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Effect of Zn Interlayer Particles on Mechanical Properties and Microstructure of Friction Stir Spot Welding Aluminum Alloy

机译:Zn层间颗粒对摩擦搅拌点焊铝合金力学性能和微观结构的影响

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Global warming can be reduced by controlling emissions in motor vehicles. Lightweight aluminum materials can lower the engine work so as to reduce fuel consumption.The effect of dwell time on mechanical properties and microstructure friction stir spot welded AA1100 with particle interlayer Zn were investigated. The result shows that the particle interlayer Zn affect to the mechanical properties. The tensile shear load friction stir spot welded AA1100 with particle interlayer Zn is higher than hart of without particle interlayer Zn. In line with tensile shear load that the hardness of friction stir spot welded Al with particle interlayer Zn got the higher hardness than of without particle interlayer Zn. The addition of particle interlayer Zn reduce the hook defect and spread in the aluminum matrix as solid solution.
机译:通过控制机动车辆的排放可以减少全球变暖。轻质铝材料可以降低发动机工作,以降低燃料消耗。研究了停留时间对机械性能和微观结构摩擦射点焊接AA1100的效果。结果表明,颗粒中间Zn对机械性能影响。具有颗粒中间层Zn的拉伸剪切载荷摩擦点焊接AA1100高于颗粒中间Zn的哈特。根据拉伸剪切载荷,摩擦搅拌点焊接的硬度与颗粒中间层Zn的硬度高于没有颗粒中间Zn的硬度。添加颗粒层间Zn减少了钩缺陷,作为固溶溶液在铝基中涂布。

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