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首页> 外文期刊>Journal of Materials Science >Characterization of complex, solid-state flow and mixing in the friction-stir welding (FSW) of aluminum alloy 6061-T6 to magnesium alloy AZ91D using color metallography
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Characterization of complex, solid-state flow and mixing in the friction-stir welding (FSW) of aluminum alloy 6061-T6 to magnesium alloy AZ91D using color metallography

机译:使用彩色金相学表征铝合金6061-T6与镁合金AZ91D的搅拌摩擦焊(FSW)中的复杂固态流动和混合

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摘要

Semi-solid-cast magnesium (Mg) alloy AZ91D (3% solid fraction) was friction-stir welded (FSW) to aluminum (Al) alloy 6061-T6 in continuous non-porous welds. The resulting welds were analyzed in order to understand the solid-state mixing mechanisms that create the chaotic intercalated weld zone microstructure characterized by swirls and vortexes of dynamically recrystallized material. Severe plastic deformation in the solid-state is accommodated by the dynamic recrystallization of the mechanically mixed materials which generates a fine-grained weld zone microstructure, along with dislocation substructures and precipitates. Mg–Al weld systems are also characterized by eutectic/intermetallic regimes that are thrice as strong as the base materials, and nearly six times stronger than some of the softer recrystallized regimes abutting them. Color metallography was used to gain additional information about the varying regimes within the intercalated microstructure. The variation in coloration indicated energy differences between the various dynamically recrystallized microstructural regimes, in turn providing correlations between the general coloration of these regimes, and their nature and strength. The weld zone is strengthened by the coexistence of the hard eutectic/intermetallic weld regimes with the abutting softer dynamically recrystallized regimes across a continuous interface.
机译:在连续无孔焊缝中,将半固态铸造镁(Mg)合金AZ91D(固含量3%)搅拌摩擦焊接(FSW)到铝(Al)合金6061-T6。分析所得的焊缝,以了解固态混合机制,该机制可创建以动态再结晶材料的旋涡和涡旋为特征的混沌插层式焊接区微观结构。机械混合材料的动态再结晶可容纳固态的严重塑性变形,这会产生细晶粒的焊接区微结构,以及位错亚结构和析出物。 Mg-Al焊接系统还具有共晶/金属间状态的特征,其强度是基础材料的三倍,并且比邻接它们的一些较软的重结晶状态强近六倍。彩色金相学用于获得有关插层显微组织内不同组织的更多信息。颜色的变化表明各种动态重结晶的微观结构方案之间的能量差异,进而提供了这些方案的一般颜色与其性质和强度之间的相关性。硬质共晶/金属间焊接制度与跨连续界面邻接的较软的动态再结晶制度的共存加强了焊接区。

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  • 来源
    《Journal of Materials Science》 |2006年第16期|5365-5370|共6页
  • 作者

    A. C. Somasekharan; L. E. Murr;

  • 作者单位

    Department of Metallurgical Materials Engineering University of Texas at El Paso;

    Department of Metallurgical Materials Engineering University of Texas at El Paso;

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  • 正文语种 eng
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