Individual axis driven three stage counter rotating axial flow pump
11346357 ยท 2022-05-31
Assignee
Inventors
- Yanjun Li (Jiangsu, CN)
- Chao Chen (Jiangsu, CN)
- Ji Pei (Jiangsu, CN)
- Shouqi Yuan (Jiangsu, CN)
- Wenjie Wang (Jiangsu, CN)
Cpc classification
F04D29/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/181
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D3/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The invention discloses a kind of single shaft driven level 3 of axial flow pump, including: power source, pumping out, transmission shaft, export fixed vane, the third stage impeller, the second impeller, the first stage impeller, imported fixed vane, pump inlet, the first transmission cone gear, the first cone gear transmission device, the second driving cone gear and the second cone gear transmission device, the invention can realize the opposite steering of the two adjacent impellers by fixing the guide vane and the bevel gear transmission in the impeller hub. With compact structure and small axial size, this single-shaft driven three-stage counter-rotating axial-flow pump can greatly improve the head of the axial pump and widen the efficient zone.
Claims
1. An individual axis driven three stage counter rotating axial flow pump includes a power source and a transmission shaft, the individual axis driven three stage counter rotating axial flow pump comprising import fixed guide vanes, a first stage impeller, a second stage impeller, a third stage impeller and an outlet fixed guide vane set up on the transmission shaft successively from a pump inlet to a pump outlet, wherein the import fixed guide vanes are set up on an inlet fixed impeller hub, the first stage impeller is mounted on a first stage impeller hub, the second stage impeller is mounted on a second stage impeller hub, the third stage impeller is mounted on a third stage impeller hub, the outlet fixed guide vane is mounted on an outlet fixed guide impeller hub, the inlet fixed impeller hub and the first stage impeller hub are connected inside a first connected cavity therebetween to define a first bevel gear transmission device, the outlet fixed guide vane hub and the third stage impeller hub are connected inside a second connected cavity therebetween to define a second bevel gear transmission device, the second stage impeller hub is keyed to the transmission shaft, and the transmission shaft is keyed to a transmission cone gear and a second driving cone gear, the transmission cone gear is located at the first connected cavity, the second driving cone gear is located in the second connected cavity, the transmission cone gear drives the first stage impeller hub to rotate in the opposite direction of the rotation direction of the transmission shaft by engaging with the first bevel gear transmission device in the first connected cavity, and the second driving cone gear drives the third stage impeller hub to rotate in the opposite direction of the rotation direction of the transmission shaft by engaging the second bevel gear transmission device in the second connected cavity.
2. The individual axis driven three stage counter rotating axial flow pump according to claim 1, wherein the individual axis driven three stage counter rotating axial flow pump is a single-shaft driven three-stage counter-rotating axial flow pump, the transmission shaft and the inlet fixed impeller hub are radially fixed by at least a first ball bearing, the transmission shaft and the first stage impeller hub are radially fixed by at least a second ball bearing, and the transmission cone gear and a thrust block are axially fixed by a sleeve.
3. The individual axis driven three stage counter rotating axial flow pump according to claim 1, wherein the individual axis driven three stage counter rotating axial flow pump is a single-shaft driven three-stage counter-rotating axial flow pump, the first bevel gear transmission device including a first carrier fixed to an inner wall of the inlet fixed guide impeller hub or the first stage impeller hub, the first carrier is mounted with a third drive cone gear, the third drive cone gear is meshed with the transmission cone gear and a first hollow transmission bevel gear at the same time, and the first hollow drive cone gear is fixed to an inner wall of the first stage impeller hub to drive the first stage impeller hub rotating.
4. The individual axis driven three stage counter rotating axial flow pump according to claim 3, further comprising a first support ring and a second support ring in the first stage impeller hub, the second support ring and the first hollow drive cone gear are fixed together with a first fastening bolt on an inner wall of the first stage impeller hub, the second support ring and the transmission shaft are radially fixed by a third ball bearing, and the first support ring is fixed on an inner wall boss of the first stage impeller hub by a second fastening bolt, the first support ring and the transmission shaft are radially fixed by a second ball bearing, and the third ball bearing and the second ball bearing are axially fixed by a sleeve.
5. The individual axis driven three stage counter rotating axial flow pump according claim 4, wherein the first support ring and the second stage impeller hub have a thrust block disposed therebetween.
6. The individual axis driven three stage counter rotating axial flow pump according to claim 1, wherein the individual axis driven three stage counter rotating axial flow pump is a single-shaft driven three-stage counter-rotating axial flow pump, the second bevel gear transmission device including a gear rack gear fixed on an inner wall of the third stage impeller hub or the outlet fixed guide vane hub, a fourth driving cone gear is fixed on the gear rack, the fourth driving cone gear is simultaneously meshed with a second driving cone gear and a second hollow driving cone gear, and the second hollow driving cone gear is fixedly mounted at the inner wall of the third stage impeller hub, driving the third stage impeller hub to rotate.
7. The individual axis driven three stage counter rotating axial flow pump according to claim 6, wherein a third support ring and a fourth support ring are set on the third stage impeller hub, the third support ring and the second hollow driving cone gear are fixed together on the inner wall of the third stage impeller hub by fastening bolts, the third support ring and the transmission shaft are radially fixed by a fourth deep ball bearing, the fourth support ring is fixed on the inner wall of the third stage impeller hub by fastening bolts, the fourth support ring is radially fixed with the transmission shaft by a fifth ball bearing, and the fifth ball bearing and the fourth ball bearing are axially positioned by a sleeve.
8. The individual axis driven three stage counter rotating axial flow pump according to claim 7, wherein a thrust block is disposed between an inner wall of the fourth support ring and the second stage impeller hub.
9. The individual axis driven three stage counter rotating axial flow pump according to claim 1, wherein the individual axis driven three stage counter rotating axial flow pump is a single-shaft driven three-stage counter-rotating axial flow pump, and the first stage impeller, the second stage impeller, and the third stage impeller are each fixed by an adjustment nut to, respectively, the first stage impeller hub, the second stage impeller hub, and the third stage impeller hub.
10. The individual axis driven three stage counter rotating axial flow pump according to claim 1, wherein the individual axis driven three stage counter rotating axial flow pump is a single-shaft driven three-stage counter-rotating axial flow pump, the inlet fixed impeller hub, the first stage impeller hub, the second stage impeller hub, the third stage impeller hub and the outlet fixed guide vane hub are sealed by a sealing ring.
Description
THE APPENDED DRAWINGS SHOW
(1)
(2)
(3) In the FIG.: 1. Power source, 2. Pump outlet, 3. Transmission shaft, 4. Outlet fixed guide vane, 5. Stage 3 impeller, 6. Stage 2 impeller, 7. Stage 1 impeller, 8. Import fixed guide vanes 9. Pump inlet 10. The second driving cone gear, 11. The export of fixed guide vane hub, 12. The fourth driving cone gear, 13. The second gear rack, 14. Second hollow driving cone gear, 16. The third support ring, 17. Fourth deep groove ball bearing, 18. The third fastening bolts, 19. The second adjustment nut, 20. The third sleeve, 21. The third hub, 22. The fourth support ring, 23. The fifth deep groove ball bearing 24. The third thrust block, 25. The fourth fastening bolts, 27 The third adjusting nut, 28 The secondary impeller hub, 29 The second thrust block, 30. The first support ring, 31. The second deep groove ball bearing, 32. The second sleeve, 33. The first stage impeller hub, 34. The second fastening bolt, 35. The first adjustment nut, 36. The second support ring, 37. The third deep groove ball bearing, 38. The first hollow drive cone gear, 39. The third drive cone gear, 40. The first fastening bolt, 41. The first transmission cone gear 42. The first carrier, 44. The first sleeve, 45. The first thrust block, 46. The first deep groove ball bearing, 47. The inlet fixed impeller hub, 48. The sealing ring.
(4) Specific Implementation Mode
(5) The technical scheme of the invention is further explained with the attached figure.
(6) As shown in
(7) As shown in
(8) The transmission shaft 3 is connected to the second transmission cone gear 10 by a key on the side close to the outlet fixing vane 4. This second transmission cone gear 10 is steered in the same manner as the transmission shaft 3, and transmits power to the second carrier 13 through the sliding bearing. The fourth transmission cone gear 12, the second carrier 13 is fixed to the inner wall of the outlet fixed guide impeller hub 11 or the third-stage impeller hub 21 by bolts; the fourth hollow transmission cone gear 12 is passed through the third fastening bolt 18 The third support ring 16, the inner wall boss of the third stage impeller hub 21 are connected together, and the fourth drive cone gear 12 mounted on the second carrier 13 transmits power to the second hollow drive cone gear 14, thereby driving the third The stage impeller 5 rotates, the third stage impeller 5 is turned opposite to the transmission shaft 3 and the first stage impeller 7 is the same; the fourth support ring 22 in the third stage impeller hub 21 near the inlet is fixed to the third by the fourth fastening bolt 25 On the inner wall boss of the impeller hub 21, the fourth support ring 22 and the transmission shaft 3 are radially fixed to the impeller through the fifth deep groove ball bearing 23, and the fourth deep groove is passed between the third support ring 16 and the transmission shaft 3. The ball bearing 17 is radially fixed; The fifth deep groove ball bearing 23 and the fourth deep groove ball bearing 17 are axially fixed by the third sleeve 20; the other side of the fourth support ring 22 is mounted with the third thrust block 24 to realize the second stage impeller hub 28 For axial positioning, the first stage impeller 7 is mounted on the first stage impeller hub 33 by a first adjustment nut 35, and the second stage impeller 6 is mounted on the second stage impeller hub 28 by a third adjustment nut 27, third stage The impeller 5 is mounted on the third stage impeller hub 21 by a second adjusting nut 19, which can be realized by adjusting the first adjusting nut 35, the second adjusting nut 19 and the third adjusting nut 27 to the first stage impeller 7, the third The stage impeller 5 and the second stage impeller 6 are placed at an angle. The inlet fixed guide impeller hub 47, the first stage impeller hub 33, the second stage impeller hub 28, the third stage impeller hub 21 and the outlet fixed guide impeller hub 11 are sealed by a sealing ring 48
(9) Preferably, the number of the third transmission cone gears 39 is 3-6; the number of the inner wall bosses of the first stage impeller hub 33 is 3-6, correspondingly the first hollow transmission cone gear 38 and the second support ring The number of threaded holes of 36 is 3-6; the number of fourth transmission cone gears 12 is 3-6; the number of bosses of the inner wall of the third stage impeller hub 21 is 3-6, correspondingly the second hollow transmission The number of threaded holes of the cone gear 14 and the support ring 16 is 3-6
(10) The invention can change the rotation direction of the impellers of each stage by providing power by one motor, and at the same time pass the gear ratio of the first transmission cone gear and the first cone gear transmission, the second transmission cone gear and the second cone gear transmission The adjustment to widen the high-efficiency zone of the pump operation, improve the inlet pressure of the main impeller, greatly improve the cavitation performance of the pump, improve the lift of the axial flow pump, and improve the operating efficiency of the pump by reducing the impact loss of the impeller.