IP Library Granted Patent US 11,484,988
Granted Patent B2
US 11,484,988 · App. 15/417,546 · Granted Nov 1, 2022

Dry wet blast media blasting system

Inventor: Phuong Taylor Nguyen (Richmond, TX)
Assignee: Axxiom Manufacturing, Inc.
B24C5/04
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Quick Facts
Patent No.
US 11,484,988
App. No.
15/417,546
Granted
Nov 1, 2022
Kind
B2
Abstract

A wet media blasting system with a water injection system that provides more uniform distribution of the water, air and media components for achieving better application of the mixture while minimizing the amount of water required to contain and minimize or eliminate airborne particulate matter such as dust produced during the blasting operation. By more thoroughly mixing the water into the abrasive/water mix, the amount of water required is reduced. The abrasive feed is placed and shaped to optimize spray coverage and minimize abrasive flow into injection space thus mitigating water nozzle clogs. The abrasive flow is shaped as it is released from the metering valve in order to tighten the abrasive flow before it enters into the blast air stream. The shaped and tightened abrasive flow is maintained at the lower portion of the blast air stream. This positions the abrasive flow in optimum placement for spray wetting the abrasive as it flows into and through the nozzle. This also mitigates nozzle clogging by directing most of the abrasive flow away from the water spray nozzle port.

Claims (51)

1. A wet dry blast system of the type having a source of pressurized air and a source of pressurized water, and thus providing pressurized air flow and pressurized water flow, and an abrasive media source to provide abrasive media for mixing with the pressurized air flow and the pressurized water flow for creating a wet abrasive media mix for wet blasting a work surface, the system further comprising:

a blast hose configured to convey the wet abrasive media mix;

a blast nozzle coupled with the blast hose, and configured to release and deliver the wet abrasive media mix to the work surface;

the source of pressurized air for delivering the pressurized air flow to an abrasive release conduit upstream of a water injection conduit;

the source of abrasive media configured to introduce abrasive media into the abrasive release conduit;

a water injection nozzle oriented to inject pressurized water flow in a radial manner into the water injection conduit downstream of the abrasive release conduit; and

a differential pressure gauge positioned between and in fluid communication with each of the pressurized water flow and the pressurized air flow for monitoring and measuring the water pressure relative to the air pressure in order to provide an indication of a rate of the water flow from the source of pressurized water for use in controlling the water flow in the wet abrasive media mix, whereby the abrasive media is introduced into the pressurized air flow before the pressurized water flow is introduced.

2. The wet dry blast system of claim 1 , wherein the wet dry blast system is operably configured for selectively disabling the source of pressurized water such that the mixture of pressurized air and abrasive media is delivered to the blast nozzle in a dry mix.

3. The wet dry blast system of claim 1 , wherein the wet dry blast system is operably configured for selectively disabling the source of abrasive media such that the pressurized water and air is delivered to the blast nozzle as pressurized water source for providing a water wash down for the system.

4. The wet dry blast system of claim 1 , the dry blast system further comprising a water pressure regulator for permitting adjustment to the water pressure,

wherein the indication of the pressure differential gauge and the water pressure regulator are operable together in combination to provide control of the water flow rate.

5. The wet dry blast system of claim 1 , wherein the differential pressure gauge facilitates control of keeping the water pressure greater than the air pressure;

wherein the abrasive media is introduced into the abrasive release conduit and into the flow of pressurized air downstream of the source of pressurized air and upstream of the source of pressurized water,

wherein the blast hose is coupled with the water injection conduit, and

wherein a media release orifice is configured for directing the flow of abrasive media along a lower portion of the media release flow conduit.

6. The wet dry blast system of claim 5 , wherein the blast hose has a first blast hose end coupled with the water injection conduit and a second blast hose end coupled with the blast nozzle, wherein there is a media release orifice configured to introduce the abrasive media into the abrasive release conduit and into the pressurized air flow from the pressurized air source, and wherein the pressurized water source introduces water into the water injection conduit downstream of the media release orifice for generating the wet abrasive media mix for release into the blast hose, and eventually out of the blast nozzle.

7. The wet try blast system of claim 6 , wherein a size of the media release orifice is determined by a restrictor.

8. The wet dry blast system of claim 7 , wherein an interior diameter of the water injection conduit at the point of water injection is larger than another interior diameter of the release conduit at the point where the media is introduced from the release orifice.

9. The wet dry blast system of claim 1 , the system configured to provide four separate modes of operation, the system further comprising:

a. the first mode operable to form and to provide the wet abrasive media mixture for wet blasting;

b. a second mode wherein only the source of abrasive media and the source of pressurized air are activated to provide a dry abrasive delivery for dry blasting;

c. a third mode wherein only the source of pressurized air is activated to provide an air-only drying system; and

d. a fourth mode wherein only the source of pressurized water is activated to provide a water-only rinse.

10. The wet dry blast system of claim 9 , wherein the first mode and the second mode are operable with at least 80 psig air pressure, and wherein the third mode and the fourth mode are operable at less than 35 psig air pressure.

11. The wet dry blast system of claim 10 , wherein the blast hose has a first blast hose end coupled with the water injection conduit and a second blast hose end coupled with the blast nozzle, wherein there is a media release orifice configured to introduce the abrasive media into the abrasive release conduit and into the pressurized air flow from the pressurized air source, and wherein the pressurized water source introduces water into the water injection conduit downstream of the media release orifice for generating the wet abrasive media mix for release into the blast hose, and eventually out of the blast nozzle.

12. The wet dry blast system of claim 11 , wherein a size of the media release orifice is determined by a restrictor.

13. The wet dry blast system of claim 1 , wherein a water injection radial orientation is within plus/minus 70 degrees of a reference vertical.

14. The wet dry blast system of claim 1 , wherein a water injection radial orientation is within plus/minus 70 degrees of a reference vertical.

15. A wet dry blast system, the system further comprising:

a source of pressurized air for providing a pressurized air flow;

a source of pressurized water for providing a pressurized water flow;

an abrasive media source to provide an abrasive media;

an abrasive release conduit for receiving the abrasive media;

a water injection conduit coupled with the abrasive release conduit, and positioned downstream therefrom, whereby the pressurized air flow, the pressurized water, and the abrasive media form a wet abrasive media mix;

a water injection nozzle oriented to inject the pressurized water flow in a radial manner into the water injection conduit downstream of the abrasive release conduit;

a blast hose configured to convey the wet abrasive media mix received from the water injection conduit;

a blast nozzle coupled with the blast hose, and configured to release and deliver the wet abrasive media mix from the blast hose to a work surface; and

a differential pressure gauge positioned between and in fluid communication with each of the pressurized water flow and the pressurized air flow for monitoring and measuring the water pressure relative to the air pressure in order to provide an indication of a rate of the water flow from the source of pressurized water for use in controlling the water flow in the wet abrasive media mix, whereby the abrasive media is introduced into the pressurized air flow before the pressurized water flow is introduced.

16. The wet dry blast system of claim 15 , wherein the differential pressure gauge facilitates control of keeping the water pressure greater than the air pressure, and wherein a media release orifice is configured for directing the flow of abrasive media along a lower portion of the media release flow conduit.

17. The wet try blast system of claim 15 , wherein a size of the media release orifice is determined by a restrictor.

18. The wet dry blast system of claim 17 , wherein an interior diameter of the water injection conduit at the point of water injection is larger than another interior diameter of the release conduit at the point where the media is introduced from the release orifice.

19. A wet dry blast system, the system further comprising:

a source of pressurized air for providing a pressurized air flow;

a source of pressurized water for providing a pressurized water flow;

an abrasive media source to provide an abrasive media;

an abrasive release conduit for receiving the abrasive media;

a water injection conduit coupled with the abrasive release conduit, and positioned downstream therefrom, whereby the pressurized air flow, the pressurized water, and the abrasive media form a wet abrasive media mix;

a water injection nozzle oriented to inject the pressurized water flow in a radial manner into the water injection conduit downstream of the abrasive release conduit;

a blast hose configured to convey the wet abrasive media mix received from the water injection conduit;

a blast nozzle coupled with the blast hose, and configured to release and deliver the wet abrasive media mix from the blast hose to a work surface; and

a differential pressure gauge positioned between and in fluid communication with each of the pressurized water flow and the pressurized air flow for monitoring and measuring the water pressure relative to the air pressure in order to provide an indication of a rate of the water flow from the source of pressurized water for use in controlling the water flow in the wet abrasive media mix, wherein the differential pressure gauge facilitates control of keeping the water pressure greater than the air pressure, and wherein a media release orifice is configured for directing and tightening the flow of abrasive media along a lower portion of the media release flow conduit.

Assignments (3)
SECURITY INTEREST Recorded Sep 26, 2024
From: AXXIOM MANUFACTURING, INC.
To: SH6 FUNDING LLC
Reel/Frame 068711/0768 →
SECURITY INTEREST Recorded Sep 23, 2024
From: AXXIOM MANUFACTURING, INC.
To: ZIONS BANCORPORATION, N.A. DBA AMEGY BANK
Reel/Frame 068658/0333 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2021
From: PHUONG TAYLOR NGUYEN
To: AXXIOM MANUFACTURING, INC.
Reel/Frame 055627/0337 →