Articulating mechanism for a vehicle door
US-2018087304-A1 · Mar 29, 2018 · US
US10422170B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10422170-B2 |
| Application number | US-201815897411-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 15, 2018 |
| Priority date | Apr 7, 2017 |
| Publication date | Sep 24, 2019 |
| Grant date | Sep 24, 2019 |
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Dual pivoting laterally translating hinges that attach between a stationary first substrate such as a vehicle body, and a rotating second substrate such as a vehicle door, and extend laterally when the second substrate is rotated. In some examples, the hinges include a knuckle and leadscrew mechanism that changes the hinge geometry when the second substrate is rotated, causing the leadscrew to rotate by either a set of gears or a rack and pinion. In some further examples, the hinges include a jackscrew that changes length as the second substrate is rotated, causing the hinge to extent laterally.
Opening claim text (preview).
The invention claimed is: 1. A hinge, comprising: a first attachment plate configured to secure to a first substrate; a first pivot with a longitudinal axis secured to the first attachment plate; a second attachment plate configured to secure to a second substrate; a second pivot with a longitudinal axis oriented orthogonally from the longitudinal axis of the first pivot and secured to the second attachment plate, the second pivot configured so that the second attachment plate rotates about the longitudinal axis of the second pivot; and a drive mechanism mechanically connected to the second attachment plate and the first pivot, and configured to impart a load to the first pivot to cause a rotation of the first pivot as the second attachment plate rotates so that a force resulting from a rotation of the first pivot causes the second attachment plate to translate away from the first attachment plate. 2. The hinge of claim 1 , wherein the drive mechanism includes a plurality of intermeshing gears to mechanically connect the first pivot with the second pivot, and the rotation of the second attachment plate is imparted to the first pivot via the plurality of intermeshing gears. 3. The hinge of claim 1 , wherein the drive mechanism further comprises: a knuckle mechanically attached to the first pivot; and a leadscrew engaged with the knuckle and mechanically connected to the second pivot via a plurality of intermeshing gears so that the leadscrew rotates within the knuckle as the second attachment plate rotates, causing the knuckle to move along a leadscrew longitudinal axis of rotation. 4. The hinge of claim 3 , wherein the knuckle is rotatably attached to a first end of a linkage arm, the linkage arm further having a second end distal from the first end, where the second end is mechanically attached to the first pivot. 5. The hinge of claim 4 , wherein the second end of the linkage arm is rotatably attached to a lift arm with a first end and a second end located distal from the first end, the lift arm being rotatably attached to the first pivot on the first end of the lift arm. 6. The hinge of claim 5 , wherein the drive mechanism further comprises a drive mechanism bracket, the drive mechanism bracket having a first bracket end rotatably attached to the second pivot, and a second bracket end distal from the first bracket end rotatably attached to the second end of the lift arm. 7. The hinge of claim 6 , wherein: the first attachment plate further comprises a socket; and the second attachment plate further comprises a hook, wherein the hook engages into the socket when the second attachment plate is brought into a parallel position with the first attachment plate. 8. The hinge of claim 3 , wherein the drive mechanism is further comprised of a plurality of gears, with one of the plurality of gears being mechanically connected to the second attachment plate, and a second one of the plurality of gears being mechanically connected to the leadscrew. 9. The hinge of claim 3 , wherein the drive mechanism is further comprised of a rack that is mechanically connected to the second attachment plate, and a pinion that is mechanically connected to the leadscrew, wherein rotating the second attachment plate causes the rack to rotate the pinion. 10. The hinge of claim 1 , wherein the drive mechanism is further comprised of a jackscrew with a first end mechanically attached to the first attachment plate and a second end attached to a universal joint; and the universal joint is mechanically attached to the second attachment plate. 11. A hinge for securing a door to a substrate, comprising: a first attachment plate secured to the substrate; a second attachment plate secured to the door; a first pivot with a longitudinal axis mechanically attached to the first attachment plate so that the longitudinal axis of the first pivot is substantially parallel to a plane of the first attachment plate; a lift arm with a first end and a second end located distal from the first end, the first end of the lift arm being rotatably attached to the first pivot so that the lift arm rotates up away from the plane of the first attachment plate, the first end further including a linkage pivot point and the second end further including a bracket pivot point; a linkage arm with a first end and a second end located distal from the first end, the first end being rotatably attached to the linkage pivot point and the second end including a knuckle pivot point; a drive mechanism comprised of: a drive mechanism bracket with a first end rotatably secured to a second pivot, the second pivot having a longitudinal axis oriented orthogonal from the first pivot longitudinal axis of the first pivot, and a second end located distal from the first end and rotatably secured to the bracket pivot point; a threaded knuckle rotatably attached to the knuckle pivot point; a threaded leadscrew with a longitudinal axis, rotatably secured to the drive mechanism bracket and passing through the knuckle so that rotating the leadscrew causes the knuckle to move along the longitudinal axis of the leadscrew; and one or more gears secured to the drive mechanism bracket and configured to rotatably drive the leadscrew; and wherein the second attachment plate is rotatably attached to the second pivot and is configured so that rotating the door causes the second attachment plate to rotate about the second pivot and impart a rotational motion to the one or more gears, thereby causing the leadscrew to be rotatably driven, and thereby further causing a load to be placed upon the lift arm, resulting in a torque that causes the lift arm to rotate away from the plane of the first attachment plate. 12. The hinge of claim 11 , wherein: the first attachment plate further comprises a socket; and the second attachment plate further comprises a hook, wherein the hook engages into the socket when the door is brought into a closed position against the substrate. 13. The hinge of claim 11 , wherein the one or more gears are comprised of a rack that is mechanically attached to the second attachment plate, and a pinion that is attached to the leadscrew. 14. A vehicle, comprising: a vehicle body; a vehicle door movably secured to the vehicle body by at least two hinges, each hinge further comprising: a first attachment plate secured to the vehicle body with a first pivot; a drive mechanism with a second pivot oriented orthogonally from the first pivot, the drive mechanism being rotatably attached to the first pivot; and a second attachment plate secured to the vehicle door and rotatably attached to the second pivot, the second attachment plate configured to drive the drive mechanism when the second attachment plate rotates; wherein rotating the door causes the second attachment plate of each hinge to rotate about the corresponding second pivot, causing the vehicle door to move laterally relative to the vehicle body as it rotates. 15. The vehicle of claim 14 , wherein the drive mechanism is comprised of: a lift arm with a first end and a second end located distal from the first end, the first end of the lift arm being rotatably attached to the first pivot so that the lift arm rotates up away from a plane of the first attachment plate when a load is placed upon the first end of the lift arm, the first end further including a linkage pivot point and the second end further including a bracket pivot point; a linkage arm with a first end and a second end located distal from the first end, the second end being rotatably attached to the linkage pivot point and the first end including
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