A controlled pretreatment layer keeps fine titanium oxide white ink on cloth surfaces, improving whiteness while reducing image peeling.
See how cationic polymer or organic acid pretreatment aggregates titanium oxide particles to pr
Heating pretreatment liquid below 30 mg/cm2 and tuning TiO2 particle size helps textile inkjet white ink stay white, resist cracking, and avoid clogging.
See how ejecting color ink with aqueous resin emulsion before discharge printing ink improves w
See how a water-based ink set with controlled molecular weight polymerizable compounds and over
See how composite resin particles with oil-soluble dyes and low-Tg polymers enhance optical den
See how UV-curable inkjet printing with automated cutting replaces solvent-based processes to r
See how adhesive tape and dual vacuum belts flatten irregular leather surfaces to prevent wrink
See how sulfonate-based anionic surfactants and cationic processing liquids control fabric perm
See how segmented illumination control and cooling liquid application dry printed textile areas
See how dual-resin coating with optimized content ratios improves friction fastness in inkjet t
Heat-and-pressure transfer film imprints logos on minute leather edges with less ink waste, more uniform coating, and lower maintenance.
See how an air-permeable fibrous support layer uses vacuum suction to flatten natural leather,
See how a multi-layer polymer coating replaces metal barriers to enable fast-drying, high-trans
See how oxazoline polymer and aromatic carboxylic acid enable color development on cellulose fa
Controlled film modulus in ink and coating compositions preserves textile feel while improving dry and wet rubbing fastness.
See how a polymer blend with binding agents is heated, contacted with aqueous pigment, and cool
See how degassing treatment and hindered amine compounds maintain dissolved nitrogen below 10 p
See how post-crystallization of PET resin with inorganic fillers enables high-quality thermal-t
See how azetidinium-polyamine fixer fluids with pH-buffered lactam co-solvents form covalent bo
Controlled pigment shape, dispersant, and binder Tg improve textile inkjet ejection stability, image density, and scratch resistance.
See how crusted leather is attached to a temporary carrier for inkjet printing, enabling person
See how poly(styrene-maleic acid) co-polymer with high acid value enables water-based inkjet in
See how cationic triphenyl-phosphonium polyurethane particles form an image-receiving layer tha
See how polycarbodiimide crosslinking in water-based inkjet ink improves textile print durabili
See how pretreatment liquid with controlled surface tension enables wet-on-wet white inkjet pri
See how thermally reactive crosslinker nanocapsules in pre-treatment fluid improve pigment adhe
See how silanol-bonded polymeric capsules encapsulate thermal crosslinkers to provide stable, c
See how digital inkjet printing applies thin pretreatment, ink, and topcoat layers to textiles,
See how contact angle and droplet diameter control enable foam-promoting liquid to permeate in
An ink acceptance layer with a high pigment-binder ratio improves melamine adhesion and decor paper stability for precise emboss alignment.
See how inkjet printing applies pretreatment, ink, and topcoat layers only to treatment areas,
See how dynamic covalent polymeric capsules bind pigments to fibers without reactive chemistry,
Urethane resin particles form a heat-set film that improves textile ink color density, fastness, dispersibility, and bleed control.
See how limiting ink and treatment solution droplet weight to 30 ng or less reduces bleeding an
See how an aqueous ink jet ink uses organic solvents with controlled SP values and plasticizers
See how a resin-cross-linker-lubricant pretreatment liquid improves both wet and dry friction f
See how UV-curable inkjet printing replaces solvent-based silk screening to reduce curing time,
See how a polyester resin with controlled glass transition temperature and cross-linking improv
See how a multi-layer coating composition with polymeric binder, filler particles, and barrier
See how an inkjet printer integrates pre-treatment liquid application with marking fluid deposi
See how thermoplastic polyurethane bumpers and silicon pads suppress vibrations between the pri
See how pre-computed masks specify ejection positions and volumes for adjacent nozzles to compe
See how integrated printing, conveyance, and movement devices automate dye placement on base bo
Controlled heating and flocculant-treated inkjet printing reduce nozzle clogging and in-plane color differences on non-absorbent media.
See how vision-based feature detection and pre-rendered print patterns enable precise compositi
See how vision-based inkjet printing detects web features in real time to eliminate offset erro
See how organic solvents with specific solubility parameters and viscosity suppress dye diffusi
Acrylic resin particles with Tg above 24°C and mixed diol-glycol ether solvents help water-based ink resist scratching on coated paper.
Balances low migration, resin-film adhesion, and LED curing in food-packaging inkjet inks through tailored acrylates, oligomers, and initiators.
A high-molecular-weight hydrogen abstraction initiator at 0.1-2 mass% improves electron beam inkjet image quality while limiting ink migration.
A tuned solvent-to-monomer ratio and HSP distance improve ink stability while enabling fast curing, stronger film formation, and rubfast images.
Overlapping colored and clear ink layers with combined curing tint spectacle lenses while limiting bleeding, haze, and optical distortion.
Low-viscosity monomer particles enable inkjet prints to cure within 1 second while maintaining image quality, film strength, and wear resistance.
Rare-earth oxide ink preserves UV-visible luminescence after ceramic firing, enabling digitally printed authentication labels.
Multiple overlapping inkjet ink layers are co-cured to create reproducible lens tints with low haze, low scattering, and lower energy use.
Bulky monomer selection in radiation-curable clear ink preserves coating gloss after jetting while improving scratch resistance.
Adjusting platen speed and spray duty ratio helps match pretreatment range and amount to different cloths for more uniform ink fixing.
A toner-receiving multilayer pouch film enables printing after pouch making, avoiding surface damage, toner set-off, and extra finishing layers.
A composite printed film and moldable substrate creates deep 3D emblem relief while preserving flex, stretch, wash durability, and lower-impact processing.
Multiple offset passes redistribute nozzle errors across landing zones to prevent striping and Moiré while keeping inkjet prints uniform.
Acrylic-rich resin with selected metal oxides enables clear laser-marked codes while suppressing gas generation, carbonization, and blistering.
Triazine-ring crosslinking stabilizes bismuth coloration and suppresses gas and blistering, improving laser-marked code readability.
A mixed anatase-rutile titanium oxide ink boosts whiteness and opacity on transparent packaging while limiting yellowing and aggregation.
Isolators and controlled airflow contain conductive liquid mist around the discharge head, protecting the electronic board from contamination.
A dual-urethane resin ink composition improves laminate adhesion and flexibility to resist floating during 100°C+ retort sterilization.
Controls wet-on-wet printing by checking completion feasibility before ink discharge, reducing quality loss from pretreatment evaporation or absorption.
Sequential upstream and downstream inks with tuned solvent-pigment ratios suppress nozzle drying and landing interference at high transport speed.
A gelled radiation-curable ink limits glue-interaction in overlapping adhesive media, reducing pigment transfer and preserving print density.
A low-HLB acetylenediol surfactant with alkanediol and glycol monoether balances droplet spreading, ejection stability, and blocking resistance.
A terpene phenol resin ink formulation extends decap time while drying quickly to reduce static-induced nozzle clogging in thermal inkjet printing.
Controlled resin, wax, and heating conditions let aqueous inkjet printing on nonabsorbent media improve abrasion resistance and color.
Controlled clear-ink duty and UV curing create surface irregularities that reduce roll adhesion, suppress marks, and protect image quality.
A cellulose ether and polyvinyl alcohol coating improves aqueous ink affinity on tablets, suppresses bleed, and preserves gloss.
A resin-particle pretreatment liquid for impermeable substrates suppresses sticky, whitened films while improving image adhesion and quality.
Replacing much of the organic vehicle with silicon compounds cuts TOC and odor emissions while keeping ceramic inkjet nozzles from clogging.
Composite aqueous particles with urethane or urea bonds and lubricious moieties form cured films with high rub fastness and strong substrate adhesion.
A low-partition-coefficient solvent keeps water-based ink on the substrate surface, reducing pinholes and filling defects while preserving image reproducibility.
Tilt detection and delayed ink-jet timing let a printhead keep patterns complete and undeformed on tilted print media without manual adjustment.
Coordinated partial sheet recirculation across two passages cuts duplex flipping delays, raises throughput, and preserves document order.
Sequential water-based inkjet layers create durable high-resolution textured images while avoiding VOC emissions and UV curing.
Digital water-repellent printing and controlled glaze deposition create sharp 3D ceramic textures aligned with graphics while cutting tool changes.
Pretreated thermoset foam accepts dye sublimation without degradation, creating durable, lower-heat building surfaces with wood-like aesthetics.
Using 250-310 nm UV LED curing with α-hydroxyketone initiators, this case avoids coating yellowing and reduces heat damage to recording media.
Volatile C5 ketone inks replace MEK and methanol to dry quickly, adhere to non-porous substrates, and improve worker safety.
A urethane resin and aggregating-agent pretreatment balances storage stability, resin dispersibility, and boiling resistance on impermeable laminates.
Screen printing lays down white underbases while DTG adds colors, cutting screen setup and keeping textile print speed high.
Heating tuned to resin fusion and wax surface localization helps aqueous ink form durable, high-color images on nonabsorbent media.
Semi-circular members and gripping pads secure sublimation paper on cylindrical objects to prevent folds and improve imprint quality.
A controlled metal-salt-to-surfactant ratio stabilizes micelles in ink jet reaction liquid, preventing precipitation and image defects after pauses.
A silicone-based surfactant balances wet-spreading and droplet stability, improving image embedding and landing accuracy on non-absorptive media.
Controlling clear ink and processing liquid by gradation improves image quality while restoring coating smoothness and abrasion resistance.
Block and crosslinked polymer dispersants help colored and white inks aggregate uniformly after pretreatment, reducing image breakage on impermeable media.
A water-based resin and low-boiling solvent ink dries on impermeable substrates while maintaining adhesion and rub resistance without high heat.
A dual-cure siloxane transfer film enables easy lamination while preserving optical transparency, adhesion, thermal stability, and surface structures.
Carboxy-group polymers and pretreatment aggregation suppress droplet coalescence, improving inkjet jetting stability and image graininess.
A carboxyl-functional and amine-modified inkjet ink improves metal adhesion while maintaining insulation in high-humidity PCB environments.