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首页> 外文期刊>Journal of Magnesium and Alloys >Achieving three-layered Al/Mg/Al sheet via combining porthole die co-extrusion and hot forging
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Achieving three-layered Al/Mg/Al sheet via combining porthole die co-extrusion and hot forging

机译:通过组合孔孔模具共挤出和热锻造来实现三层Al / Mg / Al板料

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Al/Mg/Al sheet with good bonding quality and mechanical properties was fabricated based on the proposed porthole die co-extrusion and forging (PCE-F) process. There were no voids, cracks or other defects on the Al/Mg interface. A continuous diffusion zone with two-sub-layer structure was formed across the Al/Mg interface, and its width increased with higher temperature or reduction ratio. The sub-layers formed at low and high temperature were identified to be solid solutions and intermetallic compounds (IMCs) including γ-Mg17Al12and β-Al3Mg. In Al layer, the welding zone mainly consisted of fine equiaxed grains with several coarse elongated grains, while the majority of matrix zone is coarse elongated grains. The rolling textures were dominated in both welding and matrix zones. In Mg layer, the welding zone exhibited complete DRXed grain structure, while several unDRXed coarse grains were observed in the matrix zone. With the increasing temperature, the grain size of Al and Mg layer firstly decreased and then increased. High reduction ratio strongly refined the grain structure of Al layer, while slightly affected the Mg layer. The Al/Mg/Al sheet experienced stress-drops twice during the tensile test. The first stress-drop was determined by the IMCs and microstructure of Mg layer, while the second stress-drop was closely related to the microstructure of Al layer. Al/Mg/Al sheet forged at the lowest temperature without the formation IMCs exhibited the highest stress for the first stress-drop, and that forged under the highest reduction ratio with the smallest grain size in Al layer had the highest stress for the second stress-drop.
机译:基于所提出的孔孔模具共挤出和锻造(PCE-F)工艺制备具有良好粘接质量和机械性能的Al / Mg / Al板。 Al / Mg界面上没有空隙,裂缝或其他缺陷。在Al / mg界面中形成具有双层结构的连续扩散区,其宽度随着较高的温度或还原比而增加。将在低温和高温下形成的子层是固体溶液和包括γ-Mg17Al12和β-Al3Mg的金属间化合物(IMC)。在Al层中,焊接区主要由细平衡的晶粒组成,具有几颗粗细长的晶粒,而大多数基质区域是粗细长的晶粒。滚动纹理在焊接和矩阵区域中占主导地位。在Mg层中,焊接区域表现出完全的Drxed晶粒结构,而在基质区中观察到几种不平移的粗晶粒。随着温度越来越大,Al和Mg层的晶粒尺寸首先降低,然后增加。高减速比强烈精制Al层的晶粒结构,同时略微影响Mg层。 Al / Mg / Al片材在拉伸试验期间经历了两次的应力。第一应力下降由Mg层的IMC和微观结构测定,而第二应力下降与Al层的微观结构密切相关。在没有形成IMC的最低温度下锻造的Al / Mg / Al板材表现出最高应力下降的最高应力,并且在Al层中最小的晶粒尺寸下锻造的锻造具有最高应力的最高应力-降低。

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