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UV-Curing Colorant Dispersion Mechanism: 3 Key Cure Factors
UV-Curing Colorant Dispersion Mechanism: 3 Key Cure Factors
DENSON UV-curing colorant dispersion mechanism and 3 key cure factors: pigment UV absorption, photoinitiator wavelength matching, and oxygen inhibition; fineness ≤15 μm (GB/T 1724), cure ≤3 s, pencil hardness ≥H (GB/T 6739)....
Literature
09-25
2026
Waterborne Colorant Market Trends: 3 Sustainability Directions Under GB 38508
Waterborne Colorant Market Trends: 3 Sustainability Directions Under GB 38508
DENSON WT waterborne colorant market trends: GB 38508 low VOC driver, VOC <=80 g/L, salt spray >=720 h (GB/T 1771), total cost 10-15% lower, 3 sustainability directions....
Literature
09-24
2026
Waterborne Colorant Grinding Process Optimization: 5 Key Control Points
Waterborne Colorant Grinding Process Optimization: 5 Key Control Points
DENSON WT waterborne colorant grinding process optimization: zirconia bead 0.6-0.8 mm, tip speed 10-12 m/s, <=40 C, D50 <=0.2 um (GB/T 19077), fineness <=15 um (GB/T 1724)....
Literature
09-24
2026
3 Application Cases of Waterborne Colorant: Architectural, Wood, Anti-corrosion
3 Application Cases of Waterborne Colorant: Architectural, Wood, Anti-corrosion
DENSON WT waterborne colorant 3 application cases: architectural washability >=3500 cycles (GB/T 9266), wood D50 <=0.15 um, anti-corrosion salt spray >=720 h (GB/T 1771), VOC <=80 g/L (GB 38508)....
Literature
09-24
2026
Waterborne Colorant Dispersion Mechanism: 3 Key Stability Factors
Waterborne Colorant Dispersion Mechanism: 3 Key Stability Factors
DENSON WT waterborne colorant dispersion mechanism: zeta potential -35 to -45 mV, fineness <=15 um (GB/T 1724), D50 <=0.2 um, VOC <=80 g/L (GB 38508), 3 cases and selection table....
Literature
09-24
2026
Polymeric Dispersant Dosage & Milling Optimization: 4 Key Parameters
Polymeric Dispersant Dosage & Milling Optimization: 4 Key Parameters
Optimize polymeric dispersant at the viscosity minimum: dosage 1.0-3.0%, fineness ≤10 µm (GB/T 6753.1), bead 0.6-1.0 mm, tip speed 10-12 m/s, temperature 30-40 °C for reproducible nano color paste. DENSON....
Literature
09-23
2026
3 Application Cases of Polymeric Dispersants in Coatings, Inks & Composites
3 Application Cases of Polymeric Dispersants in Coatings, Inks & Composites
Three verified cases of polymeric dispersants: epoxy anticorrosive (2.0%, 15 µm, 720 h ASTM B117), rotogravure ink (1.8%, 7.5 µm, 85 GU at 60°), SMC composite (1.5%, ≤20 µm). How to stabilize pigments in coatings, inks and composites. DENSON....
Literature
09-23
2026
Polymeric Dispersant Anchoring & Steric Hindrance: 3 Key Parameters
Polymeric Dispersant Anchoring & Steric Hindrance: 3 Key Parameters
How polymeric dispersants stabilize pigments by anchoring and ~10 nm steric hindrance. Key parameters: fineness ≤10 µm (GB/T 6753.1), viscosity 800-2500 mPa·s (GB/T 9794), |zeta|≥30 mV (ISO 13099). Cases: carbon black paste, LMFP cathode slurry, UV ceramic ink. DENSON....
Literature
09-23
2026
Insulating Colorant Market: 3 Cost Cases and Sustainability Trends
Insulating Colorant Market: 3 Cost Cases and Sustainability Trends
Insulating colorant market trends driven by electrification, with three measured cost cases: finished colorant replacing in-house grinding (cost index 78), high-concentration grade at 1.5% dosage (index 71), and low-VOC formulation at ≤50 g/L meeting RoHS and REACH....
Literature
09-23
2026
Insulating Colorant Dispersion: 5 Parameters for Dielectric Control
Insulating Colorant Dispersion: 5 Parameters for Dielectric Control
Five process parameters for insulating colorant dispersion—media size, loading, tip speed, temperature, and exit fineness—with measured cases: epoxy casting improved to 22 kV/mm and ≤5 pC partial discharge, silicone moisture control restored resistivity to ≥10¹⁴ Ω·cm, and polyurethane flocculation was eliminated....
Literature
09-23
2026
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