Monomex is a leading company focused on R&D and automation, specializing in Twin Screw Extrusion and compounding solutions.

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    Laboratory Scale Twin Screw Extruder & Polymer Process Testing Center

    Laboratory Scale Twin Screw Extruder & Polymer Process Testing Center

    Advanced Compounding, Recycling and Reactive Extrusion Test Capabilities

    Monomex develops laboratory-scale twin screw extrusion technologies for polymer process development, material testing, formulation optimization, and advanced compounding applications.

    Our laboratory extrusion platform enables customers to perform process validation, raw material trials, screw configuration optimization, feeding tests, degassing analysis, reactive extrusion studies, and production simulations before industrial-scale investment decisions.


    The laboratory infrastructure supports a wide range of polymer processing applications including:

    • Masterbatch production

    • Engineering plastics

    • PET recycling & reactive extrusion

    • HFFR cable compounds

    • Thermoplastic elastomers

    • Biopolymers

    • High filler compounds

    • Additive masterbatch formulations

    • Process optimization studies


    Monomex laboratory systems integrate twin screw extrusion technologies, gravimetric feeding systems, vacuum degassing solutions, pelletizing technologies, and intelligent process engineering into a flexible R&D and testing platform.

    By combining engineering expertise with process-oriented testing capabilities, Monomex helps customers reduce production risks, optimize process performance, improve formulation stability, and accelerate industrial-scale manufacturing investments.

    Laboratory-scale extrusion testing enables manufacturers to evaluate formulation behavior, process stability, dispersion quality, degassing performance, and production scalability before full industrial investment.

    This process-oriented engineering approach reduces production risks while improving material quality and long-term manufacturing efficiency.