The dynamic actions of cavitation bubbles in ultrasonic fields can clean surfaces. Gas and vapor cavitation bubbles exhibit different dynamic behaviors in ultrasonic fields, yet little attention has been given to the distinctive cleaning effects of gas and vapor bubbles. We present an experimental investigation of surface cleaning by gas and vapor bubbles in an ultrasonic field. Using high-speed videography, we found that the primary motions of gas and vapor bubbles responsible for surface cleaning differ. Our cleaning tests under different contamination conditions in terms of contaminant adhesion strength and surface wettability reveal that vapor and gas bubbles are more effective at removing contaminants with strong and weak adhesion, res...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...
Changes in the cavitation intensity of gases dissolved in water, including H2, N2, and Ar, have been...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...
The presence of acoustic cavitation in the cleaning liquid is a crucial precondition for cleaning ac...
The occurrence of acoustic cavitation is incorporating a multitude of interdependent effects that st...
We present an ultrasonic device with the ability to locally remove deposited layers from a glass sli...
We present an ultrasonic device with the ability to locally remove deposited layers from a glass sli...
This paper described the experimental studies on the de-fouling mechanism of acoustic cavitation bub...
This paper described the experimental studies on the de-fouling mechanism of acoustic cavitation bub...
As the semiconductor manufacturing technology for ultra-high integration devices continue to shrink ...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
Acoustic cavitation in a liquid medium generates several physical and chemical effects. The oscillat...
We aim to develop a floor-cleaning design by exploiting oscillating bubbles combined with ambient pr...
An investigation of surface cleaning using a swarm of gas bubbles within an acoustically activated s...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...
Changes in the cavitation intensity of gases dissolved in water, including H2, N2, and Ar, have been...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...
The presence of acoustic cavitation in the cleaning liquid is a crucial precondition for cleaning ac...
The occurrence of acoustic cavitation is incorporating a multitude of interdependent effects that st...
We present an ultrasonic device with the ability to locally remove deposited layers from a glass sli...
We present an ultrasonic device with the ability to locally remove deposited layers from a glass sli...
This paper described the experimental studies on the de-fouling mechanism of acoustic cavitation bub...
This paper described the experimental studies on the de-fouling mechanism of acoustic cavitation bub...
As the semiconductor manufacturing technology for ultra-high integration devices continue to shrink ...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
With many emerging applications such as chemical reactions and ultrasound therapy, acoustic cavitati...
Acoustic cavitation in a liquid medium generates several physical and chemical effects. The oscillat...
We aim to develop a floor-cleaning design by exploiting oscillating bubbles combined with ambient pr...
An investigation of surface cleaning using a swarm of gas bubbles within an acoustically activated s...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...
Changes in the cavitation intensity of gases dissolved in water, including H2, N2, and Ar, have been...
Single-wafer cleaning based on megasonic nozzle systems can be used for removing nano-particles. An ...