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首页> 外文期刊>Journal of Materials Engineering and Performance >Microstructure Evolution and Mechanical Properties of the AZ91 Magnesium Alloy with Sr and Ti Additions in the As-Cast and As-Aged Conditions
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Microstructure Evolution and Mechanical Properties of the AZ91 Magnesium Alloy with Sr and Ti Additions in the As-Cast and As-Aged Conditions

机译:AZ91镁合金具有Sr和Ti添加的组织演化与机械性能,包括铸造和老化条件

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摘要

Effect of different amounts of Sr and Ti additions with T6 heat treatment on microstructure and mechanical properties of the AZ91 alloy was investigated. The microstructure of the AZ91 alloy is consisted of the alpha-Mg phase surrounded by the semicontinuous network of beta-Mg17Al12 intermetallics. The average grain size and volume fraction of beta phase decreased up to 1 wt.% Sr and 0.1 wt.% Ti additions. Exceeding Ti additions led to increase in both grain size and volume fraction. It was found that the grain refinement mechanism of AZ91 alloys with Sr additions was grain restriction factor. Also, 0.1 wt.% Ti addition could refine the grain structure of the AZ91 alloy by the formation of Al3Ti particles that act as nucleation sites for the alpha-Mg phase. Furthermore, adding 1 wt.% Sr and 0.1 wt.% Ti enhanced the hardness values for both cast and aged AZ91 alloy. Moreover, ultimate tensile strength and tensile elongation values reached their maximum amounts with the 0.5 wt.% Sr and 0.1 wt.% Ti additions and more Sr and Ti additions deteriorated the mechanical properties of cast and aged AZ91 alloys. The fracture surface characterizations had good relations with the tensile properties. The fracture modes were cleavage and quasi-cleavage in the cast and aged AZ91 alloys. Furthermore, the optimum levels of Sr and Ti additions altered the fracture modes to more quasi-cleavage fractures.
机译:研究了不同量的Sr和Ti加法对AZ91合金的微观结构和机械性能的不同量的Sr和Ti添加。 AZ91合金的微观结构由β-Mg17Al12金属间金属间隔内半连续网络包围的α-Mg相。 β相的平均晶粒尺寸和体积分数降低至1wt%。%Sr和0.1重量%。%Ti添加。超过Ti添加导致晶粒尺寸和体积分数的增加。发现AZ91合金具有SR添加的晶粒细化机理是晶粒限制因子。此外,0.1重量%。%Ti添加可以通过形成Al3Ti颗粒来优化AZ91合金的晶粒结构,其作为α-Mg相的成核位点。此外,加入1重量%Sr和0.1重量%。%Ti增强了铸造和老化AZ91合金的硬度值。此外,最终拉伸强度和拉伸伸长率值达到其最大量,其最大量与0.5重量%。%Sr和0.1重量%。%Ti添加剂和更多Sr和Ti添加劣化铸造和老化AZ91合金的机械性能。断裂表面表征与拉伸性质有良好的关系。裂缝模式在铸造和老化AZ91合金中切割和准切割。此外,Sr和Ti的最佳水平改变了更加准切割裂缝的裂缝模式。

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