首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure evolution and mechanical properties of friction stir spot welded dissimilar aluminum-copper joint
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Microstructure evolution and mechanical properties of friction stir spot welded dissimilar aluminum-copper joint

机译:摩擦搅拌点焊接不同铝铜接头的微观结构演化与力学性能

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Dissimilar lap joints of 1060 aluminum and T2 copper were obtained by friction stir spot welding (FSSW) at various rotational speeds. The measured process variables during welding revealed that an increasing rotational speed leads to a higher peak temperature but a lower torque and plunging force due to the greater softening degree of material. A continuous CuAl2-CuAl-Al4Cu9 laminated layer developed at the Al-Cu interface under the highest rotational speed, while the interface was characterized by the interruptedly distributed CuAl2 layer under lower rotational speeds. Intermetallic compound (IMC) formation sequence for CuAl2, CuAl and Al4Cu9 was predicted according to thermodynamic principles, which is consistent with the interfacial microstructure evolution identified by the transmission electron microscope (TEM). Besides the metallurgical bonding through the IMC layer at the Al-Cu interface, joints have a Cu hook extruded upward by the pin tool from the lower Cu sheet into the upper Al sheet, which provided additional mechanical interlocking between the sheets. Tensile properties of the joints were closely related to the thickness of the IMC layer and geometric features of the hook, higher tensile properties were found in joints owning a continuous interfacial IMC layer with a proper thickness as well as a high penetration depth of the hook into the upper Al sheet. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过以各种旋转速度摩擦搅拌点焊(FSSW)获得1060铝和T2铜的不同搭接接头。在焊接期间测量的过程变量显示出增加的旋转速度导致较高的峰值温度,而是由于材料软化程度较大的较低的扭矩和狭窄力。在最高旋转速度下在Al-Cu接口处开发的连续的Cual2-Cual-Al4Cu9层压层,而界面的特征在于在较低的旋转速度下的中断分布的Cual2层。根据热力学原理预测Cual2,Cual和Al4Cu9的金属间化合物(IMC)形成序列,其与透射电子显微镜(TEM)鉴定的界面微观结构演变一致。除了通过IMC层在Al-Cu界面处的冶金键合之外,接头具有通过从下Cu板向上挤出的Cu钩,进入上部Al片材,该销钉在纸张之间提供额外的机械互锁。关节的拉伸性能与钩子的IMC层的厚度密切相关,在具有适当厚度的连续界面IMC层的接头中发现较高的拉伸性能以及钩子的高穿透深度上层铝板。 (c)2018年elestvier b.v.保留所有权利。

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