首页> 外文会议>International Seminar on Metallurgy and Materials >Characterization of Anodic Oxide Film on AZ91 Magnesium Alloy Formed by Plasma Electrolytic Oxidation
【24h】

Characterization of Anodic Oxide Film on AZ91 Magnesium Alloy Formed by Plasma Electrolytic Oxidation

机译:等离子体电解氧化形成AZ91镁合金阳极氧化膜的表征

获取原文

摘要

The AZ91 magnesium (Mg) alloy is a high strength yet lightweight material, which is suitable properties for structural engineering application. However, the high surface reactivity of the alloy to a corrosive environment limits its extensive use. A barrier layer is necessary to reduce contact between the alloy and the environment. This paper reports the characteristics of a film formed on the AZ91 alloy by plasma electrolytic oxidation (PEO) in Na_3PO_4 solution at variation time of 30, 60, and 90 s. Surface characterization by SEM revealed that the formation of the PEO film was initiated at the β phase (30 s) and then expanded to the metal matrix (60 and 90 s). The film formed for 30 s was localized at β phase. At a prolonged time of 60 and 90 s, the film became more uniform with a thickness of approximately 2.5 and 5.0 μm, respectively. The film composed mainly amorphous Mg(OH)2 phase, as analyzed by XRD. The wear resistance, which was measured by abrasion test, showed that the film formed at the intermediate time of 60 s exhibited the highest abrasion rate of 3.22x10~(-4)mm~3/Nm which was three times than that of the film formed at 30 and 90 s with abrasion rate of 1.35x10~(-4) and 1.47x10~(-4) mm~3/Nm, respectively.
机译:AZ91镁(Mg)合金是一种高强度而轻质的材料,适用于结构工程应用。然而,合金对腐蚀环境的高表面反应性限制了其广泛使用。需要阻挡层以减少合金与环境之间的接触。本文报道了在50,60和90秒的变化时间下通过血浆电解氧化(PEO)在AZ91合金上形成的膜的特性。通过SEM的表面表征显示,在β相(30秒)中引发了PEO膜的形成,然后膨胀于金属基质(60和90秒)。形成为30秒的膜在β相时定位。在延长时间为60和90秒,薄膜分别变得更加均匀,厚度为约2.5和5.0μm。这部薄膜主要由XRD分析而构成无定形Mg(OH)2相。通过磨损试验测量的耐磨性显示,在60秒的中间时间形成的膜表现出3.22x10〜(-4)mm〜3 / nm的最高磨损率,这是比薄膜的3倍以30和90秒形成,磨损率为1.35×10〜(-4)和1.47x10〜(-4)mm〜3 / nm。

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