Please use this identifier to cite or link to this item: doi:10.22028/D291-35588
Title: History-Dependent Stress Relaxation of Liquids under High-Confinement: A Molecular Dynamics Study
Other Titles: Lubricants
Author(s): Gao, Hongyu
Language: English
Title: Lubricants
Volume: 10
Issue: 2
Publisher/Platform: MDPI
Year of Publication: 2022
Free key words: liquids
confinement
stress relaxation
molecular dynamics
hysteresis
DDC notations: 500 Science
Publikation type: Journal Article
Abstract: When liquids are confined into a nanometer-scale slit, the induced layering-like film structure allows the liquid to sustain non-isotropic stresses and thus be load-bearing. Such anisotropic characteristics of liquid under confinement arise naturally from the liquids’ wavenumber dependent compressibility, which does not need solidification to take place as a prerequisite. In other words, liquids under confinement can still retain fluidity with molecules being (sub-)diffusive. However, the extensively prolonged structural relaxation times can cause hysteresis of stress relaxation of confined molecules in response to the motions of confining walls and thereby rendering the quasi-static stress tensors history-dependent. In this work, by means of molecular dynamics, stress tensors of a highly confined key base-oil component, i.e., 1-decene trimer, are calculated after its relaxation from being compressed and decompressed. A maximum of 77.1 MPa normal stress discrepancy has been detected within a triple-layer boundary film. Analyses with respect to molecular morphology indicate that among the effects (e.g., confinement, molecular structure, and film density) that can potentially affect confined stresses, the ordering status of the confined molecules plays a predominant role.
DOI of the first publication: 10.3390/lubricants10020015
Link to this record: urn:nbn:de:bsz:291--ds-355887
hdl:20.500.11880/32499
http://dx.doi.org/10.22028/D291-35588
ISSN: 2075-4442
Date of registration: 1-Mar-2022
Faculty: NT - Naturwissenschaftlich- Technische Fakultät
Department: NT - Materialwissenschaft und Werkstofftechnik
Professorship: NT - Keiner Professur zugeordnet
Collections:SciDok - Der Wissenschaftsserver der Universität des Saarlandes

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