See how a frame-attached utensil cover system uses elastic materials and static electricity to
Obstacle scanning covers the feeler path and lets the wrapper stop immediately and restart automatically after clearance.
Obstacle scanning with zone-specific coverage stops the wrapper before impact and enables automatic restart after clearance.
A displacement base and holding and cutting clamps secure wrap film without heat, reducing energy use and protecting load integrity.
An integrated heating element and clamp seal and cut film in one action, speeding tail securing and improving stretch-wrapping throughput.
Movable clamps hold corner posts against short loads after applicator retraction, allowing film placement in tight enveloping space.
Spring-biased rollers create persistent nonhomogeneous nips that keep wrap material feeding reliably as the wrap floor assembly moves.
Angled nozzles and flexible wrap create an airtight pallet enclosure, improving modified-atmosphere sealing for perishable goods.
A vertically movable lifting body and shifting winding head cut film-to-load distance, reducing pallet wrapping cycle time and maintenance complexity.
A single synchronized jaw drive prevents coil twisting, speeds wrapping cycles, and cuts stretch film use for flexible hose packaging.
A three-roller pre-stretch layout distributes film stretching across stages to reduce slippage and necking while maintaining wrap performance.
Removable support rings and interruption detection cut brush wear and downtime while keeping wrapping-ring power and signals continuous.
Movable gates enclose the pallet during wrapping, then retract for track travel to balance automated wrapping safety and mobility.
A brake-controlled roll holder keeps film tension steady during pallet wrapping, reducing film use while improving operator posture and load stability.
A pivoting arm with a lifting mechanism moves large bale wrap rolls onto the baler, cutting loading effort and downtime.
A separate reel and tape deflection layout makes rotary wrapping equipment lighter, more stable, and less energy-intensive during packaging.
A corner-aware controller varies packaging-material dispensing to maintain wrap force around irregular loads and reduce material breaks.
A Z-stacking subsystem positions wrap between fragile products to limit pressure damage during secure, efficient packaging.
Large wrap rolls are cumbersome to load onto balers; a pivoting arm and lifting device moves them from outside the machine into the wrap material bay.
Surface vibrations and low-friction guides stabilize consecutive products for repeatable, deformation-free stretch-film packaging.
Real-time wrap-force feedback adjusts dispenser rate to maintain containment force and reduce packaging material breaks.
A lever-actuated auxiliary wheel lifts the drive wheel off the surface, simplifying manual movement without mechanical uncoupling.
An integrated light source projects the wrapping boundary, allowing machine mobility while avoiding floor-marking maintenance.
A robotic actuator transfers and sets corner protectors on palletized loads using a rotatable platform mechanism.
Segmenting the dispensing mechanism and changing to vertical dimensionality reduces vehicle size, enabling efficient wrapping in confined spaces.
A compression ring moves tree branches inward toward the trunk, reducing equipment weight and improving maneuverability during the baling process.
Vertical support structure adds stability for electric wrapping arms without widening the pallet truck footprint.
An opposing conveyor moves backward to reduce tension and prevent dragging, ensuring uniform application without damaging fragile items.
A guided weight descends under gravity to apply pressure, eliminating pneumatic cylinder bending and reducing machine height.
3D image detection calculates local paths from point clouds, eliminating mechanical feeler arms and collision risks during irregular load wrapping.
Multi-layer helical wrapping applies elastic tension to form continuous packages, eliminating heat treatment and reducing film consumption.
Segmenting the wrapping system from the transport vehicle reduces device complexity and investment costs while maintaining high automation levels.
A sealed enclosure system regulates gas levels and introduces sanitizing agents to preserve perishable goods during transport.
Heated blades cut extensible packaging without heat-shrinking, eliminating thermal steps to reduce material costs and energy consumption.
An angled ramp supports the pallet truck while a matching conveyor moves loads, eliminating binding between forks and pallet plates.
Rotating articulated pliers grip film end flaps without interfering with the wrapping process, preventing sticking via a flexible diverting element.
A hollow support structure with pulley wheels shifts horizontally to expose the battery compartment of an electric pallet jack.
A bale wrapper film dispenser adjusts rotational speed based on carried film quantity to optimize operational efficiency.
A pivoting boundary linkage encloses the bale wrapping action area to block operator access during operation.
Stretchable crepe paper replaces plastic wrap on pallets, reducing environmental waste while maintaining package stabilization.
A wrapping machine covering apparatus adapts between longitudinal and transverse orientations to match load dimensions.
A wrapping machine punch creates controlled tears in packaging material to identify payout percentages at which the film propagates or breaks.
Inflatable bladders in the packaging material holder clamp film between jaws, eliminating tenting effects and reducing material waste during load wrapping.
Detachable support structures on a rectangular tray enable automated rebar packaging, resolving the trade-off between loading speed and shape adaptability.
A wrapping device unwinder moves along a programmable orbit to maintain constant film tension across diverse product shapes.
Automated palletizing system uses 3D geometry recognition to arrange metal parts on pallets.