1. Brian L. Neal
Differences in Dynamic Performance of Molded Polyurethane Foam as a Function of Pad Thickness and Supported Load
Journal of Cellular Plastics, Mar 2001; vol. 37: pp. 160 - 178.
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http://dx.doi.org/10.1106/1H1L-H37V-XB8U-Y8G9Research of HCFC Blown Integral Skin Foam[UNKNOWN]mMorphology Study
Journal of Cellular Plastics, Nov 1996; vol. 32: pp. 579 - 600.
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http://dx.doi.org/10.1177/0021955X05051739Key Aspects of Novel Catalyst Systems in all-Water Blown Integral Skin Foams-Related Catalytic Activities in the Isocyanate Reaction
Journal of Cellular Plastics, May 1995; vol. 31: pp. 277 - 300.
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http://dx.doi.org/10.1177/0021955X9503100307Recycling of Flexible Microcellular Polyurethane Foam
Journal of Cellular Plastics, Jan 1991; vol. 27: pp. 89.
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http://cel.sagepub.com/content/vol27/issue1/Technical Session X: Automotive Interior Production of Polyurethane Integral Skin Foams Without Cfc
Journal of Cellular Plastics, Jan 1991; vol. 27: pp. 60.
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http://cel.sagepub.com/content/vol27/issue1/Performance of Alternate Chlorofluorocarbons in RIM Structural and Integral Skin Polyurethane Foams
Journal of Cellular Plastics, Jan 1990; vol. 26: pp. 324 - 331.
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http://cel.sagepub.com/content/vol26/issue4/Performance of Alternate Blowing Agents to Chlorofluorocarbons in RIM Structural and Elastomeric Polyurethane Foams
Journal of Cellular Plastics, Jan 1990; vol. 26: pp. 304 - 311.
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http://cel.sagepub.com/content/vol26/issue4/Заранее благодарю.