Nanocyl will attend NanoKorea 2016, July 13-15, KINTEX Exhibition center.
Come and visit our booth (035) to ask all your questions about industrial multiwall carbon nanotubes.
We will be able also to show you the new way to present our range of products.
Extract:
“Over the past few years the Nanocyl’s NC7000 product has penetrated large volume markets in thermoplastic commodities segments including automotive, electronic pacakging, and energy. Nanocyl’s MWCNT materials are typically replacing conventional carbon blacks. One reason for their adoption is that MWCNTs can add conductivity to plastics compounds at very low loadings.
Moreover, MWCNTs allow new multifunctional materials to emerge. Industrial fan blades for cooling towers in ATEX environment have been produced by Nanocyl and VAMPTECH (Italian compounder specialized in flame retardant compounds) based on a PA6/MWCNTs formulation providing multifunctional properties. These blades are dissipative (108 Ω/sq) and meet UL94 V0 flammability rating at a thickness 0,8 mm. Impact strength, elongation at break and flexural strength are at same level as currently used compounds.
MWCNTs are also ideal conductive additives for 3D printing filaments using Fused Deposition Modeling (FDM) technology. Such highly conductive filaments allow to create multifunctional tailor made components like circuits, power connectors, voltage dividers, buttons, etc. for electronics and other applications yet to imagine. Currently the mostly used grades are ABS, PA and PLA. Nanocyl provides masterbatches in ABS and PA with 15 wt.% NC7000, as well as custom masterbatches (including PLA).”
Read the entire article in the Compounding World April 2016
Nanocyl SA, leader in developing and commercializing high value Carbon Nanotube based products worldwide, will attend Battery Japan 2016, March 2-4, Tokyo Big Sight, JAPAN. Meet us at Battery Japan 2016 in booth W29-W27.
As the highest conductive additive industrially available, discover how our NC7000™ multiwall carbon nanotubes can boost the performances of various Energy Storage devices from Li-Batteries to flow batteries, supercapacitors and fuel cells. This year, we will also showcase our developments on a high purity grade demanded by the Energy industry. Take also a look at our formulated products which can ease the NC7000™ incorporation in your formulation.
For a commercial appointment with our business representatives at the Battery Japan 2016, send requested date, time slot, topic and the name of your company to info@nanocyl.com.
Nanocyl SA, leader in developing and commercializing high value Carbon Nanotube based products worldwide, will attend NANO TECH 2016, January 27-29, Tokyo Big Sight, JAPAN.
Meet us at Nanotech 2016 in booth 6G-09.
CNT based masterbatches & compounds provide benefits to the Energy, Automotive and Electronic markets. NC7000™ CNT is the highest conductive additive generating performances at extremely low loadings.
For a commercial appointment with our business representatives at the Nanotech 2016, send requested date, time slot, topic and the name of your company to sales@nanocyl.com.
The project DEROCA has demonstrated that industrial multiwall carbon nanotubes NC7000™ are an effective synergist with other common flame retardants additives to produce flame retardant halogen-free multifunctional products.
Discover the summary of the main achievements of the project DEROCA so far inside the magazine International Innovation.
The project DEROCA which stands for “Development of safe and eco-friendly materials based on CNT-coadditives for commodity polymers” is a collaborative project coordinated by Nanocyl SA and supported by DG RTD of the European Commission.
Halogenated flame retardant additives are commonly used because of their low impact in other material properties and the low loading levels necessary to meet the required flame-retardancy; however, potential side-effects on human health and environment raise concerns about their risk-benefit balance. Their known intrinsic toxicity and stricter chemical regulations are stimulating research for safer alternatives. DEROCA aims to develop one of those alternatives.
The objectives of DEROCA are to:
- Develop and introduce new safer and more eco-friendly FRs through exploiting the synergistic effect of carbon nanotubes (fire retardancy promoter) with phosphorus based FRs and other current or new promising organic or inorganic additives in intumescent or carbon crust formation systems by identification and optimization of the most efficient/cost competitive solutions;
- Develop small scale test methods and numerical models to predict full end product standard scale test results suitable for rapid materials development and screening;
- Assess the safe use and absence of toxicity of the new FR materials in production, use and fire situations;
- Develop products to support industries to (i) switch from halogenated FRs into halogen free products and maintain their market share or to (ii) increase their market share by improving their halogen-free FR materials.
DEROCA will focus on the development of specific FR applications for five final products which represent large volumes of commodity polymers, i.e. wires & cables, insulation foams, HVAC, corrugated pipes and consumer goods.
More information is available on the website of the DEROCA project: www.deroca.eu
Nanocyl will be present to conductive plastics 2015, 29 June-1 July, Hotel Nikko, Düsseldorf (GERMANY).
Nanocyl will speak about carbon nanotubes composites: commercially available solutions for automotive and electrical / electronic applications (14h40, 30 June 2015).
Nanocyl will be present to International Rubber Conference 2015, June 29-July 2, Nuremberg (Germany)
Nanocyl will present as speaker.
International Rubber Conference 2015 – Nanocyl – Carbon Nanotubes – Applications and benefits in the Rubber Industry – Meeting Room Paris at 15h30 on the 30th June 2015
Nanocyl announces today that it has broadened its portofolio with one new product: ELASTOCYL™ HTV1001.
ELASTOCYL™ is Nanocyl® trade name for a product range of Multiwall carbon Nanotubes elastomeric dispersions for applications requiring high performances.
ELASTOCYL™ HTV1001 is a Nanocyl® 10 wt% CNT dispersion in Vinyl-terminated Silicone polymer has been specifically designed for extrusion and compression molded of HTV/HCR compounds. It provides full compatibility, high anti-static performance, high tinting power and functional dispersions into the silicone elastomer matrix.
For additional information, please contact our technical support team .
Nanocyl announces product name changes to ease visibility and improve customer communication. The products themselves do not change.
As per April 1st 2015, product names in the following range of products will be simplified: EPOCYL™, THERMOCYL™, SIZICYL™.
EPOCYL™ is an industrial range of masterbatch based on liquid bisphenol-A (Bis-A) epoxy resin containing high concentration of carbon nanotubes (CNT).
EPOCYL™ XC R 128-06 enhances the mechanical properties (especially delamination resistance) of fiber reinforced composite materials. It features easy integration and great flexibility in design of new multifunctional materials. The product name will be simplified to EPOCYL™ 128-06.
EPOCYL™ XC E 128-05 has been specifically developed to enhance the electrical conductivity of epoxy formulations. The product name will be shortened to EPOCYL™ 128-05.
THERMOCYL™ is an experimental product range exhibiting exceptional fire resistance and thermal conductivity properties.
THERMOCYL™ XC 113 name is changed to THERMOCYL™ X1. THERMOCYL™ XC 123, which proposes a higher viscosity, will be tagged THERMOCYL™ X2.
SIZICYL™ XCR2G is a liquid sizing agent containing Carbon Nanotubes for reinforcement fibers for carbon fibers or glass fibers reinforced polymers (composite applications). Specifically engineered to improve mechanical properties of the final composite structure, without affecting the viscosity of the resin used to impregnate the fiber (e.g. by resin infusion or RTM process). SIZICYL™ XCR2G name will be adapted to SIZICYL™ X1.
(Sambreville, BELGIUM) – October 17, 2014 – Nanocyl, announces a Non-Exclusive Distribution partnership with Safic-Alcan, a pan-European distributor of specialty chemicals serving the rubber and plastics industry. Under the agreement, Safic-Alcan will distribute Nanocyl product range, such as NC7000™ and Plasticyl™ to the European market.
This partnership reinforces Nanocyl strategy to further develop the carbon nanotube applications and markets in Europe. Europe remains a world of industrial opportunities and we are convinced that our common focus on the major European Chemical market will rapidly bear fruits. Technical Service support will be operated via close cooperation between the two companies.
Safic Alcan nationwide network covers France, Germany, UK, The Netherlands, Belgium, Switzerland, Austria, Spain, Italy, Turkey, Poland, Portugal, Ireland, Luxemburg, The Czech Republic, Slovakia, Hungary, Romania, Bulgaria, Sweden, Norway, Finland, Denmark, The Baltic Countries, Malta, Ukraine, Slovenia, Croatia, Serbia, Bosnia, Macedonia, Albania, Montenegro.
For contact details please refer to Safic-Alcan website: http://www.safic-alcan.com
About Safic-Alcan SA
Safic-Alcan is a supplier of specialty chemicals and serves the European rubber and plastics industry. With over 85 years of experience, Safic Alcan provides specialty chemicals that allow customers to prepare innovative formulations for many sectors (Rubbers, Plastics, Adhesives & Sealants, Coatings, Polyurethane, Cosmetics, Nutrition supplements, Pharmaceuticals & Intermediates).
For more product and material information please visit: http://www.safic-alcan.com
About Nanocyl SA
Nanocyl S.A. is a medium-sized privately owned company, world leader in the commercialization and production of industrial multi-wall carbon nanotubes (MWCNT) and CNT masterbatches.
Nanocyl industrial NC7000™ multiwall carbon nanotube (460 metric ton annually) provides solid benefits at very low loadings to the Electronic Packaging, Automotive, Energy and Industrial sectors. These are electro-static discharge (ESD), electrical conductivity, improved recyclability, thermal resistance and best cost in use. In addition, those performances generate higher retained mechanical properties of the base polymers.