Water pump bearing with active condensate purging system
10240617 ยท 2019-03-26
Assignee
Inventors
Cpc classification
F01P5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/049
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/106
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05D2260/602
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C33/72
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01P5/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/043
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A coolant pump with an integrated shaft bearing (ISB) assembly is provided. The ISB has a bearing housing, and at least one bearing located therein supports a shaft. A bearing seal is connected to the bearing housing at a first axial end and contacts the shaft, and a vent cover is also located at the first axial end to define a vent space between it and the bearing seal. A seal assembly is located between the shaft and the vent cover. A vent insert is located in the vent space and connected for rotation with the shaft. Venting air enters via a vent space inlet connected to the vent space, and is exhausted by a vent space outlet. A generally annular collection cavity is located inside the vent space and connected to the vent space outlet. This allows for active purging of condensate or coolant leakage to protect the bearing.
Claims
1. A coolant pump comprising: a pump housing; an integrated shaft bearing assembly located in the pump housing, including: a bearing housing; at least one bearing located in the bearing housing that supports a shaft that extends through the bearing housing; a bearing seal connected to the bearing housing at a first axial end and contacting the shaft; a vent cover located at the first axial end of the bearing housing, the vent cover extends toward the shaft and defines a vent space between the bearing seal and the vent cover; a seal assembly located between the shaft and the vent cover; a vent insert having a radially extending surface with first and second axial sides located in the vent space and connected for rotation with the shaft; a vent space inlet connected to the vent space, and a vent space outlet connected to the vent space; and a generally annular collection cavity located inside the vent space and connected to the vent space outlet; wherein the pump includes an inlet opening in communication with the vent space inlet and an outlet opening in communication with the vent space outlet.
2. The coolant pump of claim 1, further comprising: an impeller located in the pump housing and connected to the shaft on a same axial end as the vent cover, and a pulley connected to an opposite axial end of the shaft.
3. The coolant pump of claim 1, further comprising: an external collection reservoir connected to the pump housing in an area of the outlet opening.
4. The coolant pump of claim 1, wherein the generally annular collection cavity has a volute shape.
5. The coolant pump of claim 1, wherein the outlet opening is arranged downwardly in a use position.
6. The coolant pump of claim 1, wherein the vent insert includes through holes that extend from the first axial side to the second axial side.
7. The coolant pump of claim 1, wherein the vent insert includes radially extending vanes on the second axial side.
8. The coolant pump of claim 1, wherein the vent insert includes an annular flange on the first axial side that at least partially surrounds a contact area between the bearing seal and the shaft.
9. The coolant pump of claim 1, wherein the vent insert tapers to a reduced thickness from a radially inner portion to a radially outer portion.
10. The coolant pump of claim 1, wherein the inlet opening is in the pump housing.
11. The coolant pump of claim 1, wherein the inlet opening is through the shaft.
12. The coolant pump of claim 11, wherein the vent insert includes radially extending vanes on the first and second axial sides.
13. The coolant pump of claim 1, wherein the vent cover is part of a vent ring that includes an axially extending generally cylindrical portion that abuts the bearing housing at the first axial end, and the vent space inlet and vent space outlet are located in the axially extending generally cylindrical portion.
14. The coolant pump of claim 1, wherein the vent space inlet is located in the bearing housing on the first axial side of the vent insert, and the vent space outlet is located in the bearing housing on the second axial side of the vent insert.
15. An integrated shaft bearing assembly for a coolant pump, comprising: a bearing housing; at least one bearing located in the bearing housing that supports a shaft that extends through the bearing housing; a bearing seal connected to the bearing housing at a first axial end and contacting the shaft; a vent cover located at the first axial end of the bearing housing, the vent cover extends toward the shaft and defines a vent space between the bearing seal and the vent cover; a seal assembly located between the shaft and the vent cover; a vent insert having a radially extending surface located in the vent space and connected for rotation with the shaft; a vent space inlet connected to the vent space, and a vent space outlet connected to the vent space; and a generally annular collection cavity located inside the vent space and connected to the vent space outlet.
16. The integrated shaft bearing assembly of claim 15, wherein the generally annular collection cavity has a volute shape.
17. The integrated shaft bearing assembly of claim 15, wherein the vent insert includes through holes that extend from the first axial side to the second axial.
18. The integrated shaft bearing assembly of claim 15, wherein the vent insert includes radially extending vanes on the second axial side.
19. The integrated shaft bearing assembly of claim 15, wherein the vent insert includes an annular flange on the first axial side that at least partially surrounds a contact area between the bearing seal and the shaft.
20. The integrated shaft bearing assembly of claim 15, wherein the vent space inlet is formed by an opening extending through the shaft.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The foregoing Summary and the following detailed description will be better understood when read in conjunction with the appended drawings, which illustrate a preferred embodiment of the invention. In the drawings:
(2)
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(11) Certain terminology is used in the following description for convenience only and is not limiting. The words front, rear, upper and lower designate directions in the drawings to which reference is made. The words inwardly and outwardly refer to directions toward and away from the parts referenced in the drawings. Axially refers to a direction along the axis of a shaft or rotating part. A reference to a list of items that are cited as at least one of a, b, or c (where a, b, and c represent the items being listed) means any single one of the items a, b, or c, or combinations thereof. The terminology includes the words specifically noted above, derivatives thereof and words of similar import.
(12) Referring to
(13) A vent cover 40 is located at the first axial end 32 of the bearing housing 22. The vent cover 40 in the first embodiment of the coolant pump 10 is part of a vent ring 42 which includes the generally flat radially extending cover 40 which is integrally connected with an axially extending generally cylindrical portion 43 that abuts the bearing housing 22 at the first axial end 32. However, as discussed in detail below, the vent cover 40 can be a separate part formed as a generally flat disc. The vent cover 40 extends radially inwardly from the axial end of the bearing housing 22 toward the shaft 28 and defines a vent space 44 between the bearing seal 30 and the vent cover 40. A seal assembly 46 is located between the shaft 28 and the vent cover 40. One arrangement of the seal assembly 46 is shown and includes a clamping ring 48 that is connected to the shaft 28 as well as a bellows 50, which is preferably elastic and pre-loaded in a direction toward the vent cover 40, as well as a seal element 52 that rides on the vent cover 40. The seal element 52 is preferably made of an elastomeric seal material and may have a PTFE coating at the moving contact face.
(14) A vent insert 60 having a radially extending surface 62 is located in the vent space 44 and connected for rotation with the shaft 28. The vent insert 60 includes a first axial side 66 and a second axial side 68. Preferably through holes 64 extend from the first axial side 66 to the second axial side 68. The vent insert is shown in detail in
(15) Preferably, an annular flange 70 is located on the vent insert 60 facing the bearing seal 30. The annular flange 70 preferably partially surrounds a portion of the bearing seal 30 where it contacts the shaft 28, forming a grease reservoir for excess grease which may be purged from inside the ISB 20 past the bearing seal 30.
(16) Still with reference to
(17) The pump 10 further includes an inlet opening 82, located in the pump housing 12 in the embodiment of
(18) Referring to
(19) In the embodiment illustrated in
(20) The coolant pump 10 is preferably provided as a pre-assembled unit. The ISB 20 as described above in connection with the coolant pump 10 can be also provided as a separate pre-assembled unit that can be later assembled with the pump housing 12 as well as the impeller 14 and pulley 16 during assembly of the coolant pump 10. The separately assembled ISB 20 is shown in
(21) Referring now to
(22)
(23) Referring now to
(24) As shown in
(25) This arrangement potentially allows for reduced production costs for the pre-assembled ISB 20 due to the vent cover 40 being formed as a flat stamped disc rather than as the vent ring 42 as described above.
(26) Having thus described the present invention in detail, it is to be appreciated and will be apparent to those skilled in the art that many physical changes, only a few of which are exemplified in the detailed description of the invention, could be made without altering the inventive concepts and principles embodied therein. It is also to be appreciated that numerous embodiments incorporating only part of the preferred embodiment are possible which do not alter, with respect to those parts, the inventive concepts and principles embodied therein. The present embodiment and optional configurations are therefore to be considered in all respects as exemplary and/or illustrative and not restrictive, the scope of the invention being indicated by the appended claims rather than by the foregoing description, and all alternate embodiments and changes to this embodiment which come within the meaning and range of equivalency of said claims are therefore to be embraced therein.