See how parallel folding and rolling lanes eliminate traversing modules, maintain cleansing flu
See how a folding arm merges guiding and folding functions to reduce bar count, motor usage, an
See how nested stacker modules and merged folding stations reduce industrial linen-folding devi
See how reversible conveyors and a rotating folding plate reduce belt count, spatial footprint,
See how a movable pressing portion applies counter-pressure at the folding line to prevent rigi
See how primary and secondary transverse-line folders share one conveyer layer to reduce machin
See how a bundling machine with carriage-driven folding and tensioning eliminates manual stretc
See how a rotatable platform with clamp rods and sweep rods autonomously folds varied laundry t
See how a pressing portion applies preliminary force against gauge bars to prevent elastic reco
See how an upwardly convex curved holder prevents fabric sagging and wrinkles during folding wh
See how movable frames and vertical stacking merge cross-wise folding with stacking operations
See how integrated vertical and horizontal folding plates with interlocking links reduce space
See how a robotic folding system uses modular clamp rods and sweep rods to automate laundry pro
See how a hinged creasing device with guide surfaces and ridges folds fabric strips uniformly w
See how a garment folding machine detects tension during conveying and reverses the motor to pr
See how male-female folding members with converging edges and outward protrusions guide excess
See how a hybrid folding device uses sensor-based profile detection and mode selection to fold
See how automatic detection of laundry thickness and weight enables dynamic folding parameter a
See how differential conveyor motor speeds across vertically stacked folding layers prevent wri
See how rectilinear plate motion guided by cam grooves reduces operation space and improves fol
See how a clamp assembly with unidirectional rotating wheels and elastic gap control prevents c
See how a multi-layer folding machine drops garment ends using conveyor control to remove wrink
See how motor current and time monitoring prevents overload during stack plate compression, imp
See how a rotatable platform with clamp rods and sweep blades autonomously folds diverse laundr
See how modular conveyor units with integrated belt conveyors and transfer units reduce axis of
See how offset lines of weakness in interfolded webs and inverted dispensing reduce unintended
See how motor current and delay-time monitoring detects garment lumping during folding, stops t
See how angled conveyor junctions and impinging forces flip facemask bodies to wrap ties at spe
See how integrating the longitudinal-line folder with the loading unit and using movable sub-bo
See how a folding unit with multi-height sub-boards enables simultaneous sleeve folding at a si
See how nested vertical and horizontal folding layers with zigzag conveyors fold diverse garmen
See how servo drives replace pneumatic cylinders in longitudinal folding wings to enable precis
See how a starter fold along a non-parallel folding line enables paper sheets to expand beyond
See how two synchronized folding devices with perpendicular folding wheels create three-fold fi
See how segmented modular conveyor units with integrated bearing plates reduce cumulative axis
See how an imaging device detects emblem position on laundry items and adjusts longitudinal fol
See how rotating fingers on a driven belt continuously engage and fold moving fabric articles,
See how a robotic folding device uses rotatable platform, clamp rods, and sweep rods to autonom
See how a napkin with integrated adhering and releasing portions secures cutlery wraps without
See how two folding devices positioned on opposite sides use segmented delivery and folding whe
See how stacked primary conveyors with holding mechanisms enable compact domestic folding machi
See how movable platens and vacuum-controlled work surfaces enable automated folding and joinin
See how a modular rack design with horizontal and vertical tabs and slots replaces accordion-st
See how a tucker fold dispenser uses automated folding rollers and a tucker bar to dispense nap
See how optical detection means on opposite sides of the folding gap measure overlap difference
See how offset lines of weakness in interfolded webs prevent premature tearing and ensure consi
Sensors measure layer-end distance and adjust the next transverse fold to correct overlap differences and keep laundry folds aligned.
Length-based conveyor speed and air-blowing control cut laundry folding cycle time, energy use, and noise while ensuring complete folds.
Offset fold lines create unequal napkin panels that insert between adjacent folds, speeding dispenser reloading and avoiding multi-napkin withdrawal.
Offset tear lines and an upward leading web help sheet dispensers avoid unintended tearing and keep dispensing consistent when full.
Joining offset interfolded webs at the leading or trailing portion keeps the next sheet accessible, reducing waste and refill confusion.
Rotating plate members fold shirts without pulling or sliding, cutting fabric damage, sensor needs, maintenance, and cost.
An offset multi-panel towel fold improves grasping and dispensing while reducing fiber waste, tab-out failures, and extra sheet use.
Dual abutment areas and a pressing element distribute blade force evenly in an interfolding cutting roller for cleaner cuts and fewer paper jams.
An optional mounting base adds sheet folding only when needed, avoiding full replacement, extra size, and unnecessary drive cost.
A movable cutting and folding module speeds replacement and format changes in paper converting while reducing machine size and downtime.
A movable discharge device cuts transfer stroke in folded paper package machines, reducing wear and energy use across varying stack heights.
A rotatable beam and interchangeable roller units let interfolding machines change sheet length faster while reducing blade damage risk.
Adjustable weakened-region spacing lets one folding line produce zig-zag web sheets of different lengths while improving package space use.
Independent roller timing forms and releases sheet deflection to suppress noise and keep Z-folded sheets stably stacked.
Automatic front/back orientation detection corrects recording material setup for pressure-bonding postcards, avoiding test prints and placement errors.
Downstream sheet detection triggers upstream roller timing, improving Z-fold, letter fold-out, and half-fold accuracy in image forming systems.
A rotatable, translatable beam and interchangeable roller units let interfolding machines change sheet length quickly without blade damage.
A cutout loader lets the tamper withdraw in two directions, keeping paper-end alignment precise while reducing cross-direction space.
Raised alignment members and a lower supporting member keep sheets laterally aligned, preventing turning and collision before stapling or folding.
A cutout loader and regulating member let the tamper withdraw behind the plate, reducing bulk while preventing unintended rotation.
Inclined buckle plate insertion slots reduce sheet overlap and improve folding accuracy for mixed-thickness printing substrates.
Lowering the discharge tray during sheet loading cuts sheet contact and friction, helping prevent misalignment and jamming on the processing tray.
On-the-fly cutting and segmented support keep fanfolded corrugated web stacks aligned, prevent press creases, and avoid folding slowdowns.
Direct and gear-coupled roller shafts keep folding rollers pressed together, stabilizing gear pitch for faster, quieter sheet folding.
Direct motor coupling and transmission gears stabilize roller contact in double folding, reducing gear pitch variation, noise, and speed loss.
Visual orientation input and print preview prevent secret images from being printed on the wrong adhesive surface.
Airflow and suction stabilize pad wings during folding, preventing fluttering and enabling precise coupling at high production speeds.
Airflow lifting and suction holding keep pad wings stable after 180° overturning, enabling precise Velcro coupling at high production speeds.
Independently movable support tables separate interfolded sheet stacks while pre-folding an end flap for easier pack extraction.
Airflow and suction stabilize overturned pad wings, preventing flutter and enabling precise Velcro coupling at high production speeds.
A segmented gate with gap-closing extensions lets sheet leading edges bend more easily, reducing catching, conveyance resistance, and jams.
Controlled vacuum and catching members move partly overlapped paper sheets faster while preserving folding quality.
Multiple folding rollers and a posture-changing guide let the folder process more sheets while forming different fold lines.
A first nip forms the fold, while a second nip sandwiches and reinforces it across varying sheet thicknesses, improving uniformity and reducing wear.
Selective suction holes hold sheets securely during folding above 300 m/min, improving fold accuracy while reducing jams and maintenance.
Folded adhesive web articles dispense without spindle rotation, helping maintain consistent tension while reducing tangling, waste, and downtime.
A moving discharge device shortens stack-transfer strokes, reducing energy use and wear while supporting varied package heights.
Detecting and movable mounting units correct strip misalignment in paper folding machinery, reducing setup time and folding errors.
Roller-mediated sheet conveyance limits guide-plate contact, reducing resistance, damage, and wrinkling across varied sheet stiffnesses.
See how a movable fold chute keeps attached cards on a straight paper path during buckling, preventing damage, dislodging, and machine jams.
Angled outlets send high-volume air to former leg surfaces, creating a cushion that reduces substrate friction and wear.
Automated gantry arms, motorized positioning, and programmable carrier folds replace glue or tape to speed precise card attachment.
A holding member moves sheet pressing members between pressing and retreat positions to stack folded and unfolded sheets neatly.
Heat-and-pressure bonding for folded media uses controlled toner order to preserve adhesion and prevent image defects.
Profile bodies and pivoting lugs guide soft paper through rotary rolls, combining folding, feed, sheet-length control, and separation.
Automatically aligns image order with paper orientation for pressure-bonding prints.
A trained model estimates fold quality from sheet and folding data to adjust reinforcement and control content across varied conditions.
A top-mounted dynamic cutter cuts upper partitions on the fly while supports help limit press creases during continuous stacking.
A motor-linked guide switches branching and reflux paths with roller rotation, integrating folding into the image forming apparatus.
Upstream and downstream rollers switch nip states to transport folded media without wrinkles or fold displacement.