Transmission structure of motor connection of roots pump
11320036 ยท 2022-05-03
Assignee
Inventors
Cpc classification
F04C2/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/0071
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C29/005
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/0025
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C18/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/029
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H57/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H57/029
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04C15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A transmission structure of motor connection of roots pump comprises a shaft sleeve, a motor shaft cavity is opened inside the shaft sleeve, and the inner circle of the motor shaft cavity is concentrically meshed with the excircle of the motor shaft; a fixed bolt mounting cavity is opened on the outer surface of the shaft sleeve, a bolt through-hole is opened in the fixed bolt mounting cavity, the shaft sleeve is fixedly connected with the gear seat through a hexagon bolt, and the gear seat and the shaft sleeve rotate synchronously at the same shaft center; a gear is fixedly connected with the gear seat with a bolt, the gear seat is fixed to the pump shaft through a first keyway under the fitting between the first keyway and a first shaft key, and the pump shaft and the motor shaft are coaxially arranged at the center. The utility model overcomes the disadvantages of the prior art, which is convenient to install without wearing parts, not affected by temperature, pressure and external dust; and the structure is simple with compound seal and oil protection function; and when a motor with a motor shaft is selected, only the diameter and keyway of the motor shaft cavity of the part are required to fit the new motor.
Claims
1. A transmission structure of motor connection of a roots pump comprising a shaft sleeve (1), is characterized in that: the shaft sleeve (1) is movably connected inside a motor connecting base (12), a motor shaft cavity (2) is opened inside a shaft sleeve (1), and an inner circle of the motor shaft cavity (2) is concentrically meshed with an excircle of a motor shaft (3); a fixed bolt mounting cavity (4) is opened on an outer surface of the shaft sleeve (1), a bolt through-hole (9) is opened in the fixed bolt mounting cavity (4), the shaft sleeve (1) is fixedly connected with a gear seat (6) through a hexagon bolt (5), and the gear seat (6) and the shaft sleeve (1) rotate synchronously at a same shaft center; and a gear (7) is fixedly connected with the gear seat (6), the gear seat (6) is fixed to a pump shaft (8), and the pump shaft (8) and the motor shaft (3) are coaxially arranged at a center.
2. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: a slope is arranged in the fixed bolt mounting cavity (4), and the bolt through-hole (9) is arranged at the bottom of the slope.
3. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: four fixed bolt mounting cavities (4) are provided, and all are independent cavity structures.
4. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: a lock nut space (10) is opened a one end of the shaft sleeve (1) close to the pump shaft (8), the inner circle of the lock nut space (10) is concentrically meshed with an excircle of the gear seat (6), a lock nut (11) is sleeved on an outer surface of the pump shaft (8), and the lock nut (11) is arranged inside the lock nut space (10).
5. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: an oil guide pot (13) is further provided on an outer surface of the sleeve (1), and the oil guide pot (13) is arranged on a side of the fixed bolt mounting cavity (4) away from the gear seat (6).
6. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: a framework oil seal (14) is fixedly installed between the shaft sleeve (1) and the motor connecting base (12).
7. The transmission structure of motor connection of a roots pump of claim 1, is characterized in that: a motor shaft keyway (15) is opened inside the motor shaft cavity (2), a motor shaft key is arranged on an outer surface of the motor shaft (3), and the motor shaft key is matched with the motor shaft keyway (15).
Description
DESCRIPTION OF DRAWINGS
(1) In order to explain the technical solutions in the utility model or in the prior art more clearly, the brief introduction of drawings required in the description of the prior art is as follows.
(2)
(3)
(4)
(5)
(6)
DESCRIPTION OF NUMBERS IN THE DRAWINGS
(7) 1. Shaft sleeve; 2. Motor shaft cavity; 3. Motor shaft; 4. Fixed bolt mounting cavity; 5. Hexagon bolt; 6. Gear seat; 7. Gear; 8. Pump Shaft; 9. Bolt through-hole; 10. Lock nut space; 11. Lock nut; 12. Motor connecting base; 13. Oil guide pot; 14, Framework oil seal; 15. Motor shaft keyway.
(8) Embodiments
(9) In order to make the objectives, technical solutions and advantages of the utility model clearer, the technical solutions in the utility model will be described clearly and completely combined with the drawings in the utility model.
(10) As shown in
(11) During operation, the inner circle of the motor shaft cavity 2 is concentrically meshed with the excircle of the motor shaft 3, and a certain clearance fit is ensured, so as to achieve the concentric shaft limit, to ensure that during high-speed rotation, the sleeve 1 and the motor shaft 3 are synchronously rotated at the same shaft center; the shaft sleeve 6 is fixedly connected with the gear seat 1 through a hexagon bolt 5, so as to ensure during high-speed rotation, the sleeve 1 and the gear seat 6 rotate synchronously at the same shaft center, which in turn drives the gear 7 to rotate synchronously, and under that action of limit and fixing of the gear 6 and pump shaft 8, drive the pump shaft 8 to rotate synchronously; a very high speed can be met at a lower power compared with the coupling.
(12) During the high-speed rotation of gear 7, the lubricating oil on the surface of gear 7 will splash out, which plays the role of bearing and gear 7 lubrication and cooling, without the need for additional lubrication and Cooling; and in order to avoid the leakage of lubricating oil to the outside of the motor connection seat 12, the sleeve 1 and the motor connection seat 12 leave a small gap, and at the same time, a fixing bolt installation cavity 4 is provided on the surface of the sleeve 1, and the fixing bolt installation cavity 4 Set as a slope surface, so that when rotating at a high speed, an air flow vortex will be formed, and most of the oil droplets leaking from the small gap will be intercepted by the air flow vortex of the fixing bolt installation cavity 4 and collected by gravity The bottom, or dripping on the inclined surface and bounced back.
(13) Further, four fixed bolt mounting cavities (4) are provided, and all are independent cavity structures. Since the fixed bolt mounting cavity 4 is not slotted along the radial circle, at the same time that the installation space of the hexagon bolt 5 is ensured, the strength of the shaft sleeve 1 is strengthened, which can ensure that the motor has sufficient strength to overcome the torque when driving the pump shaft 8.
(14) Further, a lock nut space 10 is opened at one end of the shaft sleeve 1 close to the pump shaft 8, the inner circle of the lock nut space 10 is concentrically meshed with the excircle of the gear seat 6, a lock nut 11, sleeved on the outer surface of the pump shaft 8, is arranged inside the lock nut space 10. The lock nut space 10 is arranged as a reserved space, to ensure that the lock nut 11 and washer at the end of the pump shaft 8 will not interfere.
(15) Further, an oil guide pot 13 is further provided on the outer surface of the sleeve 1, and the oil guide pot 13 is arranged on the side of the fixed bolt mounting cavity 4 away from the gear seat 6. The oil droplets not held up by the airflow vortex can be held up by the oil guide pot 13 for the second time, and because the oil guide pot is very smooth without any slope, after the oil droplets drop into the oil guide pot 13, it will not be thrown out again, but flows into the bottom of the motor connecting base 2 along the wall of the oil guide pot 13, and returns to the gear lubricating oil tank along the clearance for recycle.
(16) Further, a framework oil seal 14 is fixedly installed between the shaft sleeve 1 and the motor connecting base 12. Moreover, the center line of the lip seal of the framework oil seal 14 is relatively high, so that a small amount of unheld oil droplets can be completely held up, thereby effectively blocking the lucubrating oil from leaking outside the motor connecting base 12.
(17) Further, a motor shaft key slot 15 is opened inside the motor shaft cavity 2, a motor shaft key is provided on the outer surface of the motor shaft 3, and the motor shaft key matches the motor shaft key slot 15. When a motor with a motor shaft is selected, only the diameter and keyway of the motor shaft cavity of the part are required to fit the new motor. Moreover, the lock nut space 10 has a step, which also ensures that the motor shaft keyway 15 opened on the motor shaft cavity 2 does not affect the positioning of the inner circle by the lock nut space 10.
(18) The above embodiments are only used to explain the technical solution of the utility model, but not to limit it; although referring to the aforesaid embodiments, the invention has been described in detail, those skilled in the art shall understand that the technical solutions described in the aforesaid embodiments can still be modified, or some of the technical features are equivalently replaced; and these modifications or replacements shall not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the utility model.