PP impact copolymer

Moplen EP600V

""

Natural

PP impact copolymer

Natural

Moplen EP600V

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PP impact copolymer

Moplen EP600V

""

Natural

Description

Moplen EP600V is an ultra-high-flow polypropylene heterophasic copolymer with an MFR of 100 g/10 min, a flexural modulus of 1250 MPa, a tensile modulus of 1300 MPa, and a Vicat softening temperature of 152°C, formulated as a clean base resin free from nucleating agents, antistatic additives, and slip or antiblock agents. Moplen EP600V is designed for thin-walled injection moulding of food containers, housewares, and toys, as well as serving as a high-flow carrier for long-glass-fibre-reinforced (GMT/LFT) compounding applications. With a Charpy impact strength of 4 kJ/m² at 23°C and a tensile yield stress of 26 MPa, Moplen EP600V provides solid mechanical performance at extreme flow rates.

Processing Techniques

Injection moulding and compounding are the primary processes for Moplen EP600V, and the 100 g/10 min MFR enables filling of very long flow paths and thin-walled cavities at reduced injection pressures. As a clean base resin without nucleation or antistatic agents, Moplen EP600V gives compounders full control over additive selection for GMT/LFT and mineral-filled formulations. Process at 200–240°C melt temperatures and adjust cooling time for the specific wall section, noting that without nucleation the crystallisation rate may be slightly slower than nucleated alternatives.

Injection molding

Compounding

Compliance and Documentation Notes

For TDS, SDS, and applicable regulatory or food-contact compliance certificates for Moplen EP600V, contact Genesis Polymers or request documentation via genesispolymers.eu.

Technical Properties

Polymer Family/Type

PP impact copolymer

PP

Density

0.000

g/cm³

MFR

0.0

g/10min

230°C/2.16kg

Vicat Softening Temperature

0

°C

VST A50

Tensile Stress at Yield

0

MPa

Tensile Modulus

0

MPa

Flexural Modulus

0

MPa

Charpy Impact Strength

0

kJ/m²

23°C

Tensile Strain Yield

0

%

Brand

Feature

Antiblock/Slip

Antistatic

High Flow

High Impact

High Stiffness