LNP™ THERMOTUF™ Compound WF008NA

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Description

LNP THERMOTUF WF008NA is a PBT/glass fiber compound for nano-molding technology (NMT) application, featured with high modulus, excellent bonding force, good surface quality, high impact and good color stability during anodizing process.

Diese Materialdaten wurden von Sabic zur Verfügung gestellt

Alle Daten beziehen sich auf Raumtemperatur soweit nicht anderweitig spezifiziert. SI Einheiten werden verwendt soweit nicht anderweitig spezifiziert.
Äquivalente Standards sind ähnlich zu einem oder mehreren Standards die der Anbieter angegeben hat. Manche äquivalente Standards können strikter sein oder außerhalb der Bedingungen des ursprünglichen Standards.

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Eigenschaften

Allgemein

PropertyTemperatureValueComment

Dichte

23.0 °C

1.61 g/cm³

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ASTM D 792

Mechanisch

PropertyTemperatureValueComment

Biegefestigkeit

23.0 °C

228 MPa

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ISO 178 | break, 2 mm/min

Biegemodul

23.0 °C

11.7 GPa

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ISO 178 | 2 mm/min

Dehnung

23.0 °C

3.2 %

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ISO 527 | break, 5 mm/min

Elastizitätsmodul

23.0 °C

12.5 GPa

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ISO 527 | 1 mm/min

Impact strength, Izod notched, ASTM

23.0 °C

132 J/m

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ASTM D 256 | notched, 23°C

Impact strength, Izod unnotched, ASTM

23.0 °C

912 J/m

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ASTM D 4812 | 23°C

Schlagfestigkeit, Charpy gekerbt

23.0 °C

13 kJ/m²

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ISO 179/2C | -30°C

Schlagzähigkeit, Charpy ungekerbt

23.0 °C

60 kJ/m²

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ISO 179/2C | 23°C

Schlagzähigkeit, Izod gekerbt

23.0 °C

12 kJ/m²

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ISO 180/1A | notched 80*10*4, -30°C

Schlagzähigkeit, Izod ungekerbt

23.0 °C

54 kJ/m²

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ISO 180/1U | 80*10*4, 23°C

Zugfestigkeit

23.0 °C

155 MPa

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ISO 527 | break, 5 mm/min

Thermisch

PropertyTemperatureValueComment

Heat deflection temperature, 1.80 MPa

208 °C

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

Koeffizient der thermischen Ausdehnung

23.0 °C

1.8E-5 1/K

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ISO 11359-2 | -40°C to 40°C

Relative temperature index, electrical

75 °C

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UL 746B

Relative temperature index, mechanical impact

75 °C

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UL 746B

Relative temperature index, mechanical strength

75 °C

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UL 746B

Vicat-Erweichungstemperatur

221 °C

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ISO 306 | Rate A/50

Wärmeformbeständigkeitstemperatur

208 °C

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thermischer Ausdehnungskoeffizient, transversal

23.0 °C

6.6E-5 1/K

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ISO 11359-2 | -40°C to 40°C

Entflammbarkeit

UL Yellow Card Link: https://iq.ul.com/ul/cert.aspx?ULID=103732102- - <br> UL Recognized, 94HB Flame Class Rating: 0.7mm UL 94

Elektrisch

PropertyTemperatureValueComment

Dielectric constant, 1GHz

23.0 °C

3.97 [-]

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SABIC method | 1.1 GHz

Dielectric constant, 5GHz

23.0 °C

3.96 [-]

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SABIC method

Dielektrizitätskonstante

23.0 °C

3.96 [-]

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SABIC method | 1.9 GHz

Dissipation factor, 1GHz

23.0 °C

0.01 [-]

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SABIC method |

Dissipation factor, 5GHz

23.0 °C

9E-3 [-]

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SABIC method

Verlustfaktor

23.0 °C

0.01 [-]

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SABIC method

Rheological Properties

PropertyTemperatureValueComment

Schmelzmassenflussrate

43 g/10min

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ASTM D 1238 | 275°C/5 kgf

Schmelzvolumenflussrate

17 cm³/10min

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ISO 1133 | MVR at 250°C/5.0 kg

Schrumpfung

23.0 °C

0.27 %

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SABIC method

Schrumpfung, diagonal

23.0 °C

0.5 %

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SABIC method

Technological properties

Property
Application areas

Electronic Components, Wireless Communications

Availability

Europe,Asia,Americas

Processing methods

Drying Temperature: 100 to 120.0°C
Drying Time: 2 to 4.0hrs
Maximum Moisture Content: 0.02%
Melt Temperature: 250 to 270.0°C
Nozzle Temperature: 255 to 275.0°C
Front - Zone 3 Temperature: 250 to 270.0°C
Middle - Zone 2 Temperature: 250 to 270.0°C
Rear - Zone 1 Temperature: 240 to 260.0°C
Hopper Temperature: 40 to 60.0°C
Mold Temperature: 100 to 160.0°C

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.