Internal melt figures in ice by rapid adiabatic Compression

Single crystals and bicrystals of water ice have been adiabatically pressurized to produce, and clearly illustrate, two types of internal melt figures: (1) dendritic figures that grow from nucleation imperfections on the specimen's surface, or from air bubbles at grain boundaries, into the ice...

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Bibliographic Details
Main Authors: Gagnon, R. E., Tulk, C., Kiefte, H.
Format: Article in Journal/Newspaper
Language:unknown
Published: 1994
Subjects:
ice
Online Access:https://nrc-publications.canada.ca/eng/view/object/?id=83b501b1-97d4-4b22-bbe9-825d91dac241
https://nrc-publications.canada.ca/fra/voir/objet/?id=83b501b1-97d4-4b22-bbe9-825d91dac241
Description
Summary:Single crystals and bicrystals of water ice have been adiabatically pressurized to produce, and clearly illustrate, two types of internal melt figures: (1) dendritic figures that grow from nucleation imperfections on the specimen's surface, or from air bubbles at grain boundaries, into the ice as pressure is elevated; and (2) compression melt fractures, flat liquid-filled disks, that nucleate at imperfections in the crystal and grow with the application of pressure eventually to sprout dendritic fingers at the periphery. The transparency of the ice permitted visualization of the growth and behaviour of the figures, and this could be an important tool in understanding the role of phase transformations in deep-focus earthquakes. Correlation between figure size and pressure is noted for the first time. Peer reviewed: Yes NRC publication: Yes