Nitrogen monomers stabilize polyamideimide resins against premature gelling, enabling high-resolution photoimageable films.
Adjusting anion concentrations in the first and second inks controls salt formation, resolving primary and secondary color dot-size differences.
Silicone-modified polyacrylate ink reduces surface tension to prevent clear paint adhesion, eliminating labor-intensive residue removal.
A radiation-curable inkjet composition uses a specific gellant ester and accelerator to control viscosity during cooling.
Pigment Blue 15 and Green 7 mixture creates true cyan inkjet ink.
Modified hyaluronic acid dopes PEDOT polymers to create conductive inks with high biocompatibility.
A curable composition uses a specific fluorine-containing mold releasing agent to lower surface tension and improve ink jettability.
Silver acetonedicarboxylate composition enables low-temperature formation of conductive silver elements with high flatness and adhesivity.
Acid anhydride and zeolite additives in the rubber roller composition capture nitrogen-containing compounds, preventing OPC drum damage and image defects.
A vertically movable light-blocking cover descends with the carriage to prevent collision during wiping operations.
A stealth ink formulation using red and green coloring materials emits visible light under ultraviolet radiation to create white images.
A metal oxide composition with a specific solvent compound improves quantum dot dispersibility in solution processes.
Wax thermal hysteresis in hot melt ink increases dot diameter by 15 percent, eliminating external treatment and reducing manufacturing complexity.
Thermoplastic polyurethane binder with silver particles maintains conductivity and adhesion when flexible substrates bend or crease.
Composite dispersant restores dispersed state of dried pigments, resolving aggregation issues during rehydration cycles.
pH-responsive resin particles adjust viscosity via conformational changes, eliminating water-soluble resins that cause flocculation and aggregation.
Acrylate ink compositions with controlled viscosity and tack enable stable delivery through anilox rollers.
A water-based ink jet composition uses polyester resin particles with surface-localized sulfo groups to stabilize dispersion and ejection.
A light emitting element ink uses a thickener to form hydrogen bonds that dynamically adjust viscosity for uniform dispersion.
A copolymer adhesion promoter combines alkyl titanate or zirconate monomers with alkyl phosphate monomers to secure printing inks on plastic substrates.
Specific acetylene glycol surfactants adjust red ink surface tension to reduce wall adhesion and foaming, ensuring clear liquid level visibility in CISS tanks.
Local modifying agents alter helical twisting in chiral liquid crystal polymers to create temperature-independent security features without high-power lasers.
Formula I compounds in thermochromic pigments optimize hysteresis width and color contrast for erasable marking while utilizing recycled cashew nut waste.
Copolymer dispersants resolve the trade-off between dispersing stability and color intensity by optimizing functional groups for high jetness.
Controlled base metal pigment particle diameter and high surface tension organic compounds resolve ejection stability issues during short interval printing.
A radiation-curable ink jet composition uses specific monomers to achieve coatings with improved strength, flexibility, and durability.
Metallic nanoparticle inks create reflective features via ink jet printing to prevent forgery by color copiers.
Aqueous ink set combines resin particles with water-soluble resins to form a uniform inner layer.
Composite resin system combines polyimide heat resistance with flexible acrylate adhesion to resolve solder thermal stress trade-offs.
A coating extender uses glass particles treated with an adhesion promoter to replace expensive resin components in ink formulations.
Circulating white ink with controlled titanium oxide particles through a liquid discharging head maintains uniform dispersion and consistent flow.
Segmented shrink film regions with variable ink thickness enable controlled thermal contraction during heat shrinking.
Aqueous ink set controls divalent metal and potassium ion concentrations to suppress pigment agglomeration.
Incorporating iron powder and metallic salts into a gel matrix enables dynamic color shifts while maintaining writing instrument stability.