Tribological properties of ternary BCN films with controlled composition and bonding structure

In this work we study the mechanical and tribological properties (hardness, elastic modulus, friction and wear) of BCN coatings with controlled composition and structure. We have considered films of BC x N stoichiometry with different carbon content, and a hexagonal-like structure. The films were gr...

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Published inDiamond and related materials Vol. 13; no. 4; pp. 1532 - 1537
Main Authors Caretti, I., Jiménez, I., Gago, R., Cáceres, D., Abendroth, B., Albella, J.M.
Format Journal Article Conference Proceeding
LanguageEnglish
Published Amsterdam Elsevier B.V 01.04.2004
Elsevier
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Abstract In this work we study the mechanical and tribological properties (hardness, elastic modulus, friction and wear) of BCN coatings with controlled composition and structure. We have considered films of BC x N stoichiometry with different carbon content, and a hexagonal-like structure. The films were grown at room temperature using simultaneous evaporation from two separated boron and carbon sources, assisted by concurrent nitrogen ions. Several techniques were used to assess the composition and bonding structure of the films, including energy dispersive X-ray (EDX), X-ray absorption (XANES) and infrared (IR) spectroscopies. Although the prevalent structure is hexagonal-like, for large carbon contents the films become more amorphous with a diamond-like structure revealed by the decrease of the density of π* states. The diamond-like BC x N films with large carbon content show good mechanical properties and wear resistance.
AbstractList In this work we study the mechanical and tribological properties (hardness, elastic modulus, friction and wear) of BCN coatings with controlled composition and structure. We have considered films of BCxN stoichiometry with different carbon content, and a hexagonal-like structure. The films were grown at room temperature using simultaneous evaporation from two separated boron and carbon sources, assisted by concurrent nitrogen ions. Several techniques were used to assess the composition and bonding structure of the films, including energy dispersive X-ray (EDX), X-ray absorption (XANES) and infrared (IR) spectroscopies. Although the prevalent structure is hexagonal-like, for large carbon contents the films become more amorphous with a diamond-like structure revealed by the decrease of the density of *p* states. The diamond-like BCxN films with large carbon content show good mechanical properties and wear resistance.
In this work we study the mechanical and tribological properties (hardness, elastic modulus, friction and wear) of BCN coatings with controlled composition and structure. We have considered films of BC x N stoichiometry with different carbon content, and a hexagonal-like structure. The films were grown at room temperature using simultaneous evaporation from two separated boron and carbon sources, assisted by concurrent nitrogen ions. Several techniques were used to assess the composition and bonding structure of the films, including energy dispersive X-ray (EDX), X-ray absorption (XANES) and infrared (IR) spectroscopies. Although the prevalent structure is hexagonal-like, for large carbon contents the films become more amorphous with a diamond-like structure revealed by the decrease of the density of π* states. The diamond-like BC x N films with large carbon content show good mechanical properties and wear resistance.
Author Gago, R.
Jiménez, I.
Cáceres, D.
Albella, J.M.
Caretti, I.
Abendroth, B.
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  surname: Cáceres
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  organization: Departamento de Fı́sica Aplicada, Universidad Carlos III de Madrid, Leganés 28911, Spain
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  surname: Albella
  fullname: Albella, J.M.
  organization: Instituto de Ciencia de Materiales de Madrid (CSIC), Madrid 28049, Spain
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Issue 4
Keywords Ion assisted deposition
BCN
Pin on disk
XANES
Amorphous material
Stoichiometry
Ion beam assisted deposition method
Coatings
Thin films
Carbon nitrides
Chemical composition
Wear resistance
Elastic modulus
Boron nitrides
Ternary compounds
Crystallization
Energy dispersive X-ray spectroscopy
Evaporation
Hardness
Experimental study
Growth from vapor
Hexagonal lattices
Diamond lattices
Friction
Tribology
Language English
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Snippet In this work we study the mechanical and tribological properties (hardness, elastic modulus, friction and wear) of BCN coatings with controlled composition and...
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pascalfrancis
elsevier
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StartPage 1532
SubjectTerms BCN
Condensed matter: structure, mechanical and thermal properties
Cross-disciplinary physics: materials science; rheology
Exact sciences and technology
Ion and electron beam-assisted deposition; ion plating
Ion assisted deposition
Materials science
Mechanical and acoustical properties of condensed matter
Mechanical properties of solids
Methods of deposition of films and coatings; film growth and epitaxy
Physics
Pin on disk
Tribology and hardness
XANES
Title Tribological properties of ternary BCN films with controlled composition and bonding structure
URI https://dx.doi.org/10.1016/j.diamond.2003.09.011
https://search.proquest.com/docview/28451297
Volume 13
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