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Celanese Rynite® FR515 BK507 PET-GF15FR(17)
Categories:
Polymer
;
Thermoplastic
;
Polyester, TP
;
Polyethylene Terephthalate (PET)
;
Polyethylene Terephthalate (PET), Glass Fiber Filled, Flame Retardant
Material Notes:
15% Glass Reinforced, Flame Retardant, Polyethylene Terephthalate
Former DuPont product acquired by Celanese in 2022.
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Physical Properties
Metric
English
Comments
Density
1.55
g/cc
0.0560
lb/in³
ISO 1183
Linear Mold Shrinkage, Flow
0.0030
cm/cm
0.0030
in/in
DS; ISO 294-4, 2577
Linear Mold Shrinkage, Transverse
0.0080
cm/cm
0.0080
in/in
DS; ISO 294-4, 2577
Mechanical Properties
Metric
English
Comments
Tensile Strength at Break
100
MPa
14500
psi
ISO 527-1/-2
Elongation at Break
2.2 %
2.2 %
ISO 527-1/-2
Tensile Modulus
6.135
GPa
889.8
ksi
ISO 527-1/-2
Flexural Strength
160
MPa
23200
psi
ISO 178
Flexural Modulus
6.00
GPa
870
ksi
ISO 178
Poissons Ratio
0.35
0.35
Charpy Impact Unnotched
2.00
J/cm²
@Temperature -40.0 °C
9.52
ft-lb/in²
@Temperature -40.0 °F
ISO 179/1eU
3.20
J/cm²
@Temperature 23.0 °C
15.2
ft-lb/in²
@Temperature 73.4 °F
ISO 179/1eU
Charpy Impact, Notched
0.600
J/cm²
@Temperature -40.0 °C
2.86
ft-lb/in²
@Temperature -40.0 °F
ISO 179/1eA
0.620
J/cm²
@Temperature 23.0 °C
2.95
ft-lb/in²
@Temperature 73.4 °F
ISO 179/1eA
Electrical Properties
Metric
English
Comments
Volume Resistivity
>=
1.00e+15
ohm-cm
>=
1.00e+15
ohm-cm
IEC 62631-3-1
Surface Resistance
1.00e+13
ohm
1.00e+13
ohm
IEC 62631-3-2
Dielectric Constant
3.5
@Frequency 1e+6 Hz
3.5
@Frequency 1e+6 Hz
IEC 62631-2-1
3.6
@Frequency 100 Hz
3.6
@Frequency 100 Hz
IEC 62631-2-1
Dielectric Strength
40.0
kV/mm
1020
kV/in
IEC 60243-1
Dissipation Factor
0.0123
@Frequency 1e+6 Hz
0.0123
@Frequency 1e+6 Hz
IEC 62631-2-1
0.0229
@Frequency 100 Hz
0.0229
@Frequency 100 Hz
IEC 62631-2-1
Comparative Tracking Index
175
-
249
V
175
-
249
V
PLC 3; UL 746A
225
V
225
V
IEC 60112
Thermal Properties
Metric
English
Comments
CTE, linear, Parallel to Flow
29.0
µm/m-°C
16.1
µin/in-°F
ISO 11359-1/-2
19.0
µm/m-°C
@Temperature 55.0 - 160 °C
10.6
µin/in-°F
@Temperature 131 - 320 °F
ISO 11359-1/-2
33.0
µm/m-°C
@Temperature -40.0 - 23.0 °C
18.3
µin/in-°F
@Temperature -40.0 - 73.4 °F
ISO 11359-1/-2
CTE, linear, Transverse to Flow
95.0
µm/m-°C
52.8
µin/in-°F
ISO 11359-1/-2
74.0
µm/m-°C
@Temperature -40.0 - 23.0 °C
41.1
µin/in-°F
@Temperature -40.0 - 73.4 °F
ISO 11359-1/-2
125
µm/m-°C
@Temperature 55.0 - 160 °C
69.4
µin/in-°F
@Temperature 131 - 320 °F
ISO 11359-1/-2
Melting Point
254
°C
489
°F
10°C/min; ISO 11357-1/-3
Deflection Temperature at 0.46 MPa (66 psi)
238
°C
460
°F
ISO 75-1/-2
Deflection Temperature at 1.8 MPa (264 psi)
200
°C
392
°F
ISO 75-1/-2
Glass Transition Temp, Tg
90.0
°C
194
°F
10°C/min; ISO 11357-1/-2
Flammability, UL94
V-0
@Thickness 0.860 mm
V-0
@Thickness 0.0339 in
IEC 60695-11-10
5VA
@Thickness 1.50 mm
5VA
@Thickness 0.0591 in
IEC 60695-11-20
Flame Spread
<=
80.0
mm/min
@Thickness 1.00 mm
<=
3.15
in/min
@Thickness 0.0394 in
DNI; ISO 3795 (FMVSS 302)
Oxygen Index
32 %
32 %
ISO 4589-1/-2
Processing Properties
Metric
English
Comments
Melt Temperature
280
°C
536
°F
Optimum, Injection
270
-
290
°C
518
-
554
°F
Range, Injection
Mold Temperature
110
°C
230
°F
Optimum, Injection
100
-
120
°C
212
-
248
°F
Injection
Ejection Temperature
170
°C
338
°F
Injection
Drying Temperature
120
°C
248
°F
Injection
Dry Time
4.00
-
6.00
hour
4.00
-
6.00
hour
Injection, Dehumidified Dryer
Moisture Content
<= 0.020 %
<= 0.020 %
Injection
Hold Pressure
>=
80.0
MPa
>=
11600
psi
Injection
Descriptive Properties
Additives
Flame retardant
Back pressure
As low as possible
Drying Recommended
yes
Injection
FMVSS Class
B
ISO 3795 (FMVSS 302)
Max. screw tangential speed (m/s)
0.2
Injection
Part Marking Code
>PET-GF15FR(17)<
ISO 11469
Polymer
PET-GF15 FR
Processing Hold Pressure Time (s/mm)
4
Injection
Resin Identification
PET-GF15FR(17)
ISO 1043
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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