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Microstructure and Mechanical Properties of Extruded Mg-Zn-Y Alloys with 14H Long Period Ordered Structure

机译:具有14H长周期有序结构的挤压Mg-Zn-Y合金的组织和力学性能

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The compositional dependence of mechanical properties and microstructural change of the extruded Mg-Zn-Y alloys has been investigated in the effort to develop a high strength Mg-Zn-Y alloy with long period ordered (LPO) structure. The extruded alloy Mg_(96)Zn_2 Y_2 exhibited a high yield strength of 390 MPa and elongation of 5 percent at room temperature, and of more than 300 MPa even at the elevated temperature of 473 K. The heat-treated ingot metallurgy (I/M) Mg-Zn-Y alloys containing very small amounts of yttrium and zinc are characterized by a lamellar phase constructed of 2H-Mg and 14H-LPO structures. Extrusion of the Mg-Zn-Y I/M alloys with LPO structure led to refinement of alpha-Mg grains and high dispersion of a hard lamellar phase consisting of torn-off 2H-Mg and bent LPO structures with random grain boundaries, resulting in strengthening of the alloys.
机译:研究了挤压Mg-Zn-Y合金的力学性能和微观结构变化的成分依赖性,以期开发出具有长期有序(LPO)结构的高强度Mg-Zn-Y合金。挤压合金Mg_(96)Zn_2 Y_2在室温下具有390 MPa的高屈服强度和5%的伸长率,即使在473 K的高温下也具有300 MPa以上的伸长率。 M)包含非常少量的钇和锌的Mg-Zn-Y合金的特征在于由2H-Mg和14H-LPO结构构成的层状相。具有LPO结构的Mg-Zn-Y I / M合金的挤压导致α-Mg晶粒的细化和由剥离的2H-Mg和具有随机晶界的弯曲LPO结构组成的硬层状相的高度分散,从而导致合金的强化。

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