Bimetallic static gasket and method of construction thereof
US-9518660-B2 · Dec 13, 2016 · US
US9970548B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9970548-B2 |
| Application number | US-201313827828-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 14, 2013 |
| Priority date | Mar 14, 2013 |
| Publication date | May 15, 2018 |
| Grant date | May 15, 2018 |
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A multi-layer gasket for establishing a seal between a first member (such as a cylinder head) and a second member (such as an engine block) is provided. The multi-layer gasket includes a pair of outer functional layers and at least one inner functional layer. Each layer has a full combustion bead that encircles an opening, and the full combustion beads of all of the layers are aligned radially with one another. Each layer also has an outer periphery, and the outer periphery of the inner layer is disposed radially between the aligned full combustion beads and the outer peripheries of the outer layers. The outer layers also include half beads adjacent their outer peripheries.
Opening claim text (preview).
What is claimed is: 1. A multi-layer metal gasket for establishing a seal between a first member and a second member, comprising: a pair of outer functional layers, each of said outer functional layers having an outer layer outer periphery and an inner periphery surrounding an opening, each of said outer functional layers having an outer layer full combustion bead spaced radially from and circumferentially surrounding said opening, each of said outer functional layers having a half bead spaced radially from said full compression bead, and said outer layer full combustion beads extending in a first axial direction; at least one inner functional layer sandwiched between said outer functional layers, said inner functional layer including an inner layer full combustion bead aligned radially with said outer layer full combustion beads, and said inner functional layer having an inner periphery surrounding said opening and aligned with said inner peripheries of said outer functional layers, said at least one inner functional layer extending radially inwardly of said inner layer full combustion bead and terminating at an outer periphery thereof that is located radially between said aligned full combustion beads and said half beads of said outer functional layers; and said inner layer full combustion bead extending in an opposite second axial direction from that of said first axial direction of said outer layer full combustion beads and being disposed in peak to peak contact with one of said outer layer full combustion beads and being compressible to establish a fluid tight seal against the one of said outer layer full combustion beads in peak to peak contact therewith. 2. The multi-layer metal gasket as set forth in claim 1 wherein said half beads on said outer functional layers are disposed adjacent said outer layer outer peripheries. 3. The multi-layer metal gasket as set forth in claim 1 wherein said half beads of said outer functional layers extend outwardly in opposite axial directions from one another. 4. The multi-layer metal gasket as set forth in claim 1 wherein said inner functional layer is generally annularly shaped. 5. A multi-layer metal gasket for establishing a seal between a first member and a second member, comprising: a first outer functional layer having a first inner periphery surrounding an opening, a first outer layer full combustion bead spaced radially from said first inner periphery, a first outer periphery spaced radially from said first outer layer full combustion bead, and a first half bead adjacent said first outer periphery; a second outer functional layer having a second inner periphery surrounding said opening, a second outer layer full combustion bead spaced radially from said second inner periphery and aligned with said first outer layer full combustion bead, said outer layer full combustion bead a said second outer function layer extending in a first axial direction and said first outer layer full combustion bead of said first outer functional layer also extending in said first axial direction, a second outer periphery spaced radially from said second outer layer full combustion bead and a second half bead adjacent said second outer periphery and aligned with said first half bead; at least one inner functional layer sandwiched between said first and second outer functional layers, said at least one inner functional layer having an inner layer full combustion bead aligned radially with said outer layer full combustion beads, and said inner functional layer extending radially and terminating radially between said aligned full combustion beads and said aligned half beads of said first and second outer functional layers; and wherein said inner layer full combustion bead extends in an opposite axial direction from said first and second outer layer full combustion beads and is in peak to peak contact with one of said second outer layer full combustion beads and is compressible to establish a fluid tight seal against said second outer layer full combustion bead. 6. The multi-layer metal gasket as set forth in claim 5 wherein said half beads of said first and second outer functional layers extend in opposite axial direction. 7. The multi-layer metal gasket of claim 1 , wherein said at least one inner function layer is disposed in surface-to-surface contact with the other of said outer functional layer in which there is said peak-to-peak contact, said surface-to-surface contact being on radially opposite sides of said full beads of each said other outer functional layer and said inner functional layer.
without fold over · CPC title
with a bore ring · CPC title
laminated · CPC title
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