Investigation of the Effect of Stearate Additive on Process and Optical Properties in High-Filled PE-Based Masterbatch Production via Extrusion Process
Authors
Ege University, Graduate School of Natural and Applied Science (Turkey)
Ege University, Department of Mechanical and Metal Technologies (Turkey)
Article Information
DOI: 10.51244/IJRSI.2026.1305000061
Subject Category: Engineering
Volume/Issue: 13/5 | Page No: 655-660
Publication Timeline
Submitted: 2026-05-06
Accepted: 2026-05-11
Published: 2026-05-28
Abstract
In this study, high-filled polyethylene (PE)-based masterbatch formulations containing inorganic calcium carbonate (CaCO₃) at concentrations ranging from 72 to 81 wt.% were manufactured using an industrial-scale twin-screw extruder. To mitigate the rheological challenges associated with high filler loadings, specifically increased melt viscosity and particle agglomeration, a hybrid interfacial modifier system comprising calcium and zinc stearate was incorporated into the compounding process. This additive system was maintained at a fixed concentration of 1.2 wt.% to systematically evaluate its influence on both extrusion process stability and the optical characteristics of the final composite material.
Keywords
Polyethylene; Calcium Carbonate; Filled Masterbatch; Stearate
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References
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