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Título

Crystal hardness and average distance between stable entanglements in melt crystallized polyethylene

AutorBayer, R. K. CSIC; Baltá Calleja, Francisco José CSIC ORCID; Kilian, H. G.
Palabras claveMicrohardness
Polyethylene
Entanglements
Amorphous layers
Fecha de publicaciónmay-1997
EditorSpringer Nature
CitaciónColloid and Polymer Science 275: 432-439 (1997)
ResumenMicrohardness of a series of linear PE samples with a wide range of molecular weights has been determined. The influence of the mode of crystallization from the melt on the mechanical properties has been examined. It is shown that crystal hardness is correlated to the thickness of the amorphous layer for each series of samples. A new expression which describes the microhardness (H) of polyethylene as a function of the average distance between stable entanglements (knots) s is proposed. A value of s = 360 Å, for the mean length between knots in the network is obtained. Analysis of data reveals that the H value can be expressed in terms of the following morphological parameters: 1) average number of chain folds in a lamellar crystal, 2) the nature of the interface between the crystalline and the amorphous layer and 3) the linear crystallinity.
Descripción8 pags., 6 figs., 5 tabs.
Versión del editorhttps://doi.org/10.1007/s003960050101
URIhttp://hdl.handle.net/10261/223961
DOI10.1007/s003960050101
ISSN0303-402X
E-ISSN1435-1536
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