Centrifugal pump
10274093 · 2019-04-30
Assignee
Inventors
Cpc classification
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D15/0083
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K15/023
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/426
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/628
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16K15/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/44
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The multi-stage submersible pump at the exit side is provided with a non-return valve (9) including a valve seat (19) and a shut-off body (15) which is movably arranged thereto in a limited manner and which is arranged with a positive fit and in a movable manner within a guide (16) surrounding the shut-off body (15) with play. The inner contour of the guide (16) tapers inwards towards the valve seat (19), counter to the main flow direction (13).
Claims
1. A centrifugal multi-stage submersible pump comprising a non-return valve comprising: a valve seat; a guide; and a shut-off body arranged movably, in a limited manner relative to the valve seat and with a positive fit, within the guide between an open position and a closed position, the guide surrounding the shut-off body with radial play, the guide having an inner contour tapering inwards towards the valve seat counter to a main flow direction, so that the radial play of the guide increases directly when lifting the shut-off body from the valve seat.
2. The centrifugal pump according to claim 1, wherein the inner contour of the guide in the main flow direction also tapers inwards from a middle region, at a distance from the valve seat, towards an end region adjacent to the valve seat.
3. The centrifugal pump according to claim 2, wherein the inner contour of the guide in the end region runs radially inwards and in a returning manner with respect to the main flow direction.
4. The centrifugal pump according to claim 1, wherein the inner contour of the guide runs in a part-circle-shaped manner in a middle region.
5. The centrifugal pump according to claim 1, wherein the guide comprises: a common holding ring; and guide arms arranged distributed over a periphery of the shut-off body, the guide arms being fastened on the common holding ring.
6. The centrifugal pump according to claim 5, wherein the guide arms and the holding ring are formed as a single-piece molded component.
7. The centrifugal pump according to claim 5, wherein the guide arms and the holding ring are formed from a sheet metal section, wherein the guide arms are formed by way of bending out of the base material and are bent away by about 90 with respect to the remaining base material.
8. The centrifugal pump according to claim 7, further comprising: an impeller; and a diffuser, wherein: the impeller and the diffuser are part of a last pump stage; and the guide arms are bent away in the direction of a swirl direction of a delivery fluid which is defined by the impeller and the diffuser of the last pump strange.
9. The centrifugal pump according to claim 5, wherein the guide arms and the holding ring are formed from an annular sheet-metal section, and the guide arms are bent away about an essentially radially running line.
10. The centrifugal pump according to claim 1, wherein the guide comprises a plurality of guide arms, wherein the shut-off body is formed by a plate which is shaped from sheet-metal and which comprises a planar portion and an obliquely set, annular contact surface directed towards the valve seat.
11. The centrifugal pump according to claim 10, wherein the planar portion comprises a central boss.
12. The centrifugal pump according to claim 11, further comprising a pump housing that is essentially cylindrical, wherein the valve housing connects to the pump housing in a flush manner and extends upwardly from the valve housing.
13. The centrifugal pump according to claim 10, wherein: the valve housing has an essentially cylindrical shape; the valve housing is tapered at one end; and at another end the housing is provided with a coupling for a releasable connection to the pump.
14. The centrifugal pump according to claim 1, wherein the guide comprises a plurality of guide arms, wherein the valve seat is formed by an annular component shaped from sheet-metal, as well as by an annular seal, the shut-off body comprising two contact surfaces, one of the two contact surfaces being located opposite another one of the two contact surfaces, the one of the two contact surfaces being in contact with the annular component when the shut-off body is in the closed position, the another one of the two contact surfaces engaging a portion of at least one of the guide arms when the shut-off body is in the open position.
15. The centrifugal pump according to claim 1, wherein the non-return valve further comprises a valve housing into which the guide, the shut-off body and the valve seat are releasably integrated with a positive fit.
16. A centrifugal multi-stage submersible pump comprising a non-return valve comprising: a valve seat comprising a longitudinal axis; a guide comprising a catch returning section, the catch returning section defining one end of the guide, wherein the guide comprises a guide portion extending from another end of the guide to a position located adjacent to the catch returning section; and a shut-off body arranged movably, in a limited manner relative to the valve seat and with a positive fit, within the guide, the guide surrounding the shut-off body with radial play, the catch returning section extending radially inward from the guide portion in a direction of the shut-off body, the shut-off body comprising a closed position and an open position, the guide portion comprising a radially inward taper in a direction of the longitudinal axis such that the radial play of the guide increases directly when lifting the shut-off body from the valve seat.
17. The centrifugal pump according to claim 16, wherein the guide portion comprises a first guide portion region, a second guide portion region and a third guide portion region, at least a portion of the first guide portion region being located at the another end of the guide, at least a portion of the third guide portion region being located adjacent to the catch returning section, the second guide portion region being arranged between the first guide portion region and the third guide portion region, the first guide portion region comprising a first guide portion region dimension, the second guide portion region comprising a second guide portion region dimension, the third guide portion region comprising a third guide portion region dimension, the second guide portion region dimension being greater than the first guide portion region dimension, the third guide portion region dimension being less than second guide portion region dimension, the catch returning section comprising an inner surface, the inner surface being bent relative to the guide portion, wherein the inner surface faces in a direction of at least the second guide portion.
18. The centrifugal pump according to claim 16, wherein the guide comprises a plurality of guide arms, wherein the radially inward taper extends continuously from the another end of the guide of the guide to the position located adjacent to the catch returning section, the catch returning section extending in a direction counter to a main flow direction of the centrifugal pump, wherein a diameter of the shut-off body is less than a diameter defined by each of the guide arms, the shut-off body comprising two contact surfaces, one of the two contact surfaces being located opposite another one of the two contact surfaces, the valve seat comprising an annular component, the one of the two contact surfaces being in contact with the annular component when the shut-off body is in the closed position, the another one of the two contact surfaces engaging a portion of at least one of the guide arms when the shut-off body is in the open position.
19. A centrifugal multi-stage submersible pump comprising a non-return valve comprising: a valve seat comprising a longitudinal axis; a guide comprising a catch returning section, the catch returning section defining one end of the guide, wherein the guide comprises a guide portion, the guide portion extending from another end of the guide to a position located adjacent to the catch returning section, the guide portion comprising guide portion contour, the guide portion contour comprising a radially inward taper in a direction of the longitudinal axis; and a shut-off body arranged movably, in a limited manner relative to the valve seat and with a positive fit, within the guide such that the shut-off body is movable from at least a closed position to at least an open position, the guide surrounding the shut-off body with radial play, the catch returning section extending radially inward from the guide portion in a direction of the shut-off body, wherein a radial space is defined between the shut-off body the guide when the shut-off body is the open position and when the shut-off body is in the closed position.
20. The centrifugal pump according to claim 19, wherein the guide portion comprises a first guide portion region, a second guide portion region and a third guide portion region, at least a portion of the first guide portion region being located at the another end of the guide, at least a portion of the third guide portion region being located adjacent to the catch returning section, the second guide portion region being arranged between the first guide portion region and the third guide portion region, the first guide portion region comprising a first guide portion region dimension, the second guide portion region comprising a second guide portion region dimension, the third guide portion region comprising a third guide portion region dimension, the second guide portion region dimension being greater than the first guide portion region dimension, the third guide portion region dimension being less than second guide portion region dimension, the catch returning section comprising an inner surface, the inner surface being bent relative to the guide portion, wherein the inner surface faces in a direction of at least the second guide portion, the shut-off body comprising a plate, the plate comprising a planar portion and an annular portion bent relative to the planar portion, the annular portion extending about the planar portion.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
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(8)
(9)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(10) With the pump represented by way of
(11) In operation, the pump impellers 3 are driven by the common shaft 5 and the delivery fluid via recesses 12 in the lower housing part 7 gets into the inside of the pump, from there via the pump stages, in which a pressure increase is effected in each case, up to the diffuser 4 of the uppermost pump stage, where the delivery fluid penetrates the non-return valve 9, so as to exit at the upper end of the upper housing part 8. The main delivery flow thus extends in the direction 13 through the pump, i.e. in the direction of the longitudinal axis 6 from the lower housing part 7 to the upper housing part 8. The delivery fluid flows through the non-return valve 9 not only in the direction 13, but there also has a swirling.
(12) The upper housing part 8 which at the same time forms the housing of the non-return valve 9 is seated with a positive fit, amid the integration of a seal, on the diffuser 4 of the last pump stage and otherwise in the direction of the longitudinal axis 6 is connected to the other lower housing part 7 and the coupling 1 via tie rods 10.
(13) The non-return valve 9 in
(14) The guide arms 16 are fastened on a holding ring 20, which is inserted from below into the valve housing 8 and comes to bear on a peripheral, step-like shoulder 21 of the housing 8. Subsequently, the seal 17 as well as the ring 18 is inserted from below into the valve housing 8 and concluding, is secured with a positive fit by a clamping ring 22 which is fastened in a peripheral groove 23 on the inner side of the valve housing 8. The non-return valve 9 can thus be disassembled after removing the upper housing part 8 from the pump 2 as well as removing the clamping ring 22, and can be overhauled and assembled together again, and no special tools are necessary for this.
(15) The supporting components of the valve, specifically the holding ring 20 with the guide arms 16, the ring 18 as well as the shut-off body 15, with the embodiment variant which is represented by way of
(16) In order to ensure that the shut-off body 15 always gets into its correctly envisaged closure position independently of the position of the pump, the guide arms 16, as is particularly evident from the representation according to
(17) A middle region d2 connects next to the inwardly tapering region d3, in which middle region the guide arms 16 surround the shut-off body 15 with significant play and to which in turn a region d1 connects, said region d1 being designed tapering inwards but in the counter direction to the region d3. In the region d1, the inner contour of the guide, thus the inner side of the guide arms 16, tapers inwards in the main flow direction 13. Finally, the guide comprises a returning region 26 which likewise tapers inwardly but oppositely to the main flow direction 13, by which means this hook-like inner contour of the guide arms 16 results, which is clearly visible in
(18) In the represented embodiment example, regions d1, d2, and d3 are contoured in a part-circle-shaped manner, wherein the diameter of the part-circle d2 is larger than that of the part-circle d3 and which in turn is larger than that of the part-circle d1. The diameter of the part-circle d1 is larger than the diameter of the shut-off body 15 which in turn is greater than the diameter of the central recess in the ring 18.
(19) The guide which is formed by the guide arms 16 is manufactured from an annular sheet-metal section as is represented in
(20) An alternative embodiment of the guide is represented by way of
(21) While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.
APPENDIX
List of Reference Numerals
(22) 1coupling 2pump 3pump impeller 4diffuser 5shaft 6longitudinal axis of the pump 7lower housing part 8upper housing part, valve housing 9non-return valve 10tie rods 11recesses in 8 12recesses in 7 13main flow direction 14inner thread 15shut-off body 16guide arms 16guide arms in the