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Microstructural and Residual Stress Development due to Inertia Friction Welding in Ti-6246

机译:Ti-6246惯性摩擦焊接产生的微结构和残余应力

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A thorough investigation has been performed to assess the microstructural properties, mechanical properties (hardness and elastic modulus), and residual stress development in Ti-6Al-2Sn-4Zr-6Mo (Ti-6246) inertia friction welds in the as-welded and postweld heat-treated conditions. It was evident that the thermomechanical deformation in the weld region occurred above the β transus, forming dynamically recrystallized β grains and precipitating acicular α within the β grains, which resulted in a localized hardness increase. In the heat-affected zone, a ghost microstructure of the base metal formed because of the absence of sufficient time for diffusion, resulting in Mo segregation in the prior primary α plates. Energy-dispersive synchrotron X-ray diffraction and neutron diffraction were used to assess the residual stress development in the three principal directions. The variation in the unstrained lattice parameters across the weld regions was established by imposing a stress balance on the axial stress component in the radial direction. It was found that the maximum stresses occurred in the hoop direction, with significantly lower stresses present in the radial and axial directions. The maximum tensile hoop stresses were located at ~4 mm from the weld centerline and not at the dynamically recrystallized β-rich weld zone. This was associated with the α → β phase transformation and the subsequent acicular α precipitation within the region surrounding the weld centerline.
机译:已经进行了彻底的研究,以评估焊接后和焊接后的Ti-6Al-2Sn-4Zr-6Mo(Ti-6246)惯性摩擦焊缝的组织,力学性能(硬度和弹性模量)和残余应力的发展热处理条件。明显的是,焊接区的热机械变形发生在β瞬变上方,形成动态再结晶的β晶粒并在β晶粒内析出针状α,从而导致局部硬度增加。在热影响区,由于没有足够的扩散时间而形成了贱金属的重影微观结构,导致钼在先前的初生α板中偏析。能量色散同步加速器X射线衍射和中子衍射用于评估三个主要方向上的残余应力发展。通过在径向方向上对轴向应力分量施加应力平衡,可以确定整个焊接区域的非应变晶格参数的变化。发现最大应力发生在环向,而径向和轴向的应力明显较低。最大拉伸环向应力位于距焊缝中心线约4 mm处,而不位于动态重结晶的富含β的焊缝区。这与α→β相变以及焊缝中心线周围区域内随后的针状α析出有关。

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