4 edition of Fundamental tribological properties of ion-beam-deposited boron nitride films found in the catalog.
Fundamental tribological properties of ion-beam-deposited boron nitride films
|Series||NASA technical memorandum -- 102088.|
|Contributions||Lewis Research Center.|
|The Physical Object|
Blood compatibilities of carbon nitride film deposited on biomedical NiTi alloy Effect of H2 dilution on a-CN:H films deposited by hot-wire chemical vapor deposition Study on mechanical properties and blood compatibility of carbon nitride film deposited on NiTi alloy Growth and properties of the ion beam deposited SiOx containing DLC films. Solid Lubrication Fundamentals & Applications (Materials Engineering) and a combination of cubic boron nitride and CVD diamond. How surface modification and the selected materials couple improved the tribological functionality of coatings, giving low coefficient of friction and good wear resistance, is explained. Such chemical.
Typical CVD-deposited films for tribological applications, such as titanium nitride, have large-angle grain boundaries and grain sizes in the range to 5 pm. Gaseous State Processes Similar elastic contact and friction characteristics (i.e., load-dependent friction behavior) can also be found for bulk materials like polymers [, ], diamond , and ceramics , as well as for thin solid lubricants like sputtered molybdenum disulfide and ion .
Sold Lubrication Fundamentals and Applications Friction and Wear - Free download as PDF File .pdf), Text File .txt) or read online for free. Miyoshi, Fundamental tribological properties of ion-beam-deposited boron nitride films, Materials Science Forum (J.J. Pouch and S.A. Alterovitz, eds.), Trans Tech Publications, Aedermannsdorf. properties for a wide range of demanding applications. Accordingly, in this review, we attempt to highlight some of the most important developments in the field of DLC films in general and their tribology in particular. The present state of the art in scientific research and industrial practices that involve DLC films is also surveyed.
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Fundamental tribological properties of ion-beam-deposited boron nitride films (OCoLC) Material Type: Government publication, National government publication, Internet resource: Document Type: Book, Internet Resource: All Authors / Contributors: Kazuhisa Miyoshi; Lewis Research Center.
Fundamental tribological properties of ion-beam-deposited boron nitride films (OCoLC) Material Type: Document, Government publication, National government publication, Internet resource: Document Type: Internet Resource, Computer File: All Authors / Contributors: Kazuhisa Miyoshi; Lewis Research Center.
FUNDAMENTAL TRIBOLOGICAL PROPERTIES OF ION-BEAM-DEPOSITED BORON NITRIDE FILMS Kazuhisa Miyoshi National Aeronautics and Space Administration Lewis Research Center Cleveland, Ohio ABSTRACT The adhesion, friction, and micromechanical properties of ion-beam-deposited boron nitride (BN) films are reviewed in this chapter.
Abstract. An investigation was conducted to examine the mechanical strength and tribological properties of boron nitride (BN) films ion-beam deposited on silicon (Si), fused silica (SiO/sub 2/), gallium arsenide (GaAs), and indium phosphide (InP) substrates in sliding contact with a diamond pin under a load.
tribological properties of boron nitride (BN) films ion-beam-deposited on silicon (Si), fused silica (Slop), gallium arsenide (GaAs), and indium phosphide (InP) substrates in sliding contact with a diamond pin under a load.
The results of the investigation indicate that BN films on nonmetallic. An investigation was conducted to examine the mechanical strength and tribological properties of boron nitride (BN) films ion-beam-deposited on silicon, fused silica (SiO 2), gallium arsenide (GaAs) and indium phosphide (InP) substrates in sliding contact with a diamond pin under a results of the investigation indicate that BN films on non-metallic substrates, like metal films on Cited by: Nuclear Instruments and Methods in Physics Research B59/60 () North-Holland Tribological properties of ion beam deposited diamond-like carbon film on silicon nitride Rabi S.
Bhattacharya and Richard L.C. Wu Universal Energy Systems Inc., Dayton, OHUSA Charles S. Yust Oak Ridge National Laboratory, Oak Ridge, TNUSA The present article reports on the Cited by: The mechanical properties of high-quality cubic boron nitride (cBN) films were systematically investigated by nanoindentation measurements performed in both cross-sectional and plan-view directions.
Fundamental Tribological Properties of Ion-Beam-Deposited Boron Nitride Thin Films p Fast Atom Beam Techniques for BN and other Hard Film Formations and Applications to Friction-Reducing CoatingsCited by: 3. Results of fundamental research on the tribological properties of chemical-vapor-deposited (CVD) diamond, diamondlike carbon, and cubic boron nitride films in sliding contact with CVD diamond in.
Cubic boron nitride (c-BN) films were prepared via radio frequency (RF) magnetron sputtering from a hexagonal boron nitride (h-BN) target in a pure N2 plasma.
The composition and microstructure morphology of the BN films with different deposition times under pure N2 plasma or mixed Ar/N2 plasma were investigated with respect to the nucleation and growth by: 1.
Argonne's research team concentrated on the scientific and technical aspects of the project, using a range of state-of-the art analytical and tribological test facilities. Argonne has extensive past experience and expertise in working with boron-based solid and liquid lubrication additives, and has intellectual property ownership of several.
In situ ellipsometry growth characterization of dual ion beam deposited boron nitride thin films E. Franke University of Nebraska-Lincoln, [email protected] Mathias Schubert University of Nebraska-Lincoln, [email protected] John A. Woollam University of Nebraska-Lincoln, [email protected] J.-D.
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Featured Full text of "New Tribological Ways". Finally, the potential of this analytical method for fundamental and applied research in tribology is demonstrated by discussing case studies in the area of solid lubricating carbon-based thin films.
Bec, R.W. Carpick et al., Understanding the hydrogen and oxygen gas pressure dependence of the tribological properties of silicon oxide Author: Filippo Mangolini, J.
Brandon McClimon. Films with a high proportion of sp 2-bonded carbon atoms tend to be relatively soft and behave more like graphite during tribological tests, while films with more sp 3-bonded carbons are more like diamond, and hence they are superhard and provide impressive tribological properties.
If the films are derived from a hydrocarbon source (such as Cited by: Cubic boron nitride: properties and applications Cubic boron nitride (c-BN) was ﬁrst produced in by Robert H. Wentorf, a physical chemicist for the General Electric Company [Wen57], just two years after the ﬁrst artiﬁcial diamonds were synthesized [Bun55].
In analogy to the fabrication of diamond crystals, c-BN was produced from. Ehiasarian, A.P., Hovsepian, P.E., Hultman, L., and Helmersson, U., Comparison of microstructure and mechanical properties of chromium nitride-based coatings deposited by high power impulse magnetron sputtering and by the combined steered cathodic arc/unbalanced magnetron technique, Thin Solid Films, –, ().Cited by: 4.
A TRIBOLOGICAL PROPERTIES OF ION BEAM DEPOSITED DLC FILMS, You-Ock Ahn, Young-Wook Ko, Min-Ho Sohn, Stevens Institute of Technology, Department of Physics/Engineering Physics, Hoboken, NJ; and Seong-In Kim, SKION Corporation, Hoboken, NJ. Gissler W, Baker MA, Haupt J, Gibson PN, Gilmore R, Mollart TP () Phase composition and tribological behavior of titanium boron nitride coatings, DIAMOND FILMS AND TECHNOLOGY 7 (3) pp.
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