Precipitation of β-phase and twinning during deformation of Mg–Al alloy AZ91 at 150°C after solution treatment

P. Zhang, W. Blum
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引用次数: 6

Abstract

Abstract Precipitation of β-phase and deformation twinning have been studied in a solid solution-treated AZ91 alloy, which was subjected to compressive creep loading at 150°C and 100 MPa for 163 h. It was found that nucleation of β-phase in solution-treated AZ91 is enhanced by concurrent deformation under creep conditions at 150°C. The relatively fine precipitate structure leads to a reduction in minimum creep rate and, therefore, to an increase in creep life by a factor of 10 compared to the as-cast condition at the investigated conditions. In addition, twinning occurred in coarse grains of hard orientation. The twin boundaries lead to formation of incoherent precipitates and discontinuous precipitation within the former grains.
Mg-Al合金AZ91在150℃固溶变形过程中β相析出和孪晶
研究了固溶处理AZ91合金在150℃、100 MPa、163 h的压缩蠕变载荷作用下β相的析出和变形孪晶。结果表明,在150℃的蠕变条件下,固溶处理AZ91合金中β相的形核在同步变形的作用下得到增强。相对细小的沉淀结构导致最小蠕变速率的降低,因此,与所研究条件下的铸态相比,蠕变寿命增加了10倍。此外,在硬取向的粗晶中也出现了孪晶。孪晶界导致在原晶粒内形成非共格相和不连续相。
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