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pro vyhledávání: '"T. Staedler"'
Autor:
Borges, Renee M.
Publikováno v:
Current Science, 1998 Sep . 75(6), 628-630.
Externí odkaz:
https://www.jstor.org/stable/24100572
Akademický článek
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Autor:
Sime-Ngando, T.
Publikováno v:
In l'Annee Biologique 1999 38(1):51-52
Akademický článek
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Publikováno v:
Surface Engineering. 29:474-478
Carbon films were deposited on Si (111) wafers by microwave electron cyclotron resonance/plasma assisted chemical vapour deposition using a benzene–argon gas mixture with different argon flowrates (5, 15 and 30 sccm). The structure, surface morphol
Publikováno v:
Surface and Coatings Technology. :461-464
Submicron diamond-like carbon films (DLC) were prepared on substrate materials with different Young's modulus (silicon, glass, polymers) by PACVD using a Ar/C 2 H 2 gas mixture at temperatures below 150 °C. The microtribological behaviour of these t
Autor:
K. Schiffmann, T. Staedler
Publikováno v:
Surface Science. :1125-1129
The use of tribological coatings with film thicknesses in the submicrometer regime is an increasing field of applications. In this work diamond-like carbon films with a thickness of 250 nm deposited via plasma enhanced chemical vapor deposition on di
Autor:
T. Staedler, K. Schiffmann
Publikováno v:
Advanced Engineering Materials. 3:333-337
Diamond-like carbon (DLC) can be used as a tribological coatings in mechanical engineering to reduce friction and wear. As well as the amorphous carbon nitride system (CNx), it is also interesting for various applications in the hard-disk and microsy
Publikováno v:
Thin Solid Films. 351:42-47
Titanium oxide and silicon oxide films were deposited on floatglass substrates by magnetron sputtering employing both the DC and the MF (mid-frequency) technique. The films were grown at different working points between transition and oxide mode, tar
Publikováno v:
Diamond and Related Materials. 13:1491-1493
Due to the low coefficient of friction and the high hardness of diamond-like carbon films they are very interesting for application of microtribological coatings for MEMS and microactuators. In contrast to well established films with a few micron thi