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Detailed Diffraction and Electron Microscopy Study of Inertia-Friction-Welded Dissimilar High-Strength Steels

机译:惯性摩擦焊接异种高强度钢的详细衍射和电子显微镜研究

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摘要

A detailed characterization of two dissimilar high-strength steels, SCMV and Aermet 100, joined by inertia friction welding (IFW)—a solid-state welding technique—was undertaken using high energy synchrotron X-ray diffraction and advanced electron microscopy in order to understand the dramatic hardness variation across such a weld. It was found that the severe high-temperature deformation in the thermomechanically affected zones (TMAZs) of the weld, stabilized ordered, and nanosized FeCo zones in Aermet 100 and about 12 to 14 vol pct austenite in SCMV (Ni equivalent 9 wt pct). The ordered FeCo zones in Aermet 100 resulted in exceptionally high hardness values of 700 to 725 HV. Very close to the weld line, the TMAZ of Aermet 100 also displayed a region with about 15 vol pct austenite, while in the parent material, 8 to 9 vol pct was typically observed. No indication of martensite was found in the weld region of Aermet 100. Ferrite texture analysis at different locations within the TMAZs on either side of the weld showed that SCMV develops a very strong α-fiber texture near the weld line and, in addition, a γ-fiber texture toward the heat-affected zone (HAZ), suggesting the presence of ferrite during welding near the weld line and recrystallization further away. The ferrite texture development in the TMAZ of Aermet 100 was relatively weak, suggesting that austenite is a dominant phase in the TMAZ during IFW.
机译:使用高能同步加速器X射线衍射和先进的电子显微镜对两种不同的高强度钢SCMV和Aermet 100进行了详细的表征,并通过惯性摩擦焊接(IFW)(一种固态焊接技术)进行了结合,以了解这种焊缝的硬度变化很大。发现在Aermet 100中焊缝的热机械影响区(TMAZ),稳定有序和纳米尺寸的FeCo区以及SCMV中约12至14体积%的奥氏体中出现严重的高温变形(Ni当量为9 wt%)。 Aermet 100中有序的FeCo区域可产生700至725 HV的极高硬度值。 Aermet 100的TMAZ非常靠近焊接线,还显示出约15体积%奥氏体的区域,而在母材中通常观察到8至9体积%的奥氏体。在Aermet 100的焊接区域中未发现马氏体的迹象。在焊缝两侧TMAZ内不同位置的铁素体织构分析表明,SCMV在焊缝附近形成非常强的α纤维织构,此外,朝向热影响区(HAZ)的γ纤维织构,表明在焊接过程中,在焊缝附近存在铁素体,并在较远处再结晶。 Aermet 100的TMAZ中的铁素体组织发展相对较弱,这表明在IFW期间,奥氏体是TMAZ中的主导相。

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