首页> 外文会议>Pacific Rim International Conference on Advanced Materials and Processing; 20071105-09; Jeju Island(KR) >Fine-Grained Structure in Extruded Magnesium Alloy with Long-period Stacking Order Phase
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Fine-Grained Structure in Extruded Magnesium Alloy with Long-period Stacking Order Phase

机译:长周期有序相挤压镁合金的细晶组织

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摘要

Microstructures developed by warm extrusion for Mg_(97)Zn_1Y_2 alloy including long-period stacking order (LPSO) phase have been investigated using SEM and TEM. The extruded magnesium alloy with LPSO phase exhibits high strength and sufficient ductility. Such superior mechanical properties appear by warm extrusion around the temperature of 623K. The microstructure of the extruded alloy consists of matrix of fine-grained hcp phase and elongated grains with fine-lamellae including LPSO phase. The grain size of hcp matrix was about 1μm, indicating that remarkable grain refinement was occurred by extrusion since the grain size of as-cast alloy was about 500μm. Special attention has been paid on the enrichment of solutes at stacking faults and grain boundaries in the fine-grained matrix, which would contribute not only to the strengthening but also to the stability of fine-grained structure because of its role of an inhibiter against grain coarsening.
机译:利用SEM和TEM研究了通过热挤压对Mg_(97)Zn_1Y_2合金进行长时堆积顺序(LPSO)相的显微组织。具有LPSO相的挤压镁合金具有高强度和足够的延展性。通过在623K左右的温度进行热挤压,可以显示出如此优异的机械性能。挤压合金的微观结构由细粒hcp相基质和细长晶粒(包括LPSO相)组成。 hcp基体的晶粒尺寸为约1μm,这表明由于铸态合金的晶粒尺寸为约500μm,因此通过挤出发生了显着的晶粒细化。特别关注细颗粒基质中堆垛层错和晶界处溶质的富集,这不仅会增强细颗粒结构的稳定性,而且由于其对晶粒的抑制作用,也有助于稳定细颗粒结构变粗。

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