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LNP™ THERMOTUF™ Compound WF008NXQ

1 of 51 products in this brand
SABIC's Specialties Business LNP THERMOTUF WF008NXQ compound is based on Polybutylene Terephthalate (PBT) resin containing 40% glass fiber. Added features of this grade include: High Modulus, Impact Modified, Good Metal Bonding Strength and Good Chemical Resistance suitable for Nano-Molding Technology (NMT) applications and Good Color Stability during anodizing process. This product does not contain PFAS intentionally added during SHPP’s manufacturing process and are not expected to contain unintentional PFAS impurities. Each user is responsible for evaluating the presence of unintentional PFAS impurities.

Polymer Name: Polybutylene Terephthalate (PBT)

Processing Methods: Injection Molding

Fillers Included: Glass Fiber

Additives Included: Impact Modifier

Flexural Modulus: 11200.0 - 11200.0 MPa

Technical Data Sheet

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Plastics & Elastomers Processing Methods

Properties

Flame Rating
Mechanical Properties
ValueUnitsTest Method / Conditions
Flexural Stress (Break, 1.3 mm/min, 50 mm span) ¹¹215MPaASTM D790
Flexural Modulus (at 1.3 mm/min, 50 mm span) ¹¹11000MPaASTM D790
Flexural Stress (Break, 2.6 mm/min, 100 mm span) ¹¹200MPaASTM D790
Flexural Modulus (at 2.6 mm/min, 100 mm span) ¹¹10400MPaASTM D790
Tensile Modulus (at 5 mm/min) ¹¹12500MPaASTM D638
Tensile Strain (Break, Type I, 5 mm/min) ¹¹2.6%ASTM D638
Tensile Stress (Break, Type I, 5 mm/min) ¹¹140MPaASTM D638
Tensile Modulus (at 50 mm/min) ¹¹12400MPaASTM D638
Tensile Strain (Break, Type I, 50 mm/min) ¹¹2.7%ASTM D638
Tensile Stress (Break, Type I, 50 mm/min) ¹¹152MPaASTM D638
Flexural Stress (Break, 2 mm/min) ¹¹210MPaISO 178
Flexural Modulus (at 2 mm/min) ¹¹11200MPaISO 178
Tensile Modulus (at 1 mm/min) ¹¹12200MPaISO 527
Tensile Strain (Break, 5 mm/min) ¹¹2.6%ISO 527
Tensile Stress (Break, 5 mm/min) ¹¹136MPaISO 527
Tensile Strain (Break, 50 mm/min) ¹¹2.7%ISO 527
Tensile Stress (Break, 50 mm/min) ¹¹145MPaISO 527
Bonding Strength (TRI, 5 mm/min, Type A) ¹¹37MPaISO 19095
Physical Properties
ValueUnitsTest Method / Conditions
Density ¹¹1.6g/cm³ASTM D792
Melt Flow Rate (at 275°C, 2.16 kgf) ¹¹14g/10 minASTM D1238
Melt Flow Rate (at 275°C, 5 kgf) ¹¹43g/10 minASTM D1238
Melt Volume Rate (at 280°C, 2.16 kg) ¹¹12cm³/10 minISO 1133
Melt Volume Rate (at 275°C, 5 kg) ¹¹31cm³/10 minISO 1133
Mold Shrinkage (flow) ᵍ ¹¹0.25%SABIC method
Mold Shrinkage (xflow) ᵍ ¹¹0.51%SABIC method
Thermal Properties
ValueUnitsTest Method / Conditions
Heat Deflection Temperature (at 0.45 MPa, 3.2 mm, Unannealed) ¹¹221°CASTM D648
Heat Deflection Temperature (at 1.82 MPa, 3.2mm, Unannealed) ¹¹205°CASTM D648
Heat Deflection Temperature (at 1.82 MPa, 6.4 mm, Unannealed) ¹¹210°CASTM D648
Vicat Softening Temperature (Rate B/50) ¹¹210°CASTM D1525
Vicat Softening Temperature (Rate B/50) ¹¹208°CISO 306
Heat Deflection Temperature/Af (at 1.8 Mpa, Flatw 80*10*4, sp=64mm) ¹¹204°CISO 75/Af
Coefficient of Thermal Expansion (at -40°C to 40°C, flow) ¹¹0.0000191/°CISO 11359-2
Coefficient of Thermal Expansion (at -40°C to 40°C, flow) ¹¹0.0000191/°CASTM E831
Coefficient of Thermal Expansion (at -40°C to 40°C, xflow) ¹¹0.0000721/°CISO 11359-2
Coefficient of Thermal Expansion (at -40°C to 40°C, xflow) ¹¹0.0000691/°CASTM E831
Relative Temperature Index (Electrical) ᵖ ¹¹75°CUL 746B
Relative Temperature Index (Mechanical with impact) ᵖ ¹¹75°CUL 746B
Relative Temperature Index (Mechanical without impact) ᵖ ¹¹75°CUL 746B
Electrical Properties
ValueUnitsTest Method / Conditions
Dielectric Constant (at 1.1 GHz) ¹¹3.85SABIC method
Dissipation Factor (at 1.1 GHz) ¹¹0.0102SABIC method
Dielectric Constant (at 1.9 GHz) ¹¹3.84SABIC method
Dissipation Factor (at 1.9 GHz) ¹¹0.0097SABIC method
Dielectric Constant (at 5 GHz) ¹¹3.81SABIC method
Dissipation Factor (at 5 GHz) ¹¹0.0093SABIC method
Dielectric Constant (at 10 GHz) ¹¹3.84SABIC method
Dissipation Factor (at 10 GHz) ¹¹0.0085SABIC method
Dielectric Constant (at 20 GHz) ¹¹3.82SABIC method
Dissipation Factor (at 20 GHz) ¹¹0.0091SABIC method
Impact Properties
ValueUnitsTest Method / Conditions
Izod Impact (Notched, at 23°C) ¹¹130J/mASTM D256
Izod Impact (Notched, at -30°C) ¹¹97J/mASTM D256
Izod Impact (Unnotched, at 23°C) ¹¹890J/mASTM D4812
Izod Impact (Unnotched, 80*10*4, at 23°C) ¹¹52kJ/m²ISO 180/1U
Izod Impact (Notched, 80*10*4, at 23°C) ¹¹12kJ/m²ISO 180/1A
Izod Impact (Notched, 80*10*4, at -30°C) ¹¹9.5kJ/m²ISO 180/1A
Charpy Impact (Notched, at 23°C) ¹¹12.5kJ/m²ISO 179/2C
Charpy Impact (Notched, at -30°C) ¹¹10kJ/m²ISO 179/2C
Charpy Impact (Unnotched, at 23°C) ¹¹60kJ/m²ISO 179/2C
Injection Molding
ValueUnitsTest Method / Conditions
Drying Temperature ⁷100 - 120°C
Drying Time ⁷4 - 6Hrs
Maximum Moisture Content ⁷0.02%
Melt Temperature ⁷260 - 280°C
Nozzle Temperature ⁷265 - 280°C
Front - Zone 3 Temperature ⁷250 - 270°C
Middle - Zone 2 Temperature ⁷250 - 270°C
Rear - Zone 1 Temperature ⁷240 - 260°C
Hopper Temperature ⁷40 - 60°C
Mold Temperature ˡ ⁷100 - 150°C
Flame Characteristics
ValueUnitsTest Method / Conditions
UL Recognized (94HB Flame Class Rating) ᵖmin. 0.8mmUL 94
Note
  • ᵍ Measurements made from Laboratory test Coupon. Actual shrinkage may vary outside of range due to differences in processing conditions, equipment, part geometry and tool design. It is recommended that mold shrinkage studies be performed with surrogate or legacy tooling prior to cutting tools for new molded article.
  • ᵖ UL ratings shown on the technical datasheet might not cover the full range of thicknesses and colors. For details, please see the UL Yellow Card.
  • ⁷ Injection Molding parameters are only mentioned as general guidelines. These may not apply or may need adjustment in specific situations such as low shot sizes, large part molding, thin wall molding and gas-assist molding.
  • ¹¹ The information stated on Technical Datasheets should be used as indicative only for material selection purposes and not be utilized as specification or used for part or tool design.
 

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