Makrolon® 8035

About
MVR (300 °C/1.2 kg) 4.0 cm³/10 min; 30 % glass fiber reinforced; milled fiber; high viscosity; easy release; injection molding – melt temperature 310 – 330 °C; extrusion; available in opaque colors only; precision parts&&

Product Description
SupplierCovestro
GenericPolycarbonate
Material StatusCommercial: Active
FeaturesHigh Viscosity,Good stripping performance,V-1
AvailabilitysAfrica & Middle East ,North America,Latin America,Asia Pacific,Europe
Process MethodsInjection Molding

Technical Data
PHYSICALNominal valueUnitTest method
Density1.42g/cm³ISO 1183
Apparent density0.69g/cm³ISO 60
Melt Flow Rate
300℃,1.20kg5.0g/10minISO 1133
Melt Volume Rate
300℃,1.2 kg4.00cm³/10minISO 1133
Shrinkage rate 
TD0.25 to 0.40%ISO 2577
MD0.25 to 0.40%ISO 2577
TD:2.0 mm0.35%ISO 294-4
MD:2.0 mm0.50%ISO 294-4
Water absorption rate
Saturation, 23 ℃0.22%ISO 62
Equilibrium, 23 ℃, 50% RH0.10%ISO 62

IMPACTNominal valueUnitTest method
Charpy Notched Impact Strength
23 ℃, completely fractured8.0kJ/m²ISO 7391
Charpy Unnotch Impact strength ISO 179/1eU
-60 ℃, completely fractured45kJ/m²ISO 179/1eU
-30 ℃, completely fractured45kJ/m²ISO 179/1eU
23 ℃, completely fractured40kJ/m²ISO 179/1eU
Impact strength of cantilever beam notch
Multi axial instrumented impact energy ISO 6603-2
-30℃5.00JISO 6603-2
23℃5.00JISO 6603-2
Multi axial instrumented peak impact force ISO 6603-2
-30℃800NISO 6603-2
23℃1300NISO 6603-2

THERMALNominal valueUnitTest method
Hot deformation temperature
1.8 MPa, unannealed135ISO 75-2/A
0.45 MPa, unannealed141ISO 75-2/B
Vicat Softening Temp 
B50147ISO 306
B120148ISO 306/B120
Ball pressure test
137℃Pass IEC 60695-10-2
Linear coefficient of thermal expansion
TD:23~55℃5.5E-51/℃ISO 11359-2
MD:23~55℃3.5E-51/℃ISO 11359-2
Thermal conductivity coefficient
23℃0.24W/m/KISO 8302
Relative temperature index
Electrical performance, 1.50 mm125UL 746
Strength mechanical performance, 1.50 mm125UL 746
Impact mechanical performance, 1.50 mm115UL 746

Electrical performanceNominal valueUnitTest method
Surface resistivity1.0E+16ohmsIEC 60093
Volume resistivity
23℃1.0E+16ohms·cmIEC 60093
Dielectric strength
23 ℃,1 mm36kV/mmIEC 60243-1
Relative permittivity IEC 60250
23℃,100 Hz3.50 IEC 60250
23℃,1 MHz3.50 IEC 60250
Dissipation factor IEC 60250
23℃,100 Hz1.5E-3 IEC 60250
23℃,1 MHz9.0E-3 IEC 60250
Compared to the leakage tracing index IEC 60112
Solution A175VIEC 60112
Solution B125VIEC 60112

FLAME CHARACTERISTICSNominal valueUnitTest method
Flame retardant level
1.50 mmV-1 UL 94
Glowing wire flammability index IEC 60695-2-12
0.75 mm960IEC 60695-2-12
1.5 mm960IEC 60695-2-12
3.0 mm960IEC 60695-2-12
Igniting temperature of the hot wire IEC 60695-2-13
0.75 mm875IEC 60695-2-13
1.5 mm875IEC 60695-2-13
3 mm875IEC 60695-2-13
Extreme oxygen index37%ISO 4589-2
The Application of Small Burner Flames
Method K and F,2.00 mmK1, F1 DIN 53438-1, -3
Burning rate
USFMVSS,> 1.00 mmpassed ISO 3795
Flash Ignition Temperature470ASTM D1929
Needle flame test IEC 60695-11-5
Method F:1.50 mm2.0minIEC 60695-11-5
Method F:2.00 mm2.0minIEC 60695-11-5
Method F:3.00 mm2.0minIEC 60695-11-5
Method K:1.50 mm1.0minIEC 60695-11-5
Method K:2.00 mm1.0minIEC 60695-11-5
Method K:3.00 mm2.0minIEC 60695-11-5
Autoignition temperature550ASTM D1929

Supplementary informationNominal valueUnitTest method
Electrolytic corrosion
23℃A1 IEC 60426
ISO ShortnameISO 7391-PC,GR,(,,)-05-3,GF30 

MECHANICALNominal valueUnitTest method
Tensile modulus
23℃5100MPaISO 527-1-2
tensile strength
Fracture, 23 ℃55.0MPaISO 527-2/5
Yield, 23 ℃59.0MPaISO 527-2/50
Tensile strain
Fracture, 23 ℃3.5%ISO 527-2/5
Yield, 23 ℃2.5%ISO 527-2/50
Tensile Creep Modulus(1 hr)4700MPaISO 899-1
Tensile creep modulus
1000 hr3900MPaISO 899-1
Bending modulus
23℃4700MPaISO 178
bending strength ISO 178
3.50% strain, 23 ℃100MPaISO 178
23℃105MPaISO 178
Bending strain4.5%ISO 178
Ball hardness149MPaISO 2039-1

Notes
1. Typical properties: these are not to be construed as specifications.
2. Pellets
3. 60x60x2 mm, 500 bar
4. 0.079 in/min
5. 2 mm/min
6. Based on ISO 179-1eA, 3 mm
7. Based on ISO 180-A, 3 mm
8. Cross-flow
9. Procedure A
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