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Carbon Nanotube Wire, Diameter: 5-15 μm, Tensile Strength: 1200-1500 MPa

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NG10GNPW0943
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$453.95
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Description

1 meter: 385€
5 meters: 1190€

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Carbon Nanotube Wires

Diameter: 5-15 μm, Tensile Strength: 1200-1500 MPa

Carbon Nanotube (CNT) Wires represent a breakthrough in fiber technology, synthesized from high-density carbon nanotube networks to form a continuous, macroscopic wire. These wires possess a unique combination of extreme lightweight characteristics and high structural integrity, offering a significant advantage over traditional metallic conductors. The fibrous architecture allows for exceptional flexibility and resistance to fatigue, while the inherent molecular structure of carbon nanotubes provides a pathway for efficient electron transport. These wires are designed for high-performance environments where reducing mass is as critical as maintaining mechanical and electrical reliability. Their low density coupled with high tensile performance makes them a premier candidate for reinforcing advanced composites and creating next-generation ultra-light cabling systems.

Technical Properties

Tensile Strength 1200-1500 MPa
Fiber Diameter 5-15 µm
Modulus  50-100 GPa
Elongation at Break 2.5-3.5%
Density 0.8-1.0 g/cm3
Electrical Conductivity 5×10- 7×10S/m

Applications

  • Aerospace and Aviation: Used for ultra-lightweight wiring harnesses and data transmission cables to significantly reduce the overall mass of aircraft and satellites.
  • Advanced Wearable Electronics: Integrated into smart textiles and wearable sensors due to their high flexibility and robust electrical conductivity.
  • High-Strength Composites: Employed as a reinforcing agent in polymer matrices to create materials with superior tensile strength and multi-functional electrical properties.
  • Electromagnetic Shielding (EMI): Applied in sensitive electronic environments to provide lightweight protection against electromagnetic interference.
  • Micro-Sensing and Actuators: Utilized in the development of precision sensors and miniature motors where high conductivity and low weight are required.
  • Energy Storage Systems: Used as a conductive additive or current collector in high-performance batteries and supercapacitors.

 

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