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Investigation of effects of dibutyltin dilaurate
on reaction injection molding polyurethane-urea kinetics, morphology
and mechanical properties by FTIR |
| LI Zai-feng1, LI Jin-yan1, YUAN Wei1, SUN Bao-qun2, ZHANG Fu-tao2, WANG Zeng-lin2 |
| 1.Key Laboratory of Eco-chemical Engineering, Ministry of Education; College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology; 2.Shengli Oil Production Research Institute, SINOPEC |
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Abstract The bulk catalyst effect of dibutyltin dilaurate (DBTDL) on the reaction of NCO respectively with OH and NH2 was investigated in detail. The results showed that DBTDL had specific catalyst effect on the reaction of NCO with OH and no measurable effect on the reaction of NCO with NH2. In situ Fourier transform infrared spectroscopy (FTIR) used in the reaction injection molding (RIM) process showed that with increasing the concentration of DBTDL, the formation rate of the soft segment became fast, and the order degree of urea carbonyls became worse. Meanwhile, more arrange manners of urea carbonyl were present. The bands at 1653, 1647 and 1637 cm-1 were able to be detected at the low conversion. No hydrogen-bonded urea carbonyl available in the spectra at the beginning. The tensile-stress behavior showed that, with the increase of the DBTDL content, the interaction between polar groups became weak, while the virtual crosslinks also became weak. Although the break stress (?), 300%? and the hardness of elastomers decreased obviously, however, the tear strength, associated with the morphology of polyurethane-urea (PUU), showed the maximum when the DBTDL content was 2.63‰.
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Issue Date: 05 March 2008
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| 1 |
Pannone M C Macosko C W Kinetics of isocyanate aminereactionsJournal of Applied Polymer Science 1987 34(7)24092432
|
| 2 |
Camarrgo R E Gonzalez V M Macosko C W et al.Bulk polymerization kinetics by the adiabatic reactormethodRubber Chemistry and Technology 1983 56(4)774783
|
| 3 |
Richter E B Macosko C W Kinetics of fast (RIM) urethanepolymerizationPolymer Engineering &Science 1978 18(13)10121018
|
| 4 |
Steinle E C Critchfield F E Castro J M et al.Kinetics and conversion monitoring in a RIM themoplasticpolyurethane systemJournal of Applied PolymerScience 1980 25(10)23172329
|
| 5 |
Vespoli N P Alberino L M Peterson A A et al.Mold filling studies of polyurea rim systemsJournal of Elastomers and Plastics 1986 18(3)159176
|
| 6 |
Macosko C W Insightinto molding RIM materialsPlastics Engineering 1983 (4)2123
|
| 7 |
Hsu T J Lee L J Reaction injection moldingof polyureas I. Kinetics study.PolymerEngineering & Science 1988 28(15)955963
|
| 8 |
Nissen D Markovs R A Aromatic diamines as chainextenders in RIM urethane elastomersJournalof Elastomers and Plastics 1983 15(2)96112
|
| 9 |
Casey J P Milligan B Fasolka M J Aromatic diamine chain extender structure-activity relationshipsin polyurethanesJournal of Elastomers andPlastics 1985 17(3)218232
|
| 10 |
Pan B Xu Q Jiang Z Journal of Polymeric Materials and Engineering 1993 (2)9
|
| 11 |
Li Z F Yang G H Xu C M Effect of the crosslink density on the morphology and propertiesof reaction-injection-molding poly(urethane urea) elastomersJournal of Polymer Science Part A: Polymer Chemistry 2004 42(5)11261131
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