We study the variations of surface structure and elasticity of different types of Nylon during absorption of ethanol using AFM surface topography and AFM micro-mechanics. We observe that ethanol absorption induces significant changes in the surface structure, in particular an increase of roughness as well as the presence of local damage. All investigated Nylons soften by a factor 1.5–2.5 as a consequence of ethanol absorption. The Young modulus of the samples as a func- tion of immersion time shows a complex, non-monotonic behavior with a minimum at intermediate immersion times. This behavior results from an interplay between the reduction of the glass transition temperature Tg, typically observed in bulk, and surface-specific effects such as the onset of surface crystallisation and degradation.

AFM investigation of the influence of ethanol absorption on the surface structure and elasticity of polyamides / Cervera-Moreno, Jaime Julio; Martinez-Borquez, Alejandro; Sotta, Paul; Laurati, Marco. - In: SN APPLIED SCIENCES. - ISSN 2523-3963. - ELETTRONICO. - 1:(2019), pp. 1325-1333. [10.1007/s42452-019-1360-0]

AFM investigation of the influence of ethanol absorption on the surface structure and elasticity of polyamides

Laurati, Marco
Writing – Original Draft Preparation
2019

Abstract

We study the variations of surface structure and elasticity of different types of Nylon during absorption of ethanol using AFM surface topography and AFM micro-mechanics. We observe that ethanol absorption induces significant changes in the surface structure, in particular an increase of roughness as well as the presence of local damage. All investigated Nylons soften by a factor 1.5–2.5 as a consequence of ethanol absorption. The Young modulus of the samples as a func- tion of immersion time shows a complex, non-monotonic behavior with a minimum at intermediate immersion times. This behavior results from an interplay between the reduction of the glass transition temperature Tg, typically observed in bulk, and surface-specific effects such as the onset of surface crystallisation and degradation.
2019
1
1325
1333
Cervera-Moreno, Jaime Julio; Martinez-Borquez, Alejandro; Sotta, Paul; Laurati, Marco
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Utilizza questo identificatore per citare o creare un link a questa risorsa: https://hdl.handle.net/2158/1173347
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