2 options
A microscopic study of the glass transition: Atomistic simulations of vitrification and amorphization in metallic systems.
Connect to full text Available online
View online- Format:
- Book
- Thesis/Dissertation
- Author/Creator:
- Kulp, Daniel Teibi.
- Language:
- English
- Subjects (All):
- Materials science.
- Condensed matter.
- Solid state physics.
- 0611.
- 0794.
- Penn dissertations--Materials science and engineering.
- Materials science and engineering--Penn dissertations.
- Local Subjects:
- Penn dissertations--Materials science and engineering.
- Materials science and engineering--Penn dissertations.
- 0611.
- 0794.
- Physical Description:
- 230 pages
- Contained In:
- Dissertation Abstracts International 53-11B.
- System Details:
- Mode of access: World Wide Web.
- text file
- Summary:
- At present, little is known concerning the details of the transition to the amorphous solid. Several theories on vitrification and amorphization have been proposed, but to date no microscopic model has been developed. We present a molecular dynamics simulation study on vitrification and amorphization in one- and two-component metal systems. We found that the onset of orientational correlations in the shear stresses at a temperature T$\sb{\rm s}$ are associated with the change from Arrhenian to non-Arrhenian behavior of the transport properties. These correlations lead to four-mode coupling terms which are not presently included in standard mode-coupling theories. Also, these correlations in the shear stress indicate the presence of long-range shear elastic interactions. We also found that the average atomic shear stress and its distribution determines the completion of amorphization when it saturates at a critical value which can be determined from the average shear stress in a quenched glass. This value, in contrast to the thermodynamic values of volume and energy, is not dependent on processing history and is, therefore, a good criterion for amorphization. Also, the average shear stress may be a reasonable description of the glassy state. The average shear stress in an amorphous solid may be measurable experimentally through the use of a local probe like NMR.
- Notes:
- Thesis (Ph.D. in Materials Science and Engineering) -- Graduate School of Arts and Sciences, University of Pennsylvania, 1992.
- Source: Dissertation Abstracts International, Volume: 53-11, Section: B, page: 5921.
- Supervisors: Takeshi Egami; Vaclav Vitek.
- Local Notes:
- School code: 0175.
- Access Restriction:
- Restricted for use by site license.
The Penn Libraries is committed to describing library materials using current, accurate, and responsible language. If you discover outdated or inaccurate language, please fill out this feedback form to report it and suggest alternative language.