Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curves) are applied to study the effects of femtosecond-laser ablation and micropatterning of diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) on the friction behavior at the nano and microscale. A femtosecond laser (wavelength 515 nm, pulse duration 320 fs, pulse repetition rate 101 kHz) is used to fabricate line-like micropatterns (microgrooves) on the DLN films under ablation conditions with a scanning beam. Lateral force microscopy (LFM) studies of the laser-ablated microgrooves have revealed wearing-tip-induced nanofriction changes during AFM imaging with Si tip, characterized by much lower friction forces inside and around the micr...
Atomic force microscopy (AFM) is a powerful tool for high resolution surface measurements, nanolitho...
Wear is the loss or displacement of material due to contact or relative motion between bodies. Wear ...
The authors describe a novel approach to the measurement of nanofriction, and demonstrate the applic...
Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curv...
We report on femtosecond laser surface modification and microstructuring of diamond-like nanocomposi...
Laser surface micropatterning (texturing) of hard materials and coatings is an effective technique t...
Reduction of friction at very low normal loads and for very small contact areas is important for the...
Diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) are characterized by their unique structur...
As mechanical devices scale down to micro/nano length scales, it is crucial to understand friction a...
Wear mechanisms including fracture and plastic deformation at the nanoscale are central to understan...
The study of friction and wear processes on the nanometer scale is related to the development of the...
Femtosecond laser ablation processing is applied for surface modification and micropatterning of diam...
Atomic force microscopy based microwear experiments allow deeper understanding of mechanisms of wear...
The wear resistance of silicon probe is a crucial issue to assure the quality and reliability of ato...
We study the properties of laser-induced periodic surface structures (LIPSS) formed on titanium-dope...
Atomic force microscopy (AFM) is a powerful tool for high resolution surface measurements, nanolitho...
Wear is the loss or displacement of material due to contact or relative motion between bodies. Wear ...
The authors describe a novel approach to the measurement of nanofriction, and demonstrate the applic...
Contact-mode atomic force microscopy (AFM) techniques (lateral force microscopy, force-distance curv...
We report on femtosecond laser surface modification and microstructuring of diamond-like nanocomposi...
Laser surface micropatterning (texturing) of hard materials and coatings is an effective technique t...
Reduction of friction at very low normal loads and for very small contact areas is important for the...
Diamond-like nanocomposite (DLN) films (a-C:H:Si:O films) are characterized by their unique structur...
As mechanical devices scale down to micro/nano length scales, it is crucial to understand friction a...
Wear mechanisms including fracture and plastic deformation at the nanoscale are central to understan...
The study of friction and wear processes on the nanometer scale is related to the development of the...
Femtosecond laser ablation processing is applied for surface modification and micropatterning of diam...
Atomic force microscopy based microwear experiments allow deeper understanding of mechanisms of wear...
The wear resistance of silicon probe is a crucial issue to assure the quality and reliability of ato...
We study the properties of laser-induced periodic surface structures (LIPSS) formed on titanium-dope...
Atomic force microscopy (AFM) is a powerful tool for high resolution surface measurements, nanolitho...
Wear is the loss or displacement of material due to contact or relative motion between bodies. Wear ...
The authors describe a novel approach to the measurement of nanofriction, and demonstrate the applic...