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Atomic-scale interaction of a crack and an infiltrating fluid

Journal Article · · Chemical Physics Letters

Not Available

Sponsoring Organization:
USDOE National Nuclear Security Administration (NNSA)
Grant/Contract Number:
NA0003525
OSTI ID:
1531032
Alternate ID(s):
OSTI ID: 1502971
Journal Information:
Chemical Physics Letters, Journal Name: Chemical Physics Letters Journal Issue: S Vol. 737; ISSN 0009-2614
Publisher:
ElsevierCopyright Statement
Country of Publication:
Netherlands
Language:
English

References (14)

Mechanics of strength-degrading contact flaws in silicon journal July 1981
The structure of silicon surfaces from (001) to (111) journal December 1997
A material frame approach for evaluating continuum variables in atomistic simulations journal March 2010
The construction and application of an atomistic J-integral via Hardy estimates of continuum fields journal September 2010
Surface Structure and Stability of Partially Hydroxylated Silica Surfaces journal April 2017
The Fatigue of Glass Under Stress journal September 1944
A molecular interpretation of stress corrosion in silica journal February 1982
Stress‐corrosion cracking in silicon journal May 1990
The two-phase model for calculating thermodynamic properties of liquids from molecular dynamics: Validation for the phase diagram of Lennard-Jones fluids journal December 2003
Laser‐based and thermal studies of stress corrosion in vitreous silica journal October 1985
Influence of scribe damage on pits formed by immersion of Si in HF solution journal July 1986
Comparison of simple potential functions for simulating liquid water journal July 1983
Steric Effects in Stress Corrosion Fracture of Glass journal October 1987
Microindentation for Fracture and Stress‐Corrosion Cracking Studies in Single‐Crystal Silicon journal September 1987

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