在这项研究中,生产了两组样品,分别连接了铸造的ZE41A-T5镁(Mg)和锻造的6061-T6铝:一组使用CS 6061 Al作为ZE41A Mg板和6061 Al板之间的过渡材料,另一组使用CS 5056 Al作为过渡材料。将介绍通过扫描电子显微镜和透射电子显微镜以及光学显微镜进行的微观结构分析,以及包括三重凸耳剪切,拉伸和显微硬度在内的机械测试结果。将与传统的连接技术进行比较,并将讨论该技术的重要性及其应用。

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