...
首页> 外文期刊>Journal of Thermal Spray Technology >Post-heat Treatment Effects on Cold-Sprayed Aluminum Coatings on AZ91D Magnesium Substrates
【24h】

Post-heat Treatment Effects on Cold-Sprayed Aluminum Coatings on AZ91D Magnesium Substrates

机译:AZ91D镁基板上的冷喷涂铝涂层的后热处理效果

获取原文
获取原文并翻译 | 示例
           

摘要

Commercially pure aluminum (CP-Al) powder was deposited by the cold spray process onto AZ91D magnesium (Mg) substrates that had been subjected to three different heat-treatment conditions: namely, as-cast (F), homogenized (T4), and artificially aged (T6). The substrate hardness was measured to be 80.7 ± 1.8, 73.7 ± 4.0, and 103.6 ± 7.4 HV_(0.025) for the F-, T4-, and T6-Mg alloy substrates respectively. Thick (~400 μm) and dense (below 1% porosity) Al coatings have been obtained. After post-deposition heat treatment at 400℃, the intermetallic Mg_(17)Al_(12) (β) and Al_3Mg_2 (γ) phases with different thicknesses were found to have formed at the coating/substrate interface depending on the holding time. While no significant thickness differences of the intermetallic layers were detected in the cases of F- and T6-AZ91D substrates, thicker layers formed on the T4-AZ91D substrate. It is believed that the higher Al concentration in the T4-AZ91D solid solution within the α-Mg could diffuse and contribute more easily to the growth of the intermetallic phases. The hardness of the β- and γ-phase was measured to be 260.5 ± 10.7 HV_(0.025) and 279.6 ± 13.7 HV_(0.025), respectively. Shear strength test results revealed lower adhesion strength after heat treatment, which is attributed to the presence of brittle intermetallic layers at the coating/substrate interface.
机译:通过冷喷涂工艺将商业纯铝(CP-Al)粉末沉积到AZ91D镁(Mg)基板上,该基板已经历三种不同的热处理条件:铸态(F),均质化(T4)和人工老化(T6)。对于F-,T4-和T6-Mg合金基板,测得的基板硬度分别为80.7±1.8、73.7±4.0和103.6±7.4 HV_(0.025)。获得了厚(〜400μm)和致密(孔隙率低于1%)的铝涂层。经过400℃的沉积后热处理,根据保持时间的不同,发现在涂层/基体界面处形成了不同厚度的金属间Mg_(17)Al_(12)(β)和Al_3Mg_2(γ)相。尽管在F-和T6-AZ91D基板上未检测到金属间层的明显厚度差异,但在T4-AZ91D基板上形成了较厚的层。据信,在α-Mg内的T4-AZ91D固溶体中较高的Al浓度可以扩散并更容易地促进金属间相的生长。 β相和γ相的硬度分别为260.5±10.7 HV_(0.025)和279.6±13.7 HV_(0.025)。剪切强度测试结果表明,热处理后的粘合强度较低,这归因于涂层/基材界面处存在脆性金属间化合物层。

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