A round baler control unit adjusts pressing pressure based on measured bale diameter to maintain consistent size.
Parallel kinematic chains distribute torque to reduce the weight and size of baling press reduction gears.
A braking device controls wrapping material position on agricultural bales using controlled friction and drive interaction.
A variable speed baler adjusts chamber velocity using sensor data to maintain optimal bale formation.
Shrink film wraps compressed recyclable bales to maintain structural integrity, eliminating non-recyclable cardboard header waste and reducing material costs.
Lateral movement of the crop distributor distributes cut crop material across the baling chamber, enabling stable bale formation without tractor weaving.
Optical sensors capture bale images for automated dimension detection, replacing manual measurements to reduce data collection time.
A stuffer chute assembly uses rotating star wheels coupled to sensors to measure crop material density directly within the duct passageway.
A controller manages multiple sensor subsets to optimize bale density and shape through targeted compression cycles.
A radar-based length sensor transmits electromagnetic waves to estimate bale dimensions during formation within an agricultural baler.
A pivotable access panel on a large square baler opens vertically to clear crop blockages in the pre-compression passageway without hanging down.
Dual-point pressure application maintains parallel wall movement, preventing bale deformation and ensuring consistent density.
Decoupled guide member allows easy twine insertion, shortening tying cycles and reducing operational resistance.
A bale wrapper apparatus applies stretch film to agricultural bales using a pre-stretcher unit and controllable power source.
Actuated arms adjust dynamically to counteract slope-induced rolling, ensuring accurate bale placement on uneven ground.
Segmented end dogs engage behind bales at the inlet, reducing slippage and increasing eject force.
Real-time prediction models adjust baling parameters during formation, resolving control delays from outdated post-bale measurements.
A movable guide element directs wrapping material to a baling press pressing chamber, preventing blockages from accumulated film.
An electronic system estimates drive load by combining plunger force and position data for real-time control.
Replacing mechanical resistance with continuous weight monitoring ensures uniform compression and optimizes transport capacity utilization.
Actuator-controlled rollers adjust belt tension during gate movement to prevent bale displacement and enable accurate weight measurement.
A calibration system monitors slack arm position using potentiometer sensors to determine precise tension settings.
Curved guide surfaces constrain movable knives to prevent debris accumulation and maintain cutting precision despite wear.
A baler controller uses object detection sensors to verify the unloading zone before initiating bale ejection sequences.
A twine tensioning system uses a pivotable slack arm to maintain binding material tension during knotting operations in agricultural balers.