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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Microstructure and mechanical properties of severely deformed Mg-3%Al-l%Zn alloy via isothermal differential speed rolling at 453 K
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Microstructure and mechanical properties of severely deformed Mg-3%Al-l%Zn alloy via isothermal differential speed rolling at 453 K

机译:453 K等温差速轧制严重变形Mg-3%Al-1%Zn合金的组织和力学性能

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The paper reported the microstructure evolution and mechanical properties of the severely deformed Mg-3%Al-l%Zn alloy sample via isothermal differential speed rolling (DSR) at 453 K. The present samples were subjected to DSR operations with the height reduction of 30% at the roll speed ratio of 1:3 for the lower and upper rolls, and these results were compared to those deformed by equal speed rolling (ESR). After two-pass of the DSR, most of the grains were refined markedly to ~3.3 μm with a globular shape whose grain size was lower than that via ESR. In addition, Vickers microhardness values of the samples via DSR were higher than those via ESR. The results of tension tests revealed that yield and ultimate tensile strengths of the severely deformed samples via DSR were measured to be ~198 and ~228 MPa, respectively. It is worth noting that, with increasing numbers of operations, the tensile ductility of the sample deformed by the DSR was restored whilst the elongation of the sample deformed by the ESR was monotonously deteriorated although both of the cases exhibited lower elongation compared to the as-homogenized. Such phenomenon underlying the restoration of the tensile ductility was discussed by taking the role of the conjugated macro-shear deformation into account.
机译:本文报道了在453 K下通过等温差速轧制(DSR)对严重变形的Mg-3%Al-1%Zn合金样品的显微组织演变和力学性能。对这些样品进行了DSR操作,高度降低了30下辊和上辊的辊速比为1:3时的百分比为%,并将这些结果与等速轧制(ESR)变形的结果进行比较。经过两次DSR分析后,大多数晶粒均呈球状显着细化至〜3.3μm,其晶粒尺寸小于通过ESR的晶粒尺寸。另外,通过DSR的样品的维氏显微硬度值高于通过ESR的样品。拉伸试验的结果表明,经DSR测得的严重变形样品的屈服强度和极限拉伸强度分别为198 MPa和228 MPa。值得注意的是,随着操作次数的增加,DSR变形后的样品的拉伸延展性得以恢复,而ESR变形后的样品的伸长率则单调地降低,尽管两种情况均显示出较低的伸长率。均质化。通过考虑共轭宏观剪切变形的作用,讨论了恢复拉伸塑性的基础。

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