中文版 English
Position:首页 > Papers > Theoretical research

Furnace Cyclic Oxidation Behavior of Multi-Component Low Conductivity Thermal Barrier Coatings

Time:2012-11-19 08:07:56  From:National Aeronautics and Space Administration Glenn Research  Author:Ceramic thermal barrier coatin

Furnace Cyclic Oxidation Behavior of Multi-Component Low Conductivity Thermal Barrier Coatings

Dongming Zhu, James A. Nesbitt, Charles Barrett, Terry R. McQue, Robert A. Miller
National Aeronautics and Space Administration Glenn Research Center; National Aeronautics and Space Administration Glenn Research Center; QSS Group, Inc.; National Aeronautics and Space Administration Glenn Research Center

Abstract
Ceramic thermal barrier coatings will play an increasingly important role in advanced gas turbine engines because of their ability to further increase engine operating temperatures and reduce cooling, thus helping achieve future engine low emission, high efficiency and improved reliability goals. Advanced multi-component zirconia-based thermal barrier coatings are being developed using an oxide defect clustering design approach to achieve the required coating low thermal conductivity and high te...Moremperature stability. Although the new composition coatings were not yet optimized for cyclic durability, an initial durability screening of the candidate coating materials was conducted using conventional furnace cyclic oxidation tests. In this paper, furnace cyclic oxidation behavior of plasma-sprayed zirconia-based defect cluster thermal barrier coatings was investigated at 1163 C using 45 min hot cycles. The ceramic coating failure mechanisms were studied using scanning electron microscopy (SEM) combined with X-ray diffraction (XRD) phase analysis after the furnace tests. The coating cyclic lifetime is also discussed in relation to coating processing, phase structures, dopant concentration, and other thermo-physical properties.

keywords:Thermal Barrier; Low Conductivity; Furnace Cyclic

本站文章未经允许不得转载;如欲转载请注明出处,北京桑尧科技开发有限公司网址:http://www.sunspraying.com/

Support
返回首页
Home page
发表评论 共有条评论
用户名: 密码:
验证码: 匿名发表
Information
Article
    无相关信息
Update
Hot