Complete Set of CAMPUS® Data, ASTM Data, Biopolymer Database, Application Database, Tradename Database, Literature Database, Toolbox.

Material datasheets available free. Online registration at: www.materialdatacenter.com

Material Data Center is a leading international information system for the plastics industry. Material Data Center offers a comprehensive plastics database, calculation tools, CAE interfaces, a literature database and an application database. For more information about Material Data Center visit www.materialdatacenter.com.

This is the free Material Data Center Datasheet of VESTORAN® 1900 GF20 BK 2.7026 - PPE-GF20 - Evonik Operations GmbH

Material Data Center offers the following functions for VESTORAN® 1900 GF20 BK 2.7026:
unit conversion, PDF datasheet print, comparison with other plastics, snap fit calculation, beam deflection calculation, CAE Interfaces

Check here, which other Vestoran datasheets, application examples or technical articles are available in Material Data Center

Use the following short links to get directly to the properties of interest in this datasheet:
Any use of this information falls under the rules of our disclaimer.
Product Texts
Modified polyphenylene ether (PPE), heat resistant, glass fiber-reinforced, suitable for plastic/rubber composites manufactured by the K K process

VESTORAN® 1900GF20 BK 2.7206  is the registered trademark of Evonik Degussa GmbH for molding compounds containing poly-2,6-dimethyl-1,4-phenylene ether as polymeric constituent (polyphenylene ether, PPE, also referred to as PPO).
As a material of amorphous structure VESTORAN® 1900GF20 shows very small mold shrinkage. Therefore molded parts have a very low tendency to warp.
 
Moldings of VESTORAN® 1900GF20 are dimensionally stable and hydrolysis resistant even in hot water, but are more sensitive to organic solvents than semi-crystalline plastics. VESTORAN® 1900GF20 is resistant to aqueous alkalines and acides, certain alcohols, and glycol solutions.
 
Glass fiber reinforcement of this molding material combines outstanding heat deflection temperature under load with high strength and rigidity.

The even smaller shrinkage compared to non-reinforced VESTORAN® depends on the orientation of the glass fibers in the molded parts.
 
VESTORAN® 1900GF20 is particularly suitable for the adhesion promoter-free manufacturing of plastic/rubber composites by the Evonik Degussa GmbH-patented K&K process ("direct-bonding to rubber").

Compared to VESTORAN® 1900, VESTORAN® 1900GF20 offers higher rigidity and strength.
 
Colored material contains only cadmium-free pigments.
 
VESTORAN® 1900GF20 is supplied as cylindrical granules in polyethylene packaging.
 
Processing advice is given in a separate product information.

Pigmentation may affect values.
 
FOR FURTHER INFORMATION PLEASE CONTACT US AT EVONIK-HP@EVONIK.COM
Processing/Physical CharacteristicsValueUnitTest Standard
ISO Data
Melt volume-flow rate, MVR 24 cm³/10min ISO 1133
Temperature 300 °C -
Load 21.6 kg -
Molding shrinkage, parallel 0.5 % ISO 294-4, 2577
Molding shrinkage, normal 0.6 % ISO 294-4, 2577
Mechanical propertiesValueUnitTest Standard
ISO Data
Tensile Modulus 5800 MPa ISO 527
Yield stress 110 MPa ISO 527
Yield strain 2.8 % ISO 527
Nominal strain at break 3 % ISO 527
Tensile creep modulus, 1h 5100 MPa ISO 899-1
Tensile creep modulus, 1000h 2300 MPa ISO 899-1
Charpy impact strength, +23°C 50 kJ/m² ISO 179/1eU
Type of failure C - -
Charpy notched impact strength, +23°C 12 kJ/m² ISO 179/1eA
Type of failure C - -
Tensile notched impact strength, +23°C 260 kJ/m² ISO 8256/1
Thermal propertiesValueUnitTest Standard
ISO Data
Glass transition temperature, 10°C/min 190 °C ISO 11357-1/-2
Temp. of deflection under load, 1.80 MPa 185 °C ISO 75-1/-2
Temp. of deflection under load, 0.45 MPa 190 °C ISO 75-1/-2
Vicat softening temperature, B 193 °C ISO 306
Coeff. of linear therm. expansion, parallel 40 E-6/K ISO 11359-1/-2
Coeff. of linear therm. expansion, normal 50 E-6/K ISO 11359-1/-2
Burning Behav. at 1.5 mm nom. thickn. HB class IEC 60695-11-10
Thickness tested 1.6 mm -
Burning Behav. at thickness h HB class IEC 60695-11-10
Thickness tested 0.8 mm -
Oxygen index 29 % ISO 4589-1/-2
Electrical propertiesValueUnitTest Standard
ISO Data
Relative permittivity, 100Hz 2.9 - IEC 62631-2-1
Relative permittivity, 1MHz 2.7 - IEC 62631-2-1
Dissipation factor, 100Hz 8 E-4 IEC 62631-2-1
Dissipation factor, 1MHz 180 E-4 IEC 62631-2-1
Volume resistivity 1E11 Ohm*m IEC 62631-3-1
Surface resistivity 1E13 Ohm IEC 62631-3-2
Comparative tracking index 175 - IEC 60112
Other propertiesValueUnitTest Standard
Water absorption 0.35 % Sim. to ISO 62
Density 1190 kg/m³ ISO 1183
Characteristics
Processing
Injection Molding, Profile Extrusion, Sheet Extrusion
Delivery form
Pellets, Black
Special Characteristics
Heat stabilized or stable to heat
Features
Amorphous, Good Adhesion, Low Warpage
Chemical Resistance
Acid Resistance, Alkali Resistance, Hydrolytically Stable
Regional Availability
Disclaimer
Copyright Altair Engineering GmbH. Altair Engineering GmbH assumes no liability for the system to be free of errors. The user takes sole responsibility for the use of this data under the exclusion of every liability from Altair Engineering GmbH; this is especially valid for claims of compensation resulting from consequential damages. Altair explicitly points out that any decision about the application of materials must be double checked with the producer of this material. This includes all contents of this system. Copyright laws are applicable for the content of this system.
Created: Source: www.materialdatacenter.com


Material Data Center is provided by M-Base Engineering + Software GmbH. M-Base Engineering + Software GmbH assumes no liability for the system to be free of errors. Any decision about the application of materials must be double checked with the producer of this material.

Additional information about this material, like producer contact address, etc. can be found at www.materialdatacenter.com. For access to this extra information a registration is requested. Free online registration is available.