Materials

Thermoplastics

(Polytetramethylene-adipic acid polyamide)

Semi-crystalline thermoplastic material, maximum short-term use temperature 200 °C, low friction coefficient.


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(Polyamide from caprolactam)

Semi-crystalline thermoplastic material, excellent sliding and wear properties.


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(Cast polyamide)

Semi-crystalline thermoplastic material obtained by casting, improves workability and dimensional stability.


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(Molybdenum disulfide loaded polyamide)

Flow behavior and wear improved with the addition of MOS2.


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(Polycarbonate)

Thermoplastic amorphous material, transparent, impact resistant, high rigidity, resistant to about 140 ° C for short exposures.


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(Polyetheretherketone)

Virgin semi-crystalline thermoplastic material, excellent dimensional stability, self-extinguishing, operating temperatures around 250 ° C, chemically very resistant even at high temperatures, suitable for contact with food.


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(Polyetheretherechetone + carbon fibers)

Short fiber dispersed in the thermoplastic mass, the charge allows to reduce the friction coefficient.


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(Polyetheretherechetone + glass fibers)

Short fiber dispersed in the thermoplastic mass, the charge allows to increase the rigidity of the material.


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(High density polyethylene)

Low water absorption and vapor permeability, low operating temperatures (between -100 and 80 ° C for long periods), low friction coefficient, suitable for contact with food.


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(Polyethylene terephthalate)

Semi-crystalline thermoplastic material, material suitable for contact with food, it is not very permeable to oxygen and carbon dioxide.


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(Polyethylene terephthalate + solid lubricants)

The charge allows to reduce the friction coefficient.


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(Very high density polyethylene)

High resistance to wear and abrasion, high impact resistance, suitable for contact with food.


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(Polymethylmethacrylate)

Fragile material with high resistance, high elastic modulus and great surface hardness, it has brilliant surfaces excellent transparency.


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(Polyoxymethylene)

There is both the homopolymer variant (POM-H) and copolymer (POM-C), very rigid and with high dimensional stability, it weakens at low temperatures and if in contact with water (hydrolysis), excellent sliding behavior and wear resistance.


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(Polypropylene)

Semi-crystalline thermoplastic material, similar to PE for mechanical behavior but more resistant and rigid, very chemically resistant up to 100 ° C, weldable.


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(Polytetrafluoroethylene)

It is the main fluorinated material, it is not very rigid and solid. Its advantages are the wide range of operating temperatures (-200 + 280 ° C), chemical stability, excellent electrical and dielectric characteristics.


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(Polyvinyl chloride)

Amorphous thermoplastic material is characterized by high chemical stability and excellent fire resistance. It has a high solidity and a high modulus of elasticity. It has excellent electrical characteristics, especially in the field of low voltages and frequencies. It can be glued and welded.


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(Polyvinylidylene fluoride)

Crystalline thermoplastic material, the temperature of use goes from -60 to 150 ° C, is resistant to UV rays and is characterized by a strong purity. It can be glued and welded in addition to having excellent chemical resistance.


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(High density polyethylene obtained with a percentage of regenerated material)

Good sliding characteristics and good mechanical properties.


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Thermosettings

TSD is a non-toxic laminated material made up of synthetic fibers and thermosetting resins with added graphite. The material is totally free of asbestos fibers.


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Product based on pure cellulose paper and phenolic resins. Suitable for medium and low voltage electrical applications.


 

Product based on pure cotton fabric and phenolic resins. Excellent for the construction of medium and small silent gears, supports, complex pieces etc.


 
Product based on pure cotton fabric with fine weave and melamine resin.
 

Product based on synthetic polyester fibers reinforced with added graphite. Excellent for the construction of bushings and technical parts for the chemical, oil, railway and hydraulic sectors.


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Product based on aramid fabric and phenolic resins.


 

Stratified based on glass fabric and epoxy resin. Suitable for electrical insulation and construction of panels, bases, supports and mechanical parts with high performance.


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Stratified based on glass fabric and modified epoxy resin. Suitable for replacing FR4 epoxy glass in conditions of temperatures above 140/150 ° C continuously.


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Product based on glass fabric and modified phenolic resins. Ideal as thermal insulation in hydraulic presses or as electrical insulation on locomotives.


 

Suitable for applications where a certain resistance to heat is required and where the electric arc can damage the behavior of the insulators and materials in general used.


 

Product based on glass and polyester resin. Ideal for replacing bakelised paper in conditions of high temperatures and superior electrical insulation.


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