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`Thermal conductivity of plastic foams
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`l. R. J. J. Williamsl’* and
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`2. c. M. Aldaol
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`Article first published online: 25 AUG 2004
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`DOI: 10.1002/pen.760230602
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`Copyright © 1983 Society of Plastics Engineers, Inc.
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`Issue
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`
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`Polymer Engineering & Science
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`Volume 23, Issue 6, 1/doi/10.1002/pen.v23:6/issuetocl pages 293-298, April 1983
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`htt 2//WWW.altmetric.com/details. h ?
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`Additional Information
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`How to Cite
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`Williams, R. J. J. and Aldao, C. M. (1983), Thermal conductivity of plastic foams. Polym Eng Sci, 23: 293-
`298. doi: 10.1002/pen.760230602
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`Author Information
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`Institute of Materials Science & Technology (INTEMA), University of Mar del Plata, (7600) Mar del
`Plata, Argentina
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`T Research Member of the Consejo Nacional de Investigaciones Cientificas y Técnicas (National
`Research Council), Argentina.
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`3; Member of the Comisién de Investigaciones Cientificas de la Provincia de Buenos Aires, Argentina.
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`Page 1 of 2
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`BOREALIS EXHIBIT 1087
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`BOREALIS EXHIBIT 1087
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`Page 1 of 2
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`*Institute of Materials Science & Technology (INTEMA), University of Mar del Plata, (7600) Mar del Plata,
`Argentina
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`Publication History
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`1. Issue published online: 25 AUG 2004
`2. Article first published online: 25 AUG 2004
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`0 Abstract
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`0 References 1/doi/10.1002/pen.760230602/references)
`0 Cited By 1/doi/10.1002/pen.760230602/citedby1
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`Abstract
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`A simple equation enabling the prediction of the thermal conductivity of plastic foams, without the aid of adjustable parameters, is proposed. The
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`equation is based on a recurrent method, previously developed, that showed reasonable agreement with experimental results. Ways of decreasing the
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`thermal radiation contribution are shown. In particular, the influence of cell size, radiation transmission through solid membranes, and low-emissivity
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`boundary surfaces are analyzed. Errors involved in steady techniques of measuring the thermal conductivity associated with radiation are discussed.
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