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首页> 外文期刊>Advances in materials science and engineering >Microstructure and Mechanical Properties of Electron Beam-Welded Joints of Titanium TC4 (Ti-6Al-4V) and Kovar (Fe-29Ni-17Co) Alloys with Cu/Nb Multi-Interlayer
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Microstructure and Mechanical Properties of Electron Beam-Welded Joints of Titanium TC4 (Ti-6Al-4V) and Kovar (Fe-29Ni-17Co) Alloys with Cu/Nb Multi-Interlayer

机译:TC4(Ti-6Al-4V)和可伐(Fe-29Ni-17Co)钛合金与Cu / Nb多层夹层的电子束焊接接头的组织和力学性能

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Electron beam welding of a titanium alloy (Ti-6Al-4V) and a kovar alloy (Fe-29Ni-17Co) was performed by using a Cu/Nb multi-interlayer between them. Microstructure and composition of welded joints were analyzed by means of optical microscopy, scanning electron microscopy, energy dispersive spectroscopy, and X-ray diffraction. Mechanical properties of welded joints were evaluated by microhardness and tensile strength tests. Results indicated that in case of 0.22 mm thickness of Nb foil, microstructure of the titanium alloy side was mainly composed of Ti solid solution and some intermetallic compounds such as FeTi and CuTi2, whereas in case of 0.40 mm thickness of Nb foil, the appearance of weld was more uniform and hardness of the weld zone decreased sharply. However, tensile strength of welded joints was increased from 88.1 MPa for the 0.22 mm Nb foil to 150 MPa for the 0.40 mm Nb foil. It was found that thicker Nb foil could inhibit diffusion of Fe atoms towards the titanium alloy side, thus promoting the formation of Ti solid solution and a small amount of CuTi2 and eliminating FeTi. In addition, in both cases, Cu0.5Fe0.5Ti was found in the fusion zone of the titanium alloy side, which had an adverse effect on mechanical properties of welded joints.
机译:钛合金(Ti-6Al-4V)和可伐合金(Fe-29Ni-17Co)的电子束焊接是通过使用Cu / Nb多层夹层进行的。通过光学显微镜,扫描电子显微镜,能量色散谱和X射线衍射分析了焊接接头的微观结构和成分。焊接接头的机械性能通过显微硬度和拉伸强度测试进行评估。结果表明,在厚度为0.22 mm的Nb箔中,钛合金侧组织主要由Ti固溶体和一些金属间化合物如FeTi和CuTi2组成,而在厚度为0.40 0.4mm的Nb箔中,则出现焊缝更加均匀,焊缝区域的硬度急剧下降。但是,焊接接头的抗拉强度从0.22 mm Nb箔的88.1 MPa增加到0.40 mm Nb箔的150 MPa。发现较厚的Nb箔可以抑制Fe原子向钛合金一侧扩散,从而促进Ti固溶体和少量CuTi2的形成并消除FeTi。另外,在两种情况下,在钛合金侧的熔合区都发现了Cu0.5Fe0.5Ti,这对焊接接头的机械性能有不利影响。

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