VESTAMID LX9041 BK 9.7504 PA12 | Steel Tube Coating Resin

基础信息

品名
VESTAMID LX9041 BK 9.7504
牌号
LX9041 BK 9.7504
厂商
Evonik
材料类型
Unfilled Polyamide 12 (PA12)
产品形态
Pellets / Granules (Injection Molding Grade)
特点
Heat and light stabilized, good adhesion to properly prepared steel, high impact strength, abrasion resistance, general chemical resistance, low water absorption, dimensional stability and steel-tube coating capability

描述

VESTAMID LX9041 BK 9.7504 is a black, medium-viscosity, heat- and light-stabilized polyamide 12 compound from Evonik Operations GmbH developed especially for the extrusion coating of steel tubes.

Its commercial positioning is highly application-specific. This is not simply a general-purpose PA12 molding resin. Evonik designed VESTAMID LX9041 BK 9.7504 so that the coating combines the inherent toughness of PA12 with good adhesion to a properly prepared steel substrate.

That combination is important because a protective tube coating must do more than cover the metal. It must remain attached during handling, bending, vibration and service exposure. The current product description states that the excellent adhesion between the steel and properly applied VESTAMID coating, together with PA12 impact strength, abrasion resistance and chemical resistance, significantly increases the corrosion resistance of coated steel tubes.

The grade is classified as medium viscosity. Current data lists a melt volume-flow rate of approximately 17 cm³/10 min at 240°C / 2.16 kg. This flow level gives the resin a useful balance between processability and melt strength for coating operations.

Mechanical toughness is also strong. Dry tensile modulus is approximately 1,730 MPa, while conditioned modulus is approximately 1,370 MPa. Yield stress is approximately 51 MPa dry and 44 MPa conditioned. Unnotched Charpy specimens show no break at both 23°C and -30°C.

Moisture uptake remains low, which is a characteristic advantage of PA12. Current data lists approximately 1.3% water absorption and 0.7% humidity absorption. This helps the polymer retain relatively stable dimensions and mechanical behavior under changing ambient humidity.

The grade is supplied as black cylindrical granules in moisture-proof bags and is ready for processing. Evonik states a shelf life of at least two years in original, undamaged packaging stored dry at temperatures not exceeding 30°C.

For more PA12 products, visit our PA12 Polyamide 12 Product Category →.

For official manufacturer information about the VESTAMID family, visit the Evonik VESTAMID Product Page →.

Key Features of VESTAMID LX9041 BK 9.7504

Feature Benefit
Medium Viscosity Balances coating flow with melt strength
Steel-Tube Coating Grade Developed specifically for extrusion coating of steel tubes
Good Adhesion Supports durable bonding to properly prepared steel
Heat Stabilized Supports demanding processing and service conditions
Light Stabilized Helps maintain material performance under light exposure
High Impact Strength Helps the coating withstand handling, vibration and mechanical shock
Abrasion Resistance Protects the coated tube surface against wear
General Chemical Resistance Supports industrial and automotive service environments
Low Water Absorption Helps reduce humidity-related dimensional changes
Dimensional Stability Supports consistent protective-layer performance
Corrosion-Protection Function Helps improve corrosion resistance of coated steel tubing
Black Color Supplied as a ready-colored black compound

The defining advantage of VESTAMID LX9041 BK 9.7504 is the combination of PA12 toughness with adhesion to metal.

Typical Applications for VESTAMID LX9041 BK 9.7504

VESTAMID LX9041 BK 9.7504 is primarily intended for protective coating of steel tubing.

Application Area Typical Use
Steel Tube Extrusion Coating Protective PA12 outer layers on steel tubing
Automotive Metal Tubing Coated steel lines requiring abrasion and corrosion resistance
Industrial Steel Tubes Protective polymer coatings for technical tube systems
Metal Tube Corrosion Protection Barrier layer against environmental exposure
Mechanical Tube Protection Coatings exposed to impact, vibration and abrasion
Engineering Tube Systems Coated tubing requiring good chemical resistance
Construction / Industrial Components Selected coated metal-tube applications

The current Evonik description specifically identifies coating as the processing route, so steel-tube extrusion coating should remain the main application focus of the product page.

Typical Properties of VESTAMID LX9041 BK 9.7504

Physical & Rheological Properties

Property Typical Value Test Method
Density 1.02 g/cm³ ISO 1183
Water Absorption 1.3% Similar to ISO 62
Humidity Absorption 0.7% Similar to ISO 62
Melt Volume-Flow Rate (MVR) 17 cm³/10 min ISO 1133
MVR Test Condition 240°C / 2.16 kg
Molding Shrinkage – Parallel 1.1% ISO 294-4 / 2577
Molding Shrinkage – Normal 1.1% ISO 294-4 / 2577
Delivery Form Black cylindrical pellets Manufacturer information

Mechanical Properties

Property Typical Value (Dry / Conditioned) Test Method
Tensile Modulus 1,730 / 1,370 MPa ISO 527
Yield Stress 51 / 44 MPa ISO 527
Yield Strain 4 / 12% ISO 527
Nominal Strain at Break >50 / >50% ISO 527
Charpy Impact Strength, 23°C No Break / No Break ISO 179/1eU
Charpy Impact Strength, -30°C No Break / No Break ISO 179/1eU
Charpy Notched Impact, 23°C 4 / 3.5 kJ/m² ISO 179/1eA
Charpy Notched Impact, -30°C 4.3 / 4 kJ/m² ISO 179/1eA

Thermal & Flammability Properties

Property Typical Value Test Method
Melting Temperature 177°C ISO 11357-1/-3
Glass Transition Temperature 44°C ISO 11357-1/-2
HDT @ 1.80 MPa 48°C ISO 75-1/-2
HDT @ 0.45 MPa 120°C ISO 75-1/-2
Vicat Softening Temperature B 141°C ISO 306
Flammability @ 1.6 mm HB IEC 60695-11-10

Electrical Properties

Property Typical Value (Dry / Conditioned) Test Method
Relative Permittivity, 100 Hz 3.7 / 4.4 IEC 62631-2-1
Relative Permittivity, 1 MHz 3.1 / 3.2 IEC 62631-2-1
Dissipation Factor, 100 Hz 330 / 610 × 10⁻⁴ IEC 62631-2-1
Dissipation Factor, 1 MHz 195 / 363 × 10⁻⁴ IEC 62631-2-1
Volume Resistivity 9.3 × 10¹² / 4.9 × 10¹² Ω·m IEC 62631-3-1

Why Choose VESTAMID LX9041 BK 9.7504?

The main reason to choose VESTAMID LX9041 BK 9.7504 is its combination of metal adhesion and PA12 durability.

A coating on a steel tube is only useful if it remains attached. Delamination can expose the substrate, reduce corrosion protection and create local failure points.

Evonik specifically identifies good adhesion as a key feature of LX9041. When the steel surface is properly prepared and the material is correctly applied, the PA12 coating forms a durable protective layer.

The polymer itself adds several useful performance benefits. PA12 is impact resistant, abrasion resistant and chemically resistant. It also absorbs relatively little moisture, so the coating is less sensitive to humidity-driven dimensional changes than many other polyamides.

The medium-viscosity design gives LX9041 a different processing profile from high-viscosity steel-coating grades. This can be useful where somewhat greater flow is desirable while still maintaining enough melt strength for coating.

Another advantage is balanced shrinkage. The published 1.1% parallel and 1.1% normal shrinkage provides a useful indication of isotropic dimensional behavior in standardized molded specimens.

Processing Guidelines for VESTAMID LX9041 BK 9.7504

VESTAMID LX9041 BK 9.7504 is developed primarily for coating, especially extrusion coating of steel tubes.

Processing Item Published Condition
Primary Processing Coating / Steel-Tube Extrusion Coating
ISO Test Melt Temperature 240°C
ISO Test Mold Temperature 60°C
ISO Test Injection Velocity 200 mm/s
MVR Test Condition 240°C / 2.16 kg
Supply Form Black cylindrical pellets
Packaging Moisture-proof bags
Shelf Life At least 2 years in original undamaged packaging at ≤30°C

The 240°C melt temperature and 60°C mold temperature above are standardized injection-molding test conditions. They should not be copied directly as a universal steel-tube coating recipe.

For actual extrusion coating, optimize barrel and die temperature, tube preheating, steel surface cleanliness, line speed, coating thickness, die centering, cooling and adhesion testing.

Surface preparation is especially important because the current product description attributes the corrosion-protection benefit to good adhesion between the steel and properly applied VESTAMID material.

VESTAMID LX9041 BK 9.7504 vs. VESTAMID LX9001 BK 9.7504

Feature VESTAMID LX9041 BK 9.7504 VESTAMID LX9001 BK 9.7504
Base Polymer PA12 PA12
Color Black Black
Primary Application Steel-tube extrusion coating Steel-tube extrusion coating
Viscosity Positioning Medium Viscosity High Viscosity
Heat / Light Stabilized Yes Yes
Good Steel Adhesion Yes Yes
MVR 17 cm³/10 min @ 240°C / 2.16 kg 13 cm³/10 min @ 230°C / 5 kg
Tensile Modulus, Dry Approx. 1,730 MPa Approx. 1,650 MPa
Main Selection Reason Medium-viscosity coating processability Higher-viscosity coating profile

The MVR values use different test conditions, so they should not be compared numerically as a direct viscosity ranking. The manufacturer positioning is the more reliable distinction.

Choose VESTAMID LX9041 BK 9.7504 when a medium-viscosity steel-coating grade is preferred.

Choose VESTAMID LX9001 BK 9.7504 when a high-viscosity coating grade is required.

Related Products

VESTAMID LX9001 BK 9.7504 – High-viscosity PA12 for extrusion coating of steel tubes.

VESTAMID L2140 BK 9.7504 – High-viscosity PA12 for fuel lines, tubing and general technical extrusion.

VESTAMID L2141 BK 9.7504 – High-viscosity PA12 with enhanced heat stabilization for demanding tubing.

View More PA12 Polyamide 12 Materials →

Technical Documents for VESTAMID LX9041 BK 9.7504

Document Type Description
TDS Grade-specific physical, mechanical, thermal, electrical and rheological data
SDS Safety Data Sheet
COA Batch-specific Certificate of Analysis where available
Processing Guide General VESTAMID processing recommendations
Chemical Resistance Data PA12 resistance information for relevant service media
Application Support Steel-tube coating and adhesion evaluation

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FAQ About VESTAMID LX9041 BK 9.7504

Q1: What is VESTAMID LX9041 BK 9.7504?

VESTAMID LX9041 BK 9.7504 is a black, medium-viscosity, heat- and light-stabilized PA12 from Evonik developed especially for extrusion coating of steel tubes.

Q2: What is the main application of VESTAMID LX9041 BK 9.7504?

Its main application is steel-tube extrusion coating, where the PA12 layer provides adhesion, abrasion resistance, impact resistance and corrosion protection.

Q3: What is the MVR of VESTAMID LX9041 BK 9.7504?

The current typical MVR is approximately 17 cm³/10 min at 240°C / 2.16 kg according to ISO 1133.

Q4: What is the density of VESTAMID LX9041 BK 9.7504?

The typical density is approximately 1.02 g/cm³ according to ISO 1183.

Q5: What is the tensile modulus of VESTAMID LX9041 BK 9.7504?

The typical tensile modulus is approximately 1,730 MPa dry and 1,370 MPa conditioned.

Q6: What is the melting temperature?

The typical melting temperature is approximately 177°C according to ISO 11357.

Q7: Does VESTAMID LX9041 BK 9.7504 absorb much water?

No. Current data lists approximately 1.3% water absorption and 0.7% humidity absorption.

Q8: Does VESTAMID LX9041 BK 9.7504 adhere to steel?

Yes. Good adhesion to properly prepared steel is one of the key grade features identified by Evonik.

Q9: What is the difference between LX9041 and LX9001?

Both are black PA12 grades for steel-tube coating. LX9041 is positioned as medium viscosity, while LX9001 is positioned as high viscosity.

Q10: Can you provide VESTAMID LX9041 BK 9.7504 TDS, SDS and COA?

Yes. Please request the required documents through our Contact Page → or email ruiqingchem@gmail.com.

Request VESTAMID LX9041 BK 9.7504 Price & Technical Support

For pricing, availability, technical documents or material-selection support for VESTAMID LX9041 BK 9.7504, please provide:

  • Required quantity
  • Destination country or port
  • Steel-tube application
  • Tube outside diameter
  • Required coating thickness
  • Steel grade and surface-preparation method
  • Service environment
  • Chemical, oil or fuel exposure
  • Operating temperature
  • Extrusion-coating line information
  • Adhesion and corrosion-test requirements
  • TDS, SDS or COA requirements
  • Sample requirement, if applicable

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