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The influence of punch blunting on the elastic indentation response

Abstract:
Elastic solutions of a family of axisymmetric problems concerning frictionless contact between a rigid punch and a semi-infinite substrate are considered using the method of Green and Zerna and of Collins. The analysis is relevant to the interpretation of experimental results in materials indentation testing, e.g. when substrate properties need to be determined from load-displacement traces, and precise information about the indenter tip shape is crucial. Commonly used solutions for ideal punch shapes, e.g. those having spherical or conical tips, may only be viewed as approximations since, in practice, indenter tips are neither perfectly round nor infinitely sharp. In oder to illustrate the influence that small variations in punch shape may have on the contact behaviour, analytical solutions for a blunted Hertzian indenter and a rounded cone are obtained in parametric form, and their asymptotic behaviour at the extremes of low and high loads is investigated. A smooth punch is then considered of a general shape, given by a power series, and the resulting general solution is used as a basis for developing an inverse problem formulation of the tip share calibration procedure. The method allows the best match between the measured and predicted load-displacement dependencies to be established. An example of the application of this procedure to the analysis of some nanoindentation data is presented.
Publication status:
Published
Peer review status:
Peer reviewed

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Institution:
University of Oxford
Division:
MPLS
Department:
Engineering Science
Research group:
Solid Mechanics & Materials Engineering Group
Oxford college:
Trinity College
Role:
Author

Contributors


Publisher:
Professional Engineering Publishing
Journal:
Journal of Strain Analysis for Engineering Design More from this journal
Volume:
36
Issue:
4
Pages:
391-400
Publication date:
2001-01-01
Edition:
Publisher's version
DOI:
ISSN:
0309-3247


Language:
English
Keywords:
Subjects:
UUID:
uuid:2588fb9a-18e0-4e38-baa9-a6dc4b2b53a5
Local pid:
ora:1455
Deposit date:
2008-03-14

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