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Microfracture Mechanism of Squeeze Cast AZ51-xSn Magnesium Alloys

机译:挤压铸造AZ51-xSn镁合金的微裂纹机理

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A study was made of the effects of a Sn addition on the microstructure and microfracture mechanism of squeeze cast AZ51-xSn magnesium alloys. Microstructural observation, in situ fracture testing, and fractographic observations were conducted on these alloys to clarify the microfracture process. The microstructural analyses indicated that Mg2Sn particles as well as Mg_(17)Al_(12) particles precipitated mainly along the solidification cell boundaries; the volume fraction of these hard particles increased as the amount of added Sn increased, with increased the strength. From in situ fracture observations of the AZ51-7Sn alloy, coarse precipitates located on the cell boundaries worked as easy crack propagation sites and caused abrupt intercellular fracturing. On the other hand, the overall fracture properties of the AZ51-3Sn alloy improved because crack propagation proceeded into the Mg matrix rather than into the cell boundaries as twins developed actively, as confirmed by an R-curve analysis. These findings suggest that the addition of 3~5 wt. percent Sn is effective in improving both the tensile and fracture properties on the basis of well-developed twins, the blocking of crack propagation, and crack blunting.
机译:研究了添加锡对挤压铸造AZ51-xSn镁合金的组织和微观断裂机理的影响。对这些合金进行了微结构观察,原位断裂测试和分形观察,以阐明微断裂过程。显微组织分析表明,Mg2Sn颗粒以及Mg_(17)Al_(12)颗粒主要沿凝固单元边界沉淀;这些硬质颗粒的体积分数随着Sn的添加量的增加而增加,强度也随之增加。从AZ51-7Sn合金的原位断裂观察结果来看,位于细胞边界的粗大沉淀物易于作为裂纹扩展部位,并引起突然的细胞间断裂。另一方面,R5曲线分析证实,由于孪晶积极发展,裂纹扩展进入Mg基体而不是进入晶胞边界,因此改善了AZ51-3Sn合金的整体断裂性能。这些发现表明,添加3〜5wt。%。 Sn的百分含量可根据发达的孪晶,阻止裂纹扩展和裂纹钝化有效地改善拉伸性能和断裂性能。

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