Materials Sciences and Applications

Volume 1, Issue 6 (December 2010)

ISSN Print: 2153-117X   ISSN Online: 2153-1188

Google-based Impact Factor: 0.97  Citations  

Predictions of Storage Modulus of Glass Bead-Filled Low-Density-Polyethylene Composites

HTML  Download Download as PDF (Size: 530KB)  PP. 343-349  
DOI: 10.4236/msa.2010.16050    6,808 Downloads   12,202 Views  Citations
Author(s)

ABSTRACT

The factors affecting storage modulus (Ec') and quantitative characterization of polymer composites filled with inorganic particles were discussed in this paper. On the basis of Eshelby’s method and Mori’s work, an equation describing the relationship between the Ec' and the filler volume fraction, particle geometry as well as interfacial morphology was proposed. The Ec' of the glass bead filled low-density-polyethylene (LDPE/GB) composites was estimated by means of this equation under experimental conditions with temperature range of –150-100?C, frequency of 1 Hz and the amplitude of 0.6 mm, and compared with other equations proposed in literature. The results showed that the predictions for this equation were close to the measured data from the LDPE/GB composites.

Share and Cite:

J. Liang, "Predictions of Storage Modulus of Glass Bead-Filled Low-Density-Polyethylene Composites," Materials Sciences and Applications, Vol. 1 No. 6, 2010, pp. 343-349. doi: 10.4236/msa.2010.16050.

Cited by

[1] The influences of multiple factors for flexural performance of polypropylene: crystallization, crystal evolution, nanoparticles
Journal of Materials Science, 2021
[2] Dual crosslinked carboxymethyl cellulose/polyacrylamide interpenetrating hydrogels with highly enhanced mechanical strength and superabsorbent properties
2020
[3] Additive Manufacturing and Characterization of Polyoxymethylene
2020
[4] Cyclodextrin functionalized agarose gel with low gelling temperature for controlled drug delivery systems
2019
[5] Development and Characterisation of Stretchable Carbon Material Composites and Their Applications
2019
[6] Cross Linked polyethylene based inorganic hybrid Nanocomposites
2018
[7] Effect of Printing Parameters on Tensile, Dynamic Mechanical, and Thermoelectric Properties of FDM 3D Printed CABS/ZnO Composites
Materials, 2018
[8] Effect of organically modified clay on the morphology, rheology and viscoelasticity of epoxy–thermoplastic nanocomposites
Polymer Testing, 2018
[9] Mechanical, thermal, and viscoelastic response of novel in situ CTBN/POSS/epoxy hybrid composite system
Polymer Composites, 2015
[10] THERMAL AND MECHANICAL PROPERTIES OF POLYESTER COMPOSITES WITH GRAPHENE OXIDE AND GRAPHITE
2015
[11] Effect of E-Glass Fibers and Phlogopite Mica on the Mechanical Properties and Dimensional Stability of Rigid PVC Foams: Properties of Rigid PVC Foam Composites Reinforced with Glass Fibers and Mica
Polymer-Plastics Technology and Engineering, 2015
[12] Evaluarea performanțelor mecanice, termice și tribologice ale compozitelor poliesterice cu grafen oxidat si grafit
2015
[13] THERMAL AND MECHANICAL PROPERTIES OF POLYESTER COMPOSITES WITH GRAPHENE OXIDE AND GRAPHITE.
Digest Journal of …, 2015
[14] Rheological and dynamic mechanical properties of polymer-bonded magnets based on Sm 2 Co 17 and polyamide-12
2014
[15] Influence of MicroPCMs on thermal and dynamic mechanical properties of a biodegradable P3HB4HB composite
2014
[16] Alumina–clay nanoscale hybrid filler assembling in cross-linked polyethylene based nanocomposites: mechanics and thermal properties
Physical Chemistry Chemical Physics, 2014
[17] Rheological and dynamic mechanical properties of polymer-bonded magnets based on Sm2Co17 and polyamide-12
Journal of Materials Science, 2014
[18] Prediction of Elastic Modulus of Glass Short Fiber/Wood Powder/Polypropylene Hybrid Composites
ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013
[19] Physical and mechanical properties of injection-molded wood powder thermoplastic composites
Advanced Composite Materials, 2013

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.