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Ensinger PEI

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EMS-Grivory Grivory® XE 4216 black 9233 PA6T/66-GF30
Categories: Polymer; Thermoplastic; Nylon (Polyamide PA); Nylon 6/66; Nylon 66/6, 30% Glass Fiber Reinforced

Material Notes: Product description: Grivory XE 4216 black 9233 is a high heat stabilized, 30% glass fiber reinforced, semicrystalline, thermoplastic engineering material for injection molding. Polymer designation according to ISO: PA 6T/66+X According to ASTM: PPA, polyphthalamide. The main distinguishing feature of Grivory HT-PPA, when compared to other polyamides, is its good performance at high temperatures providing parts which are stiffer, stronger and have better heat distortion stability and chemical resistance. The special property profile of Grivory XE 4216 black 9233 makes it suitable for automotive parts with very high demands on heat stability. Parts of good surface quality are feasible. Grivory XE 4216 black 9233 is applicable for engine compartment and power-train applications such as:
  • Charge air ducts
  • Charge air cooler tanks
  • Air intake silencers
  • Oil sumps
  • Functional parts

Information provided by EMS Grivory

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Physical PropertiesOriginal ValueComments
Density 1.43 g/ccDry; ISO 1183
Water Absorption 5.4 %Sim. to ISO 62
Moisture Absorption 2.10 %Sim. to ISO 62
Linear Mold Shrinkage, Flow 0.0020 cm/cmISO 294-4, 2577
Linear Mold Shrinkage, Transverse 0.0090 cm/cmISO 294-4, 2577
 
Mechanical PropertiesOriginal ValueComments
Ball Indentation Hardness 210 MPaConditioned; ISO 2039-1
 260 MPaDry; ISO 2039-1
Tensile Strength at Break 150 MPaConditioned; ISO 527-1/-2
 190 MPaDry; ISO 527-1/-2
Elongation at Break 2.7 %Dry; ISO 527-1/-2
 2.7 %Conditioned; ISO 527-1/-2
Tensile Modulus 9600 MPaConditioned; ISO 527-1/-2
 11000 MPaDry; ISO 527-1/-2
Charpy Impact Unnotched 45.0 kJ/m²
@Temperature -30.0 °C
Dry; ISO 179/1eU
 45.0 kJ/m²
@Temperature -30.0 °C
Conditioned; ISO 179/1eU
 55.0 kJ/m²
@Temperature 23.0 °C
Dry; ISO 179/1eU
 65.0 kJ/m²
@Temperature 23.0 °C
Conditioned; ISO 179/1eU
Charpy Impact, Notched 7.00 kJ/m²
@Temperature -30.0 °C
Dry; ISO 179/1eA
 7.00 kJ/m²
@Temperature -30.0 °C
Conditioned; ISO 179/1eA
 9.00 kJ/m²
@Temperature 23.0 °C
Dry; ISO 179/1eA
 9.00 kJ/m²
@Temperature 23.0 °C
Conditioned; ISO 179/1eA
 
Electrical PropertiesOriginal ValueComments
Volume Resistivity 1.00e+10 ohm-cmDry; IEC 60093
 1.00e+10 ohm-cmConditioned; IEC 60093
Surface Resistance 1.00e+11 ohmIEC 60093
Dielectric Strength 45.0 kV/mmDry; IEC 60243-1
 45.0 kV/mmConditioned; IEC 60243-1
Comparative Tracking Index 525 VConditioned; IEC 60112
 
Thermal PropertiesOriginal ValueComments
CTE, linear, Parallel to Flow 20.0 µm/m-°CISO 11359-1/-2
CTE, linear, Transverse to Flow 80.0 µm/m-°CISO 11359-1/-2
Melting Point 300 °C10°C/min; ISO 11357-1/-3
Maximum Service Temperature, Air 150 °CLong Term; ISO 2578
 270 °CShort Term; EMS
Deflection Temperature at 1.8 MPa (264 psi) 240 °CISO 75-1/-2
Deflection Temperature at 8.0 MPa 155 °CISO 75-1/-2
Flammability, UL94 HBIEC 60695-11-10
 
Descriptive Properties
AutomotiveAir intake systems
 Fuel systems
 Hydraulic systems
 Interior
 Powertrain and Chassis
Electricals & ElectronicsConnectors
 Electrical equipment
 Energy distribution
 Mobile phones and other portable devices
FormGranules
Industry & Consumer goodsHydraulics & Pneumatics
 Mechanical Engineering
 Power transmission
 Tools & Accessories
ProcessingInjection Molding
Product AttributesBio based Polyamide
 Co Polyamide
 Improved alcohol resistance
 Partially aromatic Polyamide
Special CharacteristicsImproved heat resistance

Some of the values displayed above may have been converted from their original units and/or rounded in order to display the information in a consistent format. Users requiring more precise data for scientific or engineering calculations can click on the property value to see the original value as well as raw conversions to equivalent units. We advise that you only use the original value or one of its raw conversions in your calculations to minimize rounding error. We also ask that you refer to MatWeb's terms of use regarding this information. Click here to go back to viewing the property data in MatWeb's normal format.

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