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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Characterization of the surface and mechanical properties of the friction stir welding in tri-dissimilar joints with aluminum alloys and titanium alloy
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Characterization of the surface and mechanical properties of the friction stir welding in tri-dissimilar joints with aluminum alloys and titanium alloy

机译:用铝合金和钛合金三相角摩擦搅拌焊接的表面和力学性能的表征

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摘要

The search for lighter and more resistant structures contributed to the development of effective welding methods. Among them, friction stir welding, a recent technique patented in 1991, in which welding is performed by the friction between a rotating tool and the materials to be welded, has widely been studied in the last decades. Among the advantages the technique provides, are the possibility of welding aluminum alloys series 2xxx and 7xxx, and the possibility of welding materials of different chemical compositions. The industry is still cautious about using this technique, yet several studies have been performed to improve knowledge on it. This research investigated the three dissimilar junctions between aluminum alloys 2024-T4 and 7475-T6 with titanium alloy Ti6Al4V. The aluminum alloys were positioned on the top portion of the welding creating a butt weld. The titanium alloy was placed on the bottom portion of the weld creating a lap welding with the aluminum alloy. The parameters of rotation, welding speed, and tilt were varied, following a central composite experimental design. Through the response surface analysis, it was possible to identify the correlation between the input and output parameters. This correlation is used to identify main influence between the parameters and can be used to optimization of the process. The influences of these parameters were evaluated on the welding surface by measuring residual stress and microhardness. The residual stress was analyzed by the hole drilling method on the aluminum side and by X-ray diffraction on the titanium side. The microhardness was analyzed by the Vickers test. On the aluminum side, residual stress and microhardness show a strong relation; high value of residual stress resulted in low value of microhardness. On the titanium side, residual stress shows a relation with temperature; the high value of temperature resulted in low value of stress. The tensile test was used to compare joint efficiency between different welding parameters and the base metal. It was possible to reach parameters in which the welding ultimate tensile stress exceeded the AA2024 value.
机译:寻求更轻,更耐药结构有助于开发有效的焊接方法。其中,摩擦搅拌焊接是1991年专利的最新技术,其中焊接通过旋转工具与待焊接材料之间的摩擦进行,在过去几十年中被广泛研究。在技​​术提供的优点中,焊接铝合金系列2xxx和7xxx的可能性,以及不同化学组成的焊接材料的可能性。业界仍然持谨慎态度,使用这种技术,已经进行了几项研究以提高对其的知识。本研究研究了铝合金2024-T4和7475-T6与钛合金Ti6Al4V之间的三个异种交配。铝合金定位在焊接的顶部,从而产生对接焊接。钛合金置于焊缝的底部,从而产生铝合金搭接焊接焊接。在中央复合实验设计之后,旋转,焊接速度和倾斜的参数变化。通过响应面分析,可以识别输入和输出参数之间的相关性。这种相关性用于识别参数之间的主要影响,并且可用于优化该过程。通过测量残余应力和微硬度,在焊接表面上评估这些参数对焊接表面的影响。通过铝侧的空穴钻井方法和钛侧的X射线衍射分析残余应力。通过维氏试验分析微硬度。在铝侧,残余应力和微硬度表现出强烈的关系;残余胁迫的高值导致微硬度值低。在钛侧,残余应力显示与温度的关系;高温值导致应力低。拉伸试验用于比较不同焊接参数和基础金属之间的联合效率。可以达到焊接终极拉伸应力超过AA2024值的参数。

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