# Viscoplastic Properties and Tribological Behavior of Diamond-Like Carbon   Films Using Nanoindentation and Nanoscratch Tests

**Authors:** Viviane Turq (LTDS), Julien Fontaine (LTDS), Jean-Luc Loubet (LTDS),, Denis Mazuyer (LTDS)

arXiv: 0704.0785 · 2007-05-23

## TL;DR

This study investigates the viscoplastic and tribological properties of diamond-like carbon films using nanoindentation and nanoscratch tests, revealing how environmental factors influence their friction and wear behaviors.

## Contribution

It provides new insights into the relationship between viscoplasticity and tribological performance of DLC films through experimental nanoindentation and nanoscratch testing.

## Key findings

- Tribological behavior varies significantly with environment and hydrogen content.
- Viscoplastic properties correlate with low-friction and wear resistance.
- Ambient air testing reveals specific mechanical characteristics of DLC films.

## Abstract

Diamond-Like Carbon (DLC) films have been shown to demonstrate various tribological behaviors: in ultra-high vacuum (UHV), with either friction coefficients as low as 0.01 or less and very mild wear, or very high friction coefficients (>0.4) and drastic wear. These behaviors depend notably on gaseous environment, hydrogen content of the film [1], and on its viscoplastic properties [2,3]. A relation between superlow friction in UHV and viscoplasticity has indeed been established for a-C:H films and confirmed for a fluorinated sample (a-C:F:H). In this study, nanoindentation and nanoscratch tests were conducted in ambient air, using a nanoindentation apparatus, in order to evaluate tribological behaviors, as well as mechanical and viscoplastic properties of different amorphous carbon films.

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Source: https://tomesphere.com/paper/0704.0785