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Different Ratios of Electron Beam Welding of Dissimilar Titanium Alloys: Ti-10V-2Fe-3Al and Ti-6Al-4V

机译:不同比率的异种钛合金电子束焊接:Ti-10V-2Fe-3Al和Ti-6Al-4V

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A welding of dissimilar alloy gives an optimum combination of high strength of Ti-10V-2Fe3Al (Ti1023) and low cost of Ti-6Al-4V (Ti64). Three different fusion ratios of Ti1023 and Ti64 were resulting in a similar width size of the fusion zone (FZ) and heat affected zones (HAZ) whereas a thicker sample with the same fusion ratio generated a narrower size of FZ and HAZ. It resulted chemical composition in the FZ within a low β phase stability than in Ti1023, which allowed the precipitation of high hardness α” martensitic in the as weld condition. In the HAZ of Ti1023, α_(s)transformed into β phase, which reduced the hardness and strength. Vickers hardness measurements confirmed the HAZ of Ti1023 was the softest area whereas the FZ was the hardest area. Consequently, in the as weld condition, the fracture occurred in the HAZ of TI1023 after the tensile test.
机译:异种合金的焊接可实现高强度的Ti-10V-2Fe3Al(Ti1023)和低成本的Ti-6Al-4V(Ti64)的最佳组合。 Ti1023和Ti64的三种不同融合比导致融合区(FZ)和热影响区(HAZ)的宽度尺寸相似,而具有相同融合比的较厚样品产生的FZ和HAZ尺寸较窄。结果导致FZ中的化学成分具有比Ti1023低的β相稳定性,这使得在焊接条件下析出高硬度α”马氏体。在Ti1023的热影响区中,α_(s)转变为β相,从而降低了硬度和强度。维氏硬度测量结果证实,Ti1023的热影响区是最软的区域,而FZ是最硬的区域。因此,在焊接条件下,拉伸试验后,TI1023的热影响区发生断裂。

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