Carbon nanotube products
Bidon
Emballage
Bidon 0.4 l (jusqu’à 100 g)
D'autres volumes d'emballage sont disponibles sur demande du client

TUBALLMATRIXMATRIX620MATRIX 620


TUBALL™ MATRIX 620 is a versatile masterbatch that can be used in blends of NR, BR rubbers, and mineral fillers.

TUBALL™ nanotubes improve the mechanical properties of rubbers, contribute to required anti-static properties without carbon release, and fully comply with ATEX and EN requirements for ESD protection.

Classe de matériaux
Rubber
Dosage de travail
4–6 wt.%
Composants de base:
Polymer, TDAE oil
Forme
Pâte

Utilisation

Electrical conductivity

Provides uniform and permanent electrical conductivity

Mechanical properties

Maintained elasticity and mechanical properties

Easy to use

Allows use of standard processing and mixing equipment

Retains сolor
  • Allows coloration
  • No carbon release to material surface
  • Non-marking compounds


Vidéo

Electrical resistivity guide: measurement, standards & troubleshooting

Marking and non-marking conductive rubbers: How to avoid mistakes


Documents

TUBALL MATRIX 620 620.3 BETA PROCESSING GUIDELINES ENG V01.PDF
PDF307.2 kB
TDS TUBALL MATRIX 620.3 BETA ENG V05.PDF
PDF307.2 kB
TDS TUBALL MATRIX 620 ENG V04.PDF
PDF307.2 kB

Nouvelles

5 septembre
Greetings from Shanghai! We are waiting for you at Rubber Tech to share insights on how the addition of just 0.06% graphene nanotubes boosts rubber performance by adding conductivity and durability while maintaining elasticity. #RubberTech #GrapheneNanotubes #RubberIndustry
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30 mars
At the Global Rubber, Latex & Tyre Expo in Bangkok, Eugene Tan, OCSiAl SEA Sales Manager, explained graphene nanotubes' proven advantages in rubbers, latexes, and other polymers. Watch her video interview for our distributor Jebsen & Jessen Ingredients and request a sample at https://tuball.com/nanotubes-in/elastomers?utm_source=Facebook&utm_medium=Post+&utm_campaign=Eugene+Inteview+March+23 #GRTE #Latex #Rubber #GrapheneNanotubes
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28 février
New graphene nanotube technology for NBR rubber can increase the modulus by up to 53% and tear strength by up to 42%, enhancing the resistance of rubber to harsh environments. More durable and efficient rubber parts help to reduce raw material consumption. Read more at https://ocsial.com/news/reinforcing-rubber-with-graphene-nanotubes-new-technology-increases-durability-and-conductivity-of-nbr/?utm_source=Faacebook&utm_campaign=NBR+PR #RubberReinforcement #GrapheneNanotubes #RubberIndustry
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