KARELINE

Compositi
Naturali
Polimeri

General

Heavy: 
  
Stiff: 
  
Hard: 
  
Light: 
  
Flexible: 
  
Soft: 
  

Structure

Solid: 
  
Homogeneous: 
  
Geometric: 
  
Porous: 
  
Heterogeneous: 
  
Organic: 
  

Texture

Smooth: 
  
Uniform: 
  
Dense: 
  
Coarse: 
  
Variable: 
  
Sparse: 
  

Mechanics

High Resistance: 
  
Fragile: 
  
High Scratch R: 
  
Low Resistance: 
  
Ductile: 
  
Low Scratch R: 
  

Physical

High Fire R: 
  
High UV R: 
  
High Wather R: 
  
Low Fire R: 
  
Low UV R: 
  
Low Wather R: 
  

Conductive

Thermal conduction: 
  
Electrical conduction: 
  
Chemical conduction: 
  
Thermal insulation: 
  
Electrical insulation: 
  
Chemical insulation: 
  

Sight

Glossy: 
  
Opaque: 
  
Reflective: 
  
Matte: 
  
Translucent: 
  
Non-reflective: 
  

Touch

Waxy: 
  
Cold: 
  
Hard: 
  
Rough: 
  
Warm: 
  
Soft: 
  

Smell

Slight: 
  
Sweet: 
  
Pleasant: 
  
Intense: 
  
Acid: 
  
Unpleasant: 
  

Hear

Bright: 
  
Silent: 
  
Sound-absorbent: 
  
Dull: 
  
Noisy: 
  
Sound-reflective: 
  

Taste

Inedible: 
  
Slight: 
  
Sweet: 
  
Edible: 
  
Intense: 
  
Salty: 
  

Origin

Recycled: 
Renewable: 
Bioplastic: 
Bioplastic

End-of-life

Recyclable: 
Recyclable
Biodegradable: 
Compostable: 

Tag: 
Biocycle

Kareline® is a family of composite materials obtained by blending different types of fibers with polymers, including biobased ones such as PLA. An innovative manufacturing process is able to combine the properties of natural fibers and plastics into a composite material that offers a sustainable solution to injection molding or extrusion processes. The material can be widely customized according to production needs, ranging from high-performance technical applications to applications more attentive to the aesthetic aspect rather than to mechanical properties, to fiber-reinforced applications or advanced surfaces.

  
Azienda: 
KARELINE OY LTD
  
Contatti: 

Sirkkalantie 12B - 80100 Joensuu, Finland

tel. 00358 (40) 746 0972

mail. info@kareline.fi

Gallery

Campione esposto presso MaterialDesignPoint
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