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Conveyor Technology & Automation
Plastics for Conveyor Technology & Automation

Conveyor technology & automation: saving energy with plastic

The transport of goods and merchandise within a company must be quick, reliable and economical. The use of materials with optimized slide properties in your conveying process helps to reduce the conveyor power required and with it the energy used. This in turns improves the performance and efficiency of your machines. We offer special materials for the manufacture of slide-optimized components for your plant and machinery in conveying and logistics processes.

Your advantages

Typical areas of application

Application examples

Gears, worm gears and sprockets

Gears, worm gears and sprockets made from our materials have been used successfully in many machines and systems for many years. The use of technical plastics significantly reduces cost. Less downtime due to maintenance and longer service lives of all components is just as beneficial as the low lubricant requirements and low vibration and noise.

Sliding elements for conveyor systems

Our LubX® product range offers high-performance sliding materials specifically developed for conveyor technology. Thanks to its outstanding sliding properties, conveyor systems equipped with LubX® need less energy, slip-stick effects are avoided and process stability is improved. Depending on the application we recommend LubX® CV, LubX® C, LubX® S or LubX® Ast black.

Chain guide profile for chain guides

Their low slide friction coefficients enable extruded and milled profiles made of Polystone® M for chain guides to reduce the drive energy required in chain conveyors while at the same time improving process stability. Polystone® M also has permanent self-lubrication properties.

Spiral conveyors

Spiral conveyors made of Polystone® M soft that are machined on our modern CNC installations offer good slide properties for soft slide partners, while their particularly low coefficient of slide friction means they are gentle on PET bottles during the conveying process.

Rollers

Thanks to their outstanding abrasion resistance, high mechanical strength and toughness, Sustamid® 6G rollers machined to close tolerances wear less than steel, require little maintenance and so offer a very long service life.

Castors

Castors -Castors made of our materials Sustamid® 6G and Lamigamid® machined within tight tolerances are subject to less wear than steel because of their excellent abrasion resistance and high mechanical strength and toughness, are low-maintenance and thus make for a very long servicelife. We would be happy to advise and support you in selecting materials, designing and performing stress computations.

Related products

  1. PE > PE-UHMW - PE 1000

    LubX® AST black

  2. PE > PE-UHMW - PE 1000

    LubX® AST white

  3. PE > PE-UHMW - PE 1000

    LubX® C blue

  4. PE > PE-UHMW - PE 1000

    LubX® C natural

  5. PE > PE-UHMW - PE 1000

    LubX® C white

  6. PE > PE-UHMW - PE 1000

    LubX® CV AST black

  7. PE > PE-UHMW - PE 1000

    LubX® CV AST white

  8. PE > PE-UHMW - PE 1000

    LubX® CV blue

  9. PE > PE-UHMW - PE 1000

    LubX® CV natural

  10. PE > PE-UHMW - PE 1000

    LubX® S grey

  11. PE > PE-HD - PE 500

    Polystone® DR AST black

  12. PE > PE-HD - PE 500

    Polystone® DR black

  13. PE > PE-HD - PE 500

    Polystone® DR blue

  14. PE > PE-UHMW - PE 1000

    Polystone® M AST + FDA black

  15. PE > PE-UHMW - PE 1000

    Polystone® M aubergine

  16. PE > PE-UHMW - PE 1000

    Polystone® M black

  17. PE > PE-UHMW - PE 1000

    Polystone® M brown

  18. PE > PE-UHMW - PE 1000

    Polystone® M EL + HI black

  19. PE > PE-UHMW - PE 1000

    Polystone® M green

  20. PE > PE-UHMW - PE 1000

    Polystone® M grey

  21. PE > PE-UHMW - PE 1000

    Polystone® M natural

  22. PE > PE-UHMW - PE 1000

    Polystone® M orange

  23. PE > PE-UHMW - PE 1000

    Polystone® M red

  24. PE > PE-UHMW - PE 1000

    Polystone® M Saphir blue

  25. PE > PE-UHMW - PE 1000

    Polystone® M Slide + AST black

  26. PE > PE-UHMW - PE 1000

    Polystone® M Slide + AST grey

  27. PE > PE-UHMW - PE 1000

    Polystone® M Slide black

  28. PE > PE-UHMW - PE 1000

    Polystone® M Slide blue

  29. PE > PE-UHMW - PE 1000

    Polystone® M Slide grey

  30. PE > PE-UHMW - PE 1000

    Polystone® M Slide natural

  31. PE > PE-UHMW - PE 1000

    Polystone® M Soft natural

  32. PE > PE-UHMW - PE 1000

    Polystone® M Soft white

  33. PE > PE-UHMW - PE 1000

    Polystone® M yellow pressed

  34. PE > PE-UHMW - PE 1000

    Polystone® MPG black

  35. PE > PE-UHMW - PE 1000

    Polystone® MPG blue

  36. PE > PE-UHMW - PE 1000

    Polystone® MPG green

  37. PE > PE-UHMW - PE 1000

    Polystone® MPG red

  38. PE > PE-UHMW - PE 1000

    Polystone® MR AST black

  39. PE > PE-UHMW - PE 1000

    Polystone® MR black

  40. PE > PE-UHMW - PE 1000

    Polystone® MR green

  41. PA > PA 12 G

    Lamigamid® 1200

  42. PA > PA 12 G

    Lamigamid® 1210

  43. PA > PA 12 G

    Lamigamid® 1220

  44. PA > PA 6 G

    Lamigamid® 320

  45. PE > PE-UHMW - PE 1000

    Polystone® M PIR natural

Product examples

See also

Pultruded profiles for spar caps

Spar caps for wind turbines Röchling

Consistently high quality: our pultruded profiles for spar caps offer high mechanical properties, lower the manufacturing risk and shorten the mould occupancy time.

Spar caps for wind turbines different reinforcements

Customised for your application: our pultruded profiles for wind turbine spar caps come with different fibre reinforcements, resin systems and cross-sections

Spar caps for wind turbines with peel ply and without peel ply

On demand: We also offer profiles for spar caps with peel ply (left) and without peel ply on request

Or: How can you strengthen your rotor blades for wind turbines?

Together with the ribs, the two spar caps in the rotor blade shells are, you might say, the skeleton of each and every rotor blade of a wind turbine, and they must be able with withstand very high loads for the entire life of the turbine. That makes it essential to deliver high component quality and to ensure that the best possible properties of the mix of fibres and matrix are achieved.

We offer you pultruded profiles for spar caps with

  • different fibre reinforcements

  • resin matrices

  • and cross-sections

Our profiles are manufactured in the pultrusion process. The continuous process enables us to manufacture almost endless profiles of a consistently high quality. The tensile forces prevailing during pultrusion make the reinforcing fibres very straight in orientation, thereby heavily reducing occurrence of the fibre undulations that occur frequently in other manufacturing processes.

Material - profiles for spar caps:

Fibre reinforcements:

  • Glass fibre reinforcement
  • Carbon fibre reinforcement

Resin systems:

  • Epoxy resin
  • Vinyl ester resin
  • Polyurethane resin
  • UV-curing resins, depending on the profile cross-section

Cross-sections:

With thermal pultrusion:

  • Reinforcement with glass or carbon fibres possible
  • Various cross-sections: width up to 200 mm, wall thickness 1.2 to 5 mm

UV-curing pultrusion:

  • Only glass fibre reinforcement possible
  • Wall thickness approx. 0.75 to 2.5 mm

Peel ply
Our profiles for spar caps for wind turbines are also available with a peel ply on request, removing the need to roughen the surface, e.g. by sand blasting, before fitting the profiles.

Your advantages:

Our pultruded profiles are pre-cured and quality-tested insertable components with clearly defined, very high mechanical properties. That allows excessive material defects such as fibre undulations or air bubbles to be eliminated from these profiles right from the start, enabling error rates, manufacturing risk and repair requirements for the spar caps to be drastically reduced. The mould occupancy time for the rotor blade shells is also much shorter using this method than for spar caps produced in the traditional manner.

Summary:
High mechanical properties:

  • Advantages of the pultrusion process compared with resin infusion
  • Higher volumetric fibre content
  • Better fibre orientation

Reduced manufacturing risk: 

  • Pultrudate is tested in advance according to defined criteria - only flawless material is used in the rotor blade
  • Material defects that can arise in the spar cap area when rotor blades are manufactured in the traditional manner can thus be eliminated almost entirely

Shorter mould occupancy times

Technical data - Profiles for spar caps

Test methodDimensional unitEP-CFK
(D343)
VE-CFK
(D745)
VEGZ-LP
(D677)
EPGZ-UV
(UV cured)
Fibre typesCarbon (50K)Carbon (24K)GlassGlass
Resin typesEPVEVEEP-based
DensityISO 1183g/cm31.61.5 - 1.62.12.0
Volumetric fibre content%66656564
Tensile strength (II)ISO 527MPa20002400600 - 8001500
Tensile modulus of elasticity (II)ISO 527GPa15016545-6045-50
Flexural strength (II) ISO 178MPa-1200700-1000890-1020
Flexural modulus of elasticity (II)ISO 178GPa-120-14050-5535-45
Pressure resistance (II)      ISO 14126MPa1000-450-800-
Compression modulus of elasticity (II)  ISO 14126GPa145-50-55-

 (II) = relative to the profile longitudinal direction

The figures given above are mean values obtained through continuous statistical checks and tests. They are provided as an indicator of quality only and do not establish any warranty unless and until expressly agreed in a purchase contract.

Arrange technical advice

The performance and service life of materials used in conveyor systems are influenced by a variety of factors. These factors must be taken into account in order to select the right materials. Examples:

We are happy to advise you on the selection of suitable materials for your particular application. Just use our contact form at the bottom of the page and write to us.

 
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