A01D78/14

PICK UP DEVICE FOR CUT PLANTS TREATMENT MACHINE AND MACHINE
20210022294 · 2021-01-28 · ·

Collection device for cut plant processing machine and corresponding machine This invention relates to the a collection device (2), comprising, on the one hand, a frame (3) and an elongated rotor (5) guided in rotation in relation to the frame (3) about a longitudinal axis (AL), a plurality of raking tines (7) arranged by groups of three or more being mounted on rotor (5), each group of tines (7) being located in its own plane perpendicular to the longitudinal axis (AL), these different planes being laid out along the said longitudinal axis (AL), and, on the other hand, a plurality of deflectors (9) extending at least partially about rotor (5) and spaced out in the direction of the longitudinal axis (AL), the spacing between the two adjacent deflectors (9) being adapted for the passage of the tines (7) of a group during rotation of rotor (5), and in the mounted state the said deflectors (9) being connected to frame (3) by the intermediary of at least one first means of attachment (10). Device (2) characterized in that at least one movable part of at least one of the deflectors (9) is connected to the frame (3) by an articulated connection (11) which allows the said movable part at least a swivel movement inducing a disengagement in relation to rotor (5).

Harvester with feedback assembly and methods of using the same
10765059 · 2020-09-08 · ·

A feedback assembly for a harvester includes a chassis, at least one rod coupled to the chassis, and at least one tine rotatably coupled to the at least one rod. The at least one tine defines an elongated body including a linear section extending from the at least one rod, and an angled section extending at an angle from the linear section. The at least one tine configured to hang substantially perpendicularly relative to a direction of travel of the harvester when in a non-actuated position and configured to rotate away from the direction of travel of the harvester when in an actuated position.

Harvester with feedback assembly and methods of using the same
10765059 · 2020-09-08 · ·

A feedback assembly for a harvester includes a chassis, at least one rod coupled to the chassis, and at least one tine rotatably coupled to the at least one rod. The at least one tine defines an elongated body including a linear section extending from the at least one rod, and an angled section extending at an angle from the linear section. The at least one tine configured to hang substantially perpendicularly relative to a direction of travel of the harvester when in a non-actuated position and configured to rotate away from the direction of travel of the harvester when in an actuated position.

SELF-PROPELLED VEHICLES WITH SUSPENSION SYSTEM CONTROL
20200276876 · 2020-09-03 ·

Self-propelled vehicles that adjust the pitch of the vehicle during use are disclosed. The vehicle may include a suspension system position sensor and a control unit that adjusts a suspension element based at least in part on a signal from the suspension system position sensor. In some embodiments, the self-propelled vehicle may include an inclinometer for measuring the pitch of the terrain.

TORSION SPRING ADJUSTMENT ASSEMBLY FOR A FINGER WHEEL RAKE
20200096070 · 2020-03-26 ·

A torsion spring adjustment assembly for supporting a finger wheel rake that includes a lever operably connected to a torsion spring supporting the finger wheel rake for setting the tension of the torsion spring. The lever is pivotable about the axis of a rotational shaft of the finger wheel rake to a plurality of tension-setting positions and is secured to a main frame of the finger wheel rake at a position selected from the plurality of tension-setting positions. The lever is adjusted to a select position and then secured against the adjustment plate by a mechanical fastener.

TORSION SPRING ADJUSTMENT ASSEMBLY FOR A FINGER WHEEL RAKE
20200096070 · 2020-03-26 ·

A torsion spring adjustment assembly for supporting a finger wheel rake that includes a lever operably connected to a torsion spring supporting the finger wheel rake for setting the tension of the torsion spring. The lever is pivotable about the axis of a rotational shaft of the finger wheel rake to a plurality of tension-setting positions and is secured to a main frame of the finger wheel rake at a position selected from the plurality of tension-setting positions. The lever is adjusted to a select position and then secured against the adjustment plate by a mechanical fastener.

RAKE WHEELS FOR GATHERING CROP MATERIAL
20200084970 · 2020-03-19 ·

Rake wheels for raking apparatus for gathering crop material into a windrow are disclosed. In some embodiments, the rake wheel includes disks for securing and limiting circumferential and axial movement of the tines of the rake wheel.

RAKE WHEELS FOR GATHERING CROP MATERIAL
20200084970 · 2020-03-19 ·

Rake wheels for raking apparatus for gathering crop material into a windrow are disclosed. In some embodiments, the rake wheel includes disks for securing and limiting circumferential and axial movement of the tines of the rake wheel.

RAKE IMPLEMENT WITH MOVEABLE TONGUE
20240065166 · 2024-02-29 ·

A center delivery rake implement includes a tongue movably attached to a frame for movement about a vertical axis. A tongue actuator interconnects the tongue and the frame. The tongue actuator is selectively controllable to position the tongue relative to the frame such that the central tongue axis may be non-parallel relative to the central longitudinal axis of the frame, whereby a lateral position of the frame relative to the tow vehicle is adjustable during operation. An implement controller may control the tongue actuator to position the frame in a desired position based on a determined location of an existing windrow.

RAKE IMPLEMENT WITH MOVEABLE TONGUE
20240065166 · 2024-02-29 ·

A center delivery rake implement includes a tongue movably attached to a frame for movement about a vertical axis. A tongue actuator interconnects the tongue and the frame. The tongue actuator is selectively controllable to position the tongue relative to the frame such that the central tongue axis may be non-parallel relative to the central longitudinal axis of the frame, whereby a lateral position of the frame relative to the tow vehicle is adjustable during operation. An implement controller may control the tongue actuator to position the frame in a desired position based on a determined location of an existing windrow.