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Effect of Deformation Temperature on Deformation Mechanism of Fe-6.5Si Alloys with Different Initial Microstructures

机译:变形温度对不同初始组织的Fe-6.5Si合金变形机理的影响

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摘要

Deformation behaviors and mechanisms under different temperatures for columnar-grained Fe-6.5Si (mass%)alloys fabricated by directional solidification and equiaxed-grained Fe-6.5Si alloy fabricated by forging were comparatively investigated.The results showed that,with increasing the deformation temperature from 300 ℃ to 500 ℃,the elongation increased from 2.9% to 30.1% for the equiaxed-grained Fe-6.5Si alloy,while from 6.6% to about 5 1% for the columnar-grained Fe-6.5Si alloy.The deformation mode of equiaxed-grained Fe-6.5Si alloy trans-ferred from nearly negligible plastic deformation to large plastic deformation dominated by dislocation slipping.Com-paratively,the deformation mode of the columnar-grained alloy transferred from nearly negligible plastic deformation to plastic deformation dominated by the twining,and finally to plastic deformation dominated by dislocation slipping. Meanwhile,compared with the alloy with equiaxed grains,it was found that ultimate tensile strength and elongation could be increased simultaneously,which was ascribed for the twinning deformation in columnar-grained Fe-6.5Si al-loy.This work would assist us to further understand the plastic deformation mechanism of Fe-6.5Si alloy and pro-vide more clues for high-efficiency production of the alloy.
机译:比较研究了定向凝固法制备的柱状Fe-6.5Si(质量%)合金和锻造等轴晶化的Fe-6.5Si合金在不同温度下的变形行为和机理。结果表明,随着变形温度的升高等轴晶Fe-6.5Si合金在300℃至500℃时,伸长率从2.9%增至30.1%,而柱状晶Fe-6.5Si合金的伸长率从6.6%增至约5 1%。等轴晶Fe-6.5Si合金从几乎可以忽略不计的塑性变形转变为以位错滑动为主的大塑性变形。相比之下,柱状晶合金的变形模式从几乎可以忽略的塑性变形转变为以塑性为主的塑性变形缠绕,最后以塑性变形为主的位错滑移。同时,与等轴晶合金相比,发现极限拉伸强度和伸长率可以同时提高,这归因于柱状晶粒Fe-6.5Si合金的孪生变形。这项工作将有助于我们进一步发展。了解Fe-6.5Si合金的塑性变形机理,并为该合金的高效生产提供更多线索。

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  • 来源
    《钢铁研究学报(英文版)》 |2016年第4期|344-349|共6页
  • 作者单位

    Institute for Advanced Materials and Technology,University of Science and Technology Beijing,Beijing 100083, China;

    Institute for Advanced Materials and Technology,University of Science and Technology Beijing,Beijing 100083, China;

    School of Materials Science and Engineering,Xi′an University of Technology,Xi′an 710048,Shaanxi,China;

    Institute for Advanced Materials and Technology,University of Science and Technology Beijing,Beijing 100083, China;

    Institute for Advanced Materials and Technology,University of Science and Technology Beijing,Beijing 100083, China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2024-01-26 21:15:24
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