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首页> 外文期刊>Materials Science and Engineering >Microstructure evolution and mechanical properties of dissimilar friction stir welded joints between AA1100-B_4C MMC and AA6063 alloy
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Microstructure evolution and mechanical properties of dissimilar friction stir welded joints between AA1100-B_4C MMC and AA6063 alloy

机译:AA1100-B_4C MMC与AA6063合金异种搅拌摩擦焊接头的组织演变和力学性能。

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摘要

The feasibility of dissimilar friction stir welding (FSW) between the AA1100-16vol.% B_4C metal matrix composite and the AA6063 alloy has been evaluated. The effect of the welding parameters on the interface bonding, joint microstructure and mechanical properties was investigated. The results revealed that all dissimilar joints produced under welding conditions investigated were stronger than the base materials of the Al-B_4C composite. Analysis of the Mg concentration and the B_4C particle distribution indicates that good material mixing and seamless bonding was achieved around the interface between the Al-B_4C composite and the Al 6063 alloy during FSW. The electron backscatter diffraction analysis (EBSD) shows that during dissimilar FSW, there was a gradual microstructural evolution on both material sides, resulting in a variety of grain structures in the different weld zones. In the weld zones of FSW joints, the materials underwent dynamic recovery and recrystallization to different extents depending on their thermal mechanical history. The grain refinement of both materials in the nugget zone was observed. It is recommended that the 6063 aluminum alloy should be fixed on the advancing side and the use of an appropriate offset to the 6063 aluminum side is preferred.
机译:评估了AA1100-16vol%B_4C金属基复合材料与AA6063合金之间进行异种搅拌摩擦焊(FSW)的可行性。研究了焊接参数对界面结合,接头组织和力学性能的影响。结果表明,在研究的焊接条件下产生的所有异种接头均比Al-B_4C复合材料的母材强。对Mg浓度和B_4C颗粒分布的分析表明,在FSW期间,Al-B_4C复合材料与Al 6063合金之间的界面周围实现了良好的材料混合和无缝结合。电子背散射衍射分析(EBSD)显示,在不同的FSW期间,材料两侧均出现逐渐的微观结构演变,从而在不同的焊接区域产生了多种晶粒结构。在FSW接头的焊接区域中,材料根据其热机械历史经历了不同程度的动态恢复和重结晶。在熔核区观察到两种材料的晶粒细化。建议将6063铝合金固定在前进侧,最好在6063铝侧使用适当的偏置。

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