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BASF Ultradur® S 4090 G6 30% Glass Filled PBT
Categories:
Polymer
;
Thermoplastic
;
Polyester, TP
;
Polybutylene Terephthalate (PBT)
;
Polybutylene Terephthalate (PBT), 30% Glass Fiber Filled
Material Notes:
Ultradur S 4090 G6 is a 30% glass reinforced PBT+ASA blend. It produces moldings with good surface finish, is resistant to chemicals and stress cracking, and has low shrinkage and warpage.
Applications: Plug connectors, housings and sunroof.
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Physical Properties
Metric
English
Comments
Density
1.47
g/cc
0.0531
lb/in³
ISO 1183
Water Absorption
0.40 %
0.40 %
DIN 53495/1L
Moisture Absorption at Equilibrium
0.20 %
0.20 %
23°C/50% R.H.
Viscosity Number
105
cm³/g
1.05
dl/g
ISO 1628
Linear Mold Shrinkage, Flow
0.0010
cm/cm
0.0010
in/in
Sheet
0.0029
cm/cm
0.0029
in/in
60x60x2mm; ISO 294
Linear Mold Shrinkage, Transverse
0.0075
cm/cm
0.0075
in/in
60x60x2mm; ISO 294
0.0075
cm/cm
0.0075
in/in
Sheet
Melt Flow
23.9
g/10 min
@Load 2.16 kg,
Temperature 275 °C
23.9
g/10 min
@Load 4.76 lb,
Temperature 527 °F
ISO 1133
Mechanical Properties
Metric
English
Comments
Ball Indentation Hardness
164
MPa
23800
psi
ISO 2039-1
Tensile Strength at Break
125
MPa
18100
psi
5mm/min; ISO 527-2
Tensile Strength
65.0
MPa
@Temperature 100 °C
9430
psi
@Temperature 212 °F
ISO 527
120
MPa
@Temperature 50.0 °C
17400
psi
@Temperature 122 °F
ISO 527
150
MPa
@Temperature 23.0 °C
21800
psi
@Temperature 73.4 °F
ISO 527
195
MPa
@Temperature -40.0 °C
28300
psi
@Temperature -40.0 °F
ISO 527
Elongation at Break
2.2 %
2.2 %
5mm/min; ISO 527-2
Modulus of Elasticity
9.70
GPa
1410
ksi
ISO 527-2
Flexural Strength
183
MPa
26500
psi
ISO 178
Charpy Impact Unnotched
5.90
J/cm²
28.1
ft-lb/in²
ISO 179/1eU
Charpy Impact, Notched
0.900
J/cm²
4.28
ft-lb/in²
ISO 179/1eA
Dart Drop, Total Energy
<=
5.00
J
<=
3.69
ft-lb
ISO 6603-1
Tensile Creep Modulus, 1000 hours
6700
MPa
972000
psi
ISO 899-1
Electrical Properties
Metric
English
Comments
Volume Resistivity
3.00e+15
ohm-cm
3.00e+15
ohm-cm
IEC 60093
Surface Resistance
1.00e+14
ohm
1.00e+14
ohm
IEC 60093
Dielectric Constant
3.7
@Frequency 1e+6 Hz
3.7
@Frequency 1e+6 Hz
IEC 60250
3.8
@Frequency 100 Hz
3.8
@Frequency 100 Hz
IEC 60250
Dielectric Strength
95.0
kV/mm
2410
kV/in
IEC 243/1
Dissipation Factor
0.0030
@Frequency 100 Hz
0.0030
@Frequency 100 Hz
IEC 60250
0.018
@Frequency 1e+6 Hz
0.018
@Frequency 1e+6 Hz
IEC 60250
Comparative Tracking Index
125
V
125
V
Test solution B; IEC 60112
500
V
500
V
Test solution A; IEC 60112
Thermal Properties
Metric
English
Comments
Specific Heat Capacity
1.50
J/g-°C
0.359
BTU/lb-°F
IEC 1006
Thermal Conductivity
0.290
W/m-K
2.01
BTU-in/hr-ft²-°F
DIN 52612
Melting Point
220
-
225
°C
428
-
437
°F
Maximum Service Temperature, Air
110
°C
230
°F
at 50% loss of tensile strength after 20000h; IEC 216-1
140
°C
284
°F
at 50% loss of tensile strength after 5000h; IEC 216-1
170
°C
338
°F
Deflection Temperature at 0.46 MPa (66 psi)
210
°C
410
°F
ISO 75-2
Deflection Temperature at 1.8 MPa (264 psi)
175
°C
347
°F
ISO 75-2
Flammability, UL94
HB
@Thickness 1.60 mm
HB
@Thickness 0.0630 in
HB
@Thickness 0.800 mm
HB
@Thickness 0.0315 in
Flame Spread
<=
100
mm/min
<=
3.94
in/min
DIN 75200
Glow Wire Test
760
°C
@Thickness 3.00 mm
1400
°F
@Thickness 0.118 in
IEC 695
Processing Properties
Metric
English
Comments
Melt Temperature
250
-
275
°C
482
-
527
°F
Injection molding
270
°C
518
°F
for shrinkage test
Mold Temperature
60.0
-
100
°C
140
-
212
°F
80.0
°C
176
°F
for shrinkage test
Descriptive Properties
Color
Natural
Commercial Status
Active America
Form
Pellets
Impact Modified
No
Primary Processing Technique
Injection Molding
Processing
Injection Molding
Special characteristic
Heat stabilized or stable to heat
Light stabilized or stable to light
Lubricant
U.V. stabilized or stable to weather
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
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regarding this information.
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