This general‑purpose antistatic agent is a compounded nonionic ethoxylated amine blend designed for plastic film and coating systems. After incorporation into polymer melt or liquid coating matrix, the active components migrate rapidly toward the material surface once cured or cooled. It establishes a continuous hydrophilic conductive layer to dissipate static charges and effectively suppress dust adsorption. Target surface resistivity ranges from 10⁹‑10¹¹Ω. The versatile formulation adapts to b
Product DetailsThis nonionic ethoxylated amine blend consists of multiple ethoxylated alkyl‑amine components with tailored hydrophilic‑lipophilic balance. It is available as free‑flowing solid pellets or flake, supporting two feeding methods: direct mixing with resin pellets for plastic processing, or stirring dispersion into liquid coating systems for surface coating applications.
For plastic film applications: during extrusion and film forming, the additive disperses homogenously within the molten polymer. Once the film cools and solidifies, active molecules migrate quickly outwards to the film surface. Hydrophilic ethoxylated groups orient outward and absorb trace ambient moisture to build a thin continuous conductive film. Static charges dissipate rapidly, lowering surface resistivity into 10⁹‑10¹¹Ω range immediately after production, so finished film products gain dust‑proof performance without lengthy ageing period.
For coating systems: when blended into liquid coating, the antistatic ingredients migrate towards the top surface during curing. A uniform static‑dissipating skin is formed on the dried coating layer, eliminating static accumulation that attracts fine dust particles on coated surfaces. It reduces surface defects caused by static‑driven dust contamination.
As a migratory non‑ionic antistatic additive, its antistatic effectiveness is humidity‑dependent. Static dissipation performance will decline under extremely low‑humidity conditions. Over‑dosage accelerates excessive surface blooming, which may cause sticky film surfaces, reel blocking for rolled plastic film, and negatively affect gloss, adhesion and scratch resistance of cured coatings. Insufficient loading cannot reach the target surface resistivity specification.
Thermal stability should be monitored during high‑temperature extrusion for plastic film. Excessive processing temperature will induce partial thermal decomposition of ethoxylated amine fractions, generating volatile fumes and weakening final antistatic results. For coating formulations, compatibility testing with binders, pigments and other auxiliaries is required prior to formal production.
Recommended dosage ranges from 0.4 wt%‑1.5 wt% for plastic film, and 0.6 wt%‑1.8 wt% for coating systems. Pre‑production laboratory evaluation must cover dispersion behaviour, thermal resistance, surface resistivity measurement, blooming tendency, film anti‑blocking property, as well as coating gloss and adhesion performance.
Store the antistatic agent in sealed moisture‑proof bags inside cool, dry and ventilated warehouse. Avoid long‑term high‑temperature storage to prevent softening and agglomeration. Reseal packaging immediately after opening to maintain consistent physical properties and processing performance.

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