Back home   |   Bookmark   |   Start page   |   Site map    
Services
News
Channels
Home & Family
Leisure
Technology
Business
Science
Site Search
Free email




Tough tubes: carbon nanotubes endure heavy wear and tear

TheAllINeed.com
(NC&T/RPI) When paired with the strong electrical conductivity of carbon nanotubes, this ability to endure wear and tear, or fatigue, suggests the materials could be used to create structures that mimic artificial muscles or interesting electro-mechanical systems, researchers said.

The report, "Fatigue resistance of aligned carbon nanotube arrays under cyclic compression," appears in the July issue of Nature Nanotechnology. Despite extensive research over the past decade into the mechanical properties of carbon nanotube structures, this study is the first to explore and document their fatigue behavior, said co-author Victor Pushparaj, a senior research specialist in Rensselaer's department of materials science and engineering.

"The idea was to show how fatigue affects nanotube structures over the lifetime of a device that incorporates carbon nanotubes," Pushparaj said. "Even when exposed to high levels of stress, the nanotubes held up extremely well. The behavior is reminiscent of the mechanics of soft tissues, such as a shoulder muscle or stomach wall, which expand and contract millions of times over a human lifetime."

Pushparaj and his team created a free-standing, macroscopic, two-millimeter square block of carbon nanotubes, made up of millions of individual, vertically aligned, multiwalled nanotubes. The researchers then compressed the block between two steels plates in a vice-like machine.

The team repeated this process more than 500,000 times, recording precisely how much force was required to compress the nanotube block down to about 25 percent of its original height.

A block of carbon nanotubes before (left (right)
Even after 500,000 compressions, the nanotube block retained its original shape and mechanical properties. Similarly, the nanotube block also retained its original electrical conductance.

In the initial stages of the experiment, the force needed to compress the nanotube block decreased slightly, but soon stabilized to a constant value, said Jonghwan Suhr, an assistant professor of mechanical engineering at the University of Nevada in Reno, who received his doctorate from Rensselaer in 2005, and with Pushparaj contributed equally to this report.

As the researchers continued to compress the block, the individual nanotube arrays collectively and gradually adjusted to getting squeezed, showing very little fatigue. This "shape memory," or viscoelastic-like behavior (although the individual nanotubes are not themselves viscoelastic), is often observed in soft-tissue materials.

While more promising than polymers and other engineered materials that exhibit shape memory, carbon nanotubes by themselves do not perform well enough to be used as a synthetic biomaterial. But Pushparaj and his fellow researchers are combining carbon nanotubes with different polymers to create a material they anticipate will perform as well as soft tissue. The team is also using results from this study to develop mechanically compliant electrical probes and interconnects.

In addition to Pushparaj and Suhr, other contributing authors of the paper include Pulickel Ajayan, the Henry Burlage Professor of Materials Science and Engineering at Rensselaer; Omkaram Nalamasu, professor of chemistry and materials science and engineering at Rensselaer; Lijie Ci, Rensselaer research associate; Subbalakshmi Sreekala, a research associate in the department of mechanical and aerospace engineering at Princeton University; and X. Zhang, research associate in the school of materials science and engineering at Shanghai Jiao Tong University.

Funding for the project was provided by the Focus Center New York for Interconnects.

About the Author
©2006 All rights reserved

More articles
Carbon in magnetic club
Hydrogen from aluminum
Sugar-to-hydrogen technology
Menthol receptor
Brain's own marijuana
Proteins from scratch
Proteins from scratch
Proteins from scratch
Led to life
Plastic on trees
Fuel from sugar
Carbon nanotubes
Reactions in interstellar space
Flavonoids in orange juice
Synthetic adhesive mimics
Solvents chemical bonds
Aerogels clean water
Ceramic tubes gas
Nano-boric acid motor oil
Mit team fuel recipe
Quotes
I will not expose the ignorance of the faculty. - Bart Simpson.

I want an Internet. Can I have one of those? -- Spice Girl Mel B.,aka Scary Spice, pointing to a monitor during an AOL press conference

I want to get a tatoo of myself on my entire body, only 2 taller. -- Steven Wright

I think you should defend to the death their right to march, and then go down and meet them with baseball bats.-Woody Allen, on the KKK


Writers
If you are a writer and want to see your article published at Theallineed.com, just click here to submit.

Info
Today...
In the news...
Schedules for the Beijing 2008 Olympic Basketball Tournaments Announced
Already qualified for Beijing 2008 are: Australia (World Champion), China (host), Korea (Asian Champion), Mali (African Champion), New Zealand (Oceanian runner-up), Russia (European Champion) and USA (Champion of the Americas).
Which browser do you use the most?
Internet Explorer
Mozilla Firefox
Netscape
Opera
Other
 
Things to ponder
When you choke a Smurf, what color does it turn?

Did you know...
The creosote bush can live for thousands of years.

Quote of the day
Humankind cannot stand very much reality.
TS Eliot

Featured article
Homemade beauty recipes and remedies
Making your own homemade beauty products is much easier than you'd think. The recipes that you find on this site are easy to follow along and use mostly common household products.

 
© 2002 - 2007 Lexur