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Dive into the research topics where Jonathan C. Trenkle is active.

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Featured researches published by Jonathan C. Trenkle.


Review of Scientific Instruments | 2010

Hot nanoindentation in inert environments.

Jonathan C. Trenkle; Corinne E. Packard; Christopher A. Schuh

An instrument capable of performing nanoindentation at temperatures up to 500 degrees C in inert atmospheres, including partial vacuum and gas near atmospheric pressures, is described. Technical issues associated with the technique (such as drift and noise) and the instrument (such as tip erosion and radiative heating of the transducer) are identified and addressed. Based on these considerations, preferred operation conditions are identified for testing on various materials. As a proof-of-concept demonstration, the hardness and elastic modulus of three materials are measured: fused silica (nonoxidizing), aluminum, and copper (both oxidizing). In all cases, the properties match reasonably well with published data acquired by more conventional test methods.


Acta Materialia | 2011

Enhanced solid solution effects on the strength of nanocrystalline alloys

Timothy J. Rupert; Jonathan C. Trenkle; Christopher A. Schuh


Archive | 2010

Coated articles and methods

Nazila Dadvand; Christopher A. Schuh; Alan C. Lund; Jonathan C. Trenkle; John Cahalen


Archive | 2012

COATED ARTICLES, ELECTRODEPOSITION BATHS, AND RELATED SYSTEMS

Nazila Dadvand; John D'urso; Jonathan C. Trenkle; Alan C. Lund; John Cahalen


Archive | 2010

ELECTRODEPOSITION BATHS AND SYSTEMS

Nazila Dadvand; Christopher A. Schuh; Alan C. Lund; Jonathan C. Trenkle; John Cahalen


Archive | 2016

Silver alloy coated articles

Nazila Dadvand; John D'urso; Jonathan C. Trenkle; Alan C. Lund; John Cahalen; Christopher A. Schuh


Archive | 2016

COATING AND METHOD

Nazila Dadvand; Christopher A. Schuh; Alan C. Lund; Jonathan C. Trenkle; John Cahalen


Prof. Schuh via Angie Locknar | 2010

Temperature dependence of the indentation size effect

Oliver Franke; Jonathan C. Trenkle; Christopher A. Schuh


Encyclopedia of Materials: Science and Technology (Second Edition) | 2010

Nanoindentation: High Temperature

Corinne E. Packard; Jeffrey M. Wheeler; Jonathan C. Trenkle; Christopher A. Schuh

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Christopher A. Schuh

Massachusetts Institute of Technology

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Oliver Franke

University of Southern California

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