Silica particles mediate contact between toner particles to prevent additive embedding and flow path clogging under thermal loads.
Optimized toner composition uses silica and acicular oxide additives to enhance print quality.
Polyaluminum chloride aggregates hybrid styrene-acrylate and polyester toners, reducing blocking and dielectric loss while maintaining low fusing temperatures.
A non-magnetic toner formulation maintains specific storage elastic modulus values across operating temperatures to ensure stable developing and fixing performance.
A core-shell toner structure aggregates distinct polyester resins to form a homogeneous shell layer that enhances charge distribution.
A chemical toner composition uses curable amorphous resin and sublimation colorant to form transfer images.
A toner formulation uses high dielectric inorganic particles to enhance electrostatic attraction between particles.
A toner binder combines noncrystalline and crystalline polyester resins to enhance thermal stability.
Optimized particle sizes in toner and carrier resolve fogging versus reliability trade-offs to maintain image density.
An organosilicon polymer coating on toner particles stabilizes charge quantity while suppressing magnetic carrier contamination across varying humidity levels.
Ultra low melt electrophotographic toners incorporate fluorescent agents to create hidden security features that appear only under UV light.
A toner binder resin combines crystalline and amorphous segments to deliver sharp melt properties for low-temperature fixing.
Silane-modified polymer shell prevents wax exudation, maintaining low-temperature fixability and heat-resistant storability.
Composite ester wax balances low-temperature fixability and hot offset resistance while increasing surface glossiness.
Continuous siloxane film encapsulates inorganic particles to stop resin bleeding while maintaining low-temperature fixability.
Suspension polymerization with a styrene block copolymer disperses carbon black, achieving narrow particle size distribution and high image concentration.
Vinyl resin and aluminum in the toner create a crosslinked structure that improves image density and glossiness while maintaining low temperature fixability.
Temperature holding between glass transition and melting points improves heat-resistant storability while preventing toner aggregation.
Specific disperse dye combinations in sublimation toners eliminate toxicological concerns while maintaining color transfer and light stability.
Composite external additives combine organosilicon polymer particles with silica to improve toner flowability.
A toner set uses controlled surface roughness ratios between black and color particles to stabilize electrostatic adhesive force.
Control intermediate transfer belt surface roughness to manage organosilicon polymer and silica particle interactions during toner transfer.