VIBRATION REDUCING GROMMET
20200263883 ยท 2020-08-20
Inventors
- Wei Zhou (Avon, IN, US)
- Asad M. Sardar (Avon, IN, US)
- Jun Pyo Lee (Zionsville, IN, US)
- Sherri R. Wilkerson (Indianapolis, IN, US)
- Dennis J. Blessing (Bargersville, IN, US)
- Brooke Greenwood (Brownsburg, IN, US)
Cpc classification
F24F1/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A grommet assembly includes a bolt assembly that has a head portion. A grommet includes a tapering bolt opening for accepting the bolt assembly. A projecting portion extends from a body portion and has an overhang adjacent a distal end. The bolt opening at least partially defines a radial gap between the grommet and the bolt assembly. The head portion of the bolt assembly is spaced from the distal end of the projecting portion by an axial gap.
Claims
1. A grommet assembly comprising; a bolt assembly having a head portion; and a grommet including a tapering bolt opening for accepting the bolt assembly, a projecting portion extending from a body portion having an overhang adjacent a distal end, wherein the bolt opening at least partially defines a radial gap between the grommet and the bolt assembly and the head portion of the bolt assembly is spaced from the distal end of the projecting portion by an axial gap.
2. The grommet assembly of claim 1, further comprising a plurality of ribs extending radially inward from an inner surface of the bolt opening toward the bolt assembly.
3. The grommet assembly of claim 2, wherein a radially inner surface of the ribs are spaced from the bolt assembly.
4. The grommet assembly of claim 1, wherein the grommet includes a support portion extending from the body portion having a support portion base contact surface and the overhang includes an overhang base portion contact surface.
5. The grommet assembly of claim 4, wherein the support portion base contact surface and the overhang base portion contact surface face opposite axial directions.
6. The grommet assembly of claim 1, wherein the head portion includes a cap portion and the cap portion is spaced from the distal end of the projecting portion by the axial gap.
7. The grommet assembly of claim 1, wherein the bolt assembly includes a bolt at least partially surrounded by a sleeve.
8. The grommet assembly of claim 7, wherein the radial gap extends more than 50% of an axial length of the sleeve.
9. The grommet assembly of claim 8, wherein the axial length of the sleeve is greater than an axial length of grommet.
10. The grommet assembly of claim 1, further comprising a plurality of ribs extending radially inward from an inner surface of the bolt opening toward the bolt assembly, wherein the head portion includes a cap portion and the cap portion is spaced from the distal end of the projecting portion by the axial gap.
11. An outdoor HVAC unit comprising: a housing having a base pan; a compressor having a base; a grommet assembly connecting the base pan to the compressor base, wherein the grommet assembly includes: a bolt assembly having a head portion; and a grommet having a tapering bolt opening for accepting the bolt assembly, a projecting portion extending from a body portion having an overhang adjacent a distal end for engaging the compressor base, wherein the bolt opening at least partially defines a radial gap between the grommet and the bolt assembly and the head portion of the bolt assembly is spaced from the distal end of the projecting portion by an axial gap.
12. The outdoor HVAC unit of claim 11, wherein the grommet assembly further comprises a plurality of ribs extending radially inward from an inner surface of the bolt opening toward the bolt assembly.
13. The outdoor HVAC unit of claim 12, wherein a radially inner surface of the ribs are spaced from the bolt assembly.
14. The outdoor HVAC unit of claim 11, wherein the grommet includes a support portion extending from the body portion having a support portion contact surface engaging a first side of the compressor base and the overhang includes an overhang contact surface engaging a second opposite side of the compressor base.
15. The outdoor HVAC unit of claim 14, wherein the projecting portion extends through an opening in the compressor base.
16. The outdoor HVAC unit of claim 11, wherein the head portion includes a cap portion and the cap portion is spaced from the distal end of the projecting portion by the axial gap.
17. The outdoor HVAC unit of claim 11, wherein the bolt assembly includes a bolt at least partially surrounded by a sleeve.
18. The outdoor HVAC unit of claim 17, wherein the radial gap extends more than 50% of an axial length of the sleeve.
19. The outdoor HVAC unit of claim 18, wherein the axial length of the sleeve is greater than an axial length of grommet.
20. The outdoor HVAC unit of claim 11, wherein the bolt assembly engages the base pan.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024]
[0025]
[0026]
[0027]
[0028]
DETAILED DESCRIPTION
[0029]
[0030] In the illustrated example, the compressor 26 includes a compressor housing 26A enclosing a compressor motor and a compressor base 28 fixed to a base portion of the compressor housing 26A. The compressor base 28 includes attachment points at the corners for securing the compressor 26 to the base pan 24 of the housing 22. Grommets 30, such as rubber grommets, are attached to the attachment points on the compressor base 28. The grommets 30 are generally secured to the base pan 24 with a bolt 32 extending through each of the grommets 30, and are attached to the base pan 24 with a threaded fastener portion 34 (see
[0031] During operation of the compressor 26 within the outdoor HVAC unit 20, the compressor 26 generates vibrations that can be transferred to the surrounding structure of the outdoor HVAC unit 20. The grommets 30 seek to reduce the vibrations transferred from the compressor 26 to the surrounding structure by dampening the vibrations. The dampening of vibrations can also reduce the noise generated during operation of the outdoor HVAC unit 20. Although
[0032]
[0033] As shown in
[0034] The grommet 30 also includes a projecting portion 38 that extends from the first axial end of the body portion 35 of the grommet 30. In the illustrated example, the projecting portion 38 extends through a grommet opening 56, or attachment point, in the compressor base 28 to at least partially secure the grommet 30 to the compressor base 28. The projecting portion 38 includes an overhang 40 adjacent to a distal end of the projecting portion 38 with a contact surface 41 that engages an opposite side of the compressor base 28 from the contact surface 36A on the support portion 36. As shown in
[0035] The grommet 30 includes a bolt opening 44 that extends from the first axial end to a second axial end of the grommet 30. The bolt opening 44 is at least partially defined by the projecting portion 38 at the first axial end, the body portion 35 along a mid-portion, and a radially inner base portion 50 at the second axial end. The radially inner base portion 50 includes a first contact surface 51 that engages the base pan 24 and second contact surface 53 that engages a sleeve 58. The radially inner base portion 50 also at least partially defines a ledge 46 in the bolt opening 44. In the illustrated example, the ledge 46 is located closer to the second axial end than the trough 42 such that the trough 42 does not overlap axially with the ledge 46.
[0036] The second axial end of the grommet 30 also includes a radially outer base portion 52 that is radially aligned with the support portion 36 and axially spaced from the trough 42. The radially inner base portion 50 and the radially outer base portion 52 are spaced from each other by a base trough 54. The base trough 54 is at least partially radially aligned with the trough 42 and can interact with a locating feature 55, such as a tab or circular ring, on the base pan 24 of the housing to locate the compressor 26 relative to the housing 22. The locating feature 55 and the base trough 54 can also contribute to aligning the bolt 32 with a bolt opening 66 in the base pan 24.
[0037] As shown in
[0038] The cap portion 60 could be integral with the bolt 32 or it could be a separate component, such as a washer, that is held in place relative to the bolt 32 by the sleeve 58. In the illustrated example, the cap portion 60 includes an axial length that is less than a radial thickness of a ring of the cap portion 60. The cap portion 60 and the distal end of the projecting portion 38 define a gap 68 having a distance G1. By spacing the cap portion 60 from the distal end of the projecting portion 38, the transfer of vibrations from the compressor 26 to the base pan 24 is reduced. In the illustrated example, the gap 68 is between approximately 1.0 millimeter (3.9 hundredths of an inch) and 2.0 millimeters (7.8 hundredths of an inch).
[0039] As shown in
[0040] As shown in
[0041] Additionally, the ribs 48 help to center the sleeve 58 while still maintaining clearance between the sleeve 58 and the projecting portion 38. In the illustrated example, the radially inner base portion 50 of the grommet 30 is the only portion of the grommet 30 that maintains contact with the sleeve 58. However, it is possible that the ribs 48 could be sized to maintain contact with the sleeve 58. In the illustrated example, the radial gap is between 1.0 millimeter (3.9 hundredths of an inch) and 2.0 millimeters (7.8 hundredths of an inch).
[0042] The preceding description is exemplary rather than limiting in nature. Variations and modifications to the disclosed examples may become apparent to those skilled in the art that do not necessarily depart from the essence of this disclosure. The scope of legal protection given to this disclosure can only be determined by studying the following claims.