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Influence of severe double shot peening on microstructure properties of Ti 6Al-4V and Titanium Grade 2 dissimilar joints using laser beam welding

机译:严重双射击喷丸对Ti 6al-4V和钛2级不同接头的微观结构性能的影响

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摘要

The present investigation deals with the effect of Severe Double Shot Peening (SDSP) of Peening pre-weldment and Post peening weldment on microstructure properties of Ti 6Al-4V and Titanium Grade 2 dissimilar joint made by laser beam welding. Laser beam welding was performed for butt joint configuration. Full depth of penetration was obtained for the laser beam of 1200 W, welding speeds of 250 mm/min and focus distance of 8 mm configuration. Microstructure studies at weld zone and heat affected zone revealed the presence of more amounts of a martensite and B phases. Tensile study displayed that all the failures occurred at the weld zone in both Peening pre-weldment and Post peening weldment of SDSP. X-rays Diffraction analysis showed the slight presence of residual stress in the Post peening weldment of SDSP. Average hardness value of both dissimilar material reached 285 HV. While comparing the hardness at heat affected zone and welded zone, the hardness of welded zone gradually decreased owing to the failure of conversion of a phase into beta(1)/beta(2) phase. SEM image exhibited the depth of Peening pre-weldment and Post peening weldment weldments of 8 mu m and 10 mu m respectively which led to the enhancement of hardness value. Further, the coarse grain boundaries, O-phases and alpha/alpha' phases were observed in the heat affected zone. Fracture morphology of tensile samples revealed the inner minor cracks and voids at fusion zone. Moreover, the formation of Cr2N and CrN was not observed in both welded and heat affected zone that improved the better tensile and bending strength.
机译:本发明的调查涉及喷丸预焊机严重双射击喷丸(SDSP)和Peening焊接后Ti 6Al-4V的微观结构和激光束焊接钛的微观结构。用于对接联合配置进行激光束焊接。为1200W的激光束,焊接速度为250mm / min的焊接速度,焦距为8mm的距离,获得全深度渗透。焊接区和热影响区域的微观结构研究显示了更多量的马氏体和B阶段。拉伸研究表明,喷丸预焊机的焊接区发生的所有故障以及SDSP的焊接后焊接。 X射线衍射分析显示SDSP后喷丸焊接中残留应力的轻微存在。两种不同材料的平均硬度值达到285升。在与热影响区域和焊接区的硬度比较时,由于将相变为β(1)/β(2)相的失败,焊接区域的硬度逐渐降低。 SEM图像分别显示出焊接预焊接的深度,并分别发布8μm和10μm的喷丸焊接焊接,这导致了硬度值的增强。此外,在热影响区域中观察到粗晶界,O-阶段和α/α/α相。裂缝形态的拉伸样品显示融合区内的内部裂缝和空隙。此外,在焊接和热影响区域两者中未观察到CR2N和CRN的形成,其提高了更好的拉伸和弯曲强度。

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