首页> 外文期刊>Materials transactions >Effect of Friction Stir Processing on the Microstructural Evolution and Tensile Behaviors of an α/β Dual-Phase Mg-Li-Al-Zn Alloy
【24h】

Effect of Friction Stir Processing on the Microstructural Evolution and Tensile Behaviors of an α/β Dual-Phase Mg-Li-Al-Zn Alloy

机译:搅拌摩擦加工对α/β双相Mg-Li-Al-Zn合金的组织演变和拉伸行为的影响

获取原文
获取原文并翻译 | 示例
       

摘要

The effect of friction stir processing followed by an aging heat treatment on an extruded α/β dual-phase Mg-8.5Li-2.8Al-l. lZn (LAZ931) alloy is investigated. The aim of present study is to explore its microstructural characteristic and tensile mechanical properties. The friction stir process reduces the extruded texture and causes a significant grain size refining effect on the coarse Mg-rich α-phase and Li-rich β-phase grains. An apparent decrease in the volume fraction of α-phase is confirmed, and it is resulted from the dissolution and solid solution of the α-phase within the β-phase matrix. The α/β-phase grain size refining and solid solution strengthening effects by the friction stir process can not only improve the microhardness within the stir zone, but also enhance the tensile strength of extruded dual-phase LAZ931-F alloy. With performing an aging heat treatment to friction stirred LAZ931 -FSP alloy at 150°C, the microhardness is further increased with an age hardening effect by the precipitation of α-phase and metastable θ-MgLi_2Al precipitate in the stir zone. However, the coarsening of precipitated α-phase at β-phase grain boundaries and the phase decomposition of metastable θ-MgLi_2Al into a AlLi compound reduces the precipitation strengthening effect to the tensile strength of aged LAZ931-FSP/A alloy. Regardless of being aged state or not, applying a tensile force perpendicular to the stir processing direction causes a decrease in the tensile strength and elongation to friction stirred LAZ931-FSP alloys.
机译:搅拌摩擦加工后进行时效热处理对挤出的α/β双相Mg-8.5Li-2.8Al-1的影响。研究了lZn(LAZ931)合金。本研究的目的是探究其微观结构特征和拉伸力学性能。摩擦搅拌过程减少了挤压的织构,并对粗大的富含Mg的α相和富含Li的β相晶粒产生了明显的晶粒细化效果。证实了α相体积分数的明显降低,这是由于α相在β相基质中的溶解和固溶所致。摩擦搅拌工艺对α/β相晶粒细化和固溶强化的作用不仅可以提高搅拌区的显微硬度,而且可以提高挤压双相LAZ931-F合金的拉伸强度。通过在150°C下对搅拌摩擦的LAZ931 -FSP合金进行时效热处理,通过在搅拌区沉淀出α相和亚稳态θ-MgLi_2Al沉淀物,随着时效硬化作用,显微硬度进一步提高。然而,在β相晶界处析出的α相粗大化和亚稳态θ-MgLi_2Al向AlLi化合物的相分解降低了对时效LAZ931-FSP / A合金拉伸强度的析出强化作用。无论是否处于时效状态,施加垂直于搅拌加工方向的拉力都会导致搅拌摩擦的LAZ931-FSP合金的拉伸强度和伸长率降低。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号