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Influence of Zr alloying on the mechanical properties, thermal stability and oxidation resistance of Cr-Al-N coatings

机译:Zr合金化对Cr-Al-N涂层力学性能,热稳定性和抗氧化性的影响

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摘要

Cr-Al-N coatings with Zr alloying (Zr contents from 0 to 29.5 at.%) were deposited by d.c. reactive magnetron sputtering. The chemical composition and the morphology of as-deposited coatings were characterized, and the phase structure, mechanical properties and wear resistance of the coatings before and after thermal annealing were analyzed and evaluated. With the increase of Zr content, both Cr and N contents decrease whereas Al shows a growing trend. Low Zr (<26.9 at.%) coatings are stoichiometric and present a fcc Nad-type B1 structure with columnar morphology, while high Zr (≥26.9 at.%) coatings are in N deficiency and have low crystallinity degree. The alloying of low contents of Zr improves the coating hardness and H/E ratio; however, for low ordered coatings these properties decrease significantly. After thermal annealing, fcc structure is kept in low Zr films whereas the crystalline degree is improved in the high Zr ones and their mechanical properties were slightly improved. Two coatings were selected for further testing, representatives of low (CrAlZr5N) and high (CrAlZr27N) Zr contents. The onset oxidation temperature is ~900℃ and 600 ℃ for CrAlZr5N and CrAlZr27N coatings, respectively. Mainly Cr_2O_3 is formed on low Zr coatings whereas mixed oxides of ZrO_2 and Cr_2O_3 are detected on CrAlZr27N sample after thermal exposure. In all tribological tests, low Zr coating presents lower wear rate than the CrAlZr27N coating. In general, the addition of very high Zr contents (>20 at.%) with N deficiency markedly weakens the mechanical properties and the oxidation resistance of Cr-Al-Zr-N coatings.
机译:通过直流电沉积具有Zr合金化(Zr含量为0至29.5 at。%)的Cr-Al-N涂层。反应磁控溅射。表征了沉积后涂层的化学组成和形貌,并分析和评估了热退火前后的相结构,力学性能和耐磨性。随着Zr含量的增加,Cr和N含量均下降,而Al则呈增长趋势。低Zr(<26.9 at。%)涂层是化学计量的,呈现出呈柱状形态的fcc Nad型B1结构,而高Zr(≥26.9at。%)涂层则缺乏N且结晶度低。 Zr含量低的合金化可提高涂层硬度和H / E比。但是,对于低序涂层,这些性能会大大降低。热退火后,fcc结构保持在低Zr膜中,而高Zr膜中的结晶度得到改善,其机械性能略有改善。选择了两种涂层进行进一步测试,分别代表低(CrAlZr5N)和高(CrAlZr27N)Zr含量。 CrAlZr5N和CrAlZr27N涂层的起始氧化温度分别为〜900℃和600℃。在低Zr涂层上主要形成Cr_2O_3,而在热暴露后在CrAlZr27N样品上检测到ZrO_2和Cr_2O_3的混合氧化物。在所有摩擦学测试中,低Zr涂层的磨损率均低于CrAlZr27N涂层。通常,添加非常高的Zr含量(> 20 at。%)和N缺陷会明显削弱Cr-Al-Zr-N涂层的机械性能和抗氧化性。

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  • 来源
    《Applied Surface Science》 |2014年第30期|269-277|共9页
  • 作者单位

    School of Materials Science and Engineering, Guangxi University, Nanning 530004, PR China,SEG-CEMUC - Department of Mechanical Engineering, University of Coimbra, Rua Luis Reis Santos, P-3030, 788 Coimbra, Portugal;

    School of Materials Science and Engineering, Guangxi University, Nanning 530004, PR China;

    National Centre for Advanced Tribology at Southampton (nCATS), School of Engineering Sciences, University of Southampton, Highfield, Southampton SO171BJ, Hampshire, UK;

    SEG-CEMUC - Department of Mechanical Engineering, University of Coimbra, Rua Luis Reis Santos, P-3030, 788 Coimbra, Portugal;

    SEG-CEMUC - Department of Mechanical Engineering, University of Coimbra, Rua Luis Reis Santos, P-3030, 788 Coimbra, Portugal;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cr-Al-(Zr-)N coatings; Mechanical properties; Thermal stability; Wear resistance; Oxidation resistance;

    机译:Cr-Al-(Zr-)N涂层;机械性能热稳定性;耐磨性;抗氧化性;

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