Related Experiment Video
Updated: Jun 13, 2026

Processing of Bulk Nanocrystalline Metals at the US Army Research Laboratory
Published on: March 7, 2018
Designing Thermomechanically Stable Nanocrystalline Alloys for Low Friction and Wear: A Perspective
Frank W DelRio1, Rachel A Knapp2, Nicolas Argibay3
1Sandia National Laboratories, Albuquerque, New Mexico 87185, United States.
Abstract:
In this Perspective, we discuss recent work and future trends on the usage of thermomechanically stable and self-lubricating nanocrystalline (NC) alloys for low friction and wear applications. The theoretical underpinnings and mechanistic framework for attaining and maintaining low friction and wear in metal contacts are presented. Initial work on stress, time, and temperature-dependent changes in friction and wear in NC alloys validates the models, demonstrating lower friction from decreased interfacial strength, contact pressure, sliding speed, and temperature and increased roughness and material hardness. Subsequent work reveals that NC Pt-Au, metal nitrides, complex-concentrated, and high-entropy alloys come with additional stabilization factors such as low-friction carbon tribofilms and oxide/amorphous-crystalline layers but are still susceptible to destabilization factors including irradiation and adverse environmental conditions.
Related Concept Videos
Dry Friction
To illustrate this concept, imagine a wooden crate resting on a rough, non-uniform horizontal surface. When an external force is applied to...
Bearings: Problem Solving
Journal Bearings
To better understand the concept of journal bearings, consider a rope winch with dry or...

