See how a roll-wound flexible cover member prevents drooping and fold deformation in liquid rec
See how digital printing uses detected physical cues like yarn height and color to achieve in-r
See how a dual-row carriage with side heaters applies white ink under gelling conditions before
See how a curved roller heater enables vapor escape during fabric contact heating, reducing dry
See how a closed-loop in-line system merges pretreatment, drying, and printing stations to redu
See how differentiated ejection distances and liquid volumes between pretreatment and post-trea
See how a controller uses printing data to adjust drying and curing parameters for each textile
See how preheating and contact-angle detection adjust ink-jet parameters to prevent flushing an
See how dynamic platen routing to multiple printers based on recording medium type increases pr
See how a segmented platen with extension portions and gap areas eliminates garment repositioni
See how sensor-driven drying and curing control adjusts temperature and time per garment to red
See how aggregating sub-designs from multiple orders by textile roll and cutting parameters red
See how elapsed-time tracking and data-table estimation predict rubbing fastness of aged pretre
See how partial drying of the first printing fluid on a heated support tray prevents mixing wit
See how comparing warp and weft yarn exposure adjusts ink discharge direction and volume to sup
See how adjusting pretreatment liquid-to-ink weight ratio enables selective image erasure on te
See how dynamic platen routing based on recording medium characteristics directs platens to sui
See how a pressing stage between priming and printing flattens fabric structure to enable sharp
See how dual-nozzle DTG printing uses segmented dot density and ink amount control to suppress
See how a detector positioned between pretreatment liquid and ink ejection heads detects liftin
See how printing designs directly on nested fabric elements, rather than entire textile sheets,
See how a roll-wound flexible cover member prevents folding deformation during repeated opening
See how dual-level height detection prevents head interference and mist generation by detecting
See how a fabric printer acquires fabric-specific heating temperature and duration from an exte
See how resolution-controlled multi-head arrangement enables consecutive pretreatment, white fo
See how sensor-based virtual masking classifies print and no-print areas to prevent unwanted ma
See how a multi-step ink jet recording method with pigment ink and dual treatment liquids reduc
Reducing liquid flow while textile conveyance stops prevents over-wetting, improves drying, and avoids multi-pass printing failures.
See how dual-height fabric detection prevents printer head contact, reduces mist, and maintains
See how infrared imaging detects image positions through thick fabric to enable precise double-
See how single-scan application of reaction solution and transparent ink at 34 mg/(s·inch²) for
See how a barrier containment device confines treatment composition to deposit regions, enablin
See how a vertically adjustable receiving table with sensor-driven control adapts to textile th
See how a motor-driven vertically adjustable receiving table enables automatic height adaptatio
See how applying colorless liquid after white ink printing diffuses organic solvent into permea
See how applying colorless liquid after ink printing diffuses organic solvent to reduce seepage
See how a printing system estimates rubbing fastness from pretreatment liquid storage time, red
See how a shared common drain passage with controlled individual valves reduces maintenance dev
See how control circuitry calculates post-processing time to schedule inkjet head maintenance,
See how image-based pattern registration and correction enable accurate printing on complex fab
See how sensor-based virtual masking classifies printable and non-printable regions before disc
See how virtual mask generation from scanned surface features enables selective material deposi
See how differentiated suction zones and an adjustment assembly maintain transfer surface plana
See how adaptive maintenance timing based on embroidery job duration prevents discharge abnorma
See how combining analog dyeing for uniform backgrounds with digital inkjet printing for fine i
See how inclined rollers alternately wind and stretch elastic media to prevent wrinkles and mai
Predistorting 3D print patterns compensates for fabric stretch and body contours so apparel graphics stay recognizable when worn.
Colorless transport and rheology fluids improve textile inkjet color uniformity, sharpness, and penetration without extra nozzles.
An integrated guide element aligns thread with inkjet nozzles to reduce misalignment, ink waste, and uneven coloring in sewing machines.
A tilting, vertically articulated apparel receptacle keeps printhead clearance constant on thick or curved fabric to improve registration and print quality.
Automated printer-linked marking wraps labels around prolate objects, cutting manual effort and enabling operational data tracking.
A printer stores energy recovered from sheet-feeding motor rotation and releases it during image formation to cut peak power demand and circuit cost.
A reservoir wall redirects liquid to balance outlet path lengths, keeping ink temperature and viscosity consistent across discharge heads.
Motor current limits are switched while other units are restricted, keeping liquid ejection power within range and reducing capacitor size.
Guide members and a controller center moving optical fiber in the ink-jet stream, enabling accurate high-speed marking with durable overcoated marks.
Integrated opening covers protect unused printer interface ports from dust while keeping cable insertion simple and reducing cover parts.
Adjustable guide-corridor width and overlapping support surfaces automate conductor insertion into tubing for faster, accurate marking.
A sliding tray printer station combines printer, paper roll, and mobile computer storage to cut vehicle cabin bulk and improve access.
A sliding tray and integrated housing store the printer, paper roll, and mobile computer in one compact vehicle-mounted station.
Downstream compressed air dries inkjet-printed wire markings quickly, preventing smudging and shortening electric wire production time.
A detachable electrode-passivation stack lets compact imaging hardware print, scan, and reset flexible electronic paper over large areas.
Adjustable guide width and overlapping support surfaces automate conductor insertion into marking tubes for faster, more accurate serial marking.
Measured ink spreading guides droplet size, spacing, and interleaving to produce uniform thin films faster with fewer print passes.
Sensors and flexing-guided tubing opening automate conductor marking, improving positioning accuracy and serial throughput across varying diameters.
Measured ink spreading and substrate properties guide droplet size, spacing, and interleaving to print uniform thin films faster.
A pivoting eccentric moves the print head between open and printing positions, enabling conductor marking with less waste and manual label handling.
A flex-and-extender holder assembly with sensor feedback keeps substrate height and orientation stable for accurate microscopic droplet placement.
Beacon-assisted positioning lets a self-propelled printer switch from GPS to indoor navigation for accurate printing on diverse surfaces.
Sub-optimal 2D code layouts, clustered marks, and parallel lasers cut bottle etching time while preserving machine-readable decoding.
Scanning the laser along the conveyance direction reduces vibration and speed fluctuation errors, keeping image-line intervals consistent.
Opposed laser irradiators scan different workpiece regions in parallel to improve positional accuracy while simplifying conveyor handling and boosting throughput.
Battery charge feedback adjusts power sent to external devices so the printer preserves enough energy for stable printing.
A data-driven parameter prediction approach cuts trial-and-error setup and material waste when printing on diverse special media.
Opposed laser irradiators process front and back PET bottle regions at once, improving alignment and recycling throughput without complex conveyors.
Sub-optimal 2D code layouts cluster and align marks to shorten laser travel and speed plastic bottle marking while preserving readability.
A shared coupling unit lets container lines switch between labels and direct laser marking, reducing recycling contamination and retrofit cost.
A dry adhesive belt with microstructured contact surfaces holds stretchable textiles flat during printing, preventing edge curl and glue contamination.
A flex-supported substrate holder uses sensors and linear extenders to control height and position for accurate 5-10 μm droplet placement.
Multiple optical markers with offset focal points improve marking quality and throughput on curved, non-planar surfaces.
Visual detection, pneumatic clamping, and zero-return positioning automate flange labeling while avoiding overlap and manual errors.
Indoor layout printing uses LiDAR, IMU, encoders, and beacons to guide a self-propelled printer with precise path correction.
A separable 180° rotatable display mount improves POS printer visibility while saving counter space and eliminating a separate stand.
Automatic signal transmission links each embossed vehicle part mark to component data, removing manual entry errors and improving production traceability.