This paper presents a numerical analysis of an innovative method for nano-scale particle deposition, called Electrostatic-forceassisted cold gas dynamic spray (ECGDS). The transport characteristics of nano-scale charged particles in supersonic gas stream coupled with electrostatic field are simulated. Outside the nozzle, there exists bow shock near the substrate, which causes steep pressure increase across the shock. When the gas flow penetrates the bow shock and approaches to the substrate, the carrier gas speed decreases to nearly zero. In this study, electrostatic force is used to assist the charged particle to achieve high velocity upon impact of the substrate. The effect of electrostatic field to the velocity distribution of charged pa...
A new electrostatic propulsion system that utilizes micro- and nano-particles is under development. ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76874/1/AIAA-2006-4803-539.pd
The cold spray deposition process is an emerging technology for coating surfaces. The process is bas...
This paper presents a numerical analysis of an innovative method for nano-scale particle deposition,...
This paper presents a numerical analysis of an innovative method for nano-scale particle deposition,...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The dispersion and deposition of nano-particles in laminar flows in the presence of an electric fiel...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
This communication uncovers missing fundamental elements and an expanded model of gas phase electrod...
Electrostatic charging of powders is a relevant phenomenon for a number of industrial applications. ...
This communication uncovers missing fundamental elements and an expanded model of gas phase electrod...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76237/1/AIAA-2009-5090-652.pd
A new electrostatic propulsion system that utilizes micro- and nano-particles is under development. ...
A new electrostatic propulsion system that utilizes micro- and nano-particles is under development. ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76874/1/AIAA-2006-4803-539.pd
The cold spray deposition process is an emerging technology for coating surfaces. The process is bas...
This paper presents a numerical analysis of an innovative method for nano-scale particle deposition,...
This paper presents a numerical analysis of an innovative method for nano-scale particle deposition,...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
The dispersion and deposition of nano-particles in laminar flows in the presence of an electric fiel...
The particle velocity in cold gas dynamic spraying (CGDS) is one of the most important factors that ...
This communication uncovers missing fundamental elements and an expanded model of gas phase electrod...
Electrostatic charging of powders is a relevant phenomenon for a number of industrial applications. ...
This communication uncovers missing fundamental elements and an expanded model of gas phase electrod...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76237/1/AIAA-2009-5090-652.pd
A new electrostatic propulsion system that utilizes micro- and nano-particles is under development. ...
A new electrostatic propulsion system that utilizes micro- and nano-particles is under development. ...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76874/1/AIAA-2006-4803-539.pd
The cold spray deposition process is an emerging technology for coating surfaces. The process is bas...