Energy transmission control mount
11725708 ยท 2023-08-15
Assignee
Inventors
Cpc classification
E04B2001/8272
FIXED CONSTRUCTIONS
E04F13/0805
FIXED CONSTRUCTIONS
F16F1/376
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/373
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04B1/98
FIXED CONSTRUCTIONS
International classification
E04B1/98
FIXED CONSTRUCTIONS
E04F13/08
FIXED CONSTRUCTIONS
F16F1/373
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F1/376
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16F15/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An energy transmission control mount comprises a carrier having a first major surface, an opposite second major surface and an aperture provided therein. Channels are provided adjacent opposite ends of the first surface. Vibration dampening material is provided on the carrier. The vibration dampening material substantially lines the channels and the aperture and extends over at least a portion of the second surface.
Claims
1. An energy transmission control mount to act between a pair of building components comprising: a carrier having a first major surface, an opposite second major surface, and an aperture provided therein; and vibration dampening material on said carrier that substantially lines said aperture, said vibration dampening material extending over at least a portion of said second major surface and over at least a portion of said first major surface, the vibration dampening material extending over said second major surface being configured to bear against one of said building components and the vibration dampening material extending over said first major surface being configured to retain a washer in alignment with said aperture, wherein said carrier is configured to retain a second of said building components adjacent said first major surface.
2. The energy transmission control mount according to claim 1 wherein the vibration dampening material extending over said second major surface is configured to define a series of spaced ribs.
3. The energy transmission control mount according to claim 2 wherein said ribs are parallel and are generally equally spaced.
4. The energy transmission control mount according to claim 1 wherein said vibration dampening material is permanently bonded to said carrier.
5. The energy transmission control mount according to claim 1 wherein said carrier is configured to define channels adjacent opposite ends of said first major surface, the channels being configured to engage with the second of said building components.
6. The energy transmission control mount according to claim 5 wherein at the opposite ends of said carrier, the carrier is folded back over said first major surface to define said channels.
7. The energy transmission control mount according to claim 6 wherein said channels are sized to receive flanges of a furring channel.
8. The energy transmission control mount according to claim 7 wherein said channels are lined with vibration dampening material.
9. The energy transmission control mount according to claim 7 further comprising a fastener configured to pass through the washer and aperture and secure the carrier to the one of said building components.
10. The energy transmission control mount according to claim 9 wherein the one of said building components is a wall stud or joist and said fastener is a screw.
11. The energy transmission control mount according to claim 1 wherein said carrier is formed of metal.
12. The energy transmission control mount according to claim 1 wherein said vibration dampening material is formed of rubber.
13. The energy transmission control mount according to claim 1 further comprising a fastener configured to pass through the washer and aperture and secure the carrier to the one of said building components.
14. The energy transmission control mount according to claim 13 wherein the one of said building components is a wall stud or joist and said fastener is a screw.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments will now be described more fully with reference to the accompanying drawings in which:
(2)
(3)
(4)
DETAILED DESCRIPTION OF THE EMBODIMENTS
(5) Turning now to
(6) On the back surface 32, the vibration dampening material 30 is configured to define a plurality of vertically and generally equally spaced, horizontal ribs 34. On the front surface 18, the vibration dampening material 30 is configured to define a disc 36 on which a washer 38 is disposed. The vibration dampening material 30 substantially lines the aperture of the washer 38 and forms an annular flange 40 over the washer 38 to retain the washer on the disc 36. The vibration dampening material 22 substantially lining the channels 20 is isolated from the vibration dampening material 30 substantially lining the aperture 26 and extending over the front surface 18 of the carrier 12. The vibration dampening material 22 and 30 is permanently bonded to the carrier 12
(7) Turning now to
(8) If energy such as vibration or sound is transmitted to the wall stud 50, the ribs 34 resist transmission of that energy to the carrier 12. The vibration dampening material 30 substantially lining the apertures of the carrier 12 and the washer 38 resists transmission of energy to the fastener 54. Energy that is transmitted to the carrier 12 moves to the extremities of the carrier. The vibration dampening material 22 lining the channels 20 resists transmission of this energy to the furring channel 56. In this manner, the energy transmission control mount 10 reduces the transfer of energy between the wall stud 50 and the furring channel 56 and hence the drywall 52.
(9) In the example described above, the energy transmission control mount is shown interposed between a wall stud 50 and drywall 52. Those of skill in the art will however appreciate that the energy transmission control mount may be used to isolate other building structures such as for example floors and joists, masonry and wall studs, exterior walls and wall studs etc.
(10) Although the energy transmission control mount is particularly suited to isolate building structures, the energy transmission control mount may be used in other environments to isolate components to inhibit vibration/sound from propagating between components. For example, the energy transmission control mount may be used in automobiles as an engine mount, or as a mount for vehicle body parts.
(11) Although embodiments have been described, those of skill in the art will appreciate that variations and modifications may be made without departing from the spirit and scope thereof as defined by the appended claims.