Method for applying a reinforcement of metal material to a component of metal material, particularly in the construction of a motor-vehicle body or a sub-assembly thereof
US-11911836-B2 · Feb 27, 2024 · US
US10155266B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10155266-B2 |
| Application number | US-201514690072-A |
| Country | US |
| Kind code | B2 |
| Filing date | Apr 17, 2015 |
| Priority date | Mar 13, 2007 |
| Publication date | Dec 18, 2018 |
| Grant date | Dec 18, 2018 |
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A joint including: a first component and a second component; the first component includes a bond region and an array of projections extending from the bond region, wherein the projections are embedded in the second component.
Opening claim text (preview).
The invention claimed is: 1. A set of joined components comprising: a first component and a second component, wherein the second component is a fiber reinforced composite component; and the first component includes a bond region formed of a material, and an array of projections extending from a planar surface of the bond region, and each projection comprises a series of layers of the material that forms the bond region; wherein the projections are embedded in the second component. 2. The set of joined components of claim 1 wherein at least one projection of the array of projections includes a part with an overhanging edge. 3. The set of joined components of claim 1 wherein at least one projection of the array of projections is asymmetrical. 4. The set of joined components of claim 1 wherein at least one projection of the array of projections has a pointed tip. 5. The set of joined components of claim 1 wherein the bond region is a first bond region and further comprising a third component joined to a second bond region of the first component, the second bond region having an array of projections. 6. The set of joined components of claim 5 wherein the bond regions are on opposite faces of the first component. 7. The set of joined components of claim 1 wherein the fiber reinforced composite component is a fiber-reinforced laminated carbon-fiber composite component. 8. The set of joined components of claim 1 wherein the projections are metallic. 9. The set of joined components of claim 1 wherein the projections are formed from a different material to the second component. 10. The set of joined components of claim 1 wherein at least one projection of the array of projections has a height (H) perpendicular to the bond region of the first component and an average width (W) parallel to the bond region, and wherein an aspect ratio H/W is greater than one. 11. The set of joined components of claim 10 wherein the aspect ratio H/W is greater than two. 12. The set of joined components recited in claim 1 wherein the material forming the bond region of the first component is a sintered powder. 13. A set of joined components comprising: a first component and a second component; the first component includes a bond region and an array of projections extending from a planar surface of the bond region, wherein each projection comprises a series of layers formed by an additive fabrication process; wherein the projections are embedded in the second component and the planar surface of the bond region faces the second component. 14. The set of joined components of claim 13 wherein the additive fabrication process grows each layer of the series of layers by at least one of directing energy or material from a head to the bond region. 15. The set of joined components of claim 13 wherein the material forming the bond region of the first component is a sintered powder and the projections are layers of the sintered powder. 16. The set of joined components of claim 13 wherein the bond region and the projections are formed of a material which is the same. 17. A set of joined components comprising: a first component and a second component, wherein the second component is a fiber reinforced composite component; and the first component includes: a bond region; an array of projections extending from the bond region, wherein the projections are embedded in the second component; and a plurality of resin bleed channels formed in the bond region, wherein each channel extends to at least one edge of the first component, and each channel extends between adjacent rows of the array of projections, and wherein each channel is configured to allow resin to flow through the channel during a curing process.
taking account of the properties of the material involved · CPC title
Manufacture of workpieces or articles from metallic powder characterised by the special shape of the product · CPC title
characterised by the composition of the plastics material of the parts to be joined (welding bar compositions B29C65/125) · CPC title
Stainless steel · CPC title
by means of multiple interengaging protrusions on the surfaces, e.g. hooks, coils, · CPC title
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