Fabrication and analysis of TIG welding-brazing butt joints of in-situ TiB2/7050 composite and TA2

钎焊 材料科学 焊接 对接接头 极限抗拉强度 填充金属 钨极气体保护焊 冶金 复合材料 拉伸试验 合金 电弧焊
作者
Huanhuan Sun,Yibo Ren,Yan Feng,Hao-qiang Ba,Dong Chen,Chun-juan Xia,Haowei Wang
出处
期刊:Defence Technology [Elsevier BV]
卷期号:17 (3): 1062-1070 被引量:3
标识
DOI:10.1016/j.dt.2020.06.022
摘要

Lightweight hybrid structures of Al MMCs and titanium alloy dissimilar materials have great prospect in the defence industry application. So, it is necessary to join Al MMCs with Ti metal to achieve this structural design. In this work, in-situ TiB2/7050 composite and TA2 were firstly attempted to join by TIG welding-brazing technique. The result was that the intact welding-brazing butt joint was successfully fabricated. The joint presents dual characteristics, being a brazing on TA2 side and a welding on TiB2/7050 side. At brazing joint side, ER4043 filler metal effectively wets on TA2 under TIG heating condition, and a continuous interfacial reaction layer with 1–3 μm is formed at welded metal/TA2 interface. The whole interfacial reaction layers are composed of Ti(AlSi)3 intermetallic compounds (IMCs), but their morphologies at the different regions present obvious distinguishes. The microhardness of the reaction layers is as much as 141–190 HV. At welding joints side, the fusion zone appears the equixaed crystal structure, and the grain sizes are much smaller than those of welded metal, which is attributed to the effect of TiB2 particulates from the melted TiB2/7050 on acceleration formation and inhibiting growth for the new crystal nucleus. The tensile test results show that average tensile strength of the optimal welding-brazing joint is able to achieve 138 MPa. The failure of the tensile joint occurs by quasi-cleavage pattern, and the cracks initiate from the IMCs layer at the groove surface of TA2 and propagate into the welded metal.
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