VESTAMID LXM8 PA12-GF8 8% Glass-Fiber Sports Shoe Sole Resin

基础信息

品名
VESTAMID LXM8
牌号
LXM8
厂商
Evonik
材料类型
Unfilled Polyamide 12 (PA12)
产品形态
Pellets / Granules (Injection Molding Grade)
特点
8% glass fiber, heat stabilized, UV/light/weathering stabilized, strong TPU bonding, good fatigue resistance, excellent dimensional stability, high impact strength, low coefficient of friction and efficient injection-molding cycle times

描述

VESTAMID LXM8 is a medium-viscosity, glass-fiber-reinforced and heat-stabilized polyamide 12 compound from Evonik Operations GmbH developed for sports and lifestyle injection-molding applications, especially sports shoe soles.

The grade contains approximately 8% glass fiber, giving it a higher stiffness level than VESTAMID LXM4 while preserving the impact resistance, low moisture sensitivity and fatigue performance associated with PA12.

Evonik specifically highlights very good fatigue performance and excellent bonding ability to TPU as important features of VESTAMID LXM8. This is highly relevant for modern sports footwear, where a semi-rigid PA12 structural element is often combined with softer TPU sections.

The material is semi-crystalline and supplied in natural color with a translucent optical appearance. It is designed for injection molding and offers an efficient processing profile suitable for high-volume molded sports components.

PA12 is particularly valuable in footwear because its moisture uptake is much lower than that of many shorter-chain polyamides. Current grade-specific data lists approximately 0.25% water absorption and 0.14% moisture absorption, helping molded parts retain dimensions and mechanical performance under changing ambient humidity.

The 8% glass-fiber content increases stiffness without pushing the material into the behavior of a heavily reinforced structural compound. Typical tensile modulus is approximately 2.27 GPa, while flexural modulus is approximately 1.89 GPa.

At the same time, VESTAMID LXM8 retains meaningful ductility. Typical elongation at break is approximately 16%, and the grade maintains strong impact performance at both room and sub-zero temperatures.

Typical unnotched Charpy impact strength is approximately 90 kJ/m² at 23°C and 95 kJ/m² at -30°C. Typical notched impact strength is approximately 11 kJ/m² at 23°C and 6 kJ/m² at -30°C.

Current grade data also shows balanced molding shrinkage of approximately 0.6% in the flow direction and 0.4% transverse to flow, supporting good dimensional control in injection-molded footwear components.

The material is supplied as cylindrical granules in moisture-barrier packaging. Evonik states that unopened, undamaged packages have a shelf life of at least two years when stored dry at temperatures not exceeding 30°C.

For additional PA12 grades, visit our PA12 Polyamide 12 Product Category →.

For official manufacturer information on VESTAMID materials for sports applications, visit the Evonik VESTAMID Sports Page →.

Key Features of VESTAMID LXM8

Feature Benefit
8% Glass Fiber Reinforcement Provides higher stiffness than lightly reinforced PA12 such as LXM4
Medium Viscosity Supports stable injection molding and practical flow behavior
Sports & Lifestyle Grade Developed for demanding visible and functional sports components
Sports Shoe Sole Focus Suitable for molded sole structures and footwear elements
Excellent TPU Bonding Supports hybrid footwear construction with TPU
Good Fatigue Resistance Useful for components subjected to repeated flexing
High Impact Strength Retains toughness at room and sub-zero temperatures
Low Moisture Absorption Helps maintain dimensions and properties as humidity changes
Heat Stabilized Supports stable long-term performance
UV / Light / Weathering Stabilized Suitable for visible sports and lifestyle products
Low Coefficient of Friction Useful where surfaces experience repeated sliding or contact
Translucent Natural Appearance Supports aesthetic design and downstream coloration

Typical Applications for VESTAMID LXM8

VESTAMID LXM8 is mainly used in sports and lifestyle injection-molded components.

Application Area Typical Use
Sports Shoe Soles Reinforced PA12 sole components requiring stiffness and repeated-flex durability
Footwear Structural Inserts Semi-rigid reinforcement elements bonded to TPU
TPU-Bonded Components Hybrid parts combining PA12 and thermoplastic polyurethane
Sports Equipment Components Lightweight molded parts requiring fatigue resistance
Wearable Technical Parts Functional components requiring low water absorption
Lifestyle Products Visible molded parts requiring dimensional stability and toughness
Thin or Extended Molded Features Components requiring consistent mold filling and controlled shrinkage
General PA12-GF8 Injection-Molded Parts Applications requiring more stiffness than unfilled or 4% GF PA12

Typical Properties of VESTAMID LXM8

Physical & Rheological Properties

Property Typical Value Test Method
Density 1.06 g/cm³ ISO 1183
Glass Fiber Content 8% Manufacturer / grade classification
Water Absorption 0.25% Similar to ISO 62
Moisture Absorption 0.14% Similar to ISO 62
Shore D Hardness 75 ISO 7619-1
Molding Shrinkage – Flow 0.6% ISO 294-4 / 2577
Molding Shrinkage – Transverse 0.4% ISO 294-4 / 2577
Structure Semi-crystalline Manufacturer information
Optics Translucent Manufacturer information
Color Natural Color Manufacturer information

Mechanical Properties

Property Typical Value Test Method
Tensile Modulus 2,270 MPa ISO 527
Tensile Strength at Break 55 MPa ISO 527
Elongation at Break 16% ISO 527
Flexural Modulus 1,890 MPa ISO 178
Charpy Impact Strength, 23°C 90 kJ/m² ISO 179/1eU
Charpy Impact Strength, -30°C 95 kJ/m² ISO 179/1eU
Charpy Notched Impact, 23°C 11 kJ/m² ISO 179/1eA
Charpy Notched Impact, -30°C 6 kJ/m² ISO 179/1eA

Thermal Properties

Property Typical Value Test Method
Melting Temperature 180°C ISO 11357-1/-3
Heat Stabilization Yes Manufacturer information
UV / Light / Weathering Stabilization Yes Manufacturer information

Optical Properties

Property Typical Value Test Method
Color L 63.7 CIE
Color a -2.7 CIE
Color b 4.0 CIE
Optics Translucent Manufacturer information

Sustainability Data

LCA Property Published Value Standard
LCA Certificate VESTAMID CW modified GF ISO 14040 / 14044
LCA Certifier TÜV Rheinland ISO 14040 / 14044
Blue Water Consumption 237.7 kg ISO 14040 / 14044

Why Choose VESTAMID LXM8?

The main reason to choose VESTAMID LXM8 is its balance of higher stiffness, impact resistance, fatigue performance and TPU bonding.

Sports footwear parts are exposed to repeated bending, shock and contact with softer elastomeric materials. A polymer that is too rigid may crack under repeated flexing, while a polymer that is too soft may not provide enough structural support.

The 8% glass-fiber reinforcement increases stiffness to approximately 2.27 GPa tensile modulus, giving designers more structural support than LXM4 while keeping the material much less heavily reinforced than conventional 15–50% glass-filled PA12 grades.

The approximately 16% elongation at break is especially important because it shows that the material retains useful ductility.

TPU bonding is another core differentiator. Modern footwear frequently combines hard and soft zones in one assembly. Evonik specifically identifies excellent bonding strength to TPU as a key feature of LXM8, making the grade highly suitable for this type of hybrid design.

Low water absorption also helps maintain fit and geometry. Humidity changes can strongly affect conventional nylons, but PA12 experiences far smaller dimensional shifts.

Finally, the grade is designed for efficient injection-molding cycle times, making it suitable not only for technical prototypes but also for commercial-scale footwear production.

Processing Guidelines for VESTAMID LXM8

VESTAMID LXM8 is intended for injection molding.

Processing Parameter Published Value
Primary Process Injection Molding
Melt Temperature 240°C
Mold Temperature 60°C
Delivery Form Cylindrical Pellets / Granules
Packaging Moisture-Barrier Bags
Shelf Life At least 2 years at ≤30°C in original undamaged packaging

For production molding, evaluate melt temperature, mold temperature, injection speed, holding pressure, cooling time, gate position, flow length, wall thickness, fiber orientation and TPU bonding area.

Glass-fiber orientation can influence local stiffness and shrinkage, so gate design and flow direction should be considered during tool development.

Because many LXM8 applications involve bonding to TPU, the molding process and subsequent joining process should be evaluated as one complete material system.

VESTAMID LXM8 vs. VESTAMID LXM4

Feature VESTAMID LXM8 VESTAMID LXM4
Base Polymer PA12 PA12
Glass Fiber 8% 4%
Density 1.06 g/cm³ 1.03 g/cm³
Tensile Modulus 2,270 MPa 1,600 MPa
Flexural Modulus 1,890 MPa 1,320 MPa
Elongation at Break 16% Approx. 18.8%
23°C Unnotched Charpy 90 kJ/m² Approx. 130 kJ/m²
-30°C Unnotched Charpy 95 kJ/m² Approx. 131 kJ/m²
Melting Temperature 180°C 180°C
TPU Bonding Excellent Good / excellent
Main Selection Reason Higher stiffness and structural support More ductility and impact performance

Choose VESTAMID LXM8 when the footwear or sports component requires higher stiffness and reinforcement.

Choose VESTAMID LXM4 when lower density, more ductility and higher unnotched impact strength are preferred.

Related Products

VESTAMID LXM4 – 4% glass-fiber-reinforced PA12 for sports shoe soles requiring more ductility and high impact performance.

VESTAMID LX9012 T10 – Translucent PA12 for injection-molded sports shoe soles with good bonding and high flow.

VESTAMID LX9012 Bio30 – 30% bio-based PA12 for sustainable sports and lifestyle injection-molded applications.

View More PA12 Polyamide 12 Materials →

Technical Documents for VESTAMID LXM8

Document Type Description
TDS Physical, mechanical, thermal, optical and processing data for LXM8
SDS Safety Data Sheet
COA Batch-specific Certificate of Analysis where available
Processing Information Injection-molding guidance for PA12-GF8
Sports Application Support Shoe-sole, fatigue and TPU-bonding evaluation
LCA Information TÜV Rheinland-certified environmental data

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FAQ About VESTAMID LXM8

Q1: What is VESTAMID LXM8?

VESTAMID LXM8 is a medium-viscosity, heat- and UV-stabilized PA12 compound from Evonik reinforced with approximately 8% glass fiber.

Q2: What is the main application of VESTAMID LXM8?

Its main positioning is sports and lifestyle injection molding, especially sports shoe soles requiring good fatigue performance and strong TPU bonding.

Q3: How much glass fiber does VESTAMID LXM8 contain?

The grade is classified as PA12-GF8, corresponding to approximately 8% glass fiber reinforcement.

Q4: What is the density of VESTAMID LXM8?

The typical density is approximately 1.06 g/cm³ according to ISO 1183.

Q5: What is the tensile modulus of VESTAMID LXM8?

The typical tensile modulus is approximately 2,270 MPa according to ISO 527.

Q6: What is the elongation at break?

Typical elongation at break is approximately 16%.

Q7: What is the impact strength of VESTAMID LXM8?

Typical unnotched Charpy impact strength is approximately 90 kJ/m² at 23°C and 95 kJ/m² at -30°C.

Q8: Is VESTAMID LXM8 suitable for bonding to TPU?

Yes. Evonik specifically identifies excellent bonding strength to TPU as one of the key properties of this grade.

Q9: What molding conditions are published?

Current grade-specific data lists approximately 240°C melt temperature and 60°C mold temperature.

Q10: What is the difference between VESTAMID LXM8 and LXM4?

LXM8 contains approximately 8% glass fiber and has higher stiffness. LXM4 contains approximately 4% glass fiber and offers a more ductile, lower-density balance with higher unnotched impact strength.

Request VESTAMID LXM8 Price & Technical Support

For pricing, availability, technical documents or grade-selection support for VESTAMID LXM8, please provide:

  • Required quantity
  • Destination country or port
  • Sports shoe sole or other application
  • Part dimensions and wall thickness
  • Required stiffness and flexibility
  • TPU grade to be bonded
  • Fatigue requirement
  • Minimum service temperature
  • Appearance / translucency requirement
  • Injection-molding machine information
  • TDS, SDS or COA requirements
  • Sample requirement, if applicable

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