0000000000698233

AUTHOR

M Paci

showing 4 related works from this author

Clay nanocomposites based on functionalized polyethylene. Effect of the clay modifier and the preparation conditions

2009

functionalized polyethylene polymer/clay nanocomposites
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On the mechanism of compatibilization of polyolefin/liquid crystalline polymer blends with graft copolymers

2000

The compatibilization mechanism of some compatibilizers for blends of polyolefins with a liquid crystalline polymer (LCP) was studied. Polyethylene (PE) and polypropylene (PP) were blended with a semirigid LCP (SBH) in a batch mixer, either with and without compatibilizers. The latter were two commercially available samples of functionalized polyolefins, that is, a PE-g-MA (HDM) and a PP-g-AA (Polybond 1001) copolymer and some purposely synthesized PE-g-LCP and PP-g-LCP copolymers. Microtomed films of the binary and the ternary blends were annealed at 240 degrees C on the hot stage of a polarizing microscope and the changes undergone by their morphology were recorded as a function of time. …

coalescenceSettore ING-IND/22 - Scienza E Tecnologia Dei Materialicompatibilizationmorphologypolyolefin/liquid crystalline polymer blend
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Processing and characterization of blends of fluoroelastomers with semirigid liquid crystal polymers

1996

Fluoroelastomers (FEs) usually have working temperatures above 150 degrees C and a great resistance to aggressive agents such as oils, fuels, aliphatic and aromatic solvents, steam, moderate acid, and basic environments. Liquid crystal polymers (LCPs) can be effective processing aids and reinforcing agents for elastomers. These characteristics are very attractive to lower melt viscosity and to stiffen and strengthen the final product through a simple blending. Among the LCPs, the semirigid LCPs seem the most appealing for blending with flexible thermoplastics (FTs) because their processing temperatures can be arranged to be in the same processing temperature range of FTs and because the pre…

Settore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMORPHOLOGYLIQUID CRYSTALLINE POLYMERSMECHANICAL-PROPERTIESTHERMOPLASTIC ELASTOMER
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On the interlayer spacing collaps of the Cloisite® 30B organoclay

2011

Dissolution–precipitation cycleInterlayer spacing collapseThermal degradationCloisite® 30B
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