Network Formation Theories and Their Application to Systems of Industrial Importance View Full Text


Ontology type: schema:Chapter     


Chapter Info

DATE

1992

AUTHORS

Karel Dušek , Ján Šomvársky

ABSTRACT

The structure of polymer networks is closely related to the network formation (structure growth) process. A covalent polymer network is a giant macromolecule of dimensions commensurable with the macroscopic dimensions of a given object. Although it can be characterized by a number of average structural parameters, like sol fraction or crosslinking density, its internal structure can be very different1 varying from that of a random loosely crosslinked network of vulcanized rubber to that of very dense networks of some thermosets or ceramers. Also, micronetworks (microgels) or other microscopic precursors (dendritic structures, star- burst polymers, etc.) are formed first and then they grow into a macronetwork with the same or other types of structure growth processes. Vinyl-divinyl copolymerization can serve as an example.2 Therefore, the understanding of structure growth is necessary for understanding the network structure, and the properties of polymer networks can be correlated with their structure. An important role in undestanding of the network structure via the network formation process is played by the network formation theories. More... »

PAGES

283-301

Book

TITLE

Synthesis, Characterization, and Theory of Polymeric Networks and Gels

ISBN

978-1-4613-6314-9
978-1-4615-3016-9

Identifiers

URI

http://scigraph.springernature.com/pub.10.1007/978-1-4615-3016-9_21

DOI

http://dx.doi.org/10.1007/978-1-4615-3016-9_21

DIMENSIONS

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45 schema:description The structure of polymer networks is closely related to the network formation (structure growth) process. A covalent polymer network is a giant macromolecule of dimensions commensurable with the macroscopic dimensions of a given object. Although it can be characterized by a number of average structural parameters, like sol fraction or crosslinking density, its internal structure can be very different1 varying from that of a random loosely crosslinked network of vulcanized rubber to that of very dense networks of some thermosets or ceramers. Also, micronetworks (microgels) or other microscopic precursors (dendritic structures, star- burst polymers, etc.) are formed first and then they grow into a macronetwork with the same or other types of structure growth processes. Vinyl-divinyl copolymerization can serve as an example.2 Therefore, the understanding of structure growth is necessary for understanding the network structure, and the properties of polymer networks can be correlated with their structure. An important role in undestanding of the network structure via the network formation process is played by the network formation theories.
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