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Sheet texture modification in magnesium-based alloys by selective rare earth alloying

机译:选择性稀土合金化改性镁基合金的薄板组织

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The current study examines the influence of select rare earth elements; Gd, Nd, Ce, La and mischmetal (MM) on the sheet texture modification during warm rolling and annealing of a ZEK100 magnesium alloy, and the resulting formability and anisotropy during subsequent tensile testing at room temperature. It was found that all the investigated RE elements led to weak sheet textures and hence promoted enhanced ductility and reduced anisotropy over conventional Mg sheet. Gd was of a particular interest because it gave rise to a desired Mg sheet texture despite its coarsest grain size resulting in promising mechanical properties. It is suggested that solute related effects on the grain boundary migration and the relative strengths of different deformation mechanisms are responsible for altering the common concepts of recrystallization and grain growth during annealing, and the activation scenarios of slip and twinning during deformation.
机译:当前的研究检验了精选稀土元素的影响。在ZEK100镁合金的热轧和退火过程中,Gd,Nd,Ce,La和混合金属(MM)会改变板材的织构,并在随后的室温拉伸试验中产生可成形性和各向异性。发现所有研究的稀土元素导致薄板的质地,因此与常规镁板相比,增强了延展性并降低了各向异性。 Gd特别令人感兴趣,因为尽管其最粗的晶粒尺寸仍可产生理想的Mg板织构,但仍可产生令人满意的机械性能。认为与溶质相关的对晶界迁移的影响以及不同变形机制的相对强度是改变退火过程中再结晶和晶粒长大的共同概念,以及变形过程中滑移和孪晶活化的原因。

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