Por favor, use este identificador para citar o enlazar este ítem:http://uvadoc.uva.es/handle/10324/25883
Título
Extensional rheology, cellular structure, mechanical behavior relationships in HMS PP/montmorillonite foams with similar densities
Autor
Año del Documento
2016
Editorial
Springer
Descripción
Producción Científica
Documento Fuente
J Polym Res (2016) 23: 251
Abstract
The main goal of this work is to analyze the relationships
between the extensional rheological behavior of solid
nanocomposites based on high melt strength polypropylene
(HMS PP) and montmorillonites (MMT) and the cellular structure
and mechanical properties of foams produced from these
materials. For this purpose two systems have been analyzed.
The first one incorporates organomodified MMT and a
compatibilizer and the second system contains natural clays
and is produced without the compatibilizer. Results indicate
that the extensional rheological behavior of both materials is
completely different. The strain hardening of the polymer containing
organomodified clays decreases as the clay content
increases. As a consequence, the open cell content of this material
increaseswith the clay content and hence, themechanical
properties get worse. However, in the materials produced with
natural clays this relationship is not so clear. While no changes
are detected in the extensional rheological behavior by adding
these particles, the nano-filled materials show an open cell
structure, opposite to the closed cell structure of the pure polymer,
which is caused by the fact of having particle agglomerates
with a size larger than the thickness of the cell walls and a
poor compatibility between the clays and the polymer.
Revisión por pares
SI
Patrocinador
Financial support from PIRTU contract of E. Laguna-Gutierrez by Junta of Castile and Leon (EDU/289/2011) and cofinanced by the European Social Fund is gratefully acknowledged. Cristina Saiz-Arroyo would like to acknowledge Spanish Ministry of Economy and Competitiveness (MINECO) via Torres Quevedo Program (PTQ-12-05504). Finally, financial assistance from MINECO and FEDER program (MAT 2012 – 34901) MINECO, FEDER, UE (MAT2015-69234-R) and the Junta de Castile and Leon (VA035U13) are gratefully acknowledged.
Version del Editor
Propietario de los Derechos
Springer
Idioma
eng
Derechos
restrictedAccess
Aparece en las colecciones
Files in questo item