Specific interactions, structure and properties in segmented polyurethane elastomers
Специфические взаимодействия, структура и свойства сегментированных полиуретановых эластомеров
2011-01-01
SCID: 54.1/xf2scxbd
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hard–soft segment interactionspolyester polyurethanepolyether polyurethanesegmented polyurethane elastomersstrain hardening
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Abstract (AI)
Two sets of segmented polyurethane (PU) elastomers were prepared from 4,4!-methylenebis(phenyl isocyanate) (MDI), 1,4-butanediol (BD) and a polyester or a polyether polyol, respectively.The molecular mass of both polyols was 1000 g/mol.The stoichiometric ratio of isocyanate and hydroxyl groups was 1 and the polyol/total diol ratio changed from 0 to 1 in 0.1 steps.One step bulk polymerization was carried out in an internal mixer and the samples were compression molded for testing.The results proved that specific interactions determine the phase structure and properties of these materials.Crystallinity was approximately the same in the two types of polyurethanes and the amount of relaxing soft segments was also similar.The determination of interaction parameters from solvent absorption and differences in glass transition temperatures indicated stronger interaction between hard and soft segments in the polyester than in the polyether polyurethane.Larger transparency of the polyester PU indicated the formation of smaller dispersed particles of the hard phase.The larger number of smaller hard phase units led to the formation of more physical cross-links distributed more evenly in the polymer.These differences in the phase structure of the polymers resulted in stronger strain hardening tendency, larger strength and smaller deformations for the polyester than for the polyether polyurethane.
Key Findings
1
Greater transparency in polyester polyurethane indicates smaller dispersed hard-phase particles, producing more evenly distributed physical cross-links and stronger strain hardening, higher strength, and lower deformation than polyether polyurethane.
2
Polyester-based polyurethane exhibits stronger hard–soft segment interactions than polyether-based polyurethane, based on solvent absorption and glass-transition-temperature differences.
3
Segmented polyurethane elastomers were synthesized from MDI, 1,4-butanediol, and either polyester or polyether polyols with molecular mass 1000 g/mol.
4
Similar crystallinity and relaxing soft-segment content were observed in polyester and polyether polyurethanes, indicating that these factors do not explain their property differences.
5
Specific hard–soft segment interactions determine the phase structure and mechanical properties of the segmented polyurethane elastomers.
Research Object
Segmented polyurethane elastomers based on polyester or polyether polyols
Research Subject
The effects of specific hard–soft segment interactions on phase structure, physical cross-linking, and mechanical properties
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2011-01-01
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