>The high degree of ionisation of the sputtered particles in High power impulse magnetron sputtering (HIPIMS) discharge was utilised to deposit very dense nanoscale multil'/> Effect of High Ion Irradiation on the Structure, Properties and High Temperature Tribology of Nanoscale CrAlYN/CrN Multilayer Coating Deposited by HIPIMS-HIPIMS Technique
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Effect of High Ion Irradiation on the Structure, Properties and High Temperature Tribology of Nanoscale CrAlYN/CrN Multilayer Coating Deposited by HIPIMS-HIPIMS Technique

机译:高离子辐照对HIPIMS-HIPIMS技术沉积的纳米CrAlYN / CrN多层涂层结构,性能和高温摩擦学的影响

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>Abstract class="para">>The high degree of ionisation of the sputtered particles in High power impulse magnetron sputtering (HIPIMS) discharge was utilised to deposit very dense nanoscale multilayer CrAlYN/CrN coatings. These newly developed coatings are designed to meet the demands for high oxidation and wear resistant coatings of light weight materials such as src="http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif" alt="[gamma]" />-TiAl alloys for future applications in aerospace and automotive engines. The coatings were produced by a HIPIMS-HIPIMS methodology in which HIPIMS was employed for adhesion enhancement surface pre-treatment as well as for coating deposition in combination with standard unbalanced magnetron sputtering (UBM). TEM studies revealed extremely sharp interfaces between the individual layers in the nanolaminated material and almost no layer waviness. The coatings exhibited low friction and wear coefficients (Kc) at ambient and elevated temperatures of 300 and 650 °C. Quasi-isothermal oxidation tests carried out at 850 °C for exposure time of 2 000 h exhibited a lower mass gain of HIPIMS-HIPIMS coatings by a factor of 2 and 6 as compared to the HIPIMS/UBM deposited coatings and uncoated src="http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif" alt="[gamma]" />-TiAl substrate respectively.
机译:>摘要 class =“ para”> >利用高功率脉冲磁控溅射(HIPIMS)放电中溅射粒子的高电离度来沉积非常致密的纳米多层CrAlYN / CrN涂层。这些新开发的涂层旨在满足对轻质材料(例如 src =“ http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif” alt =“γ)的高氧化和耐磨涂层的需求。 “ />-TiAl合金,可用于航空航天和汽车发动机的未来应用。涂层是通过HIPIMS-HIPIMS方法生产的,在该方法中,HIPIMS与标准不平衡磁控溅射(UBM)结合使用,用于附着力增强的表面预处理以及涂层沉积。 TEM研究表明,纳米层合材料中各层之间的界面非常清晰,几乎没有层波纹。该涂层在环境温度和300和650 elevatedC的高温下表现出较低的摩擦和磨损系数(Kc)。与HIPIMS / UBM沉积涂层相比,在850°C下对暴露时间2 000 h进行的准等温氧化测试显示,HIPIMS-HIPIMS涂层的质量增益降低了2倍和6倍。 “ http://onlinelibrarystatic.wiley.com/undisplayable_characters/0003b3.gif”分别为alt =“γ” /> -TiAl基材。

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