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Study of the influence of nanoparticles on the performance and the properties of polyamide 6

von Dr. Mohammad Reza Sarbandi

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[1.] Mrs/Fragment 011 21 - Diskussion
Zuletzt bearbeitet: 2015-05-16 20:07:26 WiseWoman
Ahn et al 2004, BauernOpfer, Fragment, Gesichtet, Mrs, SMWFragment, Schutzlevel sysop

Typus
BauernOpfer
Bearbeiter
Hindemith
Gesichtet
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Untersuchte Arbeit:
Seite: 11, Zeilen: 21-32
Quelle: Ahn et al 2004
Seite(n): 812, Zeilen: abstract, first lines of introduction
High performance poly (ethylene 2, 6-naphthalate) (PEN), with its superior physical and mechanical properties, has been used in specialty films, fibers, and in blow moldings. However, the applications of PEN are limited, because PEN exhibits a relatively high melt viscosity, which makes fiber spinning and injection molding difficult. The effect of stearic acid modification on the dispersion quality of silica nanoparticles and the adhesion between the filler and polymer matrix with stearic acid concentration were investigated by Seon Hoon Ahn and co-workers [59]. Thus, the wettability of silica nanoparticles was improved by the addition of stearic acid. The presence of adsorbed stearic acid on the surface of the silica nanoparticles reduced the interaction between silica nanoparticles, and reduced as well the size of agglomerates with increasing concentration. Silica nanoparticle–reinforced poly (ethylene 2, 6-naphthalate) (PEN) composites were melt-blended to investigate their mechanical properties and the processability of the composites.

[59] Seon Hoon Ahn, Seong Hun Kim, Seung Goo Lee, Journal of Applied Polymer Science, Vol. 94, 812–818 (2004) PEN [sic]

The effect of stearic acid modification on the dispersity of silica nanoparticles and the adhesion between the filler and polymer matrix with stearic acid concentration were investigated. The wettability of silica nanoparticles was improved by the addition of stearic acid. The presence of adsorbed stearic acid on the surface of the silica nanoparticles reduced the interaction between silica nanoparticles, and reduced the size of agglomerates with increasing concentration. Silica nanoparticle–reinforced poly(ethylene 2,6- naphthalate) (PEN) composites were melt-blended to investigate their mechanical properties and the processability of the composites. [...]

INTRODUCTION

High-performance poly(ethylene 2,6-naphthalate) (PEN), with its superior physical and mechanical properties, has been used in specialty films, fibers, and in blow moldings.1–3 However, the applications of PEN are limited because PEN exhibits a relatively high melt viscosity, which makes fiber spinning and injection molding difficult.4


1. Kim, S. H.; Kang, S. W.; Park, J. K.; Park, Y. H. J Appl Polym Sci 1998, 70, 1065.

2. Kim, S. H.; Kang, S. W. Fibers Polym 2000, 1, 83.

3. Kim, J. Y.; Seo, E. S.; Kim, S. H.; Kikutani, T. Macromol Res 2003, 11, 62.

4. Ulcer, Y.; Cakmak, M. Polymer 1994, 35, 5651.

Anmerkungen

The source is mentioned, but the reference only covers the text before the reference and it does not make clear that the text has been taken almost verbatim.

Sichter
(Hindemith), WiseWoman


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