4.7 Article

Insights into the physical properties of biobased polyurethane/expanded graphite composite foams

期刊

COMPOSITES SCIENCE AND TECHNOLOGY
卷 138, 期 -, 页码 24-31

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compscitech.2016.11.007

关键词

Polyurethane foams; Expanded graphite; Thermal conductivity; DC electrical conductivity

资金

  1. national funds through the FCT/MEC [FCT UID/CTM/50011/2013]
  2. FEDER
  3. FEDER Funds through Programa Operacional Factores de Competitividade - COMPETE
  4. National Funds through FCT [REEQ/515/CTM/2005]
  5. National Funds through FCT - Portuguese Foundation for Science and Technology [UID/CTM/50025/2013]
  6. FEDER, QREN [RECI/CTM-CER/0336/2012, COMPETE: FCOMP-01-0124-FEDER-027465]

向作者/读者索取更多资源

The main purpose of this work was to widen the range of applications of the polyurethane foams (PUFs) obtained from renewable resources as higher added value materials by increasing their electrical and thermal conductivities and get a better insight of the parameters governing these properties. The increase of these properties is frequently achieved by filling PUFs with carbon nanofibers (CNFs), carbon nanotubes (CNTs) or graphene layers, however their cost limits their widespread use. In this work, an inexpensive procedure has been developed to prepare electrical conductive PUFs using castor oil (CO) as polyol and expanded graphite (EG). The chemical and structural characteristics of the ensuing composite foams have been evaluated, as well as their morphology and their mechanical, thermal and electrical properties. The DC electrical conductivity results have been fitted to Taherian model. EG loadings between 0.5 and 1.5% (w/w) caused a systematic increase of the thermal and electrical conductivities Moreover, in this fillers' loading range the remaining physical properties namely the glass transition temperature and the Young's modulus are appropriate for standard applications. (C) 2016 Elsevier Ltd. All rights reserved.

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