IP Library Granted Patent US 12,599,929
Granted Patent B2
US 12,599,929 · App. 17/649,718 · Granted Apr 14, 2026

Powder spraying system, powder spraying nozzle and method

Inventors: Sabina Burmester (Royston, GB); Thomas Hotchkiss (Royston, GB); David Marvell (Royston, GB); Craig Thomson (Royston, GB)
Assignee: Johnson Matthey Public Limited Company
B05D1/12B05B7/1463B05B15/40
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Quick Facts
Patent No.
US 12,599,929
App. No.
17/649,718
Granted
Apr 14, 2026
Kind
B2
Abstract

A powder spraying system comprises a source of dry powder ( 4 ), a spray nozzle ( 25 ), and a supply conduit ( 16 ) connecting the source of dry powder with the spray nozzle. The spray nozzle comprises a nozzle body ( 50 ) having a nozzle outlet ( 51 ), a first conduit ( 52 ) for dry powder, and a second conduit ( 53 ) for gas. The first conduit extends between a powder inlet ( 54 ) in communication with the supply conduit and a powder outlet ( 55 ). The second conduit extends between a gas inlet ( 56 ) and a gas outlet ( 57 ), the gas outlet being located in proximity to the powder outlet such that a gas flowing through the second conduit and out of the gas outlet produces a suction force at the powder outlet to promote flow of a dry powder through the first conduit and out of the powder outlet and the nozzle outlet. The powder outlet and the gas outlet are orientated to promote mixing of the gas with the dry powder. The first conduit ( 52 ) is a straight conduit between the powder inlet ( 54 ) and the powder outlet ( 55 ).

Claims (41)

1 . A powder spraying system comprising:

a) a source of dry powder;

b) a spray nozzle; and

c) a supply conduit connecting the source of dry powder with the spray nozzle;

wherein the spray nozzle comprises:

i) a nozzle body having a nozzle outlet;

ii) a first conduit for dry powder; and

iii) a second conduit for gas;

the first conduit extending between a powder inlet in communication with the @ supply conduit and a powder outlet;

the second conduit extending between a gas inlet and a gas outlet, the gas outlet being located in proximity to the powder outlet such that a gas flowing through the second conduit and out of the gas outlet produces a suction force at the powder outlet to promote flow of a dry powder through the first conduit and out of the powder outlet and the nozzle outlet;

the powder outlet and the gas outlet being orientated to promote mixing of the gas with the dry powder;

wherein the first conduit is a straight conduit between the powder inlet and the powder outlet;

wherein the powder outlet is located at the nozzle outlet of the nozzle body such that an initial mixing of the gas with the dry powder occurs outside of the nozzle body; and wherein the nozzle body comprises one or more secondary gas outlets that are spaced from the nozzle outlet and are orientated to direct one or more secondary flows of gas to impinge on the flow of gas and dry powder exiting the nozzle outlet, the impingement being exterior the nozzle body and at a distance from the nozzle outlet.

2 . The powder spraying system of claim 1 , wherein the powder outlet comprises:

a single powder aperture; or

a plurality of powder apertures, each powder aperture being associated with the gas outlet of the second conduit.

3 . The powder spraying system of claim 2 , wherein the each powder aperture has an orifice diameter of 1.0 to 2.5 mm.

4 . The powder spraying system of claim 1 , wherein the nozzle outlet is located in a first end face of the nozzle body and the powder inlet is located in an opposite, second end face of the nozzle body.

5 . The powder spraying system of claim 1 , wherein the first conduit is parallel toa longitudinal axis of the nozzle body.

6 . The powder spraying system of claim 1 , wherein the first conduit comprises a bore whose internal diameter decreases from a first diameter at the powder inlet to a second diameter at or adjacent the powder outlet.

7 . The powder spraying system of claim 1 , wherein the first conduit comprises a bore whose internal diameter smoothly decreases from a first diameter at the powder inlet to a second diameter at or adjacent the powder outlet.

8 . The powder spraying system of claim 1 , wherein the first conduit comprises a bore whose internal diameter decreases from a first diameter at the powder inlet to a second diameter at or adjacent the powder outlet exclusively via one or more tapered sections.

9 . The powder spraying system of claim 1 ,

wherein the one or more secondary gas outlets are orientated to direct the one or more secondary flows of gas such that their angle of incidence with the flow of gas and dry powder exiting the nozzle outlet is 45 to 75°.

10 . The powder spraying system of claim 9 , wherein the one or more secondary gas outlets comprise 2, 4, 6, 8 or more secondary gas outlets; and optionally the one or more secondary gas outlets form 1, 2, 3, 4 or more pairs of secondary gas outlets, wherein each pair of secondary gas outlets comprises two secondary gas outlets that are located on opposite sides of the nozzle outlet from each other.

11 . The powder spraying system of claim 9 , wherein the nozzle body comprises a third conduit, separate from the second conduit, for supplying gas to the secondary gas outlets.

12 . The powder spraying system of claim 1 , wherein the source of dry powder is aligned with the first conduit of the nozzle body.

13 . The powder spraying system of claim 1 , wherein the supply conduit between the source of dry powder and the spray nozzle is straight.

14 . The powder spraying system of claim 1 , wherein the spray nozzle is orientated such that the nozzle outlet faces downwards and the source of dry powder is located directly above the spray nozzle.

15 . The powder spraying system of claim 1 , further comprising a clean out nozzle located within the first conduit, the clean out nozzle being connected to a supply of gas and having an outlet orientated towards the powder outlet.

16 . A powder spray nozzle comprising:

i) a nozzle body having a nozzle outlet;

ii) a first conduit for dry powder; and

iii) a second conduit for gas;

the first conduit extending between a powder inlet in communication with a supply conduit and a powder outlet;

the second conduit extending between a gas inlet and a gas outlet, the gas outlet being located in proximity to the powder outlet such that a gas flowing through the second conduit and out of the gas outlet produces a suction force at the powder outlet to promote flow of a dry powder through the first conduit and out of the powder outlet and the nozzle outlet;

wherein the first conduit is a straight conduit between the powder inlet and the powder outlet;

wherein the powder outlet is located at the nozzle outlet of the nozzle body such that an initial mixing of the gas with the dry powder occurs outside of the nozzle body; and

wherein the nozzle body comprises one or more secondary gas outlets that are spaced from the nozzle outlet and are orientated to direct one or more secondary flows of gas to impinge on the flow of gas and dry powder exiting the nozzle outlet, the impingement being exterior the nozzle body and at a distance from the nozzle outlet.

17 . The powder spraying nozzle of claim 16 , wherein the nozzle outlet is located in a first end face of the nozzle body and the powder inlet is located in an opposite, second end face of the nozzle body.

18 . Apparatus for treating a filter for filtering particulate matter from exhaust gas, the apparatus comprising the powder spraying system of claim 1 or the powder spray nozzle of claim 16 .

Assignments (3)
CHANGE OF ADDRESS Recorded Jan 14, 2026
From: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 074703/0733 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 13, 2022
From: THOMSON, CRAIG
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 060180/0169 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2022
From: BURMESTER, SABINA; HOTCHKISS, THOMAS; MARVELL, DAVID
To: JOHNSON MATTHEY PUBLIC LIMITED COMPANY
Reel/Frame 059906/0001 →
Continuity (2)
Provisional Application 63200076 · Feb 12, 2021
Related Publication 20220258201A1 · Aug 18, 2022
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