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Review of Scientific Instruments : A new tensile stage for in situ electron microscopy examination of the mechanical properties of superelasticŽ specimens

By Kalin I. Dragnevski, Trevor W. Fairhead, Rik Balsod, and Athene M. Donald

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Book Id: WPLBN0002169730
Format Type: PDF eBook :
File Size: Serial Publication
Reproduction Date: 24 December 2008

Title: Review of Scientific Instruments : A new tensile stage for in situ electron microscopy examination of the mechanical properties of superelasticŽ specimens  
Author: Kalin I. Dragnevski, Trevor W. Fairhead, Rik Balsod, and Athene M. Donald
Volume: Issue : December 2008
Language: English
Subject: Science, Physics, Natural Science
Collections: Periodicals: Journal and Magazine Collection (Contemporary), Review of Scientific Instruments Collection
Historic
Publication Date:
Publisher: American Institute of Physics

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Dragnevski, Trevor W. Fairhead, Rik Balsod, And Athene M. Donal, K. I. (n.d.). Review of Scientific Instruments : A new tensile stage for in situ electron microscopy examination of the mechanical properties of superelasticŽ specimens. Retrieved from http://hawaiilibrary.net/


Description
Description: We have developed a novel tensile stage that can be used for in situ electron microscopy examination of the mechanical properties of “superelastic” materials. In our stage, one of the specimen clamps is replaced by a cylindrical roller, which when driven by a motor can easily stretch (“roll on”) any specimen irrespective of its plastic properties. We have used the so-called Roll-o-meter in the study of the tensile behavior of two different film formed latex formulations, here referred to as standard and novel. We find that the values of the tensile strength and extension to break of the studied systems, measured by using the Roll-o-meter, are similar to those measured by a Hounsfield tensile testing machine outside the microscope chamber. Further, in situ environmental scanning electron microscopy examination of the deformation and failure of the lattices revealed that the standard specimens exhibit a more ductile behavior, compared to the novel ones.

 

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