Lauramid® – High-Performance Cast Nylon

PA12C Cast Nylon Designed for Demanding Applications – Lightweight, Low Moisture Absorption, Excellent Low-Temperature Resistance, FDA-Compliant, and Available with Cast-In Metal Inserts

What is Lauramid®?

Lauramid® is the original brand of PA12C (cast polyamide 12), invented, developed, and manufactured by Handtmann Elteka in Germany.

With more than five decades of expertise in cast PA12 technology, Handtmann Elteka is a recognized pioneer in the field and the developer and manufacturer of Lauramid®. Combining proprietary material technology with extensive manufacturing expertise, Lauramid® delivers outstanding performance and distinctive properties that set it apart from conventional cast PA6.

Lauramid® is manufactured using a casting process in which a low-viscosity molten material is poured into a mold without pressure. This process enables the integral molding of large and complex-shaped components that are difficult to manufacture by injection molding or extrusion.

Metal cores can also be integrally cast into Lauramid®, enabling the efficient manufacture of composite components such as gears with hubs and rollers. Lauramid® is available in various forms, ranging from semi-finished products such as sheets, round bars, and tubes to custom-molded components produced in near-net shapes.

Material Properties & Advantages

Low Moisture Absorption
Excellent Low Temperature Performance
Superior Dimensional Stability
Low
Swelling
Long-Term
Stability
Cost-Efficient

Low Water Absorption

Compared with conventional cast PA6, Lauramid® has lower moisture absorption and less swelling caused by water absorption, providing excellent dimensional stability.

Excellent Low-Temperature Performance

It maintains excellent mechanical properties even in low-temperature environments, enabling use across a wide range of temperatures.

Long-Term Stability

Its properties are less affected by moisture absorption, making its long-term behavior more predictable.

Dimensional Stability

Excellent creep resistance enables it to maintain high dimensional accuracy even under long-term loading.

Integral Molding with Metal Hubs

Integral casting with a metal hub provides high torque transmission performance and excellent bonding strength.

Wide Operating Temperature Range

With an operating temperature range of −40°C to +120°C, it provides stable performance in a variety of environments.

Lightweight

At approximately one-eighth the weight of steel, it contributes to equipment energy savings by reducing component weight and enabling smoother acceleration and deceleration.

Excellent Chemical Resistance

It offers excellent resistance to a wide range of chemicals and environmental conditions, making it suitable for various applications.

UV Resistance

Depending on the application and grade, it can also be used in outdoor environments.

High Electrical Insulation

Its excellent electrical insulation properties make it suitable for applications involving high-voltage equipment and electrical systems.

Cost Reduction through Integral Molding

Integral molding by casting reduces the need for secondary machining and assembly, helping to lower total costs.

Suitable for Food and Medical Applications

Certain Lauramid® grades are available with compliance with FDA requirements and ISO 10993

Comparison of PA12C and Cast PA6

PA12C used in Lauramid® offers significant advantages over conventional cast PA6, particularly its lower moisture absorption and the resulting superior dimensional stability.
Especially in environments where humidity and temperature fluctuate, the low moisture absorption and minimal dimensional changes of PA12C provide a significant advantage.

Property

PA12C (Lauramid®)

PA6C

Moisture Absorption

Low

High

Swelling Due to Water Absorption

Low

High

Dimensional Stability

Excellent

More susceptible to changes due to moisture absorption

Performance in Low Temp. Environment

Excellent

May be more limited compared with PA12C

Long-Term Performance

More Predictable

Changes in properties due to moisture absorption need to be considered

Product Forms

LTK® Pure

Components and Semi-Finished Products without Metal Inserts

Cast Components
Pre-Machined Components
Semi-Finished Products

LTK® Metal Core

Components and Semi-Finished Products with Cast-In Iron, Steel, or Stainless Steel Inserts

Cast Components
Pre-Machined Components
Semi-Finished Products

Cast Components

  • Available in lengths of up to 10 meters and load capacities of up to 1,000 kg
  • One-piece casting reduces material and assembly costs

Pre-Machined Components

  • Product Size: Up to 6 meters in length and 1,000 kg in weight
  • Typical Applications: Rollers, wheels, gears, sprockets, eccentric cam discs, seals, and more

Semi-Finished Products

  • Available from extensive stock
  • Over 400 standard sizes, including plates, rods, tubes, and hollow bars
  • Available in sizes from 10 × 10 mm up to 3,000 mm in length
  • Supplied as semi-finished products for customer machining, minimizing material waste and enabling short lead times

Performance Characteristics by Industry

Industry

Dry Running

Heat Resistance

Wear Resistance

UV Resistance

Chemical Resistance

Food Safety

Dimensional Stability

Low Creep

Low Moisture Absorption

Lightweight

Machinery Manufacturing

Lifts & Ropeways

Sealing & Petrochemical

Paper & Printing

Transportation & Automotive

Food & Packaging

Material Handling & Warehousing

Textile Industry

Medical Engineering

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  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight
  • Dry Running
  • Heat Resistance
  • Wear Resistance
  • UV Resistance
  • Chemical Resistance
  • Food Safety
  • Dimensional Stability
  • Low Creep
  • Low Moisture Absorption
  • Lightweight

Applications

Food & Packaging


Gears, Cams & Sprockets
CIP-Compatible Processing Lines
Lauramid® FS Applicable

Lifts & Ropeways


Couplings, Track Rollers & Carrier Rollers
Designed for Extreme Temperatures (-40°C to +80°C), Impact-Resistant for Long Service Life

Robotics & Painting Equipment


One-Piece Casting of Complex Curved Shapes
High Electrical Insulation & Lightweight Design

Automotive Industry


Sliding Door Rollers, Guide Rollers & Drive Components
Excellent Dimensional Stability Throughout the Product Life Cycle

Welding & Industrial Machinery


Double-Taper Rollers
Integrated Motor & Gear Systems
One-Piece Near-Net-Shape Casting

Sealing & Petrochemical


Structural Components & Sealing Elements
Chemical- and Heat-Resistant Design
Custom Shapes Available

History of Lauramid®

1968

Handtmann began research into plastics. As a metalworking company, Handtmann aimed to develop proprietary materials that would outperform conventional plastics.

Handtmann established Elteka, a subsidiary dedicated to the development of plastics.

1971

Filed a patent application for the casting technology of PA12C (Lauramid®).

1976

Developed production equipment for plastic components and received an order to cast components for Deutsche Bundesbahn (DB), the German Federal Railway.

1977

Manufactured components for paper-making machinery for Alfa Laval in Sweden, demonstrating that PA12C could replace stainless steel and ceramic materials.

1981

Developed design and calculation methods for Lauramid® gears in cooperation with the gear research institute at the Technical University of Munich (TUM).

1982

Received orders for paper-making machine propellers for Voith and 3-meter-long paper-making machine sheaves for Escher Wyss.

1986

PA12C was adopted for the sliding-door rollers of the Volkswagen T4.

1990

Lauramid® was further developed for support, connecting, and running rollers used in Doppelmayr cable cars.

1999

Developed and certified Lauramid® FS for food-related applications.