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A DLC/W-DLC multilayered structure for strain sensing applications
Diamond and Related Materials, 2008The strain dependence in tungsten-containing diamond-like carbon (W-DLC) film was investigated. The W-DLC film was deposited onto Si substrate by plasma enhanced chemical vapor deposition and DC magnetron co-sputtering of tungsten metal target. The strain dependence of resistance was measured by four-point bending test under well controlled temperature
Takanori Takeno +4 more
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Influence of parameters on Al/Ti-DLC/DLC selective absorber film
Surface Engineering, 2017This work explores the effects of target current and argon gas flow on structural and optical properties of Al/Ti-DLC/DLC selective absorber films used in solar-thermal conversion processes. The transmittance of DLC (diamond-like carbon) anti-reflection layer is affected by the sp2-C/sp3-C ratio in it.
Xiang Yu +4 more
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Comparison of DLC and N-Doped DLC Synthesized by RF-PECVD
Advanced Materials Research, 2014Diamond-like carbon (DLC) films and nitrogen doped DLC (NDLC) were deposited on glass slide and H13 steel by plasma-enhanced chemical vapor deposition using a commercial RF 13.56 MHz (RF-PECVD). The films have been prepared from CH4 for DLC and CH4+N2 mixtures for NDLC. The deposition process was at 300°C under argon atmosphere for 120 min.
Witit Janchocktawee +2 more
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2020
What are the likely future directions of the concept of the Dominant Language Constellation? What is the role of the DLC within multilingualism studies? This chapter uses the simile of the heavenly constellation to develop a line of inquiry about the uses and usefulness of the DLC concept.
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What are the likely future directions of the concept of the Dominant Language Constellation? What is the role of the DLC within multilingualism studies? This chapter uses the simile of the heavenly constellation to develop a line of inquiry about the uses and usefulness of the DLC concept.
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XPS and TEM study of W-DLC/DLC double-layered film
Thin Solid Films, 2009Abstract A double-layered film of tungsten-containing diamond-like carbon (W-DLC) and DLC, (W-DLC)/DLC, was investigated. A film of 1.6 µm in thickness was deposited onto silicon substrate. The investigate double-layered coating was deposited by using the combination of PECVD and co-sputtering of tungsten metal target.
Takanori Takeno +4 more
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DLC/Hydroxyapatite Nanocomposites
MRS Proceedings, 2003ABSTRACTStudies of orthopaedic implant failures have shown that mechanical failure of an implant almost exclusively occurs at the biomaterial-tissue interface. Hydroxyapatite (HA) mimics the behavior of natural bone, and provides a strong, long-lasting adhesive interface between a bone replacement implant and the surrounding tissue.
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Lower Emissions with DLC Coatings
MTZ worldwide, 2009With vehicle production growing annually and pressure on manufacturers to reduce vehicle emissions, innovative methods will have to be found to make engines more efficient. The PSA Group has set up with Bekaert a co operative test programme to measure the impact of Diamond-Like Carbon (DLC) coatings on the frictional behaviour of certain components ...
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Diamantu podobne ogljikove (DLC) plasti: Diamond-like carbon (DLC) films:
2002Diamantu podoben ogljik (DLC) je skupno ime za metastabilno obliko amorfnega ogljika z znatnim deležem spna3 -vezi. Lahko vsebuje tudi do 50 at.% vodika.Tanke plasti DLC imajo nekatere izjemne fizikalne lastnosti, kot so visoka trdota, kemijska inertnost, nizek koeficient trenja in zelo nizka hrapavost.
Čekada, Miha, Panjan, Peter
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405 Cytocompatibility of N-DLC/DLC multilayer films
The Proceedings of Ibaraki District Conference, 2011Yousuke Kimura +5 more
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1997
Modification of electrical, optical and structural properties of DLC films through introduction of copper clusters by co-sputtering of graphite and copper targets is considered. Evidence is presented of the existence of various kinds of copper-based clusters. Their structure, size, and size-distribution function are discussed.
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Modification of electrical, optical and structural properties of DLC films through introduction of copper clusters by co-sputtering of graphite and copper targets is considered. Evidence is presented of the existence of various kinds of copper-based clusters. Their structure, size, and size-distribution function are discussed.
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