Gol H250 is a high-quality flow and slip agent of Borchi®Gol series under Borchers brand of OMG, formulated as highly branched polysiloxane with net-like structure, specially developed for medium and high temperature curing coating and ink systems. It is an organic solvent-based high-activity additive with excellent high-temperature resistance
Excellent high-temperature resistance - Stable at up to 250℃, no failure in medium and high temperature curing processes
Net-like structure advantage - Branched net-like structure, more durable and stable leveling and slip effects
High-efficiency defect inhibition - Strongly inhibits defects such as craters and pinholes, improves coating surface integrity
High activity and easy dispersion - Organic solvent-based formula, high active ingredient ratio, easy to add and disperse
Multi-system adaptation - Compatible with medium and high temperature curing coatings and inks, suitable for various industrial coating systems
Medium and high temperature curing industrial coatings - Adapt to high-temperature processes, improve leveling and surface slip
Automotive high-temperature baking paint - No failure at high temperature, optimize paint surface smoothness and scratch resistance
Industrial anti-corrosion coatings - Inhibit surface defects, enhance coating compactness and high-temperature protection
High-end ink systems - Improve ink leveling, ensure flatness and texture of printed matter surface
Special functional coatings - Adapt to medium and high temperature curing needs, optimize surface performance and service durability
| Brand | OMG (Borchers) |
| Chemical Type | Highly branched polysiloxane with net-like structure |
| Product Form | Pale yellow to yellow transparent liquid |
| Active Ingredient | 50% (organic solvent system) |
| Solvent Type | Organic solvent |
| Ionicity | Non-ionic |
| Density (25℃) | 0.92~0.96 g/cm³ |
| Viscosity (25℃) | 150~350 mPa·s |
| Recommended Usage | 0.1~1.0% of total formulation |
| Storage Conditions | Store at 5~30°C in sealed container, away from ignition sources |
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E-mail: wangxingqiang@ericwchem.com
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