Journal of Polymer Science Part A Polymer Chemistry · 1995 · 43 citations · 6 references
EngineeringMechanical EngineeringSoft MatterMolding (Process)Mechanics ModelingPolymer MaterialMechanicsPolymer ProcessingPolymer ChemistryPolyurethane ElastomersMaterials ScienceMechanical BehaviorSize DistributionPolymer BlendPolymer EngineeringMaterial MechanicsHard Segment SizePolyurethane PolymerMechanical PropertiesPolymer SciencePolymer PropertyMechanical PerformanceMechanics Of Materials
Abstract In general, segmented polyurethane elastomers are prepared by reacting an isocyanate‐capped polyol prepolymer with a short‐chain diol chain extender, yielding an elastomer with hard segments of uniform size. However, the hard segment size will not be uniform if the polyurethane polymer is prepared by forming the hard segment first, followed by soft segment formation. Because the mechanical properties of polyurethane elastomers depend on the relative ratio of the hard to soft segments as well as the effectiveness of the hard segment as a physical crosslinker, the control of the size distribution of the hard segment is a key factor in designing polyurethane elastomers. It was found that reaction conditions can affect the size distribution of hard segments derived from an aliphatic diisocyanate with differential reactivity between the two isocyanate groups. Lower reaction temperatures and simultaneous mixing of all reactants gave the preferred size distribution of hard segments. © 1995 John Wiley & Sons, Inc.
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ENCYCLOPEDIA OF CHEMICAL TECHNOLOGY
Chemical & Engineering News · 1978 · 2.1K citations · Full text
The kinetics of the reaction of isophorone di-isocyanate with mono-alcohols
A.V. Cûnliffe, A. Davis, M. Farey et al. · Polymer · 1985 · 56 citations
Chemical Engineering, Engineering, Chemical Transformation +7