Nanoparticle surface-modified carbonaceous material and methods for producing such material
US-2018072575-A1 · Mar 15, 2018 · US
US11278956B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11278956-B2 |
| Application number | US-201816499096-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 29, 2018 |
| Priority date | Apr 10, 2017 |
| Publication date | Mar 22, 2022 |
| Grant date | Mar 22, 2022 |
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A powder deagglomerator includes a vertical flow chamber, a powder inlet tube, and an ultrasonic horn vibrationally coupled to an ultrasonic transducer. The vertical flow chamber includes an outer wall, powder outlet port, and a mounting port sealably engaging an ultrasonic horn. The powder inlet tube extends through the outer wall and is aligned to dispense agglomerated powder in a gaseous stream downward onto a distal end of the ultrasonic horn. A method of using the powder deagglomerator to deagglomerate a powder is also disclosed.
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What is claimed is: 1. A powder deagglomerator comprising: a vertical flow chamber having a longitudinal axis and comprising: an outer wall; a powder outlet port disposed at an upper end of the vertical flow chamber; a mounting port sealably engaging an ultrasonic horn disposed at a lower end of the vertical flow chamber opposite the upper end; a powder inlet tube aligned to dispense agglomerated powder in a gaseous stream downward onto a distal end of the ultrasonic horn, wherein the powder inlet tube has an end disposed along the longitudinal axis, and wherein a gap between the powder inlet tube and the distal end of the ultrasonic horn face is set at a gap of 0.76 to 6.35 millimeters; and an ultrasonic transducer vibrationally coupled to the ultrasonic horn. 2. The powder deagglomerator of claim 1 , further comprising a pressure housing secured to the mounting port such that the ultrasonic horn extends within the pressure housing. 3. The powder deagglomerator of claim 1 , wherein the upper and lower ends of the vertical flow chamber are inwardly tapered toward the longitudinal axis. 4. The powder deagglomerator of claim 1 , wherein the ultrasonic horn has a cylindrical distal end vertically disposed within the vertical flow chamber. 5. A method of deagglomerating a powder comprising agglomerated particles, the method comprising: providing a powder deagglomerator comprising: a vertical flow chamber having a longitudinal axis and comprising: an outer wall; a powder outlet port disposed at an upper end of the vertical flow chamber; a mounting port sealably engaging an ultrasonic horn disposed at a lower end of the vertical flow chamber opposite the upper end; a powder inlet tube aligned to supply an agglomerated powder comprising agglomerated constituent particles entrained in a gaseous stream downward onto a distal end of the ultrasonic horn, wherein the powder inlet tube has an end disposed along the longitudinal axis, and wherein a gap between the powder inlet tube and the distal end of the ultrasonic horn face is set at a gap of 0.76 to 6.35 millimeters; and an ultrasonic transducer vibrationally coupled to the ultrasonic horn; and introducing the agglomerated powder entrained in the gaseous stream into the powder inlet tube such that at least some of the agglomerated constituent particles contact the ultrasonic horn and are deagglomerated to provide unagglomerated constituent particles, whereby at least some of the unagglomerated constituent particles are entrained in the gaseous stream at the powder outlet port. 6. The method of claim 5 , wherein the powder deagglomerator further comprises a pressure housing secured to the mounting port such that the ultrasonic horn extends within the pressure housing. 7. The method of claim 5 , wherein the upper and lower ends of the vertical flow chamber are inwardly tapered toward the longitudinal axis. 8. The method of claim 5 , wherein the ultrasonic horn has a cylindrical distal end vertically disposed within the vertical flow chamber. 9. The method of claim 5 , wherein the agglomerated constituent particles comprise agglomerated graphite particles. 10. The method of claim 5 , wherein the unagglomerated constituent particles have an average particle size of 0.1 to 100 microns.
After-treatment · CPC title
Treatment of metallic powder (mixing with lubricating or binding agents or with organic material B22F1/10) · CPC title
Aspects linked to processes or compositions used in powder metallurgy · CPC title
of the fluidised-bed type · CPC title
Use of auxiliary physical effects, e.g. ultrasonic waves or irradiation, for disintegrating · CPC title
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