Composite fitting
US-2019072230-A1 · Mar 7, 2019 · US
US10976004B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10976004-B2 |
| Application number | US-201815908188-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 28, 2018 |
| Priority date | Mar 3, 2017 |
| Publication date | Apr 13, 2021 |
| Grant date | Apr 13, 2021 |
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A fitting for connecting first and second components arranged at right angles to each other that includes a flange part, which extends in a first direction and has a first connection surface in contact with the first component, and which has at least one first connection hole formed by a bore of a first insert; and a base part, which extends in a second direction, perpendicular to the first direction, and has a second connection surface in contact with the second component, and which has at least one second connection hole formed by a bore of a second insert. The first insert is joined to the second insert by at least one loop of continuous fiber tow wound around radially outer surfaces of the first insert second inserts.
Opening claim text (preview).
What is claimed is: 1. A fitting adapted to connect a first component to a second component, which is at a right angle relative to the first component, the fitting comprises: a first insert defining a first insert bore; a second insert defining a second insert bore; a flange part, which extends in a first direction and has a first connection surface adapted to be in contact with the first component, the first insert being located in the flange part such that a first connection hole through the flange part is formed by the first insert bore; and a base part, which extends in a second direction, perpendicular to the first direction, and has a second connection surface adapted to be in contact with the second component, the second insert being located in the base part such that a second connection hole through the base part is formed by the second insert bore, wherein a main body of the fitting is made of a fiber-reinforced polymer material that is molded around the first and second inserts, wherein the first insert is joined to the second insert by one or more loops of a continuous fiber tow that is wound around part of a radially outer surface of the first insert and around part of a radially outer surface of the second insert, the continuous fiber tow extends generally in the first direction within the flange part of the fitting and extends generally in the second direction within the base part and follows a curved path within a transition zone between the flange part and the base part, and wherein the radially outer surface of the second insert curves away from the second connection surface at each side of a bore axis when viewed in a third direction. 2. The fitting of claim 1 , wherein the flange part comprises neighboring first inserts and/or the base part comprises neighboring second inserts, and wherein each of the first inserts is connected to each of the second inserts via one or more loops of the continuous fiber tow, which follows a curved path in the transition zone. 3. A fitting adapted to connect a first component to a second component, which is at a right angle relative to the first component, the fitting comprises: a first insert defining a first insert bore; a second insert defining a second insert bore; a flange part, which extends in a first direction and has a first connection surface adapted to be in contact with the first component, the first insert being located in the flange part such that a first connection hole through the flange part is formed by the first insert bore; and a base part, which extends in a second direction, perpendicular to the first direction, and has a second connection surface adapted to be in contact with the second component, the second insert being located in the base part such that a second connection hole through the base part is formed by the second insert bore, wherein a main body of the fitting is made of a fiber-reinforced polymer material that is molded around the first and second inserts, wherein the first insert is joined to the second insert by one or more loops of a continuous fiber tow that is wound around part of a radially outer surface of the first insert and around part of a radially outer surface of the second insert, the continuous fiber tow extends generally in the first direction within the flange part of the fitting and extends generally in the second direction within the base part and follows a curved path within a transition zone between the flange part and the base part, wherein an upper surface of the base part of the fitting, opposite from the second connection surface, has a concave profile when viewed in a third direction and wherein at a flange side of the base part, the upper surface of the base part has a first curvature with a center of curvature that coincides with that of the curved path followed by the continuous fiber tow in the transition zone. 4. A fitting adapted to connect a first component to a second component, which is at a right angle relative to the first component, the fitting comprises: a first insert defining a first insert bore; a second insert defining a second insert bore; a flange part, which extends in a first direction and has a first connection surface adapted to be in contact with the first component, the first insert being located in the flange part such that a first connection hole through the flange part is formed by the first insert bore; and a base part, which extends in a second direction, perpendicular to the first direction, and has a second connection surface adapted to be in contact with the second component, the second insert being located in the base part such that a second connection hole through the base part is formed by the second insert bore, wherein a main body of the fitting is made of a fiber-reinforced polymer material that is molded around the first and second inserts, wherein the first insert is joined to the second insert by one or more loops of a continuous fiber tow that is wound around part of a radially outer surface of the first insert and around part of a radially outer surface of the second insert, the continuous fiber tow extends generally in the first direction within the flange part of the fitting and extends generally in the second direction within the base part and follows a curved path within a transition zone between the flange part and the base part, wherein at a second side of the base part distal from the flange part a concave upper surface of the base part has a second curvature and wherein the continuous fiber tow extends into the second side, following a curved path with a center of curvature that coincides with that of the second curvature. 5. The fitting of claim 4 , wherein the continuous fiber tow extends into the second side of the base part beyond a top level of second connection hole on the concave upper surface of the base part. 6. The fitting of claim 4 , wherein at a flange side of the base part the upper surface of the base part has a first curvature with a center of curvature that coincides with that of the curved path followed by the continuous fiber tow in the transition zone, the first and second curvatures of the concave upper surface have a common center of curvature. 7. The fitting of claim 4 , wherein at a flange side of the base part the upper surface of the base part has a first curvature with a center of curvature that coincides with that of the curved path followed by the continuous fiber tow in the transition zone, the first and second curvatures of the concave upper surface have a different center of curvature. 8. The fitting of claim 1 , wherein the radially outer surface of the first insert and/or the radially outer surface of the second insert comprises a groove or recess in which the continuous fiber tow is received. 9. A connection bracket comprising: the fitting of claim 1 and including a washer with a through hole arranged in alignment with the second connection hole, wherein an underside of the washer is at least partly shaped to match an upper surface of the base part of the fitting. 10. The connection bracket of claim 9 , wherein the washer is a separate component. 11. The connection bracket of claim 9 , wherein the washer is joined to the upper surface of the base part, to form an integral assembly. 12. A method of manufacturing the fitting according to claim 1 , the method comprising steps of: placing the first insert in a mold configured to form the fitting, the first insert having the first insert bore with the first bore axis positioned normal to the first connection surface; placing the second insert in the mold, the second insert having the second insert bore with the second bore a
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