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Solid-state joining of aluminum to titanium: A review

机译:固态连接铝到钛:综述

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摘要

The dissimilar material joining of aluminum and titanium alloys is recognized as a challenge due to the significant differences in the physical, chemical, and metallurgical properties of these alloys, where the increasing demands for high strength and lightweight alloys in aerospace, defense, and automotive industries. Joining these two alloys using the conventional fusion techniques produces commercially unacceptable sound joints due to irregular, complex weld pool shapes, cracking and low strength, high residual stresses, cracks, and microporosity, and the brittle intermetallic compounds formation leads to poor formability or inferior mechanical properties. The formation of intermetallic compounds is inevitable but it is less severe in solid-state than in the fusion welding process. Hence, this article reviews on aluminum-titanium joining using different solid-state and hybrid joining processes with emphasis on the effect of process parameters of the different processes on the weld microstructure, mechanical properties along with the type of intermetallic compounds and defects formed at the weld interface. Among the various solid-state welding processes for aluminum-titanium joining, the following grades of aluminum and titanium alloys were employed such as cp Ti, Ti6Al4V, cp Al, AA1xxx, AA 2xxx, AA5xxx, AA6xxx, AA7xxx, out of which Ti6Al4V and AA6xxx alloys are the most common combination.
机译:铝和钛合金的不同材料接合被认为是这些合金的物理,化学和冶金性质的显着差异,其中航空航天,防御和汽车行业的高强度和轻质合金的越来越大的需求。使用传统的融合技术加入这两种合金,由于不规则,复杂的焊接池形状,开裂和低强度,高残余应力,裂缝和微孔,并且脆性金属间化合物形成导致可脆性或劣质机械较差或劣质机械,产生商业不可接受的声音特性。金属间化合物的形成是不可避免的,但在固态中的固态不太严重,而不是融合焊接过程。因此,本文用不同的固态和混合加工过程的铝 - 钛连接方法,重点是对焊接微观结构的不同方法的工艺参数的影响,机械性能以及形成的金属间化合物的类型和缺陷焊接接口。在铝 - 钛连接的各种固态焊接过程中,采用以下铝和钛合金等等级,例如Cp Ti,Ti6Al4V,Cp Al,Aa1xx,Aa 2xxx,Aa5xxx,Aa6xxx,aa7xxx,其中ti6al4v和AA6xxx合金是最常见的组合。

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