GLANDED PUMP WITH RING CAPACITOR
20210396233 ยท 2021-12-23
Inventors
Cpc classification
F04D13/0686
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K5/10
ELECTRICITY
F04D13/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/5813
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/0673
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K2213/03
ELECTRICITY
F04D13/0653
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D13/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A glanded pump to pump a pumped medium includes a motor to drive a pump shaft of the glanded pump about a longitudinal axis, a controller connected to the motor to control the motor, a pump housing to contain the pumped medium and in which an impeller is provided, and a sealing flange that seals off the pump housing from the motor. The controller is connected to the sealing flange on a side remote from the impeller, and the controller includes a printed circuit board and a ring capacitor thereon, the ring capacitor extending in the longitudinal direction between the printed circuit board and the sealing flange and being in direct contact with the sealing flange in order to provide a thermally conductive contact.
Claims
1-12. (canceled)
13. A glanded pump to pump a pumping medium, the glanded pump comprising: a motor to drive a pump shaft of the glanded pump about a longitudinal axis extending in a longitudinal direction; a controller connected to the motor to control the motor; a pump housing to contain the pumped medium, in which an impeller is provided; and a sealing flange that seals off the pump housing from the motor; wherein the controller is connected to the sealing flange on a side of the sealing flange positioned away from the impeller, the controller including a printed circuit board and an ring capacitor thereon; the ring capacitor extends in the longitudinal direction between the printed circuit board and the sealing flange and is concentric to both the printed circuit board and the sealing flange; and the ring capacitor is in direct contact with the sealing flange to provide a thermally conductive contact.
14. The glanded pump according to claim 13, wherein the sealing flange is cooled on a side adjacent to the impeller by a flowing pumped medium.
15. The glanded pump according to claim 13, wherein the sealing flange is made of a material with increased thermal conductivity compared to other portions of the glanded pump.
16. The glanded pump according to claim 15, wherein the sealing flange is made of aluminum.
17. The glanded pump according to claim 13, wherein the motor is an electronically commutated electric motor including a stator and a rotor, the stator being seated on a side of the sealing flange spaced away from the impeller.
18. The glanded pump according to claim 17, wherein the glanded pump is an external rotor pump.
19. The glanded pump according to claim 13, wherein the pump shaft passes through the sealing flange and a mechanical seal is between the pump shaft and the sealing flange.
20. The glanded pump according to claim 13, wherein the ring capacitor is fixed on the printed circuit board by through-holes and soldering.
21. The glanded pump according to claim 13, wherein the ring capacitor includes a first end surface against the printed circuit board and a second end surface, opposite the first end surface, which is against a side of the sealing flange spaced away from the impeller.
22. The glanded pump according to claim 13, wherein a total height of the ring capacitor in the longitudinal direction is smaller than a width of the ring.
23. The glanded pump according to claim 13, wherein the ring capacitor is glued onto the sealing flange.
24. A coolant pump for a motor vehicle comprising the glanded pump according to claim 13.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020]
DETAILED DESCRIPTION
[0021]
[0022] For controlling the motor 11, the stator 14 is connected to a controller 19, which is arranged inside the housing 3 lying between the stator 14 and the sealing flange 7, viewed in longitudinal direction. The controller 19 has a printed circuit board 20 to which a ring capacitor 21 is attached. The fastening is preferably carried out using the so-called push-through technique and by soldering. The ring capacitor 21 rests with a first end surface on the printed circuit board 20. The ring capacitor 21 surrounds the elevation of the sealing flange 8 and is arranged concentrically to this and to the longitudinal axis 100. The ring capacitor 21 directly abuts the outer surface of the sealing flange 7 with a second end surface opposite the first end surface. The ring capacitor 21 has an inner radius and an outer radius. Whereby the ring width b represents the difference between the two radii. In the longitudinal direction, the ring capacitor extends over a height h. The height of the capacitor is many times smaller than the ring width. The height of the capacitor h is between 3 mm and 15 mm.
[0023] The ring capacitor 21 enables a flat, compact design of the printed circuit board 20. As a result of the large contact surface to the printed circuit board 20, there is a very good vibration-resistant connection of the ring capacitor 21 to the controller 19. Since the ring capacitor 21 is in direct contact with the sealing flange, it can absorb heat losses from the controller 19 as a result of the large contact surface and transfer them to the sealing flange 7. Preferably, the ring capacitor 21 is bonded to the sealing flange 7. The sealing flange 7 is preferably made of aluminum and has good thermal conductivity, so that the heat can be transferred from the ring capacitor 21 to the pumped medium via the sealing flange 7.
[0024] While example embodiments of the present disclosure have been described above, it is to be understood that variations and modifications will be apparent to those skilled in the art without departing from the scope and spirit of the present disclosure. The scope of the present disclosure, therefore, is to be determined solely by the following claims.