Header lateral tilt control with automatic operation in free float and controlled tilt modes
US-10531607-B2 · Jan 14, 2020 · US
US12543644B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12543644-B2 |
| Application number | US-202318097555-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 17, 2023 |
| Priority date | Jan 17, 2023 |
| Publication date | Feb 10, 2026 |
| Grant date | Feb 10, 2026 |
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A feederhouse assembly for an agricultural vehicle includes a feederhouse frame including at least four interconnected walls, an open front end, an open rear end, and a hollow space circumscribed by the four interconnected walls. A header adapter is moveable relative to the feederhouse frame. The header adapter has an adapter sidewall disposed adjacent a feederhouse sidewall of the four interconnected walls. A torque stop is positioned within a gap formed between the feederhouse sidewall and the adapter sidewall. The torque stop has a low-friction bearing surface that is configured for bearing directly on one of the adapter sidewall and the feederhouse sidewall upon deformation of the frame to reduce friction between the adapter sidewall and the feederhouse sidewall.
Opening claim text (preview).
What is claimed is: 1 . A feederhouse assembly for an agricultural vehicle, said feederhouse assembly comprising: a feederhouse frame including at least four interconnected walls, an open front end, an open rear end, and a hollow space circumscribed by the four interconnected walls; a header adapter that includes a surface that is configured to be mounted to a header of the agricultural vehicle, wherein the header adapter is moveable relative to the feederhouse frame about a horizontal pivot axis which extends substantially parallel to a longitudinal axis of the header, the header adapter having an adapter sidewall disposed adjacent a feederhouse sidewall of the four interconnected walls; and a torque stop positioned within a gap formed between the feederhouse sidewall and the adapter sidewall, the torque stop having a low-friction bearing surface that is configured for bearing directly on one of the adapter sidewall and the feederhouse sidewall upon deformation of the frame to reduce friction between the adapter sidewall and the feederhouse sidewall when the header adapter moves relative to the feederhouse frame about the horizontal pivot axis. 2 . The feederhouse assembly of claim 1 , wherein the torque stop is mounted to the feederhouse sidewall and is spaced apart from the adapter sidewall. 3 . The feederhouse assembly of claim 2 , wherein a gap separating the low-friction bearing surface from the adapter sidewall is less than a gap separating the feederhouse sidewall from the adapter sidewall. 4 . The feederhouse assembly of claim 3 , further comprising one or more shims positioned between the feederhouse sidewall and the torque stop for adjusting a clearance between the low-friction bearing surface and the adapter sidewall. 5 . The feederhouse assembly of claim 1 , wherein the torque stop is mounted to the adapter sidewall and is spaced apart from the feederhouse sidewall. 6 . The feederhouse assembly of claim 1 , wherein the low-friction bearing surface and the adapter sidewall are composed of dissimilar materials. 7 . The feederhouse assembly of claim 1 , wherein the adapter is at least positioned within the hollow space of the feederhouse. 8 . The feederhouse assembly of claim 1 , further comprising a hydraulic cylinder for moving the adapter with respect to the feederhouse frame. 9 . The feederhouse assembly of claim 1 , wherein the low-friction bearing surface is composed of plastic. 10 . The feederhouse assembly of claim 1 , further comprising a feeder conveyor positioned within the hollow space of the feederhouse for conveying crop material from the open front end to the open rear end. 11 . The feederhouse assembly of claim 1 , further comprising fasteners for mounting the torque stop to said feederhouse sidewall. 12 . An agricultural vehicle comprising the feederhouse assembly of claim 1 . 13 . A combine harvester comprising the feederhouse assembly of claim 1 .
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