Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

ExxonMobil 6102 Impact Modifier

ExxonMobil Vistamaxx™ 6102 is a low - density POE with good elasticity, compatibility and transparency. It has low seal - initiation temperature and good processability, suitable for packaging, automotive and cable applications.

Features Of ExxonMobil 6102 Impact Modifier

  1. Synthesized by metallocene catalysis, with uniform molecular structure, stable elasticity in a wide temperature range, good flexibility at low temperature and excellent aging resistance

  2. Strong adhesion to conventional and metallocene PP and PE. After blending, it can improve the impact resistance of the substrate, reduce stress whitening and is suitable for composite molding

  3. Low seal initiation temperature and high heat - seal strength, high molding efficiency, and stable molding for extrusion, blow molding, injection molding and other processes

  4. Excellent chemical resistance, can resist the erosion of various chemical media, products have both high transparency and good gloss, and good appearance texture

Typical Applications Of ExxonMobil 6102 Impact Modifier

  1. Co - extruded film for food packaging, low seal initiation temperature improves packaging efficiency, high transparency and chemical resistance ensure food packaging safety

  2. Automotive interior parts, such as seals and shock pads, improve vehicle comfort and durability by virtue of elasticity and aging resistance

  3. Modification of insulation layers for wires and cables, enhancing the flexibility and weather resistance of insulation layers for outdoor and complex wiring environments

  4. Modification of transparent PP products, improving the impact resistance and toughness of products, suitable for the production of transparent containers, daily necessities, etc

Specifications Of ExxonMobil 6102 Impact Modifier

Physical Properties
Density0.862 g/cm³ (ASTM D1505)
Ethylene Content16 wt% (ExxonMobil Method)
Shore A Hardness66 (ASTM D2240)
Melt Flow Properties
Melt Flow Rate (190°C/2.16kg)1.4 g/10 min (ASTM D1238)
Melt Flow Rate (230°C/2.16kg)3.0 g/10 min (ExxonMobil Method)
Mechanical Properties
Tensile Stress @100% Elongation2.23 MPa (ASTM D638)
Tensile Stress @300% Elongation2.77 MPa (ASTM D638)
Tensile Strength at Break>7.6 MPa (ASTM D638)




























































































































ExxonMobil 6102 Impact Modifier – Frequently Asked Questions (FAQ)

Q1: What is the primary function of ExxonMobil 6102 Impact Modifier in polymer formulations?

A: ExxonMobil 6102 is an ethylene-based impact modifier designed to enhance toughness and low-temperature impact resistance in rigid polypropylene (PP) and other polyolefin systems, without significantly compromising stiffness or processability.


Q2: Is ExxonMobil 6102 compatible with standard polypropylene homopolymers and copolymers?

A: Yes, ExxonMobil 6102 demonstrates excellent compatibility with a broad range of polypropylene resins, including homopolymers, random copolymers, and impact copolymers, enabling uniform dispersion and effective stress transfer during melt processing.


Q3: How is ExxonMobil 6102 typically incorporated into production processes?

A: It is commonly introduced via dry blending with base resin prior to extrusion or injection molding, or directly fed using gravimetric dosing systems. Its free-flowing pellet form supports consistent feeding and minimal dust generation.


Q4: Does ExxonMobil 6102 affect the thermal stability or melt flow behavior of the final compound?

A: When used within recommended dosage ranges, ExxonMobil 6102 maintains good thermal stability under typical polyolefin processing conditions and causes only moderate, predictable reductions in melt flow index—generally manageable through minor formulation or processing adjustments.


Q5: Can ExxonMobil 6102 be used in applications requiring regulatory compliance for food contact or medical devices?

A: ExxonMobil 6102 is intended for industrial and general-purpose polymer modification. For regulated applications—including food contact or medical use—end-use compliance must be verified by the compounder or converter based on full formulation testing and applicable regional regulatory requirements.



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