Varying intermediate ring diameters balance soil compaction and levelling with easier throughput, while scrapers limit soil adhesion.
Weighted roller cleats imprint troughs perpendicular to slopes, compacting soil to control runoff, erosion, and seed washout.
Opposing buffer bits cut and displace soil to promote breakup, aeration, and uniform distribution during rotation.
Profile channels and oriented stud sections guide soil while balancing edge and center compaction for more uniform seedbeds.
A modular rolling cage keeps welded strength while removable members provide hand-tool access to trapped rocks during tillage.
A removable structural section gives tillage operators hand-tool access to trapped objects while preserving rolling cage durability.
Rigid spacer projections clamp elastic rings via form fit, resolving inconsistent spacing and tensioning caused by loose elastic materials.
An angled toothed roller forms soil impressions that capture rainwater, reducing runoff and erosion in compacted ground.
A soil working tool uses two rollers of different diameters to apply controlled surface pressure for effective ground compaction.
A segmented scraper tooth design separates the holding part from the wearing part to enable independent replacement of worn components.
Segmented roller ring body halves connect via inner substance-to-substance bonds, preventing thermal microstructure damage and corrosion from liquid ingress.
Segmented spokes with optimized arm angles distribute stone impact forces, extending lifespan and reducing weight compared to reinforced conventional designs.
Vertical offset between adjacent scrapers prevents soil clod accumulation that causes roller jamming and poor compaction.
Peripheral studs on a semi-hollow tyre introduce soil discontinuities that promote crumbling and water capture in extreme conditions.
Asymmetric basket orientation and spline spacing eject debris sideways, eliminating ridges and preventing material accumulation.
Skeletal roller body with support disks reduces mass while maintaining structural stability for vibration-based substrate crushing.
Specific surface roughness prevents paper powder adhesion and slip on coated papers during long runs.
Segmented ring elements with fork-shaped spokes enable self-cleaning and seed bed preparation while reducing production costs.
A roller support structure uses sliding grooves to adjust scraper positions continuously without changing the entire assembly.