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Microstructure and Mechanical Properties of Spray-formed High Zn-containing Al-Zn-Mg-Cu alloy

机译:喷射成形高含锌Al-Zn-Mg-Cu合金的组织与力学性能

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High Zn-containing aluminum (Al) alloy AA7034 was prepared by spray forming rapid solidification technique, and studied for microstructural development and mechanical properties during subsequent hot extrusion and heat treatment processing. It is found out that microstructure after spray forming is composed of equiaxed grains with an average grain size of about 40 μm; however, porosity appears in the spray-formed material. The hot extrusion results in the elimination of microporosity and alignment of microstructure along the extruded direction. The intermetallic compound MgZn2 is detected as a main secondary phase, in an expansion form Mg(Zn,Cu,Al)2, at the spray-formed and extruded states as discovered by XRD; however, impurity phase Al7Cu2Fe is revealed additionally through EDS analysis. The alloy exhibits excellent strength at the peak-aged condition (T6) with Vickers microhardness and tensile strength values of 218 and 808MPa, respectively; which is ascribed to the increased volume fraction of hardening precipitates because of extra Zn-dissolution in the spray forming process.
机译:采用喷涂快速凝固技术制备了高含锌铝(AA)合金AA7034,并对其在随后的热挤压和热处理工艺中的显微组织发展和力学性能进行了研究。结果发现,喷射成形后的微观组织由平均晶粒尺寸约为40μm的等轴晶粒组成。但是,在喷涂材料中会出现气孔。热挤出导致消除了微孔并沿挤出方向排列了微结构。通过X射线衍射发现,金属间化合物MgZn2为主要副相,呈膨胀态Mg(Zn,Cu,Al)2,处于喷雾成型和挤压状态。然而,通过EDS分析还发现了杂质相Al7Cu2Fe。该合金在峰值时效条件(T6)下表现出优异的强度,维氏显微硬度和拉伸强度分别为218和808MPa。这归因于硬化沉淀物的体积分数增加,这是因为在喷涂成型过程中额外的锌溶解。

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