Kinetics of free radical polymerizations in reactive polymer processing

Huang, Y. J. ; Lee, L. J.

Hoboken, NJ : Wiley-Blackwell
Published 1985
ISSN:
0001-1541
Keywords:
Chemistry ; Chemical Engineering
Source:
Wiley InterScience Backfile Collection 1832-2000
Topics:
Chemistry and Pharmacology
Process Engineering, Biotechnology, Nutrition Technology
Notes:
A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
Additional Material:
12 Ill.
Type of Medium:
Electronic Resource
URL:
_version_ 1798297789220782081
addmaterial 12 Ill.
autor Huang, Y. J.
Lee, L. J.
autorsonst Huang, Y. J.
Lee, L. J.
book_url http://dx.doi.org/10.1002/aic.690311002
datenlieferant nat_lic_papers
hauptsatz hsatz_simple
identnr NLM159499097
issn 0001-1541
journal_name AIChE Journal
materialart 1
notes A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
package_name Wiley-Blackwell
publikationsjahr_anzeige 1985
publikationsjahr_facette 1985
publikationsjahr_intervall 8014:1985-1989
publikationsjahr_sort 1985
publikationsort Hoboken, NJ
publisher Wiley-Blackwell
reference 31 (1985), S. 1585-1593
schlagwort Chemistry
Chemical Engineering
search_space articles
shingle_author_1 Huang, Y. J.
Lee, L. J.
shingle_author_2 Huang, Y. J.
Lee, L. J.
shingle_author_3 Huang, Y. J.
Lee, L. J.
shingle_author_4 Huang, Y. J.
Lee, L. J.
shingle_catch_all_1 Huang, Y. J.
Lee, L. J.
Kinetics of free radical polymerizations in reactive polymer processing
Chemistry
Chemical Engineering
Chemistry
Chemical Engineering
A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
0001-1541
00011541
Wiley-Blackwell
shingle_catch_all_2 Huang, Y. J.
Lee, L. J.
Kinetics of free radical polymerizations in reactive polymer processing
Chemistry
Chemical Engineering
Chemistry
Chemical Engineering
A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
0001-1541
00011541
Wiley-Blackwell
shingle_catch_all_3 Huang, Y. J.
Lee, L. J.
Kinetics of free radical polymerizations in reactive polymer processing
Chemistry
Chemical Engineering
Chemistry
Chemical Engineering
A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
0001-1541
00011541
Wiley-Blackwell
shingle_catch_all_4 Huang, Y. J.
Lee, L. J.
Kinetics of free radical polymerizations in reactive polymer processing
Chemistry
Chemical Engineering
Chemistry
Chemical Engineering
A kinetic model has been developed for radical chain growth type of reactive polymer processing operations. This model incorporates considerations of the molecular diffusion that is described by a free volume theory and the basic reaction mechanism of the free-radical chain polymerization. Experimental results from the bulk styrene polymerization and a reaction of sheet molding compound (SMC) showed good agreement with the model.
0001-1541
00011541
Wiley-Blackwell
shingle_title_1 Kinetics of free radical polymerizations in reactive polymer processing
shingle_title_2 Kinetics of free radical polymerizations in reactive polymer processing
shingle_title_3 Kinetics of free radical polymerizations in reactive polymer processing
shingle_title_4 Kinetics of free radical polymerizations in reactive polymer processing
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source_archive Wiley InterScience Backfile Collection 1832-2000
timestamp 2024-05-06T10:13:34.815Z
titel Kinetics of free radical polymerizations in reactive polymer processing
titel_suche Kinetics of free radical polymerizations in reactive polymer processing
topic V
ZM
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