During high-temperature exposure, the microstructure of thermal barrier coatings evolves, leading to increased thermal conductivity. We describe the evolution in the thermal properties of a 7 wt.% Y 2 O 3 stabilized ZrO 2 electron beam-physical vapor deposited (EB-PVD) thermal barrier coating with t
Influence of thermal cycle on conductivity of YSZ
β Scribed by T.L. Wen; Z.Y. Lu; S.F. Li
- Publisher
- Elsevier Science
- Year
- 1988
- Tongue
- English
- Weight
- 136 KB
- Volume
- 28-30
- Category
- Article
- ISSN
- 0167-2738
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β¦ Synopsis
An ~tended period ofthe~al ~e ~tw~n me ~ ~pemtore Imt) and 8O0"C + mwied om on the ZIO~ smbil+~d by 3.S. 5.3 ,,d 6.+ moZ% Y+Os The v,riat ~t i of the e[~ml ~,a,m+v~t y ,rid the pha~ ~ p<~+t+on of ~+ Y~ d ud~ the~l ~cle ~,~ stud~ea. The tnd~dd~l ~mfibm~o, of the ~lk and ~= ~n bouna~ m ~ eo~ao~ti.~ty ~s ~fimm~ by 1he ma% v~o+ ~ nol o~m:rved a~ m~al ~]e+. FIo~er, lhe YSZ ~vitb 3.~ tool% exhibited an ap~mnt increa~ ia mon~ ctm+c pmase ~mm aria m bO~l b~k ,ha +~aJ, boenda+ ~mm~es. 11 co+Id ~ ++m+cmd dmt p~+Nm~+~ oVId+ mo,+[+n+c ~ at ~ ~ua~ Dad in ~]k might be the m~or ~mn for 1he ~ase in ~nd~iviW of Z~I ~lh lower YeOj
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