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From nano to macro…. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. Image file: blogspan.org. January 7, 2011.

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From nano to macro…. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. Image file: blogspan.org. January 7, 2011.
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from nano to macro... | materialogi.wordpress.com Reviews

https://materialogi.wordpress.com

From nano to macro…. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. Image file: blogspan.org. January 7, 2011.

INTERNAL PAGES

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1

Ab Initio Methods | from nano to macro...

https://materialogi.wordpress.com/2009/11/10/ab-initio-methods

From nano to macro…. In fields such as materials science, electronics, mechanical engineering and bioscience not to mention physics and chemistry, the keywords “first principle” and “ab initio” have been widely used recently. The principle idea of these keywords is to regards many-atom systems as many-body systems composed of electrons and nuclei, and to treat everything on the basis of first principles of quantum mechanics, without introducing any empirical parameters. November 10, 2009. Create a free w...

2

Carbon Nanotube Chemical Sensors | from nano to macro...

https://materialogi.wordpress.com/2009/11/01/carbon-nanotube-chemical-sensors

From nano to macro…. Carbon Nanotube Chemical Sensors. The potential uses of chemical sensors using Carbon Nanotube (CNT) are:. Monitoring and controlling environmental pollution. Improving diagnostics for point care in medical applications. Providing small, low-power, fast, and sensitive tools for process and quality control in industrial applications. Implementing or improving detection of warfare and security threats. FIGURE 1. Schematic of CNT transistor. J Kong et al. Science, 287, 622 (2000). You a...

3

November | 2009 | from nano to macro...

https://materialogi.wordpress.com/2009/11

From nano to macro…. Archive for November, 2009. Is an electrical conductor that allows current to flow without resistance in low temperatures. This superconductor require incredible cold to slow down molecular vibrations sufficiently to facilitate unimpeded electron flow in accordance with what is known as BCS theory. Is lowered below a Superconducting Critical Temperature. Here are some characteristics that shown superconducting materials:. 2 Flux Trapping Effect. November 12, 2009. In fields such as m...

4

Deformation mechanisms of nanostructured metals and alloys | from nano to macro...

https://materialogi.wordpress.com/2011/01/07/deformation-mechanisms-of-nanostructured-metals-and-alloys

From nano to macro…. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. Image file: blogspan.org. January 7, 2011.

5

January | 2011 | from nano to macro...

https://materialogi.wordpress.com/2011/01

From nano to macro…. Archive for January, 2011. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. January 7, 2011.

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from nano to macro...

From nano to macro…. Deformation mechanisms of nanostructured metals and alloys. Contaminant elements (dispersion, oxide, and nitride) also influence both nanostructured and mechanical properties. Segregation of various elements into grain boundaries will create intergranular embrittlement behavior. Mechanical milling usually creates relatively more dislocation in the nanostructured materials . H Iwasaki, K. Higashi and T. G. Nieh, Scri. mater. 50 (2004) 395. Image file: blogspan.org. January 7, 2011.

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