IP Library Granted Patent US 11,739,749
Granted Patent B2
US 11,739,749 · App. 17/359,444 · Granted Aug 29, 2023

Additively manufactured fluid pumps and portions thereof

Inventor: Travis H. Marshall (West Hartford, CT)
Assignee: Collins Engine Nozzles, Inc.
F04B53/16F04B53/10F04D5/002B33Y80/00
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Quick Facts
Patent No.
US 11,739,749
App. No.
17/359,444
Granted
Aug 29, 2023
Kind
B2
Abstract

In accordance with at least one aspect of this disclosure, embodiments of fluid pumps, pump cases, valve bodies, and volutes are disclosed herein. Embodiments of methods for manufacturing fluid pumps, pump cases, valve bodies, and volutes are also disclosed herein. Embodiments can include additive manufacturing, for example. Certain embodiments can include additively manufacturing a pump case in a tilted orientation, utilizing only coincidental support structure having a unique shape, and with teardrop shaped volute and/or valve body.

Claims (32)

1. An additively manufactured valve body, comprising:

an interior surface;

a plurality of interior annular features integrally formed with and extending radially inwardly from the interior surface and positioned apart in an axial direction relative to each other; and

a support structure formed integrally with and connecting a lower-in-build annular feature of the plurality of interior annular features to a higher-in-build annular feature of the plurality of interior annular features, wherein the support structure includes a filled-in Y-shape.

2. The valve body of claim 1 , wherein the support structure includes a stem and a wide portion extending from the stem.

3. The valve body of claim 2 , wherein the stem of the support structure is integrally formed with and extends from a lower-in-build portion of the lower-in-build annular feature, wherein the wide portion extends from the stem and is integrally formed with and connected to a higher-in-build portion of the higher-in-build annular feature.

4. The valve body of claim 1 , further comprising a plurality of the support structure, one for each annular feature.

5. The valve body of claim 4 , wherein each support structure extends between each successive pair of annular features.

6. The valve body of claim 5 , wherein the valve body is constructed such that there is an angle between the axial direction and a build plate surface on which the valve body is constructed, wherein the angle is greater than about 45 degrees.

7. An additively manufactured fluid pump case, comprising:

the valve body of claim 1 .

8. The fluid pump case of claim 7 , wherein the support structure includes a stem and a wide portion extending from the stem.

9. The fluid pump case of claim 8 , wherein the stem of the support structure is integrally formed with and extends from a lower-in-build portion of the lower-in-build annular feature, wherein the wide portion extends from the stem and is integrally formed with and connected to a higher-in-build portion of the higher-in-build annular feature.

10. The fluid pump case of claim 7 , further comprising a support structure for each annular feature.

11. The fluid pump case of claim 10 , wherein each support structure extends between each successive pair of annular features.

12. The fluid pump case of claim 11 , wherein the valve body is constructed at an angle between the axial direction and a build plate surface of greater than about 45 degrees.

13. A method, comprising:

additively manufacturing a valve body, the valve body comprising:

an interior surface;

a plurality of interior annular features integrally formed with and extending radially inwardly from the interior surface and positioned apart in an axial direction relative to each other; and

a support structure formed integrally with and connecting a lower-in-build annular feature of the plurality of interior annular features to a higher-in-build annular feature of the plurality of interior annular features; and

milling away the support structure while finish-milling the valve body.

14. The method of claim 13 , wherein additively manufacturing includes laser power bed fusion.

15. The method of claim 14 , further comprising removing powder from within the valve body before milling through openings defined by the support structure.

16. The method of claim 13 , further comprising inserting a valve into the valve body.

17. An additively manufactured valve body, comprising:

an interior surface;

a plurality of interior annular features integrally formed with and extending radially inwardly from the interior surface and positioned apart in an axial direction relative to each other; and

a support structure formed integrally with and connecting a lower-in-build annular feature of the plurality of interior annular features to a higher-in-build annular feature of the plurality of interior annular features, wherein the valve body includes a plurality of the support structure, one for each annular feature, wherein each support structure extends between each successive pair of annular features, wherein the valve body is constructed such that there is an angle between the axial direction and a build plate surface on which the valve body is constructed, wherein the angle is greater than about 45 degrees.

18. A method, comprising:

additively manufacturing the valve body of claim 13 ; and

removing the support structure after additively manufacturing the valve body.

Assignments (2)
CHANGE OF NAME Recorded May 23, 2022
From: DELAVAN INC
To: COLLINS ENGINE NOZZLES, INC.
Reel/Frame 060158/0900 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2021
From: MARSHALL, TRAVIS H.
To: DELAVAN INC.
Reel/Frame 057481/0839 →
Continuity (1)
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