Impeller for a Centrifugal Pump, and Centrifugal Pump
20180163741 · 2018-06-14
Inventors
Cpc classification
F04D29/2288
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/2294
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D7/045
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/245
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2250/15
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D7/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An impeller for a centrifugal pump that includes a housing, an inlet, an outlet, and a chamber in the housing and in fluidic contact with the inlet and the outlet is described. The impeller is rotatably accommodated in the chamber, and a gap is between a rear side of the impeller and a housing wall. To improve the compatibility with media forming deposits, the impeller has at least one scraper that is integrally bonded at a first position and a second position to the impeller. The first position and the second position are at a distance from each other, and a cleanable clearance is in this space between the scraper and the rear side of the impeller.
Claims
1. An impeller for a centrifugal pump comprising a housing, an inlet, an outlet, and a chamber in the housing in fluidic contact with the inlet and the outlet, wherein the impeller is rotatably accommodated in the chamber and a gap between a rea side of the impeller and a housing wall of the housing; a scraper integrally bonded with the impeller at a first location and a second location, wherein the first location and the second location are spaced apart from each other; and a cleanable clearance in a space between the first location and the second location of the scraper and the rear side.
2. The impeller according to claim 1, wherein the scraper has bottom recesses on a side facing the impeller.
3. The impeller according to claim 2, wherein the rear side has a structure in the form of circular peripheral grooves and peripheral bars.
4. The impeller according to claim 1, wherein a radial extension of the scraper starts at a defined distance from a hub of the impeller.
5. The impeller according to one of the preceding claims claim 1, wherein the scraper is designed and arranged so that it is balanced relative to a rotary axis of the centrifugal pump.
6. The impeller according to claim 1, wherein a structure on the rear side of the impeller comprises at least one radial groove extending in a radial direction.
7. The impeller according to claim 1, wherein the scraper entirely covers a radius of the impeller.
8. The impeller according to claim 1, wherein the scraper has top recesses in a side facing away from the impeller.
9. The impeller according to claim 1, wherein the scraper is designed segmented and comprises at least one first segment and one second segment.
10. The impeller according to claim 1, wherein the scraper is designed bent.
11. The impeller according to claim 10, wherein a curvature of the scraper follows a contour of a tooth of the impeller.
12. A centrifugal pump comprising a housing, an inlet, an outlet and a chamber provided in the housing in fluidic contact with the inlet and the outlet, an impeller rotatably accommodated in the chamber, a gap provided between a rear side of the impeller and a housing wall of the housing, a scraper integrally bonded with the impeller at a first location and a second location, wherein the first location and the second location are spaced apart from each other, and a cleanable clearance in a space between the first location and the second location of the scraper and the rear side.
13. The centrifugal pump according to claim 12, further comprising: a spacing element arranged between a cover and a floor and connected to the cover and the floor, wherein an axial width of the gap is at least as large as an axial thickness of the spacing element.
14. The centrifugal pump according to claim 12, wherein the scraper has bottom recesses on a side facing the impeller.
15. The centrifugal pump according to claim 12, wherein the rear side includes circular peripheral grooves and peripheral bars.
16. The centrifugal pump according to claim 12, wherein a radial extension of the scraper starts at a defined distance from a hub of the impeller.
17. The centrifugal pump according to claim 12, wherein the scraper is balanced relative to a rotary axis of the centrifugal pump.
18. The centrifugal pump according to claim 12, wherein the scraper entirely covers a radius of the impeller.
19. The centrifugal pump according to claim 12, wherein the scraper has top recesses in a side facing away from the impeller.
20. The centrifugal pump according to claim 12, wherein the scraper has a curvature that follows a contour of a tooth of the impeller.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0026]
[0027] The centrifugal pump 1 is shown in
[0028] The impeller 14 is rotatably supported by a pump shaft 17 about a rotary axis R in an overhung arrangement that, for its part, is rotatably fastened to a motor shaft 18. With a key 19 that is arranged to engage in the pump shaft 17 and the motor shaft 18, non-rotation of the shafts relative to each other can be effectuated. When transitioning into the chamber 13, the pump shaft 17 penetrates a seal arrangement that is designed as a sliding ring seal and for example comprises a sliding ring 20 rotatably attached to the pump shaft 17, and a sliding ring 21 arranged in the housing. This seal arrangement can also be designed as a purged sliding ring seal, for example according to the design in DE 203 16 570 U1.
[0029] Between the housing wall 23 that is formed on the floor 12 and a rear side 22 of the impeller 14 that faces the housing wall 23, a gap 24 is formed with a gap width S. In applications of the centrifugal pump 1 in which solid-forming media enter the chamber 13, solids can deposit on the housing wall 23 and/or the rear side 22. The running of the impeller 14 is impaired or rendered impossible when these deposits have filled up the gap width S. A scraper 25 or a plurality of such scrapers 25 is therefore arranged on the rear side 22 and is designed such that solid deposits on the housing wall 23 are reduced by scraping until the gap 24 is free enough to permit free rotation of the impeller 14.
[0030] Alternatively or in addition to the scraper 25, a spacing element 26 can be provided between the cover 11 and the floor 12, advantageously between the cover flange 8 and the floor flange 9. The centrifugal pump 1 can be equipped therewith for applications in which solid formation in the gap 24 is anticipated or observed. The gap width S is increased by this spacing element 26 beyond the standard extent. A first seal 27 is provided between the spacing element 26 and the cover 11. A second seal 28 is located between the floor 12 and the spacing element 26. The first seal 27 and the second seal 28 establish a reliable seal of the chamber 13 against the surroundings 29 of the centrifugal pump 1. Advantageously, the seals 27 and 28 are designed and held according to hygienic standards such as DIN 11864.
[0031] The chamber 13 can have a peripheral channel 30 that extends in an axial direction as a cylindrical projection in the direction of the motor arrangement. It can be designed as a spiral channel in the peripheral direction. The seals 27 and 28 as well as the spacing element 26 can be arranged as a spatial limit to this peripheral channel 30.
[0032]
[0033] On a side of the spacing element 26 facing the cover flange 8, a first groove 32 is provided that surrounds the ring opening 31. This first groove 32 serves to accommodate the first seal 27. A second groove 33 that also surrounds the ring opening 31 is formed on a side of the spacing element 26 facing the floor flange 9. The second groove 33 interacts with a third groove 34 that is formed in the floor flange 9 in that the second and third grooves 33 and 34 accommodate the second seal 28 together. The third groove 34 is designed so that it accommodates a seal corresponding to hygienic requirements when the cover flange 8 and the floor flange 9 are directly connected to each other without the spacing element 26.
[0034] The cover flange 8 possesses a collar 35 that extends in an axial direction toward the floor 12. On its side radially to the interior, the collar 35 has a first inner surface 36. The first inner surface 36 is configured to interact with an edge surface 37 of the floor flange 9. If the centrifugal pump 1 is assembled without a spacing element 26, the collar 35 encloses the floor flange 9, and the first inner surface 36 and edge surface 37 cause the cover 11 and the floor 12 to be centered relative to each other.
[0035] The spacing element 26 possesses an edge section 38 that is shaped as a ring axially offset in the direction of the floor flange 9. Due to this offset, an outer surface 39 is formed on the spacing element 26. Together with the first inner surface 36, this outer surface 39 causes a radial alignment, in particular a substantial centering of the spacing element 26 relative to the cover flange 8. On the side of the spacing element 26 facing the floor flange 9, the edge section 38 extends beyond the spacing element 26 in an axial direction and has a second inner surface 40. Together with the edge surface 37, the second inner surface 40 causes a substantially concentric alignment of the spacing element 26 and the floor flange 9 relative to each other.
[0036] The gap width S of the gap 24 in an axial direction is at least as large as an axial thickness D of the spacing element 26. Advantageously, the cover 11, the floor 12, and spacing element 26 are designed so that the gap width S is increased by the thickness D by installing the spacing element 26. This is achieved by the arrangement according to
[0037] The scraper 25 can have features according to one or more of the following design types and can be combined with one feature or several features of the design of the rear side 22 of the impeller 14.
[0038]
[0039]
[0040] The embodiment according to
[0041] In the embodiment according to
[0042] The embodiment depicted in
[0043]
[0044]
[0045]
[0046] The embodiment in
[0047] The aforementioned scrapers 25, 425, 525, 625, 725, 825, 925, 1025, 1125, and 1225 are preferably designed and arranged to be balanced with respect to the rotary axis of the centrifugal pump 1 so that additional means to balance the impeller 14, 414, 514, 614, 714, 814, 914, 1014, 1114, and 1214 can be omitted.
[0048] The use of the invention has been described with reference to a centrifugal pump; however, it can also be used in a self-priming centrifugal pump. A self-priming feature can be achieved by an upstream pump stage such as a liquid ring pump stage before the inlet, and a return line. Such a return line between an intake area of a liquid ring pump stage and the part of the centrifugal pump in which pumped fluid is under pressure is described in DE 10 2007 032 228 A1, the content of which is hereby incorporated by reference.