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Effects of Pre-Strain on the Evolution of Microstructure and Strain Hardening of Extruded Az31 Magnesium Alloy

机译:挤压对挤出AZ31镁合金微观结构和应变硬化进化的影响

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摘要

Pre-compression 3% and pre-stretch 3% subsequent annealing at 200?oC for 2h are conducted on AZ31 magnesium alloys, then inverse tensile and compressive deformation are carried out at room temperature, respectively. During inverse tension 3% deformation on 1 st pre-compression samples, detwinning behavior happens; after 2 nd pre-compression 3%, the volume fraction of {10-12} extension twins decreases comparing with 1 st pre-compression. Due to the interaction of dislocation and induced twinning lamellas, strain hardening rate (??) increases on 1 st and 2 nd pre-compression samples. {10-12} tensile twinning is restrained during inverse compressive deformation by pre-stretch process. Owing to the decreasing amount of twins, the texture strengthening in compressive deformation weakens. So the slop of stage III in strain hardening rate sustaining reduces after 1 st pre-stretch 3% and 2 nd pre-stretch 3% deformation during inverse compression deformation.
机译:在AZ31镁合金中进行预压缩3%和预拉伸3%,随后在200℃下退火2小时,然后分别在室温下进行逆拉伸和压缩变形。在逆张力张力期间,在1 st预压缩样本上的3%变形中,发生纠正行为;在2 ND预压缩3%之后,与1 St预压缩相比,{10-12}延伸双胞胎的体积分数降低。由于位错的相互作用和诱导的孪生薄片,应变硬化速率(Δθ)在1 st和2 nd预压缩样品上增加。 {10-12}拉伸孪晶在预拉伸过程中逆压缩变形期间受到抑制。由于双胞胎数量下降,压缩变形中的纹理削弱了。因此,在逆压缩变形期间,在1 st预拉伸3%和2 nd预拉伸3%变形之后,在应变硬化率的阶段III的阶段依次降低。

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