This disclosure relates to a fluid element, such as an impeller, having front and rear shrouds integral with the blades.
One type of fluid machine, such as a turbomachine pump, has a radial impeller with front and rear shrouds integral with the impeller blades to provide an interior pumping surface. The blades are circumferentially arranged to provide circumferentially spaced exits about the impeller outer perimeter. Trailing ends of the blades extend to the impeller outer perimeter.
The front and rear shrouds respectively include first and second perimeter surfaces at the impeller outer perimeter. Typically the first and second perimeter surfaces have thicknesses that are the same as one another. Some impellers have a thick rear shroud that provides a second perimeter surface that is thicker than the first perimeter surface. Other impellers have the trailing edges and the immediately surrounding portions of the first and second perimeter surfaces recessed radially inwardly from the impeller outer perimeter to accommodate a balance piston.
The disclosure can be further understood by reference to the following detailed description when considered in connection with the accompanying drawings wherein:
Like numerals in the Figures indicate like elements.
A pump 10 is schematically illustrated in
The impeller 22 includes circumferentially arranged blades 24 each extending from a leading edge 26 at the inlet 16 to a trailing edge 28 at the outlet 18. The example impeller 22 includes six blades 24. As shown in
An inner portion of the rear shroud 32 provides a hub 34, which is supported by the shaft 14. The front and rear shrouds 30, 32 respectively include outer cylindrical portions that provide first and second seal lands 36, 38, respectively. Referring to
The front and rear shrouds 30, 32 respectively include first and second perimeter surfaces 42, 44 that are flush with the trailing edge 28 to provide circumferential exits 33, best shown in
The front and rear shrouds 30, 32 have an axial thickness extending from the pumping surface to front and rear outer surfaces 48, 50. The front and rear outer surfaces 48, 50 opposite each include portions adjoining the trailing edge 28 that are parallel with one another. The first and second perimeter surfaces 42, 44 have first and second thicknesses T1, T2, respectively, at the exit 33 and extending in the axial direction. Typically, the first and second thicknesses T1, T2 are equal to one another. The disclosed impellers 122, 222, 322 (
In the example shown in
In the example shown in
In the example shown in
Although example embodiments have been disclosed, a worker of ordinary skill in this art would recognize that certain modifications would come within the scope of the claims. For that reason, the following claims should be studied to determine their true scope and content.
This invention was made with government support from the National Aeronautics and Space Administration under Contract No.: NNM06AB13C. The government may have certain rights to this invention pursuant to Contract No. NNM06AB13C awarded by the National Aeronautics and Space Administration.
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Number | Date | Country |
---|---|---|
S 55-51992 | Apr 1980 | JP |
S 55-146274 | Nov 1980 | JP |
WO 2006133363 | Dec 2006 | WO |
Entry |
---|
Kodama, Pump Impeller, Apr. 16, 1980, Abstract of JPS55-51992A. |
Mimori, WaterTurbine Runner, Nov. 14, 1980, Abstract of JPS55-146274A. |
Number | Date | Country | |
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20130170993 A1 | Jul 2013 | US |