Silica polymer bonding of stressed silica grains: An early growth of intergranular tensile strength

dc.contributor.author

Guo, R

dc.contributor.author

Hueckel, T

dc.date.accessioned

2015-10-20T17:20:22Z

dc.date.issued

2015-01-01

dc.description.abstract

© 2015 Elsevier Ltd. All rights reserved.Laboratory tests on microscale are reported in which millimeter-sized amorphous silica cubes were kept highly compressed in a liquid environment of de-ionized water solutions with different silica ion concentrations for up to four weeks. Such an arrangement simulates an early evolution of bonds between two sand grains stressed in situ. In-house designed Grain Indenter-Puller apparatus allowed measuring strength of such contacts after 3-4 weeks. Observations reported for the first time confirm a long-existing hypothesis that a stressed contact with microcracks generates silica polymers, forming a bonding structure between the grains on a timescale in the order of a few weeks. Such structure exhibits intergranular tensile force at failure of 1-1.5 mN when aged in solutions containing silica ion concentrations of 200-to 500-ppm. The magnitude of such intergranular force is 2-3 times greater than that of water capillary force between the same grains.

dc.identifier.eissn

2352-3808

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https://hdl.handle.net/10161/10760

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Elsevier BV

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Geomechanics for Energy and the Environment

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10.1016/j.gete.2015.02.002

dc.title

Silica polymer bonding of stressed silica grains: An early growth of intergranular tensile strength

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Journal article

pubs.begin-page

48

pubs.end-page

59

pubs.organisational-group

Civil and Environmental Engineering

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Duke

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Pratt School of Engineering

pubs.publication-status

Published

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1

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