首页> 外文OA文献 >Texture of magnesium alloy films growth by physical vapour deposition (PVD)
【2h】

Texture of magnesium alloy films growth by physical vapour deposition (PVD)

机译:通过物理气相沉积(PVD)生长镁合金膜的织构

摘要

The texture developed by four physical vapor deposited Mg alloys grown at two collector temperatures and their correlation with the microstructure have been studied. The alloys Mg-2.3Zr, Mg-10.6Zr and Mg-12Ti (wt%) deposited at around 150°C exhibited elongated grains growing in the normal direction to the deposit surface, but tilted with respect to the Z axis, with pores and cracks at the boundaries. A strong fibre texture of the (0001) basal plane component forming the fibre axis and the normal to the substrate plane an angle of 24, 18 or 12° depending on alloying element concentration has been found. The Mg-14Ti-1Al-0.9Mn (wt%) alloy, deposited at higher temperature, consisted of a region of columnar grains growing from the collector side followed by a thin region of equiaxed grains. Furthermore, a fibre texture with two components, the (0002) basal plane and the (112̄0) and the (101̄0) components in the collector and free surfaces, respectively, were present. Differences found in this alloy with respect to the alloys deposited at lower temperature were related to the surface diffusion phenomenon of adatoms caused by a higher collector temperature. The change in the second texture component from the collector to the free surface can explained by the decrease in the deposit strain energy.
机译:研究了在两种收集器温度下生长的四种物理气相沉积镁合金形成的织构及其与微观结构的关系。在约150°C沉积的Mg-2.3Zr,Mg-10.6Zr和Mg-12Ti合金(wt%)表现出长形的晶粒沿沉积表面的法线方向生长,但相对于Z轴倾斜,并带有孔和边界处出现裂缝。已经发现形成纤维轴的(0001)基面组分的强纤维织构和与基底平面的法线成24、18或12°的角度,取决于合金元素的浓度。在较高温度下沉积的Mg-14Ti-1Al-0.9Mn(wt%)合金由从收集极侧生长的柱状晶粒区域和随后的等轴晶粒的薄区域组成。此外,存在具有两个成分的纤维织构,分别是(0002)基面和集电体和自由表面中的(112̄0)和(101̄0)成分。与在较低温度下沉积的合金相比,该合金的差异与较高收集极温度引起的吸附原子的表面扩散现象有关。第二织构成分从集电器到自由表面的变化可以通过沉积应变能的降低来解释。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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