Iupiace® EHM103R

About
Iupiace® EHM103R is a Polyphenylene Ether + PS (PPE+PS) material. It is available in Asia Pacific, Europe, or North America for injection molding. Primary attribute of Iupiace® EHM103R: Antistatic.&&

Product Description
SupplierMitsubishi
GenericPPO(PPE)+PS
Material StatusCommercial: Active
FeaturesAntistatic property
AvailabilitysNorth America,Asia Pacific,Europe
Process MethodsInjection Molding

Technical Data
PHYSICALNominal valueUnitTest method
Density1.16g/cm³ISO 1183
Shrinkage rate 
TD:3.2 mm0.85 to 1.1%
MD:3.2 mm0.85 to 1.1%

MECHANICALNominal valueUnitTest method
Tensile modulus
23℃2600MPaISO 527-2
tensile strength
Fracture, 23 ℃62.0MPaISO 527-2
Tensile strain
Fracture, 23 ℃8.0%ISO 527-2
Bending modulus
23℃2700MPaISO 178
bending strength
23℃105MPaISO 178

IMPACTNominal valueUnitTest method
Charpy Unnotch Impact strength
23℃40kJ/m²ISO 179

THERMALNominal valueUnitTest method
Hot deformation temperature
1.8 MPa, unannealed150ISO 75-2/A
0.45 MPa, unannealed160ISO 75-2/B

Electrical performanceNominal valueUnitTest method
Surface resistivity2.0E+3ohmsIEC 60093

Process Conditions
injectionNominal valueUnitTest method
Drying temperature100 to 120°C
Drying time2.0 to 4.0hr
Barrel rear temperature290 to 310°C
Barrel middle temperature310 to 330°C
Barrel front temperature310 to 330°C
Nozzle temperature310 to 330°C
Mold temperature110 to 130°C
Injection pressure20.0 to 150MPa
Injection speedModerate 
Screw speed60 to 150rpm

Notes
1. Typical properties: these are not to be construed as specifications.
【 Disclaimer 】
Guangzhou Soliao Information Technology Co., Ltd. reserves all rights. The information in this data table was obtained from the manufacturer of the material on soliao.com. Soliao.com makes every effort to ensure the accuracy of this data. However, the search company does not assume any responsibility for the uncertainty and consequences caused to users by these data values and suggestions, and strongly recommends verifying the data values with the material supplier before the final selection of materials.