Ceridust® 8330

Ceridust® 8330 is a revolutionary, predominantly bio-based additive for printing inks.

Principal: Clariant Additives

Functions: Rub Resistant

Chemical Family: Polyethylene Waxes

End Uses: Flexography Ink, Gravure Ink, Printing Ink, Solventborne Ink, Waterborne Ink

Labeling Claims: Bio-based, From Renewable Resources

Features: Rub Resistance

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Enhanced TDS

Identification & Functionality

CASE Ingredients Functions
Chemical Family
Function
Rub Resistant
Product Code
MITM12586
Technologies
Product Families

Features & Benefits

CASE Ingredients Features
Labeling Claims
Product Benefits
  • Differentiated biopolymer-based micronized wax
  • Suitable for water-based and solvent-based systems
  • Superior rub resistance properties versus conventional wax-based products
  • Wax dosage reduction of 30 % – 50 % is possible in gravure and flexographic ink
  • Made from renewable resource

Applications & Uses

Ink & Toner End Applications
Markets
Applications
Product Applications
  • Ceridust® 8330 is recommended for solvent and water based inks.
  • It is an excellent rub resistance additive for all kind of printing inks.
  • Especially in liquid inks dosage reductions compared to standard waxes are possible to achieve the same rub resistance performance.

Properties

Physical Form

Packaging & Availability

Packaging Type

Principal Information

Group Principal Number
S000004
Principal

Storage & Handling

Storage Conditions
  • For best shelf life store this product in a dry area at normal ambient temperatures.
  • Minimum shelf life is 2 years from the date of shipping when properly stored.

Other

Appearance
White micronized powder
Appearance (SDS)
Micropowder
Color (SDS)
White
Dust Explosion Class (SDS)
ST1
Item Number
Odor (SDS)
Characteristic
Other Hazards
Dust can form an explosive mixture in air, Avoid dust formation and electrostatic charging.
USA/DOT UN Number
Not Applicable
Shelf Life & Stability
ValueUnitsTest Method / Conditions
Shelf Life2.0yr
Physical Properties
ValueUnitsTest Method / Conditions
Particle Size4.5-6.5µmInternal Method D50
Application Information
ValueUnitsTest Method / Conditions
Dosage (Use Level)30.0-50.0%
SDS Physical and Chemical Properties
ValueUnitsTest Method / Conditions
Apparent Density (SDS)700.0kg/m³
Autoignition Temperature (SDS)680.0°F
Burning Number (SDS)5.0-ESCIS Volume 1 at 100°C
Burning Number (SDS)3.0-5.0-ESCIS Volume 1 at 20°C
Burning Number (SDS)5.0-ESCIS Volume 1 at 20°C, with the addition of 20% SiO2
Burning Number (SDS)5.0-VDI 2263 at 100°C
Burning Number (SDS)3.0-5.0-VDI 2263 at 20°C
Burning Number (SDS)5.0-VDI 2263 at 20°C, with the addition of 20% SiO2
Decomposition Temperature (SDS)464.0-536.0°FDifferential Scanning Calorimetry heating rate: 3 K/min
Deflagration Index (SDS)126.0bar.m/s
Density (SDS)1.17g/cm³At 23°C
Ignition Energy (SDS)1.0-3.0MJASTM E2019
Ignition Energy (SDS)1.0-3.0MJEN 13821 with inductive electrical resistance, without inductive electrical resistance
Median Particle Size (SDS)5.5µmISO 13320-1 D50
Sieve Fractionation (Through) (SDS)90.0%Air Jet Sieve below 350 microns 45 US mesh
Sieve Fractionation (Through) (SDS)90.0%Air Jet Sieve below 350 microns 45 US mesh
Sieve Fractionation (Through) (SDS)90.0%Air Jet Sieve below 350 microns 45 US mesh
Sieve Fractionation (Through) (SDS)90.0%Air Jet Sieve below 350 microns 45 US mesh
Sieve Fractionation (Through) (SDS)90.0%Air Jet Sieve below 350 microns 45 US mesh
pH (SDS)8.0-11.0-