首页> 外文期刊>Engineering journal >Weldability of Aluminum-Steel Joints Using Continuous Drive Friction Welding Process, Without the Presence of Intermetallic Compounds
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Weldability of Aluminum-Steel Joints Using Continuous Drive Friction Welding Process, Without the Presence of Intermetallic Compounds

机译:在不存在金属间化合物的情况下,采用连续驱动摩擦焊接工艺的铝钢接头的可焊性

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Weldability of aluminum-steel joints has been studied mainly to avoid the formation of IMC. Nowadays, there are two ways to control the effect of Fe_(x)Al_(y) in welding: 1) the elimination of IMCs or 2) the generation of a thin and homogeneous layer of these phases. In this way, the present work explores the first route, manufacturing joints aluminum-steel using solid state welding process. In order to evaluate the effect of the welding parameters, temperature measures were carried out during the process as well as the microstructural evaluation using optical microscopy and SEM. Finally, the welded joints were subject to tensile strength tests to evaluate their mechanical behavior and try to stablish the nature of the interfacial bonding between both metals. The microstructural characterization of the joints does not reveal the formation of IMCs; this is attributed to the low temperature reached during the process, lower than 545 °C. The welded joint failures in the TMAZ, in the low hardness zone, product of the over aging of the precipitates β”. The nature of the bonding in the interface is not clear yet, but it is considered that the atomic diffusion trough the interface favors the joint formation.
机译:研究铝-钢接头的可焊性主要是为了避免形成IMC。如今,有两种方法可以控制Fe_(x)Al_(y)在焊接中的作用:1)消除IMC或2)生成这些相的薄而均匀的层。这样,本工作探索了第一条途径,即采用固态焊接工艺来制造铝钢接头。为了评估焊接参数的影响,在加工过程中进行了温度测量以及使用光学显微镜和SEM进行了显微组织评估。最后,对焊接接头进行抗拉强度测试,以评估其机械性能,并试图稳定两种金属之间的界面结合性质。关节的微观结构表征不能揭示IMC的形成;这归因于过程中达到的低温,低于545°C。在低硬度区域的TMAZ中,焊接接头失效是沉淀物“β”过度老化的产物。界面中键合的性质尚不清楚,但可以认为通过界面的原子扩散有利于接头的形成。

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