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Microstructure and Mechanical Properties of Dissimilar Welded Ti3Al/Ni-Based Superalloy Joint Using a Ni-Cu Filler Alloy

机译:Ni-Cu填充合金的异种焊接Ti3Al / Ni基高温合金的组织和力学性能

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摘要

Dissimilar welding of a Ti3Al-based alloy and a Ni-based superalloy (Inconel 718) was successfully carried out using gas tungsten arc welding technology in this study. With a Ni-Cu alloy as filler material, sound joints have been obtained. The microstructure evolution along the cross section of the dissimilar joint has been revealed based on the results of scanning electron microscopy and X-ray energy dispersive spectroscopy as well as X-ray diffractometer. It is found that the weld/Ti3Al interface is composed of Ti2AlNb matrix dissolved with Ni and Cu, Al(Cu, Ni)(2)Ti, (Cu, Ni)(2)Ti, (Nb, Ti) solid solution, and so on. The weld and In718/weld interface mainly consist of (Cu, Ni) solid solutions. The weld exhibits higher microhardness than the two base materials. The average room-temperature tensile strength of the joints reaches 242 MPa and up to 73.6 pct of the value can be maintained at 873 K (600 A degrees C). The brittle intermetallic phase of Ti2AlNb matrix dissolved with Ni and Cu at the weld/Ti3Al interface is the weak link of the joint.
机译:在这项研究中,成功​​地使用气体钨极电弧焊技术对Ti3Al基合金和Ni基高温合金(Inconel 718)进行了异种焊接。使用镍-铜合金作为填充材料,可以获得良好的接头。基于扫描电子显微镜和X射线能量色散光谱以及X射线衍射仪的结果,揭示了沿异种接头横截面的显微组织演变。发现焊缝/ Ti3Al界面由溶解有Ni和Cu的Ti2AlNb基体,Al(Cu,Ni)(2)Ti,(Cu,Ni)(2)Ti,(Nb,Ti)固溶体和以此类推。焊缝和In718 /焊缝界面主要由(Cu,Ni)固溶体组成。焊缝比两种基材具有更高的显微硬度。接头的平均室温抗拉强度达到242 MPa,该值的最高73.6 pct可以维持在873 K(600 A摄氏度)。在焊缝/ Ti3Al界面处溶解有Ni和Cu的Ti2AlNb基体的脆性金属间相是接头的薄弱环节。

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