期刊文献+

镁合金板材特殊轧制技术的研究进展 被引量:11

Research Progress for Special Rolling Technology of Magnesium Alloy Sheet
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摘要 分析了限制镁合金板材应用发展的关键技术瓶颈和内在根源,在对等径角轧制、异步轧制、累计叠轧和反复单向弯曲等镁合金板材特殊轧制技术的研究现状及其基本原理、特点和应用进行全面归纳总结的基础上,指出剪切变形在镁合金板材成形中具有重要意义,开发或采用特殊制备技术并实现板材轧制过程中的晶粒细化、孪晶控制和织构调整是促进镁合金板材应用发展最行之有效的方法之一。 The key technological bottlenecks and root causes for the development of the magnesium alloy sheet are analyzed. The fundamental principle, characteristics and applications of several special rolling technologies of magnesium alloy sheet, including equal channel angular rolling (ECAR), differential speed rolling, accumulative roll-bonding (ARB), repeated unidirectional bending (RUB) are well reviewed and summarized. It is point that shear deformation plays a pivotal role in magnesium alloy sheet forming process and one of the most effective way to promote the development of the magnesium alloy sheet is to develop or use special rolling technology, because the grain is refined, twin crystal is controlled and the texture is adjusted during rolling process.
出处 《机械工程材料》 CAS CSCD 北大核心 2012年第11期14-18,40,共6页 Materials For Mechanical Engineering
基金 广东省教育部产学结合项目(2010B090400254) 广东省科技计划项目(2010B031700012)
关键词 镁合金 特殊轧制技术 等径角轧制 异步轧制 累计叠轧 反复单向弯曲 magnesium alloy special rolling technology equal channel angular rolling (ECAR) differential speed rolling accumulative roll-bonding (ARB) repeated unidirectional bending (RUB)
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参考文献31

  • 1GALIYEV A, KAIBYSHEV R. Superplasticity in a magnesi- um alloy subjected to isothermal rolling[J]. Scripta Materia- lia, 2004,51 : 89-93.
  • 2陈振华.变形镁合金[M].北京:化学工业出版社,2006.
  • 3MUKAI T, WATANABE H, ISHIKAWA K,et al. Guide for enhancement of room temperature ductility in Mg alloys at high strain rates[J]. Materials Science Forum, 2003,419/422 : 171-176.
  • 4AGNEW S R, DUYGULU O A. Mechanistic understanding of the formability of magnesium: examing the role of temperature on the deformation mechanisms[J]. Materials Science Forum, 2003,419/422 177-188.
  • 5PRADO M T, VALLE J A, RUANO O A. Effect of sheet thickness on the microstructure evolution of an Mg alloy dur- ing large strain hot rolling[J]. Scripta Materialia, 2004, 50: 667-671.
  • 6VALLE J A, PRADO M T, RUANO O A. Texture evolution during large-strain hot rolling of the AZ61 Mg alloy[JT. Mate- rials Science and EngineeringiA, 2003,355 : 68-78.
  • 7YANG P, YU Y, CHEN L,et al. Experimental determination and theoretical prediction of twin orientations in magnesium alloy AZ31[JT. Scripta Materialia,2004,50:l163-1168.
  • 8CHEN Z H, CHENG Y Q, XIA W J. Effect of equal-channel angular rolling pass on microstructure and properties of mag- nesium alloy sheets[J]. Materials and Manufacturing Proces- ses, 2007,22 : 51-56.
  • 9CHENG Y Q, CHEN Z H, XIA W J. Drawability of AZ31 magnesium alloy sheet produced by equal channel angular roll- ing at room iemperature[J]. Materials Characterization;2007, 58 (7) : 617-622.
  • 10CHENG Y Q, CHEN Z:H, XIA W J,et al. Effect of channel clearan.ce on crystal orientation development in AZ31 magne- sium alloy sheet produced by equal channel angular rolling [J]. Journal of Materials Processing Technology, 2007, 184 (1/3) :97-101.

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