Abstract:
The disclosure relates to a braking system useful for providing stable braking of harvesters, such as self-propelled windrowers. The braking system utilizes respective service brakes associated with or integrated into a front drive system of the harvester, each of the service brakes configured to slow down or stop rotation of the respective front wheels. A controller/module is configured to receive inputs and feedback parameters to actuate components of the harvester to slow down or stop the harvester.
Abstract:
A 3D point cloud is formed of the grippers of a load handling device in relation to a device which is moved horizontally above a load in the load handling device and to which the grippers are connected to be moved in the vertical direction. The grippers are positioned in relation to the horizontally movable device by comparing the formed 3D point cloud with at least one 3D model of the grippers.
Abstract:
A feed section for a multi-row sugarcane harvester comprises a first feed train configured to advance a first mat of sugarcane received from a first row of sugarcane, a second feed train configured to advance a second mat of sugarcane received from a second row of sugarcane, and a third feed train. The first and second feed trains merge into the third feed train. Each of the first feed train and the second feed train comprises a first feed roller and a second feed roller, each of which has an axis of rotation. With respect to the first feed train, the axes of rotation of the first and second feed rollers are positioned at different acute angles relative to a fore-aft axis of the feed section.
Abstract:
A windrower machine having a pair of forward rotating augers mounted in parallel with one another in overlapping relationship with one another to work in conjunction with a blade and a backstop to form windrows to disrupt and reduce caked material to particulate in windrows as said machine is moved forwardly through a work area.
Abstract:
A combine unload control system having a grain tank for storing grain and at least one auger for unloading grain from the grain tank. The control system also includes a first auger cover proximate to the at least one auger, having one or more first auger cutouts disposed on a portion of the first auger cover and a second auger cover proximate to the at least one auger and having one or more second auger cutouts disposed on a portion of the second auger cover. The control system further includes a controller configured to control amounts of grain to pass through the one or more first auger cutouts and the one or more second auger cutouts and flow to the at least one auger by causing the first auger cover and the second auger cover to move relative to each other.
Abstract:
A harvesting unit with a combine, having a user cab. A harvesting apparatus, advanced by the combine, has a frame and a harvesting assembly on the frame configured to process severed crop over a width between spaced sides of the frame. A fluid delivery system discharges pressurized fluid in discrete streams each directed to at least one of: a) facilitate severance of crop by the harvesting assembly; and b) facilitate advancement of severed crop rearwardly in relationship to the frame for further processing. A user can selectively vary at least one of: a) a volume of pressurized fluid; and b) a direction of pressurized fluid in the discrete streams. A control system has at least one actuator accessible and operable from outside of the cab through a user input to cause the at least one of the volume of pressurized fluid discharged, and direction of the pressurized fluid, in the discrete streams to be varied.
Abstract:
An agricultural machine with a mechanism involving rotating fingers for gathering crops towards an entry port, such as a rotating auger tube, has fingers mounted to be rotatable about a shaft that is itself movable inside the rotating tube, as the ends of the shaft are supported by a pair of cams. The ends of the shaft are movable along cam tracks which impose movement of the shaft along a pre-defined trajectory. Through a suitable coupling mechanism, the rotation of the tube drives the movement of the shaft ends in the cam tracks and hence the movement of the shaft itself, while the shaft remains parallel to the tube's rotation axis.
Abstract:
An agricultural implement is provided having mechanical activation and hydraulic engines for different sets and for functioning attached to a conventional tractor having a power outlet and a hydraulic system, thus enabling for the harvesting and windrowing of different plants.
Abstract:
A composite discharge spout portion for a discharge spout for a forage harvester defines at least a portion of a path for crop materials. The spout portion may include a proximal end, a distal end, an upper wall and a pair of side walls extending between the proximal end and distal end. The side walls depend from the upper wall, and the top and side walls have opposite major faces and edges. A spine may be integrated into each of the side walls and extends between the proximal and distal ends, with each of the spines forming a tubular structure on either side of the spout portion. The upper wall, the side walls and the spines may be integrally formed of a composite material.
Abstract:
A harvesting header includes a header frame, a flexible cutterbar assembly, and a draper assembly. The cutterbar assembly is mounted to the header frame and includes a plurality of skids. Each of the skids has a lower margin configured to engage the ground such that the skids cooperatively cause flexing of the cutterbar assembly along the length thereof in response to changes in terrain as the header is advanced. Each skid presents a skid surface extending from the lower skid margin.