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Effect of Zn Concentration and Grain Size on Prismatic Slip in Mg-Zn Binary Alloys

机译:锌浓度和晶粒尺寸对Mg-Zn二元合金棱柱滑动的影响

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Mg-Zn binary alloys with concentrations between 0 and 2.8wt% Zn have been prepared and processed via hot rolling and annealing to produce specimens with a strong basal texture and a range of grain sizes. These have been deformed in tension, a condition in which the deformation is dominated by prismatic slip. This data has been used to assess the Hall-Fetch parameter as a function of Zn concentration for deformation dominated by prismatic slip. Pure magnesium showed non-linear Hall-Petch behaviour at large grain sizes, and this is compared to the values for prismatic slip measured on single crystals. The differences between critical resolved shear stress measurements made through single crystal, polycrystal and mathematical modelling techniques are also discussed.
机译:已经制备了锌含量为0至2.8wt%的Mg-Zn二元合金,并通过热轧和退火对其进行了处理,以生产出具有很强的基础组织和一定晶粒度的试样。它们已经在拉力作用下变形,在这种情况下变形主要由棱柱形滑移引起。该数据已被用于评估霍尔效应参数,该效应是由棱柱滑动主导的变形的Zn浓度的函数。纯镁在大晶粒时表现出非线性霍尔-Petch行为,并将其与在单晶上测量的棱柱滑移值进行比较。还讨论了通过单晶,多晶和数学建模技术进行的临界分辨切应力测量之间的差异。

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