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In situ Mechanical Testing of Contacts Between Nanoscale Bodies: Measuring the Load-dependence of Contact Area.

Vishnubhotla, Sai Bharadwaj and Chen, Rimei and Khanal, Subarna and Hu, Xiaoli and Martini, Ashlie and Jacobs, Tevis (2017) In situ Mechanical Testing of Contacts Between Nanoscale Bodies: Measuring the Load-dependence of Contact Area. Microscopy and Microanalysis, 23 (S1). pp. 746-747. ISSN 1431-9276

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Abstract

Mechanical tests were performed on a silicon/diamond nanocontact. Using in situ transmission electron microscopy (TEM) and matched atomistic simulations, the contact area was measured during loading and unloading. The results agreed within uncertainty, and both experiment and simulation data showed significant hysteresis. While the unloading curves could be fit to a continuum model, yielding a realistic value for elastic modulus, this model overpredicted the contact area upon loading by an average of 40%. The implications of these results for real-world nanoscale contacts are that the contact area upon loading can deviate significantly from continuum predictions, even when the behavior upon unloading is well described by these models.


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Details

Item Type: Article
Status: Published
Creators/Authors:
CreatorsEmailPitt UsernameORCID
Vishnubhotla, Sai BharadwajSAV40@pitt.edusav40
Chen, Rimeirchen43@ucmerced.edu
Khanal, Subarnasrk68@pitt.edusrk68
Hu, Xiaolixhu@ucmerced.edu
Martini, Ashlieamartini@ucmerced.edu
Jacobs, Tevistjacobs@pitt.edutjacobs0000-0001-8576-914X
Date: 1 July 2017
Date Type: Publication
Journal or Publication Title: Microscopy and Microanalysis
Volume: 23
Number: S1
Publisher: Cambridge University Press
Page Range: pp. 746-747
DOI or Unique Handle: 10.1017/s1431927617004391
Schools and Programs: Swanson School of Engineering > Mechanical Engineering and Materials Science
Refereed: Yes
ISSN: 1431-9276
Article Type: Research Article
Date Deposited: 02 Aug 2019 19:38
Last Modified: 02 Aug 2019 19:38
URI: http://d-scholarship.pitt.edu/id/eprint/35213

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