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Formation and Structure Features of the Weld Joints Made by Friction Stir Welding

机译:摩擦搅拌焊接制造的焊接接头的形成和结构特征

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The microstructurc of the weld core and the heat-affected zone, as well as the zone affected by thermal strain located between them, formed during friction stir welding (FSW) of aluminum alloys, copper alloys, 12Kh18N10T steel, and OT4-1, VT-1 alloys is investigated. The core of the welded joints at FSW is formed in the structural superplasticity mode, and its structure has a shear-banded structure of the "onion pattern" type containing a large number of lamellae forming the shear bands under the influence of the movable welding tool. Attainment of the superplastic state during formation of the weld core is ensured by the gradual flow of various plastic deformation mechanisms in the mode of simple, collective, and anomalous dynamic recrystallization initiated by the dynamic recovery and polygonization processes with transition to post-dynamic recrystallization by the Bailey-Hirsch and Kahn-Burgers-Taylor mechanisms. The super-plastic state is also maintained owing to twinning recrystallization (copper, steel, Ti and its alloys) and as consequence of a → γor α → β phase transformations for a group of metals and alloys possessing multiple forms (high-alloy steel, titanium alloy).
机译:焊接芯和热影响区的微观结构,以及受到位于它们之间的热应变影响的区域,在铝合金,铜合金,12k18n10t钢和OT4-1,VT的摩擦搅拌焊接(FSW)期间形成。 -1合金被研究。 FSW的焊接接头的芯形成在结构超塑性模式,其结构具有剪切带状结构,其“洋葱图案”型,其含有大量薄片形成剪切带在可移动焊接工具的影响下。通过动态回收和多边形流程的动态恢复和多边形流程的模式中的各种塑性变形机制的逐渐流动来实现焊接芯期间的超塑性状态,通过动态回收和多边形流程,通过转变为动态后重结晶。 Bailey-Hirsch和Kahn-Burgers-Taylor机制。由于孪晶重结晶(铜,钢,Ti及其合金),并且由于→γα→β相变,用于一组金属和具有多种形式的合金(高合金钢,钛合金)。

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