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首页> 外文期刊>Materials Science and Engineering >Microstructure evolution and mechanical performance improvement of thin ZK61 magnesium alloy sheets subjected to cumulative cold rolling and intermediate annealing
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Microstructure evolution and mechanical performance improvement of thin ZK61 magnesium alloy sheets subjected to cumulative cold rolling and intermediate annealing

机译:ZK61镁合金薄板经过累积冷轧和中间退火的组织演变和力学性能改进

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摘要

Thin ZK61 magnesium alloy sheets with ultrafine–grain structure were fabricated by cumulative cold rolling with intermediate annealing treatments. Microstructure refinement and uniformity were manifestly achieved by multiple static recrystallization during the process while planar texture anisotropy was strikingly improved as {0002} basal pole intensity in transverse direction gradually enhanced and that in rolling direction weakened. The dispersed precipitates mainly composed of blockyβ1′(Mg2Zn3or Mg4Zn7) and globularβequilibrium phases slightly aggregated and coarsened as the process continuing. The two aforementioned factors of grain refinement and texture variation resulted in a contrary tendency in yield strength with grain size between rolling direction and transverse direction in coarse grain region but an identical increment afterwards under stable basal texture, which was well estimated following the Hall–Petch relationship with texture effect. Fracture elongation over 25% was obtained due to the enhancement of basal texture weakening to uniform elongation followingεu≈78.8mbas.and that of grain refining to post–uniform elongation accounting for 40%.
机译:ZK61镁合金薄板具有超细晶粒结构,是通过中间退火处理的累积冷轧制成的。在此过程中,通过多次静态再结晶明显地实现了组织细化和均匀性,同时随着横向上{0002}基极强度的逐渐增强和轧制方向上的{0002}基极强度的减弱,平面织构各向异性得到了显着改善。随着过程的进行,分散的沉淀物主要由块状β1'(Mg2Zn3或Mg4Zn7)和球状β平衡相组成,并略有聚集和粗化。晶粒细化和织构变化的上述两个因素导致在粗晶粒区域中轧制方向和横向方向上的晶粒尺寸具有相反的屈服强度趋势,但随后在稳定的基础织构下具有相同的增量,这在Hall-Petch之后得到了很好的估计。与纹理效果的关系。断裂伸长率达25%以上,这是由于基体组织的强度增强,由εu≈78.8mbas减弱至均匀伸长率,而晶粒细化至均匀后伸长率占40%。

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