This renewable fatty‑acid‑based antistatic agent is an eco‑friendly migratory antistatic additive developed for PVC and engineering plastic applications. Manufactured from renewable fatty‑acid feedstock, it demonstrates excellent heat resistance to adapt to PVC high‑temperature calendering, extrusion and injection‑molding processes. After thermal processing, active components gradually migrate toward the plastic surface and form a hydrophilic conductive layer for static dissipation. It delivers
Product DetailsThis antistatic additive is derived from renewable natural fatty acid resources. Its amphiphilic molecular framework combines long‑chain hydrophobic fatty segments and polar hydrophilic functional groups. During plastic compounding, it can be blended directly with PVC resin, stabilizers and fillers, or manufactured into dedicated antistatic masterbatch. After extrusion, calendering or injection molding, the active molecules slowly migrate outwards from the polymer interior to the article surface. The polar hydrophilic groups absorb minor ambient moisture and construct a thin continuous conductive film, which dissipates accumulated static charges and reduces dust attraction on PVC sheets, profiles, films and injection‑molded engineering plastic components.
Outstanding thermal stability is a core performance advantage. PVC processing requires relatively high temperature together with shear stress, which easily causes decomposition of ordinary antistatic additives and accelerates PVC discoloration. This fatty‑acid‑based grade maintains chemical integrity during thermal processing and minimizes the risk of inducing yellowing in PVC compounds. It exhibits satisfactory compatibility with calcium‑zinc stabilizer systems for eco‑friendly PVC formulations.
Nevertheless, as a migratory‑type antistatic additive, its antistatic efficacy is humidity‑dependent; performance drops significantly under extremely dry environmental conditions. Excessive dosage will accelerate surface blooming, reduce surface gloss, and impair printing, hot‑stamping and welding performance of finished plastic goods. Insufficient addition cannot achieve target surface resistivity. Besides rigid and flexible PVC, it is also applicable for several compatible engineering plastic grades after compatibility validation.
Typical recommended dosage ranges from 0.6 wt%‑2.0 wt% based on total polymer formulation weight. Pre‑production laboratory evaluation is mandatory to verify thermal stability during processing, resin compatibility, surface resistivity, blooming tendency, color‑holding property and post‑processing welding or printing behaviour before mass manufacturing.
Store the product in sealed moisture‑proof bags within cool, dry and ventilated warehouse. Avoid sustained high‑temperature storage which may lead to caking. Prevent direct sunlight exposure. Reseal packaging promptly after opening to avoid quality deterioration.

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