We present a detailed study of the influence of ultrasonic surface acoustic waves (SAWs) on point-contact friction. Lateral force microscopy (LFM) and multimode scanning acoustic force microscopy (SAFM) were used to measure and to distinguish between the influence of in-plane and vertical surface oscillation components on the cantilever's torsion and bending. The experiments show that friction can locally be suppressed by Rayleigh-type SAWs. Through the mapping of crossed standing wave fields, the wave amplitude dependence of the friction is visualized within microscopic areas without changing other experimental conditions. Above a certain wave amplitude threshold, friction vanishes completely. We found that the friction reduction effect is...
A physical effect of ultrasound induced lubricity is reported. We studied the dynamic friction depen...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
The combination of ultrasound with atomic force microscopy (AFM) opens the high lateral resolution o...
We present the study of the influence of surface acoustic waves (SAWs) on point-contact friction in ...
We present a study of the origin of ultrasound-induced friction reduction in microscopic mechanical ...
We studied dynamic friction phenomena introduced by ultrasonic surface acoustic waves using a scanni...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
Conventional friction force microscopy (FFM) is widely used for tribological studies of engineering ...
The ultrasonic friction mode of an atomic force microscope is a scanning probe technique allowing on...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
We present the submicron visualization of surface acoustic wave (SAW) fields within interdigital tra...
The ultrasonic friction mode of an atomic force microscope is a scanning probe technique allowing on...
We used multimode scanning acoustic force microscopy (SAFM) for studying noncollinearly propagating ...
In this paper, the mechanism of reduction of friction by ultrasonic vibration has been studied. Expe...
A physical effect of ultrasound induced lubricity is reported. We studied the dynamic friction depen...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
The combination of ultrasound with atomic force microscopy (AFM) opens the high lateral resolution o...
We present the study of the influence of surface acoustic waves (SAWs) on point-contact friction in ...
We present a study of the origin of ultrasound-induced friction reduction in microscopic mechanical ...
We studied dynamic friction phenomena introduced by ultrasonic surface acoustic waves using a scanni...
We present a scanning acoustic force microscope (SAFM) for the study of surface acoustic wave (SAW) ...
Conventional friction force microscopy (FFM) is widely used for tribological studies of engineering ...
The ultrasonic friction mode of an atomic force microscope is a scanning probe technique allowing on...
We present a novel method for the investigation of surface acoustic wave (SAW) fields with nanometer...
We report about a new technique for the investigation of SAW fields within SAW devices reaching subm...
We present the submicron visualization of surface acoustic wave (SAW) fields within interdigital tra...
The ultrasonic friction mode of an atomic force microscope is a scanning probe technique allowing on...
We used multimode scanning acoustic force microscopy (SAFM) for studying noncollinearly propagating ...
In this paper, the mechanism of reduction of friction by ultrasonic vibration has been studied. Expe...
A physical effect of ultrasound induced lubricity is reported. We studied the dynamic friction depen...
We report the first experimental observation of surface acoustic waves (SAWs) launched from a single...
The combination of ultrasound with atomic force microscopy (AFM) opens the high lateral resolution o...