Enhancing polyurethane properties via soft segment crystallization
Semi-crystalline polyester diols with relatively high melting points and enthalpies of crystallization are shown to form nearly co-continuous lamellar structures in thermoplastic polyurethanes using polyether soft segments. This high aspect ratio crystalline structure results in materials with excep...
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Published in | Polymer (Guilford) Vol. 46; no. 23; pp. 10158 - 10166 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Oxford
Elsevier Ltd
14.11.2005
Elsevier |
Subjects | |
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Abstract | Semi-crystalline polyester diols with relatively high melting points and enthalpies of crystallization are shown to form nearly co-continuous lamellar structures in thermoplastic polyurethanes using polyether soft segments. This high aspect ratio crystalline structure results in materials with exceptional tensile and elastic properties compared to materials made with conventional semi-crystalline soft segments such as polycaprolactone or polybutylene adipate. Additions of semi-crystalline soft segment to foam formulations also result in increased hardness measured by standard foam hardness tests. Halpin–Tsai and percolation model analyses of the results suggest that the crystalline regions exert a global influence on the elastomer structure. |
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AbstractList | Semi-crystalline polyester diols with relatively high melting points and enthalpies of crystallization are shown to form nearly co-continuous lamellar structures in thermoplastic polyurethanes using polyether soft segments. This high aspect ratio crystalline structure results in materials with exceptional tensile and elastic properties compared to materials made with conventional semi-crystalline soft segments such as polycaprolactone or polybutylene adipate. Additions of semi-crystalline soft segment to foam formulations also result in increased hardness measured by standard foam hardness tests. Halpin-Tsai and percolation model analyses of the results suggest that the crystalline regions exert a global influence on the elastomer structure. |
Author | Lysenko, Zenon Wendt, Benjamin L. Brune, Douglas A. Sonnenschein, Mark F. Schrock, Alan K. |
Author_xml | – sequence: 1 givenname: Mark F. surname: Sonnenschein fullname: Sonnenschein, Mark F. email: mfsonnenschein@dow.com organization: Corporate Research and Development, Dow Chemical Company, Midland, MI 48674, USA – sequence: 2 givenname: Zenon surname: Lysenko fullname: Lysenko, Zenon organization: Corporate Research and Development, Dow Chemical Company, Midland, MI 48674, USA – sequence: 3 givenname: Douglas A. surname: Brune fullname: Brune, Douglas A. organization: Corporate Research and Development, Dow Chemical Company, Midland, MI 48674, USA – sequence: 4 givenname: Benjamin L. surname: Wendt fullname: Wendt, Benjamin L. organization: Corporate Research and Development, Dow Chemical Company, Midland, MI 48674, USA – sequence: 5 givenname: Alan K. surname: Schrock fullname: Schrock, Alan K. organization: Performance Chemicals and Thermosets Research and Development, Dow Chemical Company, Midland, MI 48674, USA |
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Keywords | Polyurethane Elastomer Crystallization Elastic modulus Polyurethune Mechanical properties Composition effect Experimental study Polyurethane elastomer Compressive stress Lamellar structure Esterurethane polymer Morphology Supramolecular structure Foam(plastics) Property structure relationship Tear strength Etherurethane polymer Mechanical hysteresis |
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Snippet | Semi-crystalline polyester diols with relatively high melting points and enthalpies of crystallization are shown to form nearly co-continuous lamellar... |
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SubjectTerms | Applied sciences Crystallization Elastomer Exact sciences and technology Mechanical properties Organic polymers Physicochemistry of polymers Polyurethane Properties and characterization |
Title | Enhancing polyurethane properties via soft segment crystallization |
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