Strength of the Carbon Nanotube Films

Journal Title: Фізика і хімія твердого тіла - Year 2015, Vol 16, Issue 1

Abstract

The strength of nanodevices is caused by the interatomic distance decreace in nanostructures.Graphene nanofilm has 35 times larger strength than the steel. Thin whisker crystals grown from the gas phase are ten times more durable than the thicker samples.

Authors and Affiliations

R. A. Pelenskyi

Keywords

Related Articles

Features Multilevel Metallization Forming a Submicron Structures of Large Integrated Circuits

This paper analyzesaluminum alloys that are used to form multilevel metallization in the submicron LSI/VLSI and magnetic alloys that are used for the production of magnetic disks of external storage devices with a large...

Quantum Mechanical Approach to Identify Young's Modulus for Metals With a Cubic Lattice

This paper proposes a quantum-mechanical approach to calculate the Young's modulus of metals. Young's modulus is determined by the ratio of change in the total energy of the crystal lattice in a particular crystallograph...

Novel Ti2CuCx and Ti3Cu2Cx Carbides Obtained by Sintering of Products of Mechanochemical Synthesis of Ti, Cu and Carbon Nanotubes

Mechanical alloying of the elemental powder mixture of titanium and copper (particle size of both powdersis about 40 μm, purity is not less than 99.6% wt. %) was performed in a high energy planetary ball mill to obtainTi...

Methods of Thermochemical and Mechanical Activation of Fillers of Polymer Composite Materials

The methods of thermochemical and mechanical activation of graphite particles and carbon fibers for creating effective fillers of polymer composite materials with high wear resistancehave been described.

Effect of Carbon on the Physical and Structural Properties of Boride Fe2B

For Fe-В and Fe-В-С system alloys one of the structure constituent is iron boride Fe<sub>2</sub>B but in the literature there is no information on carbon solubility limit in iron boride Fe2В. The object of this paper is...

Download PDF file
  • EP ID EP313924
  • DOI 10.15330/pcss.16.1.207-209
  • Views 53
  • Downloads 0

How To Cite

R. A. Pelenskyi (2015). Strength of the Carbon Nanotube Films. Фізика і хімія твердого тіла, 16(1), 207-209. https://europub.co.uk/articles/-A-313924