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Angaben zur Quelle [Bearbeiten]

Autor     HUIMIN LU, XIANGMIN XU, XIAOHONG LI and ZHIJUN ZHANG
Titel    Morphology, crystallization and dynamic mechanical properties of PA66/nano-SiO2 composites
Zeitschrift    Bull. Mater. Sci.
Ausgabe    Vol. 29, No. 5
Jahr    2006
Seiten    485–490
URL    http://www.ias.ac.in/matersci/bmsoct2006/485.pdf

Literaturverz.   

yes
Fußnoten    yes
Fragmente    2


Fragmente der Quelle:
[1.] Mrs/Fragment 010 17 - Diskussion
Zuletzt bearbeitet: 2015-05-16 13:22:50 Hindemith
BauernOpfer, Fragment, Gesichtet, Lu et al 2006, Mrs, SMWFragment, Schutzlevel sysop

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SleepyHollow02
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Untersuchte Arbeit:
Seite: 10, Zeilen: 17-25
Quelle: Lu et al 2006
Seite(n): 485, Zeilen: abstract
HUIMIN LU et al. [25] prepared successfully PA66/nano- SiO2 composites by melt compounding technique. They studied the effect of nano- SiO2 on the morphology, crystallization and dynamic mechanical properties of polyamide 66. The influence of nano- SiO2 on the tensile fracture morphology of the nanocomposites was studied by scanning electron microscopy (SEM), which suggested that the nanocomposites revealed an extensive plastic elongation of the matrix polymer. The crystallization behavior of polyamide 66 and its nanocomposites were studied by differential scanning calorimetry (DSC). DSC nonisothermal curves showed an increase in the crystallization temperature along with increasing degree of crystallinity. Dynamic mechanical properties (DMA) indicated significant improvement in the storage modulus and loss modulus compared with neat polyamide 66.

[25] H. LU, X. XU, X. LI and Z. ZHANG, Bulletin of Materials Science, Vol. 29, No. 5, October 2006, pp. 485–490

This article addresses the effect of nano-SiO2 on the morphology, crystallization and dynamic mechanical properties of polyamide 66. The influence of nano-SiO2 on the tensile fracture morphology of the nanocomposites was studied by scanning electron microscopy (SEM), which suggested that the nanocomposites revealed an extensive plastic stretch of the matrix polymer. The crystallization behaviour of polyamide 66 and its nanocomposites were studied by differential scanning calorimetry (DSC). DSC nonisothermal curves showed an increase in the crystallization temperature along with increasing degree of crystallinity. Dynamic mechanical properties (DMA) indicated significant improvement in the storage modulus and loss modulus compared with neat polyamide 66.
Anmerkungen

The source is given, but it is not clear that the description of the findings of the paper is taken verbatim from the abstract of the paper. The reader would expect an evaluation of the author of the thesis studied.

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(SleepyHollow02), Hindemith

[2.] Mrs/Fragment 015 02 - Diskussion
Zuletzt bearbeitet: 2015-05-16 13:24:26 Hindemith
Fragment, KeineWertung, Lu et al 2006, Mrs, SMWFragment, Schutzlevel, ZuSichten

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Untersuchte Arbeit:
Seite: 15, Zeilen: 2-4
Quelle: Lu et al 2006
Seite(n): 485, Zeilen: l.col.: 21 ff.
Polyamides are considered to be one of the most important super-engineering materials because of their superior mechanical properties at elevated temperature due to their thermal stability. Polyamides are considered to be one of the most important super-engineering materials because of their superior mechanical properties at elevated temperature due to their thermal stability.
Anmerkungen

Short and purely descriptive.

Sichter
(SleepyHollow02)

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