LNP™ LUBRICOMP™ Compound DCI06APW

Want to keep this datasheet? Save it now in your required format

Description

LNP LUBRICOMP DCI06APW is a compound based on Polycarbonate resin containing Carbon Fiber. Added features of this material include: Electrically Conductive, High Flow, Wear Resistant. This grade has been pre-assessed and passed the material related tests from the ISO 10993 “Biological Evaluation of Medical Devices”.

This material data has been provided by Sabic.

"Typical" values were obtained via a literature search. "Predicted" values were imputed via artificial intelligence technology. While we have placed significant efforts in ensuring data accuracy, "typical" and "predicted" data should be considered indicative and verified by appropriate material testing. Please do contact us if additional information on the the predicted data method is required.
All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

Ashby charts

Properties

General

PropertyTemperatureValueComment

Coefficient of friction

0.22 - 0.24 [-]

Show Supplier Material materials with Coefficient of friction of 0.22 - 0.24 [-]

Coefficient of friction, kinetic

0.24 [-]

Show Supplier Material materials with Coefficient of friction, kinetic of 0.24 [-]

ASTM D 3702 Modified: Manual

Coefficient of friction, static

0.22 [-]

Show Supplier Material materials with Coefficient of friction, static of 0.22 [-]

ASTM D 3702 Modified: Manual

Moisture absorption

23.0 °C

0.11 %

Show Supplier Material materials with Moisture absorption of 0.11 %

ASTM D 570 | (23°C/50% RH/24 hrs)

Relative density

23.0 °C

1.3 [-]

Show Supplier Material materials with Relative density of 1.3 [-]

ASTM D 792 |

Mechanical

PropertyTemperatureValueComment

Compressive strength

23.0 °C

128 MPa

Show Supplier Material materials with Compressive strength of 128 MPa

SABIC method

Elastic modulus

23.0 °C

23.8 GPa

Show Supplier Material materials with Elastic modulus of 23.8 GPa

ISO 527 | 1 mm/min

Elongation

23.0 °C

1.6 %

Show Supplier Material materials with Elongation of 1.6 %

ISO 527 | break, 5 mm/min

Flexural modulus

23.0 °C

20.6 GPa

Show Supplier Material materials with Flexural modulus of 20.6 GPa

ISO 178 | 2 mm/min

Flexural strength

23.0 °C

262 MPa

Show Supplier Material materials with Flexural strength of 262 MPa

ISO 178 | 2 mm/min

Impact strength, Izod notched

23.0 °C

9 kJ/m²

Show Supplier Material materials with Impact strength, Izod notched of 9 kJ/m²

ISO 180/1A | notched 80*10*4, 23°C

Impact strength, Izod notched, ASTM

23.0 °C

94 J/m

Show Supplier Material materials with Impact strength, Izod notched, ASTM of 94 J/m

ASTM D 256 | notched, 23°C

Impact strength, Izod unnotched

23.0 °C

33 kJ/m²

Show Supplier Material materials with Impact strength, Izod unnotched of 33 kJ/m²

ISO 180/1U | unnotched 80*10*4, 23°C

Impact strength, Izod unnotched, ASTM

23.0 °C

504 J/m

Show Supplier Material materials with Impact strength, Izod unnotched, ASTM of 504 J/m

ASTM D 4812 | 23°C

Instrumented Impact, Total Energy

23.0 °C

16 J

Show Supplier Material materials with Instrumented Impact, Total Energy of 16 J

ASTM D 3763 | 23°C

Shear modulus

23.0 °C

3.5 GPa

Show Supplier Material materials with Shear modulus of 3.5 GPa

ASTM D732

Shear strength

23.0 °C

92 MPa

Show Supplier Material materials with Shear strength of 92 MPa

ASTM D732

Tensile strength

23.0 °C

183 MPa

Show Supplier Material materials with Tensile strength of 183 MPa

ISO 527 | break, 5 mm/min

Thermal

PropertyTemperatureValueComment

Coefficient of thermal expansion

23.0 °C

9.7E-6 1/K

Show Supplier Material materials with Coefficient of thermal expansion of 9.7E-6 1/K

ASTM D 696 | -30°C to 30°C

Coefficient of thermal expansion, transverse

23.0 °C

4.6E-5 1/K

Show Supplier Material materials with Coefficient of thermal expansion, transverse of 4.6E-5 1/K

ASTM D 696 | -30°C to 30°C

Heat deflection temperature

130 °C

Show Supplier Material materials with Heat deflection temperature of 130 °C

Heat deflection temperature, 1.80 MPa

130 °C

Show Supplier Material materials with Heat deflection temperature, 1.80 MPa of 130 °C

ISO 75/Af | Flatw 80*10*4 sp=64mm

Electrical

PropertyTemperatureValueComment

Sheet resistivity, ROA

23.0 °C

1000 Ω

Show Supplier Material materials with Sheet resistivity, ROA of 1000 Ω

ASTM D 257

Rheological Properties

PropertyTemperatureValueComment

Melt volume-flow rate

28 cm³/10min

Show Supplier Material materials with Melt volume-flow rate of 28 cm³/10min

ASTM D 1238 | MVR at 300°C/5.0 kg

Shrinkage

23.0 °C

0.05 %

Show Supplier Material materials with Shrinkage of 0.05 %

ASTM D 955 | 24 hrs

Shrinkage, transverse

23.0 °C

0.15 %

Show Supplier Material materials with Shrinkage, transverse of 0.15 %

ASTM D 955 | 24 hrs

Technological properties

Property
Application areas

Pharmaceutical Packaging & Drug Delivery, Surgical Devices, Medical Device

Availability

Europe,Asia,Americas

Processing methods

Drying Temperature: 120°C
Drying Time: 4hrs
Melt Temperature: 290 to 300.0°C
Front - Zone 3 Temperature: 285 to 300.0°C
Middle - Zone 2 Temperature: 275 to 290.0°C
Rear - Zone 1 Temperature: 270 to 285.0°C
Mold Temperature: 100 to 120.0°C
Back Pressure: 0.2 to 0.3MPa
Screw Speed: 40 to 80.0rpm
Maximum Moisture Content: 0.02%

Supplier Disclaimer

While the information is provided in good faith, SABIC MAKES NO WARRANTY, EXPRESS OR IMPLIED, INCLUDING MERCHANTABILITY AND NONINFRINGEMENT OF INTELLECTUAL PROPERTY, NOR ASSUMES ANY LIABILITY, DIRECT OR INDIRECT, WITH RESPECT TO THE PERFORMANCE, SUITABILITY OR FITNESS FOR INTENDED USE OR PURPOSE OF THESE PRODUCTS IN ANY APPLICATION. Each Buyer must determine the suitability of SABIC's materials for the Buyer's particular use through appropriate testing and analysis. No statement by SABIC concerning a possible use of any product, service or design is intended, or should be construed, to grant any license under any patent or other intellectual property right.