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Development of an 8090/3003 bimetal slab using a modified direct-chill casting process

机译:使用改进的直接冷铸工艺开发8090/3003双金属板坯

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A modified direct-chill (DC) casting method was used to prepare an 8090/3003 bimetal slab of aluminum alloys with consistent mechanical properties. The interface of the as-cast bimetal material was free of detrimental intermetallic compounds, which indicated excellent metallurgical bonding. A diffusion layer with an average thickness of approximately 80 μm was obtained due to the interdiffusion of Li, Mg, Cu and Mn at the bimetal interface. The average ultimate tensile strength of the as-cast bimetal slab was 101 MPa, and all fractures occurred on the side of the softer 3003 alloy. T6 treatment was performed on the bimetal slab to investigate the response of the slab to heat treatment. The Vickers hardness of the 8090 side increased by 30% after T6 treatment, reaching 153 HV. The Vickers hardness of the interface layer also increased from 70 HV to 89 HV. The solution strengthening was considered to make the primary contributions on the hardness improvement of the bimetal slab at the interface after T6 treatment.
机译:使用改进的直接冷(DC)铸造方法来制备具有一致机械性能的铝合金8090/3003双金属板。铸态双金属材料的界面不含有害的金属间化合物,这表明其具有出色的冶金结合性。由于Li,Mg,Cu和Mn在双金属界面处的相互扩散,获得了平均厚度为约80μm的扩散层。铸态双金属板的平均极限抗拉强度为101 MPa,所有断裂均发生在较软的3003合金侧。在双金属平板上进行了T6处理,以研究平板对热处理的响应。经过T6处理后,8090侧的维氏硬度提高了30%,达到153 HV。界面层的维氏硬度也从70 HV增加到89 HV。固溶强化被认为是对T6处理后界面处双金属板硬度提高的主要贡献。

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