The high level of stress in hard diamond-like carbon (DLC) films limits their maximum thickness and their compliance with substrate deformation. Multilayer films are one approach to overcome these disadvantages. We have prepared multilayers of DLC/TiC, and DLC/WC(x) by filtered cathodic vacuum arc, then investigated and compared their wear properties at room temperature. The films were deposited on polished, oil-hardened AISI 01 tool steel substrates. The number and thickness of layers within the films were varied while the total thickness was approximately constant. Friction coefficients and wear were measured as a function of the atmosphere and load in ball-on-disk tests. Tests were performed in dry nitrogen and in air with relative humid...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Diamond like carbon coatings (DLC) are of great importance for tribological application due to attra...
This chapter provides an overview of the fundamental processes that may govern friction and wear of ...
Metal containing diamond-like carbon (Me-DLC) coatings are widely applied in industrial applications...
Diamond-like carbon (DLC) coating is a well know material for its high hardness, good wear resistanc...
Hard diamond-like carbon (DLC) films were deposited on silicon substrates using a pulsed vacuum arc ...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
Hard diamond-like carbon (DLC) films were deposited on silicon and high-speed steel substrates using...
To clarify the friction durability, both during and after the high-temperature heating of nanometer-...
Diamond-like carbon (DLC) coatings have low friction and high wear resistance compared to bulk mater...
This paper comparatively studies the tribological behaviour of different types of diamond-like carbo...
We studied the tribological properties of extremely thin DLC films at high temperature. The films we...
Tribological investigations are of great importance, especially in the case of novel combinations of...
Diamond-like carbon (DLC) films are amorphous metastable carbon form that provide interesting mechan...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Diamond like carbon coatings (DLC) are of great importance for tribological application due to attra...
This chapter provides an overview of the fundamental processes that may govern friction and wear of ...
Metal containing diamond-like carbon (Me-DLC) coatings are widely applied in industrial applications...
Diamond-like carbon (DLC) coating is a well know material for its high hardness, good wear resistanc...
Hard diamond-like carbon (DLC) films were deposited on silicon substrates using a pulsed vacuum arc ...
Diamond-like carbon (DE) films are characterized by very low friction coefficients, high wear resist...
Hard diamond-like carbon (DLC) films were deposited on silicon and high-speed steel substrates using...
To clarify the friction durability, both during and after the high-temperature heating of nanometer-...
Diamond-like carbon (DLC) coatings have low friction and high wear resistance compared to bulk mater...
This paper comparatively studies the tribological behaviour of different types of diamond-like carbo...
We studied the tribological properties of extremely thin DLC films at high temperature. The films we...
Tribological investigations are of great importance, especially in the case of novel combinations of...
Diamond-like carbon (DLC) films are amorphous metastable carbon form that provide interesting mechan...
Diamond-like carbon (DLC) coatings are used in automotive engines for decreasing friction and increa...
Diamond-like Carbon (DLC) coatings represent an interesting research subject for various groups of ...
Diamond like carbon coatings (DLC) are of great importance for tribological application due to attra...
This chapter provides an overview of the fundamental processes that may govern friction and wear of ...