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首页> 外文期刊>Journal of Materials Processing Technology >Interfacial microstructure of stainless steel/aluminum alloy tube lap joints fabricated via magnetic pulse welding
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Interfacial microstructure of stainless steel/aluminum alloy tube lap joints fabricated via magnetic pulse welding

机译:通过磁脉冲焊接制造的不锈钢/铝合金管圈接头的界面微观结构

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Magnetic pulse welding was utilized to join 5A02 aluminum alloy and SS304 stainless steel tubes under a discharge voltage of 15-17 kV and 1.75 mm radial gap. SEM, TEM, and EDS analyses are performed to assess the interface microstructure of the transition zone joint. The interface with the transition zone is composed of an amorphous matrix comprised mostly of Al with relatively less Fe, plus irregular nanocrystalline second phases embedded within the amorphous phase matrix. The magnetic pulse welding interface with the transition zone essentially forms a fused interface and the base metals on both sides of the transition zone maintain the deformed structure exhibiting severe plastic deformation, grain refinement, and an increased hardness near the interface.
机译:利用磁脉冲焊接加入5A02铝合金和SS304不锈钢管,放电电压为15-17 kV和1.75mm径向间隙。 进行SEM,TEM和EDS分析以评估过渡区接头的界面微结构。 与过渡区的界面由具有主要包含的无定形基质组成,其具有相对较少的Fe,加上嵌入非晶相基质内的不规则纳米晶体第二相。 具有过渡区的磁脉冲焊接界面基本上形成熔融接口,过渡区两侧的基础金属保持呈现严重的塑性变形,晶粒细化的变形结构,以及界面附近的硬度增加。

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