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LNP™ VERTON™ Compound RX06422

LNP™ VERTON™ Compound RX06422 combines Polyamide 66 (nylon 66) resin with 50% long glass fiber, offering enhanced properties suitable for a variety of applications. This compound is specifically engineered for easy molding, providing manufacturers with flexibility and efficiency in production processes. It features heat stabilization and UV stabilization, ensuring durability and performance in outdoor and high-temperature environments. Its structural integrity makes it ideal for applications where strength and reliability are crucial, such as automotive components, industrial equipment, and outdoor products. This product delivers a balance of mechanical strength, dimensional stability, and weather resistance, making it a versatile choice for demanding engineering applications.

Brand: LNP™ VERTON™ Compound (48 products)

Polymer Name: Polyamide 66 (PA 66)

Processing Methods: Injection Molding

Fillers Included: Glass Fiber

Technical Data Sheet

Enhanced TDS

Knowde-enriched technical product data sheet

Identification & Functionality

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

Features & Benefits

Applications & Uses

Properties

Mechanical Properties
ValueUnitsTest Method / Conditions
Tensile Stress (Break) ¹254.0MPaASTM D638
Tensile Stress (Break) ¹256.0MPaISO 527
Tensile Strain (Break) ¹1.9%ASTM D638
Tensile Strain (Break) ¹1.9%ISO 527
Tensile Modulus (at 5 mm/min) ¹16890.0MPaASTM D638
Flexural Modulus ¹14160.0MPaASTM D790
Flexural Modulus ¹15550.0MPaISO 178
Tensile Modulus (at 1 mm/min) ¹18380.0MPaISO 527
Flexural Stress ¹374.0MPaASTM D790
Flexural Stress ¹370.0MPaISO 178
Physical Properties
ValueUnitsTest Method / Conditions
Density ¹1.58g/cm³ASTM D792
Density ¹1.58g/cm³ISO 1183
Mold Shrinkage (flow, 24 hrs) ³0.3%ISO 294
Mold Shrinkage (xflow, 24 hrs) ³0.8%ISO 294
Thermal Properties
ValueUnitsTest Method / Conditions
Heat Deflection Temperature (1.82 MPa, 3.2mm, unannealed) ¹241.0°C ASTM D648
Coefficient of Thermal Expansion (at -40°C to 40°C, flow) ¹1.85e-051/°CASTM E831
Coefficient of Thermal Expansion (at -40°C to 40°C, flow) ¹1.86e-051/°CISO 11359-2
Coefficient of Thermal Expansion (at -40°C to 40°C, xflow) ¹6.73e-051/°CASTM E831
Coefficient of Thermal Expansion (at -40°C to 40°C, xflow) ¹6.73e-051/°CISO 11359-2
Heat Deflection Temperature/Bf (0.45 MPa Flatw 80*10*4 sp=64mm) ¹258.0°CISO 75/Bf
Heat Deflection Temperature/Af (1.8 MPa Flatw 80*10*4 sp=64mm) ¹253.0°CISO 75/Af
Relative Temperature Index (Elec) ²105.0°CUL 746B
Relative Temperature Index (Mech with impact) ²110.0°CUL 746B
Relative Temperature Index (Mech w/o impact) ²110.0°CUL 746B
Electrical Properties
ValueUnitsTest Method / Conditions
Hot-Wire Ignition (HWI, PLC 0) ²min. 1.5mmUL 746A
High Amp Arc Ignition (HAI, PLC 0) ²min. 1.5mmUL 746A
Impact Properties
ValueUnitsTest Method / Conditions
Izod Impact (Notched, 23°C) ¹384.0J/mASTM D256
Instrumented Dart Impact Energy (at peak, 23°C) ¹15.0JASTM D3763
Multiaxial Impact ¹15.0JISO 6603
Izod Impact (Unnotched 80*10*4 +23°C) ¹89.0kJ/m²ISO 180/1U
Izod Impact (Notched 80*10*4 +23°C) ¹45.0kJ/m²ISO 180/1A
Izod Impact (Notched 80*10*4 -40°C) ¹38.0kJ/m²ISO 180/1A
Injection Molding
ValueUnitsTest Method / Conditions
Drying Temperature ⁴80.0°C-
Drying Time ⁴4.0Hrs-
Maximum Moisture Content ⁴0.15 - 0.25%-
Melt Temperature ⁴290 - 305°C-
Front - Zone 3 Temperature ⁴290 - 300°C-
Middle - Zone 2 Temperature ⁴290 - 300°C-
Rear - Zone 1 Temperature ⁴280 - 295°C-
Mold Temperature ⁴95 - 110°C-
Back Pressure ⁴0.2 - 0.3MPa-
Screw Speed ⁴30 - 60rpm-
Flame Characteristics
ValueUnitsTest Method / Conditions
UL Recognized 94HB Flame Class Rating ²min. 1.5mmUL 94
UV-light Water exposure/immersion ²F1-UL 746C
Note

(1) 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.
(2) 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.
(3) 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.
(4) 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.

Regulatory & Compliance

Certifications & Compliance
Quality Standards