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Recently, Kitazawa et al. (2010) have reported that a temperature gradient of 150°C can be achieved by using a ceramic TBC (Y2O3-ZrO2 top coat) on superalloy components.
Fine YSZ coated HA powders, which can minimize the effects of amorphorization and dissociation of HA by use of the much more thermal resilient YSZ particles to protect HA particles from the high plasma temperature, were prepared by using a ceramic slurry method.
The results suggest that by using a ceramic femoral head, CoCr fretting and corrosion from the modular head-neck taper may be mitigated but not eliminated.
Hair samples with the length of about 1 cm were collected from the region of the head close to the scalp behind the ear by using a ceramic blade cutter and kept in polypropylene bottles [ 32].
Our results suggest that by using a ceramic femoral head, Co and Cr fretting and corrosion from the modular head-neck taper may be mitigated, although not completely eliminated.
Hair samples (length, approximately 1 cm) were collected from a region of the head close to the scalp behind the ear by using a ceramic blade cutter, and the samples were kept in polypropylene bottles [ 45].
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A total-reflection active-mirror (TRAM) amplifier is functionally designed by using a composite ceramic for high pulse energy and high average power.
This paper seeks to determine the optimal settings for the deposition parameters, for TiO2 thin film, prepared on non-alkali glass substrates, by direct current (dc) sputtering, using a ceramic TiO2 target in an argon gas environment.
The 14- to 25-nm-thick CeO x films were deposited on Pt/Ti/SiO2/Si at room temperature with a gas mixture of 6 18 Ar/O2 by radio-frequency (rf) magnetron sputtering using a ceramic CeO2 target.
Before depositing Ti metal films, 10 at% Nb-doped TiO2 (NTO) thin layers were deposited on the F-doped SnO2 (TEC15, Pilkington) substrates by RF-magnetron sputtering at 400°C using a ceramic target with the same composition under Ar flow (20 sccm) with a working pressure of 5 mTorr.
This paper proposes a new design of an impact mode piezoelectric power generator that is able to operate in a wide frequency bandwidth by using a round piezoelectric ceramic as the energy converter.
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