ULTRAMID® Advanced T1000HG7 LS Black 23593 Polyamide

1 of 141 products in this brand
ULTRAMID® Advanced T1000HG7 LS Black 23593 Polyamide is a heat-stabilized, partially aromatic polyphthalamide for injection molding. It offers strong mechanical properties at high temperatures, excellent chemical resistance, low water absorption, and dimensional stability. With a high melting point of 320°C and exceptional melt stability, it is ideal for highly stressed parts.

Polymer Name: Polyamide 6I/6T (PA 6I/6T)

Processing Methods: Injection Molding

Fillers Included: Glass Fiber

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Identification & Functionality

Chemical Family
Fillers Included
Polymer Name
Plastics & Elastomers Functions
Technologies
Product Families

Features & Benefits

Applications & Uses

Properties

Color (Properties)
Mechanical Properties
ValueUnitsTest Method / Conditions
Tensile Modulus (Cond.) (at 23°C)14000MPaISO 527-1/-2
Tensile Modulus (Dry) (at 23°C)14000MPaISO 527-1/-2
Stress at Break (Cond.) (at 23°C)210MPaISO 527-1/-2
Stress at Break (Dry) (at 23°C)220MPaISO 527-1/-2
Strain at Break (Cond.) (at 23°C)1.9%ISO 527-1/-2
Strain at Break (Dry) (at 23°C)2%ISO 527-1/-2
Tensile Modulus (Cond.) (at 80°C)12000MPaISO 527-1/-2
Tensile Modulus (Dry) (at 80°C)12500MPaISO 527-1/-2
Stress at Break (Cond.) (at 80°C)145MPaISO 527-1/-2
Stress at Break (Dry) (at 80°C)180MPaISO 527-1/-2
Strain at Break (Dry) (at 80°C)2%ISO 527-1/-2
Strain at Break (Cond.) (at 80°C)2.2%ISO 527-1/-2
Tensile Modulus (Dry) (at 120°C)10000MPaISO 527-1/-2
Stress at Break (Dry) (at 120°C)135MPaISO 527-1/-2
Strain at Break (Dry) (at 120°C)2.9%ISO 527-1/-2
Tensile Modulus (Dry) (at 170°C)4400MPaISO 527-1/-2
Stress at Break (Dry) (at 170°C)70MPaISO 527-1/-2
Bruchdehnung (Dry) (at 170°C)6.5%ISO 527-1/-2
Flexural Modulus (Dry)13000.0MPaISO 178
Flexural Strength (Dry) 300.0MPaISO 178
Flexural Modulus (Cond.)13000MPaISO 178
Flexural Strength (Cond.)290.0MPaISO 178
Flexural Strength (Cond.)290MPaISO 178
Charpy Notched Impact Strength (Dry) (at -30°C)8kJ/m²ISO 179/1eA
Charpy Unnotched Impact Strength (Dry) (at -30°C)70kJ/m²ISO 179/1eU
Typical Properties
ValueUnitsTest Method / Conditions
Polymer Abbreviation (at 23°C)PA6T/6I GF35--
Density (at 23°C)1485kg/m³ISO 1183
Viscosity Number (0.5% in 96% H₂SO₄) (at 23°C)105cm³/gISO 307, 1157, 1628
Moisture Absorption, (Equilibrium at 23°C/50% r.h)1.6%similar to ISO 62
Water Absorption, Saturation in Water at 23°C3.8%similar to ISO 62
Water Absorption (24h in water at 23°C)0.41%ISO 62
Bulk Densityapprox. 0.7g/cm³
Thermal Properties
ValueUnitsTest Method / Conditions
Deflection Temperature Under Load 1.8 MPa (HDT A)min. 280°CISO 75-1/-2
Coefficient of Linear Thermal Expansion, Longitudinal (at 23°C - 55°C)(22 - 22)x10⁻⁶/KISO 11359-1/-2
Coefficient of Linear Thermal Expansion, Transverse (at 23°C - 55°C)(51 - 53)x10⁻⁶/KISO 11359-1/-2
Thermal Conductivity, Solid Material (at 40°C)0.344W/(m K)DIN 52612-1
Specific Heat Capacity (at 23°C)1.07J/(kg*K)-
Electrical Properties
ValueUnitsTest Method / Conditions
Volume Resistivity (Dry)min. 1×10¹⁵Ohm.mIEC 62631-3-1
Volume Resistivity (Cond.)min. 1×10¹⁵Ohm.mIEC 62631-3-1
Surface Resistivity (Cond.)min. 1×10¹⁵OhmIEC 62631-3-2
Electric Strength K20/K20, (60*60*1 mm³) (Dry)37kV/mmIEC 60243-1
Comparative Tracking Index - CTI600-IEC 60112,Test LIquid A
Volume Resistivity (150°C) (Dry)4.30×10 ⁸OhmDIN IEC 60093
Shrinkage
ValueUnitsTest Method / Conditions
Molding Shrinkage (Parallel)0.4%ISO 294-4
Molding Shrinkage (Normal)0.93%ISO 294-4
Processing Parameters
ValueUnitsTest Method / Conditions
Melting Temperature320°CISO 11357-1/-3 / DSC
Injection Molding
ValueUnitsTest Method / Conditions
Melt Temperature (Range)335 - 355°C
Melt Temperature (Optimal)350°C-
Mold Temperature (Range)140 - 170°C-
Mold Temperature (Optimal)min. 150°C-
Residence Timemax. 5.0min
Drying
ValueUnitsTest Method / Conditions
Moisture Content (Recommended) ¹max. 0.05%-
Dryer Temperature ²120°C-
Drying Time ³8h-
Machine Settings
ValueUnitsTest Method / Conditions
Temperature Hopper Throat80.0°C
Cylinder Temperature 1 (Feed Zone)330°C-
Cylinder Temperature 2 (Compression)335°C-
Cylinder Temperature 3 (Metering - Zone, in Front of The Screw)340°C-
Cylinder Temperature 4 (Nozzle)345°C-
Processing Properties
ValueUnitsTest Method / Conditions
Melt Temperature (Injection Molding/Extrusion)335 - 355°C-
Mold Temperature (Injection Molding)140 - 170°C-
Test Specimen Production, Injection Molding (Melt Temp.)350°CISO 294
Test Specimen Production, Injection Molding (Melt Temp.)150°CISO 294
Note
  1. A slight increase in viscosity during processing is possible.
  2. Dry air dryer; drying time is dependent on the inital moisture content of the granules, drying temperature and the dew point of the dried air.
  3. In case of improper storage (e.g. open packages) drying time may have to be extended.

Safety & Health

Product Safety

In case processing is done under conditions as recommended (cf. processing data sheet) melts are thermally stable anddo not generate hazards by molecular degradation or the evolution of gases and vapors.

Like all thermoplastic polymers the product decomposes on exposure to excessive thermal load, e.g. when it is overheated or as a result of cleaning by
burning off. 

Packaging & Availability

Packaging Conditions

Standard packs are bag and bulk container (octagonal IBC=intermediate bulk container made from corrugated board with a liner bag).

Other packaging materials and shipping in road or rail silo wagons are possible by agreement.

Storage & Handling

Storage Conditions

The containers should only be opened immediately before processing or drying.

To ensure that the delivered product absorbs as little moisture as possible, the containers should be stored in dry rooms and always carefully closed again after partial quantities have been withdrawn.

In principle, the product can be stored for a long period of time.

Containers stored in cold rooms should be equalized to ambient temperature before opening in order to avoid condensation on the granules.

Regardless of the storage conditions, the product should be pre-dried according to our recommendations and the machine should preferably be loaded using a closed conveyor system