A movable upper wall adjusts the feeder duct cross section to prevent blockages and ensure uniform bale density.
A round baler pressing elements variable drive transmission increases rotational speed during wrapping operations to reduce cycle time and boost productivity.
A grain separating apparatus uses rigidly connected straw walkers and sieves to convey material while filtering grain through apertures.
A return conveyor system recovers harvested material from the return channel using a driven rotor.
Adjustable holding roller on the housing part limits the discharge opening during bale ejection.
Single sensor monitors baler knotter operation and lock engagement to trigger air blow-off for component cleaning.
A knotter sensor triggers an RFID reader to interrogate bale identification tags during the wrapping cycle.
Texture analysis assigns probability values to image areas, establishing position parameters that maintain detection accuracy despite weak signal conditions.
A back wrap roll maintains net width during insertion assembly movement.
A flexible web spans the bale chamber to eliminate gaps causing blockages, reducing friction and power consumption.
A knotter billhook performs full rotations via a pinion and gear drive to form secure loop knots.
A baler controller coordinates tractor halting with wrapper assembly movement to synchronize the wrapping process.
A baler feeding system uses pivoting tensioning shafts to adjust wrapping material tension during circumferential bale formation.
Wedge-shaped friction blocks on bale chamber walls exert compression forces to enhance crop material density during rectangular baling operations.
A plunger cleaner mechanism cleans reciprocating baler slots using integrated rollers and a latch arrangement.
Exterior drive assembly on pivotable roll protects bearing from debris interference in baling chamber.
Integrating RFID tags into twine resolves the trade-off between reliable bale tracking and increased device complexity in agricultural balers.
Electronic control unit displays relative tension cylinder lengths to guide baling system steering.
Movable adjusting rollers shift the press belt path to alter the baling chamber geometry, resolving initial compression issues and stabilizing bale formation.
A moveable bale support shifts laterally to deposit wrapped bales directly on the ground.
A cross-flow blower directs a uniform air stream along the knotter bank to maintain clean mechanical components.
A partial plunger slot cover shields the bale chamber side wall while leaving ends open.
A retainer mechanism secures the film end on a wrapping machine deflector to maintain consistent tension during the wrapping cycle.
A redirecting assembly intercepts stray crop material exiting a round baler bale formation chamber and returns it to the feeding device.
Fluid supply circuit switches modes to adjust density door pressure for precise bale formation.
Segmented guide sleeves rotate independently to accommodate individual belt speed variations, preventing slippage and reducing mechanical wear.
Articulated rockers suspend the wrapping table on a curved path, using gravity for transfer and hydraulic actuators to eliminate slow chain drives.
Front and rear clamping devices separate holding functions, eliminating repositioning delays while a friction welder joins plastic tape ends.
Sensor assembly monitors mat thickness and density to adjust belt speed, resolving inconsistencies in crop flow rate and bale quality.
A round baler discharge flap features a catching stop to decelerate straw bales during ejection.
A flexible web spans the bale chamber to maintain a continuous surface over gate edges.
A compact ejector system synchronizes two shuttle assemblies using a mechanical link driven by a single hydraulic actuator.
Ground property sensors measure inclination to adjust deposition locations, preventing bales from rolling downhill on hilly terrain.
Composite storage structures replace heavy metal shelves to lower overall baler mass without compromising binding material roll load-bearing capacity.
A round baler uses a pivotally mounted roller unit to guide the pressing element along the crop bale perimeter.
Integrated robot binding apparatus combines gripping, winding, and fastening functions to reduce space occupation and initial investment costs.
Biodegradable segments break off and decompose, resolving the contradiction between durable wrapping and waste generation.
A square baler uses an actuator and linkage to lock the bale chute in a retracted position during transport.
A force measuring bolt serves as the tilting axis of an agricultural wrapping table to detect bale weight directly.
Non-contacting optical sensor detects belt take-up arm position, eliminating mechanical free play and debris damage that degrade measurement precision.
A bale orientation system uses an electro-hydraulic valve to actuate the discharge gate at precise moments, stopping rotation without a clutch.
Baler controller signals tractor halt via bale size sensor data, eliminating operator fatigue from manual stopping.
Integrating passive RFID chips into binding material eliminates separate transponder devices and reduces system complexity.
Plunger slot belts cover guide openings to stop crop accumulation and eliminate surface printout artifacts on formed bales.
Dynamic CVT ratio adjustment minimizes driveline load fluctuations and peak power demands during square baler compression cycles.