Segmented conveyor sections transfer cleaned crop material directly to an unloader or grain tank, reducing handling damage while maintaining high output rates.
Integrated mower, lifting, shredding, and compaction systems recover plastic mulch in a single pass to eliminate labor-intensive manual removal.
A unitary retention plate secures standard tines and stows floating tines on a windrow pickup header.
Pivoting lattice side walls pivot between folded and unfolded positions, resolving the contradiction between easy loading access and reliable load securing.
Strategic fan placement eliminates the auger, preventing twine plugging and reducing clogging risks while maintaining efficient material transfer.
A propelled carriage features independent shredding mechanisms for parallelepiped and cylindrical bales to handle mixed loads.
A harvester frame adjusts height via sensors to maintain a constant angle between the receiving and conveyor devices.
Offset support arms enable adjacent reel sections to pivot without gaps, preventing crop loss during harvesting.
Adjustable compression rollers pre-compress crop material, reducing belt tension and protecting baler durability while increasing bale density.
Tine braces absorb lateral forces from stub augers to prevent hold-down tine bending, maintaining structural integrity and collection efficiency.
A sensor detects bale geometry and a controller modulates pickup speed to resolve fuel efficiency trade-offs against device complexity.
A pickup assembly uses height sensors to provide real-time feedback for precise vertical adjustment of the pickup unit.
A large square baler cutter unit adjusts cut length based on bale formation sequence to maintain uniform shape.
Hydraulic cylinder adjusts pick-up section angle to evacuate dirt via dedicated outlets, preventing cleaning member blockage.
Alternating long and short tines on a rotor cutter plate resolve cleaning inefficiency from uniform designs, boosting crop intake.
Extendable conical bolts lift guide elements apart to eliminate play, allowing stable operation while simplifying maintenance access.
Torque-driven pivoting pickup reel absorbs obstacle impacts through chain tension, preventing bounce and missed crop collection.
Rotor plates on a baler slider frame mediate crop transfer to prevent plugging and maintain flow uniformity.
A pivoting seed carrier conveyor rotates between loading and unloading positions using a hydraulic cylinder for height adjustment.
A reversible feed roller adjusts finger axis position via a clutch mechanism to optimize crop engagement and release during operation.
Blades attached to rotor tines form continuous conveying channels that guide harvested crop material through the loading device.
Spring-biased wheel carriers constrain caster rotation to maintain legal width and dampen oscillations when raised.
Segmented cam mechanisms dynamically adjust tine positions to clear converging augers and eliminate secondary feed mechanisms.
A robotic operating head with aspirating suckers synchronizes with moving channels to insert articles into supply line compartments.
Quadrilateral linkage guides loader arm vertically to maintain machine balance during lifting operations.
Centrifugal elevator directs crop onto a belt conveyor within a tube, reducing energy consumption and crop damage from auger turbulence.
Drivers in the holding device engage lying straw from above to equalize crop layers, preventing congestion and irregularities in the intake stream.
Asymmetric tines minimize damage while maintaining throughput, resolving the trade-off between low speed processing and uniform cut quality.
Optical sensors detect bale position to guide hydraulic lifting assemblies, reducing wrapping damage during automated pickup.
A nested pin pivot assembly integrates tailgate and arm pins to simplify rotational support mechanisms in agricultural balers.
Counter-tools extend beyond scraper radii to guide long-stemmed crops toward scrapers, preventing winding and ensuring complete stripping.
A presence sensor triggers automatic tare mode on a load cell scale controller for grain cart unloading operations.
A pivotable floor assembly moves between raised and lowered positions to clear crop material blockages in agricultural balers.
Dynamic conveyor tracks adapt to varying freight dimensions, eliminating gaps and improving loading density.
A baling element guide device mounts a guide means non-rotatably on a common axis with the roller to maintain positioning.