Home > Press > Polymer fibers with graphene nanotubes make it possible to heat hard-to-reach, complex-shaped items
Abstract:
Polymer fibers with graphene nanotubes combine the flexibility of synthetic fiber with very high electrical conductivity. The nanotubes can be added into melted polypropylene or polyamide to provide electrical conductivity.
An ultrafine conductive fiber is used for fabric or mesh that can then be integrated into a polymer system.
Such electrically conductive heating fibers are required in the medical, agricultural, construction, oil and gas, textile, automotive, and aerospace industries.
Polymer fibers with graphene nanotubes make it possible to heat hard-to-reach, complex-shaped items
Luxembourg | Posted on February 11th, 2022
From the warming of seating to the heating of industrial and living areas, from the heating of cars interior parts to the de-icing of roofsall these challenges require flexible heating elements that allow temperature control. AMPERETEX has developed an ultrafine polymer fiber with OCSiAls TUBALL graphene nanotubes, also known as single wall carbon nanotubes. A current equivalent to an ordinary incandescent lamp with a power of 75 W is enough to heat polymer material with a mesh made from such a fiber with nanotubes. The solution is safe for peoplethe voltage of clothing made of fabric with nanotubes is only 5 V, said Pavel Pogrebnyakov, Founder and CEO of AMPERETEX.
Graphene nanotubes are one of the highest performing conductors on Earth. At the same time, unlike other carbon additives, they are very flexible. Their shape is similar to human hair, but 50,000 times thinner. Due to their unique properties, the dosage of graphene nanotubes required to modify polymer fibers can be so low that it doesnt affect filament production or characteristics, said Dr. Christian Maus, Development and Support Leader for Thermoplastics at OCSiAl Group. The graphene nanotubes are available as concentrates that can be added into melted polypropylene or polyamide, for example.
Heating mesh made of the innovative fibers is integrated into flexible material or complex-shaped composite elements. Laboratory tests showed a fiber durability of 30,000 cycles, which is compatible to a 30-year service life. Electrically conductive heating meshes have successfully passed testing in various projects, among which are an anti-icing roof and a bus stop: an anti-slip coating with integrated AMPERETEX heating elements and embedded automatic heating sensors.
The market for the application of such fibers is huge. This includes the medical, agricultural, construction, oil and gas, automotive, and aerospace industries. Currently, we have entered production of synthetic heating fabrics at industrial-scale volumes. This year, we plan to release a line of products for heating in previously unavailable areas. We are trying to reduce energy consumption and create solutions for the B2B sector in response to a specific request. The next step is the usage of these elements for heating of hard-to-reach objects and products with complex geometric configurations, noted Pavel Pogrebnyakov.
####
About OCSiAl Group
Headquartered in Luxembourg, OCSiAl is the worlds largest manufacturer of graphene nanotubes, also known as single wall carbon nanotubes. It employs more than 450 people worldwide in locations including the United States, Europe, China, Russia, India, Japan, and South Korea. Current annual production capacity is 90 tons, which accounts for 97% of the worlds graphene nanotube production capacity. OCSiAl has developed more than 40 graphene nanotube products aimed at enhancing polymer materials, including thermosets, thermoplastics, elastomers, and electrochemical power sources. Read more at tuball.com
About AMPERETEX
AMPERETEX is a Russian company producing heating fabrics based on an electrically conductive fiber with the addition of polymers and nano-additives. The company’s plant was built in the Khrabrovo Industrial Park in the Kaliningrad Region. The geographical position of the westernmost region of Russia and the status of a special economic zone resident allows the company’s partners to supply raw materials and finished products at the lowest cost both to the CIS market and to the markets of the EU and North America. Read more at https://amperetex.ru/en/
For more information, please click here
Contacts:
Anastasiya Tarasenko
PR & Advertising Manager
OCSiAl Group
+7 952 944 25 53
Copyright © OCSiAl Group
If you have a comment, please Contact us.
Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.
News and information
NGI advances graphene spintronics as 1D contacts improve mobility in nano-scale devices February 11th, 2022
University of Oklahoma scientists quantum technology work garners international attention February 11th, 2022
Reusable Catalyst Makes CH Bond Oxidation Using Oxygen Easier and More Efficient February 11th, 2022
Wise-integration and EDOM Technology Announce Channel Partnership for GaN IC Power Semiconductor Deployment February 11th, 2022
Possible Futures
Scientists use DNA to assemble complex nanomaterials: Researchers create DNA nano-chambers with bonds that can control the assembly of targeted nanoparticle structures February 11th, 2022
NGI advances graphene spintronics as 1D contacts improve mobility in nano-scale devices February 11th, 2022
Reusable Catalyst Makes CH Bond Oxidation Using Oxygen Easier and More Efficient February 11th, 2022
Nanomedicine
Scientists use DNA to assemble complex nanomaterials: Researchers create DNA nano-chambers with bonds that can control the assembly of targeted nanoparticle structures February 11th, 2022
Acceleration of cancer biomarker detection for point of care diagnostics January 28th, 2022
Announcements
University of Oklahoma scientists quantum technology work garners international attention February 11th, 2022
Reusable Catalyst Makes CH Bond Oxidation Using Oxygen Easier and More Efficient February 11th, 2022
Wise-integration and EDOM Technology Announce Channel Partnership for GaN IC Power Semiconductor Deployment February 11th, 2022
Food/Agriculture/Supplements
Unprecedented view of a single catalyst nanoparticle at work: X-rays reveal compositional changes on active surface under reaction conditions October 1st, 2021
Enhanced ambient ammonia photosynthesis by Mo-doped Bi5O7Br nanosheets with light-switchable oxygen vacancies September 3rd, 2021
New technology enables rapid sequencing of entire genomes of plant pathogens May 14th, 2021
Energy
Photon recycling The key to high-efficiency perovskite solar cells January 14th, 2022
Templating approach stabilizes ideal material for alternative solar cells December 24th, 2021
Nanodiamonds are key to efficient hydrogen purification: Nanodiamonds may be tiny, but they can help with one of the biggest problems facing humanity today: Climate change December 17th, 2021
Automotive/Transportation
Quantum tech in space? Scientists design remote monitoring system for inaccessible quantum devices February 11th, 2022
Unprecedented view of a single catalyst nanoparticle at work: X-rays reveal compositional changes on active surface under reaction conditions October 1st, 2021
Silver nanoparticles boost performance of microbial fuel cells September 17th, 2021
Textiles/Clothing
Flexible material shows potential for use in fabrics to heat, cool July 3rd, 2020
A bullet-proof heating pad November 2nd, 2018
Aerospace/Space
Copper doping enables safer, cost-effective hydrogen peroxide production February 11th, 2022
Quantum tech in space? Scientists design remote monitoring system for inaccessible quantum devices February 11th, 2022
Super-resolved imaging of a single cold atom on a nanosecond timescale January 7th, 2022
Researchers develop polyimide-mica nanocomposite film with high resistance to low earth orbit environments December 3rd, 2021
Industrial
Breathing new life into fuel cells August 6th, 2021
Conductive, durable coatings with graphene nanotubes now available to the Turkish market June 3rd, 2021
Chile coating and composite industry makes leap forward leveraging graphene nanotube solutions April 9th, 2021
Oxford Instruments Asylum Research Releases Variable Magnetic Field Module accessory for Jupiter XR, Large Sample Atomic Force Microscope March 26th, 2021
Construction
You’re so vein: Scientists discover faster way to manufacture vascular materials May 14th, 2021
A quantum material-based diagnostic paint to sense problems before structural failure October 23rd, 2020
Discovery of disordered nanolayers in intermetallic alloys: Resolving alloys’ strength-ductility trade-off and thermal instability July 24th, 2020
First measurement of electron energy distributions, could enable sustainable energy technologies June 5th, 2020