Damage of isotropic polycrystalline ice under moderate confining pressures

An experimental study of the damage of laboratory produced granular ice has been started. Damage, defined in the present study as the change in the apparent elastic modulus resulting from the initiation and propagation of microcracks, has been determined. The tests, conducted under uniaxial stress a...

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Bibliographic Details
Main Authors: Stone, B. M., Jordaan, I. J., Jones, S. J., McKenna, R. F.
Format: Article in Journal/Newspaper
Language:unknown
Published: 1989
Subjects:
ice
Online Access:https://nrc-publications.canada.ca/eng/view/object/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171
https://nrc-publications.canada.ca/fra/voir/objet/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171
id ftnrccanada:oai:cisti-icist.nrc-cnrc.ca:cistinparc:8896031
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spelling ftnrccanada:oai:cisti-icist.nrc-cnrc.ca:cistinparc:8896031 2023-05-15T14:22:35+02:00 Damage of isotropic polycrystalline ice under moderate confining pressures Stone, B. M. Jordaan, I. J. Jones, S. J. McKenna, R. F. 1989 text https://nrc-publications.canada.ca/eng/view/object/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171 https://nrc-publications.canada.ca/fra/voir/objet/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171 unknown 10th International Conference on Port and Ocean Engineering under Arctic Conditions, 12-16 June 1989, Luleå, Sweden, Publication date: 1989 report_number:LR-1989-08 ice damage confined compression article 1989 ftnrccanada 2021-09-01T06:17:53Z An experimental study of the damage of laboratory produced granular ice has been started. Damage, defined in the present study as the change in the apparent elastic modulus resulting from the initiation and propagation of microcracks, has been determined. The tests, conducted under uniaxial stress and moderate confining pressures, used a constant strain rate input as the controlling feedback parameter in a closed-loop machine. Peer reviewed: Yes NRC publication: Yes Article in Journal/Newspaper Arctic National Research Council Canada: NRC Publications Archive
institution Open Polar
collection National Research Council Canada: NRC Publications Archive
op_collection_id ftnrccanada
language unknown
topic ice
damage
confined compression
spellingShingle ice
damage
confined compression
Stone, B. M.
Jordaan, I. J.
Jones, S. J.
McKenna, R. F.
Damage of isotropic polycrystalline ice under moderate confining pressures
topic_facet ice
damage
confined compression
description An experimental study of the damage of laboratory produced granular ice has been started. Damage, defined in the present study as the change in the apparent elastic modulus resulting from the initiation and propagation of microcracks, has been determined. The tests, conducted under uniaxial stress and moderate confining pressures, used a constant strain rate input as the controlling feedback parameter in a closed-loop machine. Peer reviewed: Yes NRC publication: Yes
format Article in Journal/Newspaper
author Stone, B. M.
Jordaan, I. J.
Jones, S. J.
McKenna, R. F.
author_facet Stone, B. M.
Jordaan, I. J.
Jones, S. J.
McKenna, R. F.
author_sort Stone, B. M.
title Damage of isotropic polycrystalline ice under moderate confining pressures
title_short Damage of isotropic polycrystalline ice under moderate confining pressures
title_full Damage of isotropic polycrystalline ice under moderate confining pressures
title_fullStr Damage of isotropic polycrystalline ice under moderate confining pressures
title_full_unstemmed Damage of isotropic polycrystalline ice under moderate confining pressures
title_sort damage of isotropic polycrystalline ice under moderate confining pressures
publishDate 1989
url https://nrc-publications.canada.ca/eng/view/object/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171
https://nrc-publications.canada.ca/fra/voir/objet/?id=bd1628ea-e372-41f6-9ee0-f34edfc61171
genre Arctic
genre_facet Arctic
op_relation 10th International Conference on Port and Ocean Engineering under Arctic Conditions, 12-16 June 1989, Luleå, Sweden, Publication date: 1989
report_number:LR-1989-08
_version_ 1766295141636636672