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Microstructural transformations and mechanical properties of cast NiAl bronze: Effects of fusion welding and friction stir processing

机译:铸造NiAl青铜的显微组织转变和力学性能:熔焊和摩擦搅拌工艺的影响

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摘要

A plate of as-cast NiAl bronze (NAB) material was sectioned from a large casting. A six-pass fusion weld overlay was placed in a machined groove; a portion of the weld reinforcement was removed by milling and a single friction stir processing (FSP) pass was conducted in a direction transverse to the axis of and over the weld overlay. A procedure was developed for machining of miniature tensile samples and the distributions of strength and ductility were evaluated for the fusion weld metal; for the stir zone (SZ) produced by the friction stir processing; and for a region wherein friction stir processing had taken place over the fusion weld. A region of low ductility in the heat affected zone (HAZ) of the fusion weld and in the thermomechanically affected zone (TMAZ) of friction stir processed material was attributed to partial reversion of an equilibrium lamellar eutectoid constituent upon local heating above ~800℃ and formation of non-equilibrium transformation products upon subsequent cooling. The adverse effect on ductility is worse in the heat affected zone of the fusion weld than in the thermomechanically affected zone of friction stir processing due to the lower heat input of the latter process. The implications of this work to engineering applications of friction stir processing are discussed.
机译:从大型铸件上切下一块铸态NiAl青铜(NAB)材料。将六道熔焊堆焊层放置在加工好的凹槽中;通过铣削去除一部分焊缝增强材料,并在与焊缝覆盖层垂直的方向上进行单次摩擦搅拌处理(FSP)。开发了一种用于加工微型拉伸试样的程序,并评估了熔焊金属的强度和延展性分布。用于通过摩擦搅拌处理产生的搅拌区域(SZ);对于在熔接焊缝上进行了摩擦搅拌处理的区域。在熔融焊缝的热影响区(HAZ)和搅拌摩擦加工材料的热机械影响区(TMAZ)的低延展性区域归因于在〜800℃以上局部加热时平衡层状共析成分的部分回复随后冷却,形成非平衡转化产物。在熔融焊缝的热影响区中,对延展性的不利影响比在摩擦搅拌处理的热机械影响区中更差,这是因为后一工艺的热量输入较低。讨论了这项工作对搅拌摩擦加工的工程应用的意义。

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