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Typus
Verschleierung
Bearbeiter
SleepyHollow02
Gesichtet
Yes.png
Untersuchte Arbeit:
Seite: 24, Zeilen: 11-14, 18-23
Quelle: Monserrat De La Luz Garcia Curiel 2004
Seite(n): 13, 14, Zeilen: 13: 39 ff.; 14: 1, 9 ff.
2.4. Nanoparticle based nanocomposite

Inorganic particles are used in different matrices for specific purposes [54]. For metals, fillers improve high temperature creep properties and hardness when compared with the pure metal. For ceramics, fillers are used to improve their toughness [53] and for polymers for the increase of stiffness, strength, electrical properties and occasionally for toughness. [...] The incorporation of fillers into organic polymers may result in a brittle composite material. In addition, the amount of filler that can be incorporated is limited (thus, sometimes the addition of higher amounts of filler does not improve the mechanical properties of the material) and the filler may not be uniformly dispersed in the organic polymer. The efficiency of the filler to modify the properties of the polymer is primarily determined by the degree of dispersion in the polymer matrix.


[53] Callister, W.D. Materials Science and Engineering. An Introduction. 5th Ed. John Wiley & Sons, Inc. (1999).

[54] Wypych, G. Handbook of fillers. 2nd Edition. New York (1999).

Inorganic particles are used in different matrices for specific purposes [43]. For metals, fillers improve high temperature creep properties and hardness when compared with the pure metal. For ceramics, fillers are used to improve their toughness [35] and for polymers for the increase of stiffness, strength, electrical properties and occasionally for

[page 14]

toughness. [...]

Unfortunately, the incorporation of fillers in organic polymers can result in a brittle composite material. In addition, the amount of filler that can be incorporated is limited (sometimes the addition of higher amounts of filler doest not improve the mechanical properties of the material) and the filler may not be uniformly dispersed in the organic polymer. The efficiency of the filler to modify the properties of the polymer is primarily determined by the degree of dispersion in the polymer matrix.


[35] Callister, W.D. Materials Science and Engineering. An Introduction. 5th Ed. John Wiley & Sons, Inc. (1999).

[43] Wypych, G. Handbook of fillers. 2nd Edition. New York (1999).

Anmerkungen

The source is not mentioned, the references to the literature are also copied.

Sichter
(SleepyHollow02), Hindemith

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