Enhanced TDS
Identification & Functionality
- Function
- Impact Modifier
- Plastics & Elastomers Functions
- Product Code
- MITM16340
- Technologies
- Product Families
Features & Benefits
- Materials Features
- Key Properties
GENIOPERL® P52 improves the impact strength of thermoplastic and thermoset polymer systems, especially at low temperatures. We recommend additions of 10-25 wt. % for thermoplastics, and of 2 -12 wt. % for thermosets, in each case relative to the unfilled resin/curing agent or polymer system.
Applications & Uses
- Processing Information
GENIOPERL® P52 is incorporated into polymer systems by dispersion in monomer or resin blends prior to curing, or by thermoplastic processing. We recommend processing temperatures between 50°C - 120°C for optimum particle deagglomeration and dispersion.
Properties
- Physical Form
Packaging & Availability
- Packaging Type
Principal Information
- Group Principal Number
- S003143
- Principal
Other
- Color (SDS)
- White
- Dust Explosion Class (SDS)
- St2
- Item Number
- Odor (SDS)
- Characteristic
- USA/DOT UN Number
- Not Applicable
- Shelf Life & Stability
Value Units Test Method / Conditions Shelf Life 0.0 d d - Application Information
Value Units Test Method / Conditions Dosage (Use Level) 2.0-12.0 %(W/W) %(W/W) - SDS Physical and Chemical Properties
Value Units Test Method / Conditions Autoignition Temperature (SDS) 240.0 °C °C DIN EN 15188 sample volume: 1600 cm³ original Bulk Density (SDS) 400.0 kg/m³ kg/m³ ISO 697 Deflagration Index (SDS) 227.0 bar.m/s bar.m/s DIN EN 14034-2 63μm mesh Density (SDS) 1.085 g/cm³ g/cm³ DIN EN ISO 787-10 at 25°C Glow Temperature (SDS) min. 400.0 °C °C DIN EN 50281-2-1 200mm mesh Ignition Energy (SDS) 1.0-3.0 MJ MJ DIN EN 13821 with inductance sieved < 63 µm Ignition Temperature (SDS) 420.0 °C °C DIN EN 50281-2-1 63μm mesh Lower Explosion Limit (SDS) 30.0 g/m³ g/m³ DIN EN 14034-3 63μm mesh Maximum Explosion Overpressure (SDS) 9.2 bar bar DIN EN 14034-1 sieved < 63 µm Median Particle Size (SDS) 29.0 µm µm Melting Point (SDS) 120.0 °C °C At 1013 Hpa