Mechanical face seal assembly, in particular for hot media, and pump assembly
11619307 · 2023-04-04
Assignee
Inventors
- Kilian Obertanner (Pullach, DE)
- Johannes Bauer (Wackersberg, DE)
- Josef Gerg (Egling, DE)
- Stefan Ledig (Pöcking, DE)
- Joseph Kiermeir (Tutzing, DE)
- Christoph Rapp (Sauerlach, DE)
Cpc classification
F04D29/128
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16J15/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention relates to a mechanical seal arrangement for sealing on a rotating component (21), comprising a slide ring seal (2) having a rotating slide ring (3) and a stationary slide ring (4), which define a sealing gap (5) between the sliding surfaces (3a, 4a) thereof, a recirculation conveyor (7) arranged adjacent to the rotating slide ring (3) wherein the recirculation conveyor (7) comprises a recirculation line (19) in which a cooling device (20) for cooling the recirculated fluid is arranged, a recirculation rotor (8) and a hollow cylindrical housing (9), wherein the recirculation line (19) leads to a cavity (6) in the region of the sealing gap (5) of the sliding ring seal (2), wherein the hollow cylindrical housing (9) comprises an inner shell surface (11) and an outer shell surface (12) and wherein a conveyor channel (10) is provided on the outer shell surface (12), which conveyor channel (10) is formed along the outer shell surface (12) from a start portion (13) to an end portion (14) wherein the start portion (13) of the conveyor channel (10) is separated from the end portion (14) by a separating web (15), wherein a plurality of feed openings (16) are provided in the hollow cylindrical housing (9), which open from the inner shell surface (11) into the conveyor channel (10), and wherein a single outlet opening (17) is provided at the end portion (14). (FIG. 1)
Claims
1. A mechanical seal arrangement for sealing on a rotating component, comprising: a mechanical seal having a rotating slide ring and a stationary slide ring, which define a sealing gap between the sliding surfaces thereof a recirculation conveyor arranged adjacent to the rotating slide ring, wherein the recirculation conveyor includes a recirculation line in which a cooling device (20) for cooling the recirculated fluid is arranged, a recirculation rotor and a hollow cylindrical housing, wherein the recirculation line leads to a cavity in the region of the sealing gap of the mechanical seal, wherein the hollow cylindrical housing includes an inner shell surface and an outer shell surface, and wherein a conveyor channel is provided on the outer shell surface, which conveyor channel is formed along the outer shell surface from a start portion to an end portion, wherein the start portion of the conveyor channel is separated from the end portion by a separating web, wherein a plurality of feed openings are provided in the hollow cylindrical housing, which open from the inner shell surface into the conveyor channel, and wherein a single outlet opening is provided at the end portion.
2. The mechanical seal arrangement according to claim 1, wherein the outlet opening is directed in an axial direction of the mechanical seal arrangement.
3. The mechanical seal arrangement according to claim 1, wherein a width of the conveyor channel is widened from the start portion to the end portion.
4. The mechanical seal arrangement according to claim 3, wherein the conveyor channel widens continuously or widens stepwise starting from the start portion to the end portion.
5. The mechanical seal arrangement according to claim 1, wherein center axes of the feed openings are inclined towards radial lines at an angle α.
6. The mechanical seal arrangement according to claim 1, wherein the recirculation rotor comprises a plurality of blades.
7. The mechanical seal arrangement according to claim 6, wherein the number of blades is not an even multiple of the number of feed openings.
8. The mechanical seal arrangement according to claim 1, wherein all centers of the feed openings are located in a first plane which is perpendicular to the axial direction.
9. The mechanical seal arrangement according to claim 1, wherein the conveyor channel comprises a first wall located in a second plane which is perpendicular to the axial direction.
10. The mechanical seal arrangement according to claim 9, wherein a start of outlet opening is located in a third plane which is perpendicular to the axial direction, and wherein a first distance between the second and third planes is at least twice as large as a second distance between the second and first planes.
11. A pump arrangement comprising a pump having a pump rotor and a mechanical seal arrangement according to claim 1.
12. The pump arrangement according to claim 11, wherein the mechanical seal arrangement is arranged radially inside a pump housing.
Description
(1) In the following, a preferred embodiment of the invention is described in detail while reference will be made to the accompanying drawing, wherein:
(2)
(3)
(4)
(5)
(6)
(7)
(8) Making reference to
(9) As shown in
(10) The pump 31 comprises a pump rotor 32, which is arranged in a pump housing 33. The fluid chamber 34 is connected to a receiving chamber 37 where the mechanical seal arrangement 1 is arranged, via a gap 35 between the drive shaft 21 and the pump housing 33.
(11) The mechanical seal arrangement 1 may be seen in detail in
(12) The mechanical seal 2 comprises a rotating slide ring 3 and a stationary slide ring 4, which define a sealing gap 5 between the sealing surfaces 3a, 4a thereof. The rotating slide ring 3 is fixed on a sleeve 22 which is pressed onto the drive shaft 21, for example using an interference fit.
(13) The recirculation conveyor 7 comprises a recirculation rotor 8, which is fixed to the sleeve 22, and a hollow cylindrical housing 9, the recirculation rotor 8 being arranged inside the hollow cylindrical housing 9. The recirculation conveyor 7 further comprises a recirculation line 19 in which a cooling device 20 is arranged for cooling the recirculated fluid (cf.
(14) The recirculation rotor 8 and the hollow cylindrical housing 9 of the recirculation conveyor 7 are shown in detail in
(15) The hollow cylindrical housing 9 has an inner shell surface 11 and an outer shell surface 12. As may be seen from
(16) As may be seen from
(17) In order to ever be able to convey fluid from the circulation rotor 8 into the conveyor channel 10, a plurality of feed openings 16 are provided in the hollow cylindrical housing 9. In this example embodiment, exactly five feed openings 16 are provided. The feed openings 16 are through openings which connect the inner shell surface 11 of the housing 9 to the conveyor channel 10. Thus, fluid is conveyed from a radially inner side of the housing 9 into the conveyor channel 10 at the radially outer side of the housing.
(18) As may especially be seen from
(19) The recirculation line 19 then leads the fluid to the cooling device 20 and therefrom, the fluid reaches a second port 92, which is also provided in the second housing part 90. As may be seen from
(20) From the second port 92, fluid is directed into a cavity 6 on the mechanical seal via a second connecting port 94 and another connecting channel 95. This allows cool fluid to be supplied to the regions of the sealing gap 5 and the two slide rings 3, 4, so that the temperature at the mechanical seal 2 cannot become too high.
(21) Thus, according to the invention, fluid which is conveyed by the pump 31 is also used for cooling the mechanical seal 2. In this case, the fluid is fed via the gap 35 to the recirculation conveyor 7 and from there is guided via the feed openings 16 and the conveyor channel 10 to the single outlet opening 17. From there, the fluid is led via the recirculation line 19 to the cooling device 20, where it is cooled and then led back into the cavity 6 at the mechanical seal 2 via the second port 92 and the second connection port 94 and the further connection channel 95. This makes it possible for a temperature at the mechanical seal 2 and its components to be kept relatively low.
(22) As may be seen especially from
(23) As may be seen from
(24) As may further be seen from
(25) The number of feed openings 16 and the number of blades 80 of the recirculation rotor 8 are selected such that the number of blades is not an even multiple of the feed openings 16. This allows any vibrations that may occur during operation to be suppressed.
(26) Further preferably, a sum of all cross sections of the feed openings is equal to a cross section of the outlet opening 17.
(27) By providing the recirculation conveyor 7, it is furthermore possible to dispense with a separate barrier fluid system with an additional fluid and still achieve cooling of the mechanical seal 2. Hereby, on the one hand, investment costs for the system can be reduced and, on the other hand, operating costs are also significantly reduced, since no additional separate circulation pump is required to be operated in the circulation circuit. The recirculation of the fluid for cooling is carried out exclusively by means of the recirculation conveyor 7 of the invention.
(28) As may be seen from
(29) Furthermore, a pump manufacturer does not have to modify a pump housing 31 for cooling according to the invention, as an inlet and an outlet are integrated in the mechanical seal arrangement 1 according to the invention.
(30) In the following, a mechanical seal arrangement 1 according to a second preferred embodiment example of the invention is described in detail while making reference to
(31) As may be seen from
(32) In other respects, the second embodiment example corresponds to the first embodiment example, so that reference can be made to the description given therein.
LIST OF REFERENCE NUMBERS
(33) 1 Mechanical seal arrangement
(34) 2 Mechanical seal
(35) 3 Rotating slide ring
(36) 3a Sealing surface of rotating slide ring
(37) 4 Stationary slide ring
(38) 4a Sealing surface of stationary slide ring
(39) 5 Sealing gap
(40) 6 Cavity at the mechanical seal
(41) 7 Recirculation conveyor
(42) 8 Recirculation rotor
(43) 9 Hollow cylindrical housing
(44) 10 Conveyor channel
(45) 10a First wall
(46) 10b Second wall
(47) 10c Second wall, widening in steps
(48) 11 Inner shell surface
(49) 12 Outer shell surface
(50) 13 Start portion
(51) 14 End portion
(52) 15 separating web
(53) 16 Feed openings
(54) 17 Outlet opening
(55) 18 Outlet channel
(56) 19 Recirculation line
(57) 20 Cooling device
(58) 21 Drive shaft
(59) 22 Sleeve
(60) 30 Pump arrangement
(61) 31 Pump
(62) 32 Pump rotor
(63) 33 Pump housing
(64) 34 Fluid chamber
(65) 35 Gap
(66) 36 Atmosphere
(67) 37 Receiving chamber
(68) 80 Blades
(69) 90 Second housing part
(70) 91 First connection
(71) 92 Second connection
(72) 93 First connecting port
(73) 94 Second connecting port
(74) 95 Additional connecting port
(75) A Direction of rotation
(76) D1 First distance
(77) D2 Second distance
(78) E1 First plane
(79) E2 Second plane
(80) E3 Third plane
(81) M Center axis of feed opening
(82) R Radial line
(83) X-X Axial direction
(84) α Acute angle