Mikromechanikai deformációs folyamatok akusztikus emissziós vizsgálata poliamid nanokompozitokban

Translated title of the contribution: Investigation of micromechanical deformation process in polyamide layered-silicate nanocomposites by acoustic emission

Renner Károly, J. Móczó, B. Pukánszky

Research output: Contribution to journalArticle

Abstract

In our study polyamide-6 layered silicate nanocomposites were prepared in order to study the microme-chanical process by acoustic emission investigation. The effect of treatment of the filler, and the interaction between the silicate and the polymer can be characterized by the results of mechanical and acoustic emission measurements. The dominating micromechanical process depends on the volume fraction of filler in case of treated silicate. The two most typical processes are the deformation of silicate filler and debonding.

Original languageHungarian
JournalMuanyag Es Gumi/Plastics and Rubber
Volume42
Issue number11
Publication statusPublished - Nov 2005

Fingerprint

Silicates
Nylons
Acoustic emissions
Polyamides
Nanocomposites
Fillers
Debonding
Volume fraction
Polymers

ASJC Scopus subject areas

  • Polymers and Plastics

Cite this

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title = "Mikromechanikai deform{\'a}ci{\'o}s folyamatok akusztikus emisszi{\'o}s vizsg{\'a}lata poliamid nanokompozitokban",
abstract = "In our study polyamide-6 layered silicate nanocomposites were prepared in order to study the microme-chanical process by acoustic emission investigation. The effect of treatment of the filler, and the interaction between the silicate and the polymer can be characterized by the results of mechanical and acoustic emission measurements. The dominating micromechanical process depends on the volume fraction of filler in case of treated silicate. The two most typical processes are the deformation of silicate filler and debonding.",
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AU - Pukánszky, B.

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N2 - In our study polyamide-6 layered silicate nanocomposites were prepared in order to study the microme-chanical process by acoustic emission investigation. The effect of treatment of the filler, and the interaction between the silicate and the polymer can be characterized by the results of mechanical and acoustic emission measurements. The dominating micromechanical process depends on the volume fraction of filler in case of treated silicate. The two most typical processes are the deformation of silicate filler and debonding.

AB - In our study polyamide-6 layered silicate nanocomposites were prepared in order to study the microme-chanical process by acoustic emission investigation. The effect of treatment of the filler, and the interaction between the silicate and the polymer can be characterized by the results of mechanical and acoustic emission measurements. The dominating micromechanical process depends on the volume fraction of filler in case of treated silicate. The two most typical processes are the deformation of silicate filler and debonding.

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JO - Muanyag Es Gumi/Plastics and Rubber

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