Microstructure of metals and alloys an atlas of transmission electron microscopy images

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Microstructure of Metals and Alloys: An Atlas of Transmission Electron Microscopy Images

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Microstructure of Metals

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Brand New!. Ships with Tracking Number! Buy with confidence, excellent customer service!. Transmission electron microscopy TEM was used to assess the potential impact of the modification on the elemental and structural properties of the samples. TEM is an ideal technique for analyzing metals and other materials to gain an understanding of their structural and elemental properties on the submicrometer to atomic scale. Boston Scientific requested two TEM studies of their prototype alloy, which had been modified by addition of platinum to increase radiographic density of the vascular stent.

Microstructural metrology

The sample for the first study was a polished section containing precipitates observed using optical microscopy. Precipitates are not uncommon in austenitic stainless steels, and are typically chromium carbide or chromium oxide.

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The second study involved comparing samples of L tubing and platinum-enhanced L to determine whether the platinum was uniformly distributed, or whether its addition led to formation of secondary phases that might compromise the physical properties of the alloy. Key to both studies was the preparation of suitably thin sections from the samples provided.

Transmission electron microscopy TEM was used to assess the potential impact of the modification on the elemental and structural properties of the samples.

ISBN 13: 9781420075564

TEM is an ideal technique for analyzing metals and other materials to gain an understanding of their structural and elemental properties on the submicrometer to atomic scale. Boston Scientific requested two TEM studies of their prototype alloy, which had been modified by addition of platinum to increase radiographic density of the vascular stent.

Transmission Electron Microscopy (TEM)

The sample for the first study was a polished section containing precipitates observed using optical microscopy. Precipitates are not uncommon in austenitic stainless steels, and are typically chromium carbide or chromium oxide. The second study involved comparing samples of L tubing and platinum-enhanced L to determine whether the platinum was uniformly distributed, or whether its addition led to formation of secondary phases that might compromise the physical properties of the alloy.

Key to both studies was the preparation of suitably thin sections from the samples provided.

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