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To what extent does friction-stir welding deteriorate the properties of powder metallurgy Al?

机译:摩擦搅拌焊接在多大程度上恶化了粉末冶金Al的性质?

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Powder metallurgy (PM) fabricated HITEMAL is a near- and sub-micrometer aluminum (Al) material that is stabilized by a small fraction of a nano alumina (Al2O3) secondary phase. This phase formsin situfrom surface Al2O3films present on as-atomized Al powders during compaction. HITEMAL showed unique mechanical properties and creep performance at high homologous temperatures owing to its ultra-fine Al grain structure effectively stabilized by Al2O3. However, conventional fusion welding is generally not applicable to PM Al. This study reports on friction stir welding (FSW) that was applied to join bars extruded from Al powders of different particle size. As PM Al performance crucially depends on the Al2O3phase, we focused on changes to this phase that were, induced by FSW. Thermal stability, mechanical properties, and deformation behavior of the weld materials were studied versus changes in the morphology and distribution of the Al2O3phase during FSW. The study confirmed that FSW can be successfully used to join PM Al, although some detrimental transformation of the Al2O3phase occurred upon FSW. This transformed Al2O3phase did not provide sufficient stabilization under severe plastic deformation induced by a rotating tool action. The transformation involved dynamic recrystallization and minor Al grain growth in weld zones. This led to a decrease in the mechanical strength of the weld compared with that of the respective base materials. While this negative effect was pronounced for HITEMAL with the finest Al grain size, it was negligible in the coarse-grained material produced from the coarsest Al powder.
机译:粉末冶金(PM)制造的hihemal是近和亚微米铝(Al)材料,其通过纳米氧化铝(Al 2 O 3)二次相稳定。该相形蛋白在压实期间在AS-雾化的Al粉末上存在于表面Al2O3Films。由于其超细Al晶粒结构,由于其通过Al2O3有效稳定,HIGEMAL在高同源温度下表现出独特的机械性能和蠕变性能。然而,传统的熔接焊接通常不适用于PM Al。本研究报告了摩擦搅拌焊接(FSW),其应用于从不同粒径的Al粉末挤出的连接棒。由于PM AL性能至关重要,这取决于Al2O3相,我们专注于FSW引起的该阶段的变化。研究了焊接材料的热稳定性,机械性能和变形行为与FSW期间Al2O3相的形态和分布的变化相比。该研究证实,FSW可以成功地用于加入PM Al,尽管Al2O3异位的一些有害转化发生在FSW上。该转化的Al2O3相没有在旋转工具作用诱导的严重塑性变形下没有提供足够的稳定性。该转化涉及焊接区的动态再结晶和次要的Al晶粒生长。这导致焊缝的机械强度的减小与相应的基础材料相比。虽然具有最精细的Al晶粒尺寸的Hihemal对Hihemal发布的,但是在驯料Al粉末产生的粗粒材料中可以忽略不计。

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