This invention relates to a mounting which is used to isolate two components and more particularly relates to a mounting used to acoustically insulate and isolate two building components in a building.
In order to reduce structure-borne vibrations and airborne noise between a pair of building components, such as a primary masonry wall and a secondary framed wall, when those two walls require support bridging connection between them for structural purposes, a mounting, consisting of brackets and rubber washers or pads have been mounted on a bolt, connecting the two building components together. A particular problem arises with the order in which the brackets, bolt and rubber elements are assembled, being that if a piece of construction debris, such as a small piece of timber, or a loose construction element, such as a stray fastener, lodges itself between one building component and the mounting, it inadvertently short circuits the isolation properties of the mounting and negates the intended attenuation of the vibration of noise, causing loss of amenity and function through noise annoyance.
Furthermore, some arrangements require the installer to interact with, adjust or affix the assembly bolt, either as the means by which the building component is connected to the mounting, or as a mechanism to adjust the distance between the building component and the mounting. The assembly bolt is generally tightened at the manufacturer's premises in a controlled environment to a precise value to ensure the compression of the rubber isolation elements is correct. The compression amount is highly critical to the acoustic performance of such mountings and any uncontrolled variation to the compression amount by way of the on-site installer interacting with the assembly bolt is likely to have a detrimental effect on the acoustic performance of the entire building.
The present invention seeks to overcome any one or more of the above disadvantages by providing a mounting that improves the acoustic and vibration isolation between two building components, eliminates the risk of the isolation elements being ineffective, and removes the need for the installer to interact directly with the assembly bolt that is critical to the isolation performance of the mounting.
According to a first aspect of the invention, there is provided a mounting for acoustically insulating a first building component from a second building component, said mounting having:
According to an embodiment of the invention the first building component is a primary bracket for connection to a primary building component; such as a wall and the second building component is a secondary bracket for connection to the secondary building component. The fastener may be an assembly bolt that connects all the elements together, that is the primary and secondary brackets and the first and second insulating portions and neck of the mounting. Preferably the only uninsulated connection of the assembly bolt to the mounting is between the assembly bolt and the primary bracket. Preferably a fixing surface of the secondary bracket is perpendicular to a fixing surface of the primary bracket.
Preferably the neck insulating portion fits through an aperture in the secondary bracket, said secondary bracket having two sections perpendicular to one another, one section having the aperture and the other section providing connection to the secondary building component.
The first insulating portion may extend between the primary bracket and said one section of the secondary bracket. Preferably at least the first insulating portion is substantially circular in cross-section and has a series of alternating ribs and grooves around the outer surface of the first insulating portion.
Preferably the primary bracket that has a raised portion, such that when the primary bracket is connected to the secondary bracket through the fastener, a head of the fastener abuts against a rear surface of the raised portion of the primary bracket.
Preferably the mounting is dimensioned to provide a gap between the primary bracket and the secondary bracket and wherein the fastener is insulated by said mounting from the secondary bracket.
A preferred embodiment will hereinafter he described, by way of example only, with reference to the drawings which:
Referring to
It is seen that a portion of the mounting 4, that is the first insulating portion 10 separates the two brackets 6 and 8 to provide a space therebetween and the bracket 8 has a 90° bend to enable the attachment thereto of an upright member or secondary building component such as stud 42 through fasteners 46 and 48 (refer to
The arrangement shown in the various
Number | Date | Country | Kind |
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2017905175 | Dec 2017 | AU | national |
Number | Name | Date | Kind |
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2115238 | Stevens | Apr 1938 | A |
3971881 | Hawkins | Jul 1976 | A |
7416174 | Dickson | Aug 2008 | B2 |
9027527 | Higashi | May 2015 | B2 |
Number | Date | Country | |
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20200240135 A1 | Jul 2020 | US |
Number | Date | Country | |
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Parent | 15903782 | Feb 2018 | US |
Child | 16849371 | US |