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Interface Microstructure Study Of Friction Stir Lap Joint Of Ac4c Cast Aluminum Alloy And Zinc-coated Steel

机译:Ac4c铸造铝合金与镀锌钢摩擦搅拌接头的界面组织研究

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摘要

AC4C cast Al alloy and zinc-coated steel are successfully lap jointed using friction stir welding. The interface microstructure is investigated using optical microscopy, scanning electron microscopy and X-ray diffraction. The mechanical properties of the joints are evaluated using tensile test. Experimental results show that the lap joint consisted of four part structures, i.e. stir zone structure of Al alloy, new intermetal-lic compounds layer, old intermetallic compounds layer of original zinc coat and base material of steel. The thickness of intermetallic compounds layer increases with decreasing welding speeds and has a significant effect on the strengths of the joints. Heavy thickness of intermetallic compounds layer seriously deteriorates the mechanical properties of the joints. The intermetallic compounds layer mainly contains Fe_2Al_5 and Fe_4Al_(13).
机译:AC4C铸造铝合金和镀锌钢通过搅拌摩擦焊接成功搭接。使用光学显微镜,扫描电子显微镜和X射线衍射研究界面微观结构。接头的机械性能使用拉伸试验进行评估。实验结果表明,搭接接头由铝合金的搅拌区结构,新的金属间化合物层,原始锌涂层的旧金属间化合物层和钢基体四部分组成。金属间化合物层的厚度随着焊接速度的降低而增加,并且对接头的强度具有显着影响。金属间化合物层的较厚厚度严重损害了接头的机械性能。金属间化合物层主要包含Fe_2Al_5和Fe_4Al_(13)。

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